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Award winners with foundation chairman, foundation MD and professors (c) VDMA e.V. Textile Machinery
Award winners with foundation chairman, foundation MD and professors
08.12.2023

Walter Reiners Foundation honours young engineers

As part of the Aachen-Dresden-Denkendorf International Textile Conference in Dresden, the Chairman of the Walter Reiners Foundation of the VDMA, Peter D. Dornier, presented awards to four successful young engineers. Two promotion prizes and two sustainability prizes were awarded in the Bachelor and Diploma/Master categories. Academic works in which solutions for resource-saving products and technologies are developed are eligible for the sustainability prizes.

A sustainability prize worth 3,000 euros in the Bachelor's category was awarded to Franziska Jauch, Niederrhein University of Applied Sciences, for her Bachelor's thesis on pigment digital printing in denim production.

The promotion prize in the Bachelor's category, also worth 3,000 euros, went to Annika Datko, RWTH Aachen, for her work on determining the polyester content in used textiles.

Dave Kersevan, TU Dresden, was honoured with a sustainability prize in the Diploma/Master's category, endowed with 3,500 euros. The subject of his thesis was the development of a laboratory system for the production of needled carbon preforms.

As part of the Aachen-Dresden-Denkendorf International Textile Conference in Dresden, the Chairman of the Walter Reiners Foundation of the VDMA, Peter D. Dornier, presented awards to four successful young engineers. Two promotion prizes and two sustainability prizes were awarded in the Bachelor and Diploma/Master categories. Academic works in which solutions for resource-saving products and technologies are developed are eligible for the sustainability prizes.

A sustainability prize worth 3,000 euros in the Bachelor's category was awarded to Franziska Jauch, Niederrhein University of Applied Sciences, for her Bachelor's thesis on pigment digital printing in denim production.

The promotion prize in the Bachelor's category, also worth 3,000 euros, went to Annika Datko, RWTH Aachen, for her work on determining the polyester content in used textiles.

Dave Kersevan, TU Dresden, was honoured with a sustainability prize in the Diploma/Master's category, endowed with 3,500 euros. The subject of his thesis was the development of a laboratory system for the production of needled carbon preforms.

This year's promotion award in the Diploma/Master's category, endowed with prize money of 3,500 euros, went to Flávio Diniz from RWTH Aachen. The subject of his Master's thesis was the feasibility of manufacturing ultra-thin carbon fibres.

The award ceremony 2024 will take place in April at the VDMA stand at the Techtextil fair in Frankfurt.

25.08.2023

Exist research transfer project FoxCore successfully launched

The FoxCore founding team and the ITM at TU Dresden aim to usher in a new era for fastening solutions in lightweight construction with the start of the Exist research transfer project FoxCore. The project started on June 1, 2023, and will run until November 30, 2024, with support from the German Federal Ministry of Economics and Climate Protection (BMWK) and the European Social Fund (ESF).

The innovative company is to develop and offer new and customer-oriented fastening solutions for lightweight construction applications. Safety and performance of lightweight solutions in various industries are to be increased. FoxCore's objective is to take a leading role in fastening technology.

Daniel Weise, Philipp Schegner, Michael Vorhof and Cornelia Sennewald form the FoxCore team; they will work closely with the Institute of Textile Machinery and Textile High Performance Materials (ITM) at TU Dresden. Together, they will develop optimal manufacturing technologies and establish a widespread network of customers and suppliers.

The FoxCore founding team and the ITM at TU Dresden aim to usher in a new era for fastening solutions in lightweight construction with the start of the Exist research transfer project FoxCore. The project started on June 1, 2023, and will run until November 30, 2024, with support from the German Federal Ministry of Economics and Climate Protection (BMWK) and the European Social Fund (ESF).

The innovative company is to develop and offer new and customer-oriented fastening solutions for lightweight construction applications. Safety and performance of lightweight solutions in various industries are to be increased. FoxCore's objective is to take a leading role in fastening technology.

Daniel Weise, Philipp Schegner, Michael Vorhof and Cornelia Sennewald form the FoxCore team; they will work closely with the Institute of Textile Machinery and Textile High Performance Materials (ITM) at TU Dresden. Together, they will develop optimal manufacturing technologies and establish a widespread network of customers and suppliers.

Source:

Institute of Textile Machinery and High Performance Material Technology (ITM)
TU Dresden

(c) ITM/TUD
Herr Philipp Weigel, Preisträger des ITMA Sustainable Innovation Award - Research & Innovation Excellence  Award, auf dem Messestand des ITM auf der ITMA 2023
16.06.2023

Philipp Weigel erhält 1. Preis des ITMA Research & Innovation Excellence Award

Im Rahmen der diesjährigen ITMA 2023, der internationalen Textilmaschinenausstellung und Plattform für die gesamte Textilmaschinenbranche, die vom 08. bis 14. Juni 2023 in Mailand stattfand, wurde Herr Dipl.-Ing. Philipp Weigel für seine am ITM angefertigte exzellente Studienarbeit "Numerische Simulation des Struktur- und Auszugverhaltensparametrisch generierter profilierter Carbonpolymergarne" mit dem ITMA Sustainable Innovation Award in der Kategrie "Research & Innovation Excellence Award" ausgezeichnet. Er erhielt hierfür den 1. Preis, der mit 10.000 EUR dotiert ist.
 
Die Arbeit ist von großem wissenschaftlichen Interesse für die Entwicklung hochleistungsfähiger, ressourcenschonender Carbonbetonbauteile mit höchster Materialeffizienz und Nachhaltigkeit sowie für die simulative Beschreibung und digitale Auslegung der Bewehrungsstruktur.

CEMATEX-Präsident Ernesto Maurer überreichte das Preisgeld und Urkunde an die glücklichen Gewinner:nnen während der ITMA 2023 in Mailand, Italien.

Der 2. und 3. Preis ging an Absolventen des Instituts für Textiltechnik der RWTH Aachen.

Im Rahmen der diesjährigen ITMA 2023, der internationalen Textilmaschinenausstellung und Plattform für die gesamte Textilmaschinenbranche, die vom 08. bis 14. Juni 2023 in Mailand stattfand, wurde Herr Dipl.-Ing. Philipp Weigel für seine am ITM angefertigte exzellente Studienarbeit "Numerische Simulation des Struktur- und Auszugverhaltensparametrisch generierter profilierter Carbonpolymergarne" mit dem ITMA Sustainable Innovation Award in der Kategrie "Research & Innovation Excellence Award" ausgezeichnet. Er erhielt hierfür den 1. Preis, der mit 10.000 EUR dotiert ist.
 
Die Arbeit ist von großem wissenschaftlichen Interesse für die Entwicklung hochleistungsfähiger, ressourcenschonender Carbonbetonbauteile mit höchster Materialeffizienz und Nachhaltigkeit sowie für die simulative Beschreibung und digitale Auslegung der Bewehrungsstruktur.

CEMATEX-Präsident Ernesto Maurer überreichte das Preisgeld und Urkunde an die glücklichen Gewinner:nnen während der ITMA 2023 in Mailand, Italien.

Der 2. und 3. Preis ging an Absolventen des Instituts für Textiltechnik der RWTH Aachen.

Der ITMA Sustainable Innovation Award wurde von CEMATEX ins Leben gerufen, um die gemeinsamen Anstrengungen der globalen Textilindustrie zur Förderung der Nachhaltigkeit von Unternehmen durch innovative Lösungen und zur Förderung herausragender branchenspezifischer Forschung zu würdigen.
Der Preis umfasst zwei Kategorien: einen Industry Excellence Award für Textil- und Bekleidungshersteller und einen Research & Innovation Excellence Award, der für Master-Studenten offen ist.

Source:

Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) - TU Dresden

(c) M. Vorhof, ITM/TU Dresden
12.04.2023

ITM at JEC 2023

From April 25th to 27th, 2023, the Institute of Textile Machinery and High Performance Material Technology (ITM) of TU Dresden will be exhibiting at the pavilion SAXONY! at JEC World 2023.

The ITM will provide a comprehensive overview of its current research in the field of machine and product development along the entire textile process chain.

The upcoming JEC 2023 exhibition will highlight innovative Customised Connective Cores (CCC), which are custom-made core-insert structures additively manufactured using cellular metal and a form-fit integrated insert. These CCCs can be seamless integrated either as patches or as full-surface core material into lightweight panels, offering significantly improved load-bearing behavior (especially 4 times the load-bearing capacity and fail-safe behavior) compared to existing technologies. This breakthrough opens up new possibilities for fastening lightweight panels.

