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Sherrod Brown (c) NCTO
25.03.2020

Brown pushing plan to address shortage of personal protective equipment

Brown Wrote to President Outlining Critical Steps White House can Take Now to Address Shortage of Personal Protective Equipment

 U.S. Sen. Sherrod Brown (D-OH) hosted a news conference call to discuss his plan for addressing the shortage of personal protective equipment (PPE) needed by healthcare workers on the frontline of keeping Americans healthy and safe during the coronavirus pandemic.

This weekend, Brown wrote to President Trump outlining several steps the Administration should take immediately to address the shortage and ramp up manufacturing of these critical medical supplies.

Brown Wrote to President Outlining Critical Steps White House can Take Now to Address Shortage of Personal Protective Equipment

 U.S. Sen. Sherrod Brown (D-OH) hosted a news conference call to discuss his plan for addressing the shortage of personal protective equipment (PPE) needed by healthcare workers on the frontline of keeping Americans healthy and safe during the coronavirus pandemic.

This weekend, Brown wrote to President Trump outlining several steps the Administration should take immediately to address the shortage and ramp up manufacturing of these critical medical supplies.

In his plan and in his letter to the President, Brown lists nine steps the Administration could take immediately, including:

  1. Designate a government official who can serve as a point person responsible for coordination the acquisition and development of PPE, medical devices, and other supplies necessary to fight the coronavirus pandemic. 
  2. Establish a PPE and medical device assessment and database to monitor the supply and anticipated needs for PPE, ventilators, diagnostic test kits, and other needed medical supplies to respond to the coronavirus pandemic. 
  3. Publish a list of PPE, medical device, and general medical supply needs to respond to the coronavirus pandemic. 
  4. Establish a hotline capable of handling significant call capacity that will provide U.S. producers centralized information about the results of the national assessment and the current need for PPE, devices, and other health care supplies. 
  5. Provide immediate funding to manufacturers to purchase equipment, retool machinery, hire additional workers, and cover any other expenses needed to increase production of PPE and necessary medical devices and supplies.
  6. Streamline contract and certification procedures to ensure production and delivery of materials are not delayed due to paperwork constraints.
  7. Provide critical protections for workers who are making PPE, medical devices, and necessary supplies to receive a waiver from any shelter-in-place requirements to allow workers to volunteer to go to work in these critical industries. 
  8. Provide purchase guarantees and delivery assistance of product to the communities and health care facilities that need the products most. 
  9. Support companies that have the capacity to sterilize reusable equipment to alleviate the existing PPE shortage. 

In his plan, Brown also pointed out important legislative actions that will help ramp up production of these critical supplies, including expanding the strategic national stockpile authority, substantially increasing Defense Production Act funding and strengthening domestic preferences.

More information:
NCTO Coronavirus United States
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NCTO

(c) AZL Aachen GmbH
28.01.2020

AZL and IKV launch common project

In the AZL Workgroup "High-Performance SMC", a project was developed in cooperation with M-Base, the IKV and the AZL partner network for the efficient and standardized provision of engineering data for SMC. Within the scope of the project, companies can participate in the definition of the required characteristic material data, the guidelines for the production of test specimens and the test specifications.
Sheet Moulding Compounds (SMC) are used in various application areas such as vehicles, electronics, construction and infrastructure.

In the AZL Workgroup "High-Performance SMC", a project was developed in cooperation with M-Base, the IKV and the AZL partner network for the efficient and standardized provision of engineering data for SMC. Within the scope of the project, companies can participate in the definition of the required characteristic material data, the guidelines for the production of test specimens and the test specifications.
Sheet Moulding Compounds (SMC) are used in various application areas such as vehicles, electronics, construction and infrastructure.

Driven by the requirements to reduce the production costs of lightweight components, a new generation of SMC components with high mechanical properties is of highest relevance. SMC offers enormous potential to realize structural components with good lightweight characteristics at significantly reduced costs compared to conventional continuous fiber-reinforced components.
In order to further establish SMC in broad industrial applications companies participating within the AZL Workgroup recognized the value of a data bank for data harmonization of SMC to provide the possibility of easily finding the right material with its characteristics for the needed specific requirements.

“The segment of SMC is with 250,000 tons production per year the largest composites market in Europe. I am very pleased that we start now with the project of data harmonization along the complete value chain. The goal is to have a similar data base as already established by Campus® for thermoplastics and thermoplastic composites. Only with a reliable set data we can convince the engineering experts to use SMC in a larger variety of applications,” says Dr. Michael Effing, Chairman of the Board of AVK and Composites Germany.

As of right now a databank for engineered thermoplastic materials (by Campus®) already exists and is offering an immense value.
Under the lead of M-Base, Dr. CEO Erwin Baur who has successfully established the CAMPUS database, the AZL, IKV and companies along the value chain of long fibre reinforced SMC initiated to build a CAMPUS-compatible data structure and material characterization methodology during the High-Performance SMC Workgroup Meetings.