Kleinwallstadt, Germany

Jurgen Keilert


 

Average Co-Inventor Count = 2.2

ph-index = 4

Forward Citations = 58(Granted Patents)


Company Filing History:


Years Active: 1992-1997

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7 patents (USPTO):Explore Patents

Title: Innovative Contributions of Jurgen Keilert

Introduction

Jurgen Keilert is a notable inventor based in Kleinwallstadt, Germany, recognized for his contributions to the field of synthetic materials. With a portfolio of seven patents, Keilert's work has significantly advanced methods of processing and manufacturing synthetic materials.

Latest Patents

One of his recent innovations is a method for manufacturing a foamable synthetic material from shredded foam. This invention enhances the production process of foaming synthetic materials, such as polystyrene, through the use of an extruder. The process involves feeding synthetic material into the extruder while introducing foaming gas in liquid form at a controlled pressure. This systematic approach ensures that the gas remains in liquid form until it mixes with the synthetic material. Furthermore, the utilized shredded synthetic foam undergoes degassing prior to fumigation, optimizing the material’s preparation without compromising the efficiency of gas utilization.

Career Highlights

Throughout his career, Jurgen Keilert has worked with prominent companies including Rieter Automatik GmbH and Automatik Apparatemaschinenbau GmbH. His experience in these organizations has been foundational in developing and refining his inventive capabilities.

Collaborations

Jurgen has collaborated with respected colleagues in the industry, such as Alfred Nogossek and Harald Zang. Their collective expertise has fostered a collaborative environment, leading to innovative outcomes and advancements in synthetic material technology.

Conclusion

Jurgen Keilert continues to be a significant figure in the invention landscape, with his work reflecting a commitment to innovation in synthetic materials. His patents not only showcase his expertise but also contribute to advancements that could shape future applications in manufacturing and material science.

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