From April 25th to 27th, 2023, the Institute of Textile Machinery and High Performance Material Technology (ITM) of TU Dresden will be exhibiting at the pavilion SAXONY! at JEC World 2023.

The ITM will provide a comprehensive overview of its current research in the field of machine and product development along the entire textile process chain.

The upcoming JEC 2023 exhibition will highlight innovative Customised Connective Cores (CCC), which are custom-made core-insert structures additively manufactured using cellular metal and a form-fit integrated insert. These CCCs can be seamless integrated either as patches or as full-surface core material into lightweight panels, offering significantly improved load-bearing behavior (especially 4 times the load-bearing capacity and fail-safe behavior) compared to existing technologies. This breakthrough opens up new possibilities for fastening lightweight panels.

Another highlight at the exhibition is the repair process for fibre-reinforced composites (FRP) developed at the ITM. Instead of mechanically grinding the damaged area, the matrix in the repair area is locally dissolved using a UV-rays-induced depolymerisation process. Damaged fibres can thus be replaced by a customized repair patch. Free yarn ends on the textile repair patches are spliced with the UV-exposed yarn ends in the repair area using an adapted splicing process. In this way, a very clean, simplified and mechanically improved repair area can be achieved compared to the state of the art.

The diverse possibilities offered by the structure and process simulation of textile high-performance materials and textile manufacturing processes will also be presented. By means of multi-scale modelling and simulation, a profound understanding of materials and processes is achieved at the ITM. Finite element models on the micro, meso and macro scale have been developed and validated for this purpose. Examples from current ITM research projects demonstrate the various possibilities and areas of application of modern simulation methods in the field of textile technology.

Moreover, an innovative process for the integral manufacturing of 3D rib-stiffened preforms with complexly arranged stiffeners in 0°, 90° and ± 45° orientation was developed and successfully implemented at the ITM. Due to the process-integrated structure fixation and the continuous fibre reinforcement between shell and rib structure, the 3D preforms are perfectly suited for the production of highly load-bearing FRP components with increased bending stiffness, which will be exhibited at JEC. Hence, the lightweight construction potential of high-performance fibres can be fully exploited.

A successfully established development are partially flowable 2D textile reinforcement fabrics that are continuously manufactured in one single process step. For this purpose, the entire process chain was developed at the ITM, which allows a cost-effective and high-volume production of load-bearing thermoplastic 3D FRP components with continuous fibre reinforcement between shell and stiffeners.

At JEC 2023, the ITM will also present a partially embedded textile latice girder as reinforcement for carbon concrete applications, which was produced by means of an innovative textile manufacturing process based on the multiaxial warp knitting technology. Through the development of a customized warp insertion, manipulation and take-off system as well as appropriate shaping methods, it is now possible to produce tailored textile semi-finished products, e.g. for use in wall and ceiling panels. These textile latice girders represent a resource-saving alternative to conventional steel girders due to the reduced among of concrete required and the additional cavity for media and cable guidance.

The integration of textile actuators and sensors in FRP provides structures with additional functionalities. The research and application of such interactive FRP with different matrix materials (e.g. with thermoset, elastomer or concrete matrix systems) for structural health monitoring or adaptive systems is one of the key research areas of the ITM.

Moreover, the development and implementation of innovative yarn constructions based on recycled high-performance fibres (e.g. rCF, rGF, rAR) for sustainable FRPs is successfully promoted at ITM. By use of a special carding machine, recycled fibres are opened up, separated and joined to form a wide, uniform ribbon. Subsequently, innovative hybrid yarn constructions made of evenly mixed recycled high-performance and thermoplastic fibres with variable fibre volume fractions can be manufactured by means of various spinning technologies. Selected yarn constructions and components will be showcased at JEC.

More information:
ITM TU Dresden JEC World
(c) Michael Kretzschmar
Awards Honorary Doctorate to Professor Dr. Paul Kiekens by Professor Dr. Ursula M. Staudinger, Rector of the TU Dresden
12.04.2023

TU Dresden awards Honorary Doctorate to Professor Paul Kiekens

In recognition of his extraordinary engineering achievements in the fields of textile mechanical engineering, textile technology as well as textile chemistry and surface modification of textile semi-finished products, Prof. Paul Kiekens was awarded the title of Doctor honoris causa (Dr.-Ing. h.c.) on April 5, 2023.
 
Prof. Kiekens was a university professor at Ghent University, Belgium, for almost 35 years and thus responsible for textile-oriented education and research. Intensive interaction with European business and science was always particularly important to him.
 

In recognition of his extraordinary engineering achievements in the fields of textile mechanical engineering, textile technology as well as textile chemistry and surface modification of textile semi-finished products, Prof. Paul Kiekens was awarded the title of Doctor honoris causa (Dr.-Ing. h.c.) on April 5, 2023.
 
Prof. Kiekens was a university professor at Ghent University, Belgium, for almost 35 years and thus responsible for textile-oriented education and research. Intensive interaction with European business and science was always particularly important to him.
 
Immediately after the fall of the Berlin Wall, he opened the way for international cooperation in teaching and research in the field of textile mechanical engineering, textile technologies, and textile chemistry for the only Eastern European university research institution with a textile orientation, the ITM (formerly ITB) at the Faculty of Mechanical Engineering of TU Dresden, and provided great and uncomplicated support. A close, lasting and intensive relationship developed, which had a trend-setting influence on the scientific career of Professor Paul Kiekens. This was reflected above all in the expert advice given for major projects.
 
These include, for example, the funded junior research group "Holistic approach to the development and modelling of a new generation of multiaxial fabrics for fibre composites to strengthen Saxon, French and Flemish industry in the high-performance sector" (SAXOMAX) and jointly acquiring the EU project "Large scale manufacturing technology for high performance lightweight 3D multifunctional composites" (3D-LightTrans). Especially in these large-scale projects, intensive cooperation with industrial partners was essential for success.
 
As early as the 1990s, Professor Paul Kiekens had the vision of creating a European network for universities in textile teaching and research. In 1994, the Association of Universities for Textiles (AUTEX) was founded with the aim of establishing teaching and research in the field of textile technology at an internationally respected level through joint concepts. Due to the prevailing cooperation at that time between Professor Dr. Paul Kiekens and Professor Dr. Peter Offermann, the TU Dresden, represented by the ITM (formerly ITB), has been a full member and decisively integrated in the network since its foundation on July 1, 1994. Thus Prof. Dr.-Ing. habil. Paul Kiekens has significantly promoted the international cooperation of the TU Dresden, Faculty of Mechanical Engineering with international university textile research institutions.
 
Professor Paul Kiekens was executive coordinator of AUTEX until his retirement. The internationally renowned symposium takes place annually as a part of AUTEX.

Source:

Technische Universität Dresden - Institute of Textile Machinery and High Performance Material Technology

21.02.2023

Polartec®: New technology reduces fiber fragmentation in laundering tests

  • Iconic 200 Series fleece to be the first fabric made from this new process.

Polartec®, a Milliken & Company brand, announces Polartec® Shed Less Fleece, a new milestone in its industry-leading efforts to reduce textile fiber fragment shedding. Shed Less is a process that combines yarn construction, knitting, chemistry, and manufacturing to reduce home laundry fiber fragment shedding by an average of 85%. The first fabric to receive this new technology is the brand’s iconic Polartec® 200 Series Fleece, the modern version of the original PolarFleece® launched in 1981, and in 1993, the first performance fleece knit from yarn made from recycled plastic bottles.

The Shed Less process works by engineering the lofted fibers that give fleece its soft hand the ability to resist breaking and rubbing off during home laundering, cited as one contributing factor to the spread of fibers fragments (commonly referred to as microfibers). Polartec® Shed Less Fleece achieves this while maintaining all of the attributes that continue to make Polartec fleece a staple of midlayer collections - lightweight, breathable and warm.

  • Iconic 200 Series fleece to be the first fabric made from this new process.

Polartec®, a Milliken & Company brand, announces Polartec® Shed Less Fleece, a new milestone in its industry-leading efforts to reduce textile fiber fragment shedding. Shed Less is a process that combines yarn construction, knitting, chemistry, and manufacturing to reduce home laundry fiber fragment shedding by an average of 85%. The first fabric to receive this new technology is the brand’s iconic Polartec® 200 Series Fleece, the modern version of the original PolarFleece® launched in 1981, and in 1993, the first performance fleece knit from yarn made from recycled plastic bottles.

The Shed Less process works by engineering the lofted fibers that give fleece its soft hand the ability to resist breaking and rubbing off during home laundering, cited as one contributing factor to the spread of fibers fragments (commonly referred to as microfibers). Polartec® Shed Less Fleece achieves this while maintaining all of the attributes that continue to make Polartec fleece a staple of midlayer collections - lightweight, breathable and warm.

The brand used the AATCC (American Association of Textile Chemists and Colorists) TM212-2021 test method for fiber fragment release during home laundering. This test was conducted with large sample sizes to account for variability. The testing concluded that Shed Less Fleece reduced fiber fragment shedding by an average of 85% compared to the baseline fabric.

“In 2016 we began looking into how we might test for fiber loss because there wasn’t a lot of research on the issue.” said Aimee LaValley, Polartec Textile Development, Dye and Chemistry Manager. “This led to new products like Polartec Power Air™, new manufacturing processes, as well as our participation in the TextileMission workgroup to study the issue on an interdisciplinary basis.”

TextileMission was a three year collaborative initiative of academia and industry to reduce the impact of textile microplastics funded by the German Federal Ministry of Education and Research. Founding partners include The Association of the German Sporting Goods Industry, Hochschule Niederrhein - University of Applied Science; TU Dresden - Institute of Water Chemistry; Vaude Sport; WWF Germany; Adidas AG; Henkel AG; Miele & CIE; and Polartec, LLC.

Polartec® Shed Less Fleece will be initially launched in the United States and will be available to customers beginning March 1, 2023. The brand plans to apply the Shed Less process to many other industry-leading fabric platforms and manufacturing facilities around the world.

© ITM/TU Dresden
Woven hemisphere for usage in radome antennaes
15.12.2022

AVK Innovation Award 2022 to young engineers from ITM at TU Dresden

  • Award for near-net-shape 3D meshes for use in fibre-reinforced plastics

As part of the JEC FORUM DACH 2022, the AVK Innovation Awards were presented in Augsburg on November 29th. The innovation price in the category "Research/Science" (first place) was awarded to the team of scientists Dipl.-Ing. Dominik Nuss, Dr.-Ing. Cornelia Sennewald and Prof. Dr.-Ing. habil. Chokri Cherif.

With the development of the pull-off-free Jacquard weaving technology including the technological know-how in the field of highly complex 2D and 3D fabric geometries, which has been established at the ITM of the TU Dresden for many years, Dominik Nuss has succeeded in including different yarn lengths locally into the fabric structure solely through targeted variation of the fabric weave. There-fore, it is now possible to produce completely new types of fabrics without additional draping, especially spherically curved fabrics, but also large-format spiral or even curved fabrics. The fact that the required near-net-shape geometry of the component to be reinforced can be reproduced with significantly reduced preforming steps is to be emphasized.

  • Award for near-net-shape 3D meshes for use in fibre-reinforced plastics

As part of the JEC FORUM DACH 2022, the AVK Innovation Awards were presented in Augsburg on November 29th. The innovation price in the category "Research/Science" (first place) was awarded to the team of scientists Dipl.-Ing. Dominik Nuss, Dr.-Ing. Cornelia Sennewald and Prof. Dr.-Ing. habil. Chokri Cherif.

With the development of the pull-off-free Jacquard weaving technology including the technological know-how in the field of highly complex 2D and 3D fabric geometries, which has been established at the ITM of the TU Dresden for many years, Dominik Nuss has succeeded in including different yarn lengths locally into the fabric structure solely through targeted variation of the fabric weave. There-fore, it is now possible to produce completely new types of fabrics without additional draping, especially spherically curved fabrics, but also large-format spiral or even curved fabrics. The fact that the required near-net-shape geometry of the component to be reinforced can be reproduced with significantly reduced preforming steps is to be emphasized.

Continuous simulation aided engineering from CAD design to integrally woven 2D and 3D preforms by means of highly complex weave development for spatial constructions is a unique at the ITM, which was indispensable for the development of these promising woven high-tech structures. This technology is completely new and has never been carried out in this way before. The fabric structures are characterised by a high innovation level due to their geometric diversity and purposes. It can be used in numerous applications and further more contributes to the development of completely new fields of application. The technology can be implemented on all Jacquard weaving machines with only an additional device and the preform geometry is only determined by the control of the Jacquard machine. The preform geometry can be used in the full working width of the weaving machine.

Professor Chokri Cherif, Institute Director of the ITM, and his team are very pleased about these continuous research success in the constantly growing research field of 3D weaving technology, which are achieved at the ITM in close cooperation with industry and users. "This award is a special honour for our institute and confirms that the many years of our excellent research in the field of near-net-shape 3D weaving for the fibre-reinforced plastics sector plays a significant role and that we are making a significant contribution to the sustainable and resource-efficient production of lightweight structures with our development".

Source:

ITM/TU Dresden

(c) Lindauer DORNIER GmbH
Maja Dornier (lhs) and Prof. Dr. Wolf Mutschler (rhs) hand over the Peter Dornier Foundation Award, endowed with 5,000 euros, to the award winner Dipl.-Ing. Mathis Bruns
26.07.2022

Peter Dornier Foundation Prize 2022 honours textile research on woven heart valve

According to the World Health Organization (WHO), cardiovascular disease is one of the most common natural causes of death. Every year, it is the cause of death of around 17 million people worldwide. The Peter Dornier Foundation Prize 2022 has now awarded a research work that is to improve the medical care of people with insufficient heart valve function in the future and prolong the patients' lives.

According to the World Health Organization (WHO), cardiovascular disease is one of the most common natural causes of death. Every year, it is the cause of death of around 17 million people worldwide. The Peter Dornier Foundation Prize 2022 has now awarded a research work that is to improve the medical care of people with insufficient heart valve function in the future and prolong the patients' lives.

The human heart is a high-performance machine: over the course of a person's life, it beats almost three billion times, pumping around 200 million litres of blood through the body. Enormous stresses that can sometimes lead to life-threatening signs of wear and tear. If a heart valve gets out of step, patients usually get artificial-mechanical or biological valves as a replacement. However, mechanical solutions imply patients to take blood-thinning medication for the rest of their lives. In addition, there may be audible closing noises. For example, almost a quarter of patients with mechanical heart valves complain of sleep disturbances. Biological heart valves, on the other hand, such as those made from animal tissue, require a great deal of manual work and have a shorter lifetime.

Potential of weaving for medical products demonstrated
For this reason, Graduate Engineer Mathis Bruns at the Institute for Textile Machinery and High-Performance Textile Materials Technology (ITM) at the TU Dresden is researching an implant alternative made of fabric. As part of a research project that also involved heart surgeons from the Dresden Heart Centre and the University Hospital in Würzburg, Mr. Bruns provided important findings for weaving an artificial heart valve in his diploma thesis. For his work entitled "Development of tubular structures with integrated valve function", Mathis Bruns has now received the Peter Dornier Foundation Prize 2022, endowed with 5,000 euros. In his laudation, Dr. Adnan Wahhoud, former head of the development department of air-jet weaving machines at DORNIER in Lindau, said: "With his work, the winner of the award demonstrates very clearly the potential of weaving technology to produce fabrics of complex form, geometry and structure with the aim of prolonging and improving people's lives." The award-winning thesis enriches research into three-dimensional tissues for use in medicine.

Weaving replacement heart valves without seams
"A particular advantage of our approach is the integral production method", says foundation prize winner Mathis Bruns. “The geometry and function of a heart valve is that complex that woven heart valves could not be produced in this form previously. Through the combined use of a rigid rapier weaving machine with bobbin shield and a Jacquard machine, it is possible to weave the replacement heart valve in such a way that it no longer has be sewn together. Even the tubular structures for the blood vessels and the integrated valve function are ‘all of one piece’. Seams are always a weak point in textile medical products," Mr. Bruns adds. “Another advantage of the woven heart valve is the possibility to insert it by the help of minimally invasive surgery. Hence, the folded valve which is about the size of a tea light is to be pushed with a catheter via the bloodstream to the target position in the heart and unfolded there. The patient's chest and heart would then no longer have to be cut open”, explains prize winner Mr. Bruns.

Textile structure is similar to human tissue
A wide variety of medical products have always been produced on DORNIER weaving machines. Customers use them to produce fabrics for bandages, prostheses, blood filters and orthoses among other things. For Mathis Bruns, it is only evident that implants such as heart valves will more and more be woven on the machines from Lindau in the future. "Textile tissue is very similar to human tissue," he says. The human body consists largely of thread-like materials, just as a textile fabric is made up of thousands of individual threads. "Muscle fibres convey force impulses, nerve tracts send stimuli such as pain and brain cells convey information via thread-like dendrites and axons." Because of their ‘thread-like properties’, woven implants are therefore particularly suitable for medical applications.

(c) VDMA
Award winners with foundation chairman and professors
23.06.2022

VDMA: Junior engineers with focus on sustainability

On the occasion of the Techtextil fair in Frankfurt, the Chairman of VDMA’s Walter Reiners-Stiftung Foundation, Peter D. Dornier, has awarded prizes to seven successful young engineers. For the first time, the Foundation awarded two Sustainability Awards. They are awarded to academic works in which, for example, solutions for resource-saving products and technologies are developed.

A Sustainability Prize in the category Project Work, endowed with 3.000 euros was awarded to Simon Hoebel, TU Dresden, for his thesis on recycled thermoplastic fibres for composite components.
Marina Michel, TU Dresden, received a Sustainability Award in the category Master, worth 3.500 euros. The topic of her master thesis was the functionalisation of yarns for the filtration of micro- and nanoplastics from water.

A Promotion Prize in the category Project Work, endowed with 4.000 euros, was awarded to a student group from RWTH Aachen. The teamwork of Luis Gleissner, Leopold Habersbrunner, Frederic Olbrich and Frederik Schicks was the construction of a test rig for tests on oil-adsorbing textiles.

On the occasion of the Techtextil fair in Frankfurt, the Chairman of VDMA’s Walter Reiners-Stiftung Foundation, Peter D. Dornier, has awarded prizes to seven successful young engineers. For the first time, the Foundation awarded two Sustainability Awards. They are awarded to academic works in which, for example, solutions for resource-saving products and technologies are developed.

A Sustainability Prize in the category Project Work, endowed with 3.000 euros was awarded to Simon Hoebel, TU Dresden, for his thesis on recycled thermoplastic fibres for composite components.
Marina Michel, TU Dresden, received a Sustainability Award in the category Master, worth 3.500 euros. The topic of her master thesis was the functionalisation of yarns for the filtration of micro- and nanoplastics from water.

A Promotion Prize in the category Project Work, endowed with 4.000 euros, was awarded to a student group from RWTH Aachen. The teamwork of Luis Gleissner, Leopold Habersbrunner, Frederic Olbrich and Frederik Schicks was the construction of a test rig for tests on oil-adsorbing textiles.

Felix Zerbes, RWTH Aachen, was awarded a Promotion Prize of 3.500 euros in the category Master. He developed a technical solution for air jet weaving to improve the quality of woven fabric.

Source:

VDMA e. V.

TU Dresden: Forscherteam der ITM mit biomimetisches Trommelfellimplantat für Otto von Guericke-Preis der AiF 2021 nominiert (c) AiF e.V.
Dipl.-Ing. Lukas Benecke, Dr.-Ing. Dilbar Aibibu, Prof. Dr. med. Marcus Neudert und Dr.-Ing. Zhaoyu Chen (v.l.n.r)
25.11.2021

TU Dresden: Forscherteam der ITM für Otto von Guericke-Preis der AiF 2021 nominiert

Das interdisziplinär aufgestellte Forscherteam von der TU Dresden, bestehend aus Dr.-Ing. Dilbar Aibibu und Dipl.-Ing. Lukas Benecke vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden sowie Prof. Dr. med. Marcus Neudert und Dr.-Ing. Zhaoyu Chen von der Klinik und Poliklinik für Hals-, Nasen- und Ohrenheilkunde (HNO) der Medizinischen Fakultät der TU Dresden, wurde für die Entwicklung eines biomimetischen Trommelfellimplantats, die maßgeblich in dem IGF-Forschungsvorhaben 20533 BR umgesetzt worden ist, für den diesjährigen Otto von Guericke-Preis der AiF nominiert.

Das interdisziplinär aufgestellte Forscherteam von der TU Dresden, bestehend aus Dr.-Ing. Dilbar Aibibu und Dipl.-Ing. Lukas Benecke vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden sowie Prof. Dr. med. Marcus Neudert und Dr.-Ing. Zhaoyu Chen von der Klinik und Poliklinik für Hals-, Nasen- und Ohrenheilkunde (HNO) der Medizinischen Fakultät der TU Dresden, wurde für die Entwicklung eines biomimetischen Trommelfellimplantats, die maßgeblich in dem IGF-Forschungsvorhaben 20533 BR umgesetzt worden ist, für den diesjährigen Otto von Guericke-Preis der AiF nominiert.

Prof. Chokri Cherif, Institutsdirektor des ITM freut sich mit seinem Team sehr über die kontinuierlichen interdisziplinären Forschungserfolge auf dem stetig wachsenden Forschungsfeld der faserbasierten Biomedizintechnik, die am ITM in enger Kooperation mit Medizinern und Anwendern stetig erzielt werden. „Bereits im letzten Jahr wurden wir mit der Entwicklung neuartiger textiler Herzklappenprothesen als eines der drei Finalistenteams des Otto von Guericke-Preises 2020 geehrt. Die Nominierung für diesen hochkarätigen Preis ist eine erneute Bestätigung für den Bedarf an unserer praxisorientierten Forschung und eine besondere Würdigung, aber gleichzeitig auch weiterer Ansporn.

Über 30 Millionen Menschen leiden jährlich an den Folgen eines defekten Trommelfells. Ohne fachmedizinische Behandlung kann dies zu dauerhaften Schäden und schwerem Hörverlust führen. Zur Rekonstruktion des Trommelfells, der sogenannten Myringoplastik, werden heute körpereigene Knorpelhaut, Faszie oder synthetische Materialien eingesetzt. Da deren Materialeigenschaften nicht denen des natürlichen Trommelfells entsprechen, ist eine vollständige Rehabilitation des Gehörs damit nicht möglich.

Wissenschaftlerinnen und Wissenschaftler vom ITM und HNO-Klinik der TU Dresden entwickelten im Rahmen des IGF-Vorhabens „Simulationsgestützte Entwicklung einer flexiblen Technologie zur Umsetzung biomimetischer, langzeitresorbierbarer funktionaler und stabiler Trommelfellimplantate MyringoSeal)“ ein biomimetisch aufgebautes künstliches Trommelfellimplantat, das die körpereigenen Schwingungseigenschaften exakt wiedergibt. Die neuartige Membran ermöglicht eine vollständige Wiederherstellung der Schwingungseigenschaften des Trommelfells. Die Herstellung solcher Implantate ist mithilfe der Elektrospinntechnologie aus den Biomaterialien Seidenfibroin und Polycaprolacton möglich.

Source:

TU Dresden - ITM

© ITM / TU Dresden
10.11.2021

Kreativitätspreis des Deutschen Textilmaschinenbaues 2021 geht an Irina Kuznik

Die Verleihung der Förder- und Kreativitätspreise 2021 der Walter Reiners-Stiftung des VDMA, Fachverband Textilmaschinen an Studierende und Nachwuchswissenschaftler:innen deutscher Universitäten für Spitzenleistungen in Studium und Promotion fand am 09. November 2021 im Rahmen der Aachen-Dresden-Denkendorf International Textile Conference 2021 statt. Die bundesweit ausgeschriebenen Förder- und Kreativitätspreise wurden erneut online durch Herrn Peter D. Dornier, Vorstandsvorsitzender der Walter Reiners-Stiftung, verliehen.

Frau Dipl.-Ing. Irina Kuznik vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde mit dem 3.000 EUR dotierten Kreativitätspreis des Deutschen Textilmaschinenbaues 2021 für ihre exzellente Diplomarbeit „Entwicklung zur umweltfreundlichen Herstellung neuartiger Chitosanfasergarne unter Einsatz von ionischen Flüssigkeiten" ausgezeichnet.

Die Verleihung der Förder- und Kreativitätspreise 2021 der Walter Reiners-Stiftung des VDMA, Fachverband Textilmaschinen an Studierende und Nachwuchswissenschaftler:innen deutscher Universitäten für Spitzenleistungen in Studium und Promotion fand am 09. November 2021 im Rahmen der Aachen-Dresden-Denkendorf International Textile Conference 2021 statt. Die bundesweit ausgeschriebenen Förder- und Kreativitätspreise wurden erneut online durch Herrn Peter D. Dornier, Vorstandsvorsitzender der Walter Reiners-Stiftung, verliehen.

Frau Dipl.-Ing. Irina Kuznik vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde mit dem 3.000 EUR dotierten Kreativitätspreis des Deutschen Textilmaschinenbaues 2021 für ihre exzellente Diplomarbeit „Entwicklung zur umweltfreundlichen Herstellung neuartiger Chitosanfasergarne unter Einsatz von ionischen Flüssigkeiten" ausgezeichnet.

In ihrer Diplomarbeit entwickelte Frau Kuznik einen völlig neuen Ansatz zur ökologischen und ökonomischen Herstellung von Chitosangarnen. Unter Nutzung ionischer Flüssigkeiten als gut geeignetes, neuartiges Lösungsmittel für Chitosan lässt sich Chitosan mit geringen Deacetylierungsgraden sowie reines Chitin erfolgreich auflösen. In einem Nassspinnverfahren können damit erzeugte Spinnlösungen zu neuartigen Chitosan- bzw. Chitinmonofilamenten mit sehr guten morphologischen Eigenschaften hergestellt werden. Des Weiteren lässt sich die ionische Flüssigkeit mittels eines Verdampfungsverfahrens aus dem Abwasser zurückgewinnen und wiederaufbereitet werden.

More information:
VDMA Textilmaschinen chitosan
Source:

Technische Universität Dresden
Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM)

(c) ITM/TU Dresden
10.11.2021

Förderpreis beste Dissertation des Deutschen Textilmaschinenbaues 2021 an Dr.-Ing. Martin Hengstermann

Die Verleihung der Förder- und Kreativitätspreise 2021 der Walter Reiners-Stiftung des VDMA, Fachverband Textilmaschinen an Studierende und Nachwuchswissenschaftler:innen deutscher Universitäten für Spitzenleistungen in Studium und Promotion fand am 09. November 2021 im Rahmen der Aachen-Dresden-Denkendorf International Textile Conference 2021 statt. Die bundesweit ausgeschriebenen Förder- und Kreativitätspreise wurden erneut online durch Herrn Peter D. Dornier, Vorstandsvorsitzender der Walter Reiners-Stiftung, verliehen.

Dr.-Ing. Martin Hengstermann wurde mit dem mit 5.000 EUR dotierten Förderpreis beste Dissertation des Deutschen Textilmaschinenbaues 2021 für seine am Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik der TU Dresden erarbeiteten Dissertation „Entwicklung von Hybridgarnen aus recycelten Carbonfasern und Polyamid 6-Fasern für thermoplastische Verbundbauteile mit hohem Leistungsvermögen“ geehrt.

Die Verleihung der Förder- und Kreativitätspreise 2021 der Walter Reiners-Stiftung des VDMA, Fachverband Textilmaschinen an Studierende und Nachwuchswissenschaftler:innen deutscher Universitäten für Spitzenleistungen in Studium und Promotion fand am 09. November 2021 im Rahmen der Aachen-Dresden-Denkendorf International Textile Conference 2021 statt. Die bundesweit ausgeschriebenen Förder- und Kreativitätspreise wurden erneut online durch Herrn Peter D. Dornier, Vorstandsvorsitzender der Walter Reiners-Stiftung, verliehen.

Dr.-Ing. Martin Hengstermann wurde mit dem mit 5.000 EUR dotierten Förderpreis beste Dissertation des Deutschen Textilmaschinenbaues 2021 für seine am Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik der TU Dresden erarbeiteten Dissertation „Entwicklung von Hybridgarnen aus recycelten Carbonfasern und Polyamid 6-Fasern für thermoplastische Verbundbauteile mit hohem Leistungsvermögen“ geehrt.

Gegenstand der Dissertation ist die Entwicklung und Umsetzung von neuartigen Hybridgarnen aus recycelten Carbonfasern (rCF) und Polyamid (PA) 6-Fasern für thermoplastische Verbundbauteile. Diese Hybridgarne können die hervorragenden mechanischen Eigenschaften der rCF im Gegensatz zu bisherigen Lösungen in hohem Maße ausnutzen. Bedingt durch deren spezielle Fasereigenschaften (insbesondere hohe Querkraftempfindlichkeit, Sprödigkeit und fehlende Kräuselung) wurde dafür die Prozesskette der konventionellen Stapelfasergarnherstellung, bestehend aus Krempel, Strecke und Flyer, umfangreich analysiert und technologisch-konstruktiv weiterentwickelt, wodurch erstmalig eine schonende und gleichmäßige Herstellung der Hybridgarne ermöglicht werden konnte.

Source:

Technische Universität Dresden
Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM)

VDMA: Top young talent with cutting-edge topics  (c) VDMA
The 2021 winners (from top left to right): Dr Martin Hengstermann, Irina Kuznik, Kai-Chieh Kuo.
10.11.2021

VDMA: Top young talent with cutting-edge topics

The Chairman of the Walter Reiners-Stiftung foundation of the VDMA Textile Machinery Association, Peter D. Dornier has awarded prizes to three successful young engineers. The award-winning works provide practical solutions on the topic of circular economy. For example, the recycling of carbon fibres, which are used to produce lightweight components for the automotive industry. Or the environmentally friendly production of yarns from crab shells. Another topic was medical applications: The processing of ultra-fine yarns into stents for aortic repair. The award ceremony took place online on 9 November as part of the Aachen-Dresden-Denkendorf International Textile Conference.  

With a creativity prize, endowed with 3,000 euros, the foundation honoured the diploma thesis of Irina Kuznik, TU Dresden. She used a creative approach to realise solutions for processing chitosan into fibre yarn.

The Chairman of the Walter Reiners-Stiftung foundation of the VDMA Textile Machinery Association, Peter D. Dornier has awarded prizes to three successful young engineers. The award-winning works provide practical solutions on the topic of circular economy. For example, the recycling of carbon fibres, which are used to produce lightweight components for the automotive industry. Or the environmentally friendly production of yarns from crab shells. Another topic was medical applications: The processing of ultra-fine yarns into stents for aortic repair. The award ceremony took place online on 9 November as part of the Aachen-Dresden-Denkendorf International Textile Conference.  

With a creativity prize, endowed with 3,000 euros, the foundation honoured the diploma thesis of Irina Kuznik, TU Dresden. She used a creative approach to realise solutions for processing chitosan into fibre yarn.

Mr Kai-Chieh Kuo was awarded the diploma/master's thesis promotion prize of 3,500 euros. With his master's thesis, which was written at RWTH Aachen University, Mr Kuo contributes to the production of vital components used in medicine. The stents made of ultra-fine yarns are made possible by an innovative modification of the classic tube weaving process.

The Walter Reiners Foundation rewarded the doctoral thesis of Dr. Martin Hengstermann with the promotional prize in the dissertation category, endowed with 5,000 euros. The thesis deals with the production of recycled carbon fibres. These can be used to produce lightweight components for motor vehicle and aircraft construction or the wind energy sector.

New Prize Sustainability / Circular Economy
The environmental conditions of the textile industry and machine construction are changing. Topics such as climate protection and the circular economy are becoming central. From this perspective, the board of the Walter Reiners Foundation has decided to further develop the foundation's prize system.

In 2022, the foundation will for the first time offer a prize with a focus on design / sustainability. Peter D. Dornier, Chairman of the Foundation, explained: "Already in the design phase, one can set the parameters so that a textile product can be reintroduced after use into the economic cycle for a high-quality application. For example, through the appropriate use of materials and finishing. We are looking for solutions for resource-saving design, technology and manufacturing processes."   

Herr Dr.-Ing. Moniruddoza Md. Ashir vom ITM wurde am 12. Oktober 2021 für seine Dissertation "Entwicklung von neuartigen textilbasierten adaptiven Faserkunststoffverbunden mit Formgedächtnislegierungen“ mit dem Innovationspreis des Industrieclubs Sachsen 2020 ausgezeichnet. © Juergen Loesel
Herr Dr. Ashir (2.v.re.) zur Preisverleihung des Innovationspreises des Industrieclubs Sachsen 2020 gemeinsam mit Frau B. Deutsch (Geschäftsführerin Industrieclub Sachsen e.V.), Herr Prof. Dr. Ch. Cherif (Direktor des ITM), Frau Prof. U. Staudinger (Rektorin der TUD) und Herrn Dr. G. Bruntsch (Präsident Industrieclub Sachsen e.V.); v.l.n.r.
27.10.2021

Wissenschaftler vom ITM der TU Dresden mit dem Innovationspreis des Industrieclubs Sachsen geehrt

  • Herr Dr.-Ing. Moniruddoza Md. Ashir vom ITM wurde am 12. Oktober 2021 für seine Dissertation "Entwicklung von neuartigen textilbasierten adaptiven Faserkunststoffverbunden mit Formgedächtnislegierungen“ mit dem Innovationspreis des Industrieclubs Sachsen 2020 ausgezeichnet.
  • Der Preis ist mit 5.000 EUR dotiert und wird jährlich an einen Absolventen der TU Dresden verliehen.

Die Entscheidung zur Vergabe des Innovationspreises des Industrieclubs Sachsen 2020 erfolgte im Sommer 2021 durch ein Preisgericht. Die Verleihung des Innovationspreises erfolgte im Rahmen einer Veranstaltung des Industrieclubs Sachsen im Schloss Eckberg in Dresden am 12. Oktober 2021.

  • Herr Dr.-Ing. Moniruddoza Md. Ashir vom ITM wurde am 12. Oktober 2021 für seine Dissertation "Entwicklung von neuartigen textilbasierten adaptiven Faserkunststoffverbunden mit Formgedächtnislegierungen“ mit dem Innovationspreis des Industrieclubs Sachsen 2020 ausgezeichnet.
  • Der Preis ist mit 5.000 EUR dotiert und wird jährlich an einen Absolventen der TU Dresden verliehen.

Die Entscheidung zur Vergabe des Innovationspreises des Industrieclubs Sachsen 2020 erfolgte im Sommer 2021 durch ein Preisgericht. Die Verleihung des Innovationspreises erfolgte im Rahmen einer Veranstaltung des Industrieclubs Sachsen im Schloss Eckberg in Dresden am 12. Oktober 2021.

In der Dissertation werden alternative Ansätze auf Basis von innovativen textilbasierten adaptiven Faserkunststoffverbunden (FKV) mit strukturintegrierten Formgedächtnislegierungen konzipiert, umgesetzt, erprobt und im Vergleich mit konventionellen technischen Lösungen evaluiert. Daher galt es, eine Vielzahl bisher ungelöster konzeptioneller sowie textil- und materialspezifischer Fragestellungen zu bearbeiten und tiefgreifend zu analysieren. Hierzu zählen die Entwicklung neuartiger Ansätze und technologischer Lösungen sowohl zur reproduzierbaren Einstellung einer anforderungsgerechten Grenzschicht zwischen der Formgedächtnislegierung in Drahtform sowie dem umgebenden Faserverbundwerkstoff, als auch zur vollautomatischen Integration des textilverarbeitbaren Aktors in die Verstärkungsstruktur. Weitere Zielstellungen bestanden in der Ermittlung von Struktur-Funktionseigenschaftsbeziehungen, dem Nachweis der funktionalen Langzeitstabilität sowie der Konzeptionierung und Erprobung von industrierelevanten Funktionsdemonstratoren. Hier wurden adaptive FVK als bionisch inspirierter Flug-, Nachgiebigkeits-, Greif-, Spann-, gezielter Flüssigkeitssteuerungs-, Wisch- und Fortbewegungsmechanismus konzipiert. Diese Demonstratoren repräsentieren alle wesentlichen Funktionalitäten der adaptiven FVK-Kinematik und lassen sich leicht auf andere industrielle Anwendungsbereiche übertragen, wie z. B. die Flugzeug-, Automobil-, Medizin-, Soft-Robotik-, Bau- oder Industrietechnikbranche.

Die Forschungs- und Entwicklungsarbeiten erfolgten in enger Zusammenarbeit mit der Industrie, wie z. B. thoenes Dichtungstechnik GmbH und Elbe Flugzeugwerke GmbH und werden zukünftig am ITM intensiv fortgesetzt. Die neu entwickelte Technologie und Strukturen werden dem Leichtbau insbesondere als Knotenelemente für Rahmentragwerke im Fahrzeugbau, in der Luft- und Raumfahrt, im Maschinenbau sowie auch in der Architektur neue Impulse verleihen. Gegenwärtig wird forschungsseitig die Anwendung dieser Strukturen für medizinische Bereiche, insbesondere orthopädische oder prothetische Hilfsmittel, vorangetrieben.

Source:

Technische Universität Dresden

Aachen-Dresden-Denkendorf International Textile Conference 2021 (c) ITM/TU Dresden
Die ADD-ITC 2019 in Dresden
12.07.2021

Aachen-Dresden-Denkendorf International Textile Conference 2021

Die Aachen-Dresden-Denkendorf International Textile Conference wird in diesem Jahr vom 9. bis zum 10. November digital durchgeführt.

Programm und Themen:
 
Quo vadis Textilmaschinenkonzepte?

  • Flexibilisierung auf dem Weg zur Losgröße 1
  • Industrie 4.0
  • Neue Produkte durch Maschineninnovationen
  • Ressourcen- und Energieeffizienz

Chancen mit neuen Werkstoffen: Hochleistungsfasern und Faserverbundwerkstoffe

  • Carbonfasern, Keramikfasern, bio-basierte Fasern
  • Fasermodifizierung, Sekundärspinnen, Rezyklierstrategien, Prozesstechnologien
  • Formangepasste Faserverbünde, polymere Matrixmaterialien
  • Blick in neuartige Werkstoffe – Simulation und Prüfsysteme

Wettbewerbsvorteile und Nachhaltigkeit: Funktionalisierung, neue Ausrüstungen

  • Nachhaltige Beschichtungs- und Ausrüstungschemikalien
  • Beschichten, Laminieren
  • Umweltfreundliche Prozesse
  • Textildruck

Neue Herausforderungen: Medizintextilien / Medizintechnik

Die Aachen-Dresden-Denkendorf International Textile Conference wird in diesem Jahr vom 9. bis zum 10. November digital durchgeführt.

Programm und Themen:
 
Quo vadis Textilmaschinenkonzepte?

  • Flexibilisierung auf dem Weg zur Losgröße 1
  • Industrie 4.0
  • Neue Produkte durch Maschineninnovationen
  • Ressourcen- und Energieeffizienz

Chancen mit neuen Werkstoffen: Hochleistungsfasern und Faserverbundwerkstoffe

  • Carbonfasern, Keramikfasern, bio-basierte Fasern
  • Fasermodifizierung, Sekundärspinnen, Rezyklierstrategien, Prozesstechnologien
  • Formangepasste Faserverbünde, polymere Matrixmaterialien
  • Blick in neuartige Werkstoffe – Simulation und Prüfsysteme

Wettbewerbsvorteile und Nachhaltigkeit: Funktionalisierung, neue Ausrüstungen

  • Nachhaltige Beschichtungs- und Ausrüstungschemikalien
  • Beschichten, Laminieren
  • Umweltfreundliche Prozesse
  • Textildruck

Neue Herausforderungen: Medizintextilien / Medizintechnik

  • Sensorische und aktorische Medizinprodukte
  • Personalisierte Medizin
  • Neue Biomaterialien, drug delivery
  • Resorbierbare polymere Implantate zur Unterstützung regenerativer Prozesse

Neue Anwendungen, neue Märkte

  • Textiles Bauen, Architektur
  • Mobilität
  • Energie
  • Umwelt

Transfersession „Von der Idee bis zur Praxis“

  • Präsentation von Innovationen (z. B. Produkte, Technologien, Verfahren), die aus Forschungskooperationen, insbesondere über IGF/ZIM, erfolgreich in die Industrie transferiert werden
Source:

Deutsche Institute für Textil- und Faserforschung Denkendorf

ITM of TU Dresden – your research partner in the field of virtual product development at ISPO Munich © ITM/TU Dresden
Draping properties - variety of materials
01.02.2021

ITM presents itself for the first time at ISPO Munich Online 2021

  • ITM of TU Dresden – your research partner in the field of virtual product development at ISPO Munich
  • ISPO Munich Online 2021 – the world´s leading sports business platform from February 1st to 5th 2021

The Chair of Assembly Technology for Textile Products of ITM presents itself for the first time at ISPO Munich Online 2021 – showcasing its expertise in the field of virtual product development. Its know-how in the determination of material parameters, digital data processing, and data transfer will be presented as well as its competencies in 3D/4D body shape recording via scanning, data animation for the 3D product development for functional clothing, and simulation for wear comfort/usage visualization. The Chair of Assembly Technology for Textile Products of ITM has manifested its leading global position in the virtual product development sector by successfully completing a variety of national and international interdisciplinary research projects.

  • ITM of TU Dresden – your research partner in the field of virtual product development at ISPO Munich
  • ISPO Munich Online 2021 – the world´s leading sports business platform from February 1st to 5th 2021

The Chair of Assembly Technology for Textile Products of ITM presents itself for the first time at ISPO Munich Online 2021 – showcasing its expertise in the field of virtual product development. Its know-how in the determination of material parameters, digital data processing, and data transfer will be presented as well as its competencies in 3D/4D body shape recording via scanning, data animation for the 3D product development for functional clothing, and simulation for wear comfort/usage visualization. The Chair of Assembly Technology for Textile Products of ITM has manifested its leading global position in the virtual product development sector by successfully completing a variety of national and international interdisciplinary research projects.

Researchers of the Chair of Assembly Technology for Textile Products have been actively involved in the preparation and digital representation of material samples for the ISPO Textrends Forum. Thus, the material parameters of the ISPO Textrends Award textiles were determined for 3D fit simulations in Vidya (Assyst/Vizoo), automatically analyzed, and digitally processed by the specially developed "Material Analyzer" software. This software in addition to other state-of-the-art CAE infrastructure, such as the recently installed 4D Scanner Move4D, are essential for the further establishment and promotion of its leading position in the field of digitalization and virtual product development for garments for high-tech applications.

The researchers involved eagerly await future collaborations in this promising field of research. This pilot project presented at ISPO 2021 was coordinated by the company FOURSOURCE Group GmbH, thus enabling the characterization and 3D visualization of the award-winning materials that are presented to all visitors at ISPO 2021.

High-Speed 4D Scanner now available at the ITM of TU Dresden © ITM/TU Dresden
Grand opening of the 4D scanner Move4D: System developers Daniel Gomez (right) and Carmen Gimeno (second f.t.r.) from IBV hand over the calibration scepter to Prof. Dr.-Ing. habil. Yordan Kyosev (middle), Head of the Chair of Assembly Technology for Textile Products, together with Prof. Dr.-Ing. habil. Chokri Cherif (second f.t.l.), Head of the ITM, and Prof. Dr.-Ing. habil. Sybille Krzywinski (left), Scientific Director of the chair
07.12.2020

High-Speed 4D Scanner now available at the ITM of TU Dresden

A Move4D scanner is the latest addition to the state-of-the-art CAE infrastructure at the Chair of Assembly Technology for Textile Products at the ITM – this comes as an early Christmas surprise that has been eagerly awaited by the researchers. The high-speed 4D scanner was developed at the IBV - Instituto de Biomecánica, Spain, and will be a valuable tool for future research projects involving interactions of humans and their clothing. Professor Yordan Kyosev, Head of the Chair of Assembly Technology for Textile Products, is just as excited as his team of researchers about the arrival of the new Move4D scanner. “By means of this scanner, we will be able to strengthen and extend our leading global position in digitalization and virtual product development for tight clothing in high-tech applications,” says Professor Kyosev who is looking forward to new co-operations in this promising field of research.

A Move4D scanner is the latest addition to the state-of-the-art CAE infrastructure at the Chair of Assembly Technology for Textile Products at the ITM – this comes as an early Christmas surprise that has been eagerly awaited by the researchers. The high-speed 4D scanner was developed at the IBV - Instituto de Biomecánica, Spain, and will be a valuable tool for future research projects involving interactions of humans and their clothing. Professor Yordan Kyosev, Head of the Chair of Assembly Technology for Textile Products, is just as excited as his team of researchers about the arrival of the new Move4D scanner. “By means of this scanner, we will be able to strengthen and extend our leading global position in digitalization and virtual product development for tight clothing in high-tech applications,” says Professor Kyosev who is looking forward to new co-operations in this promising field of research.

This high-speed scanner is able to capture an entire body with 180 Hz and a precision of < 1mm, thus guaranteeing the precise analysis of interactions between body and textile as well as deformation during motion. The Move4D can record and analyze dynamic processes at a very high speed. Hence, this device will enable researchers to make significant contributions towards enhanced functional (e.g. for the sports and medical sector) and protective clothing.

Together with three already available 3D scanners, this high-speed 4D scanner represents Dresden´s new „3D&4D Scan Lab“ at the Chair of Assembly Technology for Textile Products for the static and dynamic recording of small and medium-sized objects. Professor Kyosev and his team of 17 researchers are among the world´s leading R&D experts for clothing and technical products who will continue to expand their expertise in the field of material modelling for textile materials.


 

More information:
ITM TU Dresden 4D Scanner
Source:

© ITM/TU Dresden

VDMA-Kreativitätspreis des Deutschen Textilmaschinenbaus 2020 an Nachwuchswissenschaftlerin des ITM der TU Dresden verliehen © ITM/TU Dresden
Frau Dipl.-Ing. Philippa Ruth Christine Böhnke im Technikum Bio- und Medizintextilien des ITM
02.12.2020

VDMA-Kreativitätspreis für ITM Nachwuchswissenschaftlerin

  • VDMA-Kreativitätspreis des Deutschen Textilmaschinenbaus 2020 an Nachwuchswissenschaftlerin des ITM der TU Dresden verliehen

Frau Dipl.-Ing. Philippa Ruth Christine Böhnke vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde mit dem 3.000 EUR dotierten Kreativitätspreis des Deutschen Textilmaschinenbaus 2020 für ihre exzellente Studienarbeit „Entwicklung von additiv gefertigten Verbund-Implantaten aus Kieselgelfasern und medizinischen Klebstoffen für die Knochenregeneration“ ausgezeichnet.

Am 02. Dezember 2020 fand die Verleihung der Förder- und Kreativitätspreise 2020 der Walter Reiners-Stiftung des VDMA, Fachverband Textilmaschinen an Studierende und Nachwuchswissenschaftler:innen deutscher Universitäten für Spitzenleistungen in Studium und Promotion statt. Die bundesweit ausgeschriebenen Förder- und Kreativitätspreise wurden erstmals online durch Herrn Peter D. Dornier, Vorstandsvorsitzender der Walter Reiners-Stiftung, verliehen.

  • VDMA-Kreativitätspreis des Deutschen Textilmaschinenbaus 2020 an Nachwuchswissenschaftlerin des ITM der TU Dresden verliehen

Frau Dipl.-Ing. Philippa Ruth Christine Böhnke vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde mit dem 3.000 EUR dotierten Kreativitätspreis des Deutschen Textilmaschinenbaus 2020 für ihre exzellente Studienarbeit „Entwicklung von additiv gefertigten Verbund-Implantaten aus Kieselgelfasern und medizinischen Klebstoffen für die Knochenregeneration“ ausgezeichnet.

Am 02. Dezember 2020 fand die Verleihung der Förder- und Kreativitätspreise 2020 der Walter Reiners-Stiftung des VDMA, Fachverband Textilmaschinen an Studierende und Nachwuchswissenschaftler:innen deutscher Universitäten für Spitzenleistungen in Studium und Promotion statt. Die bundesweit ausgeschriebenen Förder- und Kreativitätspreise wurden erstmals online durch Herrn Peter D. Dornier, Vorstandsvorsitzender der Walter Reiners-Stiftung, verliehen.

In ihrer Arbeit entwickelte Frau Böhnke ein neuartiges Verbundmaterial mit einer bioaktiven Materialkomposition zur Reparatur und Regeneration von Knochendefekten, bestehend aus einer Faserverstärkung aus biokompatiblen Kieselgelfasern und einem Matrixmaterial auf Basis medizinischer Klebstoffe mit Calcium-, Natrium- und Phosphoranteilen. Die morphologische und mechanische Charakterisierung der gefertigten Strukturen zeigt im Vergleich zu handelsüblichen Knochenersatzmaterialen eine offenporige Struktur und um ein Vielfaches erhöhte Biegesteifigkeiten und Bruchdehnungen. Diese erzielten Materialeigenschaften entsprechen weitestgehend den realen Knochenstrukturen. Frau Böhnke hat mit ihrer herausragenden kreativen wissenschaftlichen Arbeit einen wichtigen maschinenbaulichen Beitrag in den Disziplinen Faserforschung, Additive Fertigung, Faserverbundtechnologien und Medizintechnik geleistet.

Source:

ITM/TU Dresden

13.11.2020

The AVK presents its awards virtually for the first time

The AVK – Industrievereinigung Verstärkte Kunststoffe e.V. – has once again announced the winners of its prestigious Innovation Awards. Decided by an expert jury, the awards recognise and honour sustainable innovations in three categories: “Innovative Products/Applications”, “Innovative Processes” and “Research and Science”.

Overview of all the winners in the three categories:

Category “Innovative Products/Applications”
1st Place: “Directly-cooled electric motor with integral lightweight housing made of fibre reinforced polymers - DEmiL” – developed by the Fraunhofer Institute for Chemical Technology ICT, Pfinztal, Germany, in partnership with the Karlsruhe Institute of Technology and Sumitomo Bakelite Co., Ltd.*

2nd Place: “Intrinsically Reprocessable, Repairable and Recyclable (3R) thermoset composites for more Competitive and Sustainable Industries” – developed by cidetec, Donostia-San Sebastian, Spain*

The AVK – Industrievereinigung Verstärkte Kunststoffe e.V. – has once again announced the winners of its prestigious Innovation Awards. Decided by an expert jury, the awards recognise and honour sustainable innovations in three categories: “Innovative Products/Applications”, “Innovative Processes” and “Research and Science”.

Overview of all the winners in the three categories:

Category “Innovative Products/Applications”
1st Place: “Directly-cooled electric motor with integral lightweight housing made of fibre reinforced polymers - DEmiL” – developed by the Fraunhofer Institute for Chemical Technology ICT, Pfinztal, Germany, in partnership with the Karlsruhe Institute of Technology and Sumitomo Bakelite Co., Ltd.*

2nd Place: “Intrinsically Reprocessable, Repairable and Recyclable (3R) thermoset composites for more Competitive and Sustainable Industries” – developed by cidetec, Donostia-San Sebastian, Spain*

3rd Place: “Fireproof composite metal hybrid structure – LEO® fire protection sandwich with integrated Hyconnect steel-glass hybrid connector” – developed by SAERTEX GmbH & Co. KG and Hyconnect GmbH.*

Category “Innovative Processes”
1st Place: “Robotised Injection Moulding (ROBIN)” – developed by Robin, Dresden with the Institute for Lightweight Engineering and Polymer Technology at the TU Dresden*

2nd Place: “Omega stringer from the roll” – developed by the German Aerospace Center, Braunschweig*

3rd Place: “Hybrid die-casting – manufacturing of intrinsic CFRP-aluminium composite structures in aluminium high-pressure die-casting” – developed by Faserinstitut Bremen e. V. with Fraunhofer IFAM, Bremen*

Category “Research and Science”:
1st Place: “New high-temperature resistant UP resins and toughening agents” – developed by Münster University of Applied Sciences with BASF SE Global New Business Development, Leibniz Institute for Polymer Research e. V., Saertex multicom GmbH*

2nd Place: “Scientific basis for the industrial application of the thermoplastic resin transfer moulding (T-RTM) process” – developed by Fraunhofer Institute for Chemical Technology ICT, Pfinztal*

3rd Place: “The material- and energy-efficient production of turbine struts by the integrative combination of thermoset fibre reinforced materials” – developed by the Institute of Polymer Technology, University of Erlangen-Nuremberg with the German Aerospace Center, Gubesch Group, Schmidt WFT, Siebenwurst, Raschig.

Award ceremony on the Internet for the first time
For the first time, due to the Covid-19 pandemic, the award ceremony took place as an online event on 12 November 2020. Many of the award winners’ innovations will be presented again in this year’s AVK Innovation Award brochure. This will be available online: https://www.avk-tv.de/innovationaward.php

 

*Please see attached document for more information.

 

Source:

AVK – Industrievereinigung Verstärkte Kunststoffe e.V

Gewebte integral gefertigte Implantate für das Herz-Kreislaufsystem © ITM/TU Dresden. Gewebte integral gefertigte Implantate für das Herz-Kreislaufsystem.
12.10.2020

ITM-Wissenschaftler für Otto von Guericke-Preis der AiF 2020 nominiert

  • Maßgeschneiderte integral gefertigte Implantate mittels einer neuartigen Webtechnologie

Das Wissenschaftler-Team Ronny Brünler und Phillip Schegner vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde für ihre Entwicklungen, die maßgeblich in dem IGF-Forschungsvorhaben 19922 BR umgesetzt worden sind, für den diesjährigen Otto von Guericke-Preis der AiF nominiert.

Prof. Chokri Cherif, Institutsdirektor des ITM freut sich mit seinem Team sehr über die kontinuierlichen Forschungserfolge, die am ITM in zahlreichen interdisziplinären und branchenübergreifenden Forschungsvorhaben für insbesondere biomedizinische Anwendungen erzielt werden. „Nachdem wir bereits 2015 mit dem Otto von Guericke-Preis ausgezeichnet worden sind, ist die erneute Nominierung für diesen hochkarätigen Preis eine besondere Würdigung und gleichzeitig auch weiterer Ansporn für die Umsetzung unserer Forschungsergebnisse in die Industrie.“

  • Maßgeschneiderte integral gefertigte Implantate mittels einer neuartigen Webtechnologie

Das Wissenschaftler-Team Ronny Brünler und Phillip Schegner vom Institut für Textilmaschinen und Textile Hochleistungswerkstofftechnik (ITM) der TU Dresden wurde für ihre Entwicklungen, die maßgeblich in dem IGF-Forschungsvorhaben 19922 BR umgesetzt worden sind, für den diesjährigen Otto von Guericke-Preis der AiF nominiert.

Prof. Chokri Cherif, Institutsdirektor des ITM freut sich mit seinem Team sehr über die kontinuierlichen Forschungserfolge, die am ITM in zahlreichen interdisziplinären und branchenübergreifenden Forschungsvorhaben für insbesondere biomedizinische Anwendungen erzielt werden. „Nachdem wir bereits 2015 mit dem Otto von Guericke-Preis ausgezeichnet worden sind, ist die erneute Nominierung für diesen hochkarätigen Preis eine besondere Würdigung und gleichzeitig auch weiterer Ansporn für die Umsetzung unserer Forschungsergebnisse in die Industrie.“

In dem nominierten IGF-Forschungsvorhaben wurde die Entwicklung neuartiger textiler Herzklappenprothesen, die exakt an die anatomische Form angepasst und minimalinvasiv im Herz platzierbar sind, exzellent umgesetzt.

Für die Behandlung defekter Herzklappen stehen mechanische und biologische Klappen zur Verfügung. Die neuartigen gewebten Herzklappenprothesen sollen die Vorteile der beiden Herzklappentypen vereinen: unbegrenzte Lebensdauer, keine lebenslangen Einnahmen von Antikoagulationsmedikamenten und minimal invasive Operation. Ferner können die textilen Herzklappen zeit- und kostensparend mit hoher Reproduzierbarkeit und Qualität gefertigt werden. Mit Computertomographie-Daten wird ein 3D-Modell generiert, das in mehreren Schritten weiterentwickelt und als maschinenlesbarer Code in eine konventionelle Webmaschine übertragen wird. Somit wird eine reproduzierbare, kostengünstige Herstellung von neuartigen textilen, nahtlosen Schlauchstrukturen mit definierter Ventilfunktion mit gleichzeitig hoher Produktsicherheit realisiert.

Das überzeugte die Jury des Wissenschaftlichen Rates der Arbeitsgemeinschaft industrieller Forschungsvereinigungen (AiF), die das erfolgreiche Projekt in die Finalrunde um das "IGF-Projekt des Jahres 2020" wählte.

Das IGF-Vorhaben 19922 BR der Forschungsvereinigung Forschungskuratorium Textil e.V. wurde über die AiF im Rahmen des Programms zur Förderung der industriellen Gemeinschaftsforschung und -entwicklung (IGF) vom Bundesministerium für Wirtschaft und Energie aufgrund eines Beschlusses des Deutschen Bundestages gefördert.

 

 

More information:
ITM Herzklappenersatz
Source:

ITM / TU Dresden