Domat-Ems, Switzerland

Peter Meier


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 19(Granted Patents)


Company Filing History:


Years Active: 1980

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1 patent (USPTO):Explore Patents

Title: The Innovative Journey of Peter Meier in Fiber-Reinforced Materials

Introduction: Peter Meier, an inventor based in Domat-Ems, Switzerland, has made significant strides in the field of construction materials. With one patent to his name, he has contributed to the development of a novel fiber-reinforced cement-like material that holds promise for a variety of applications. His work reflects a commitment to innovation and improvement in material science.

Latest Patents: Peter Meier's notable patent involves a fiber-reinforced cement-like material characterized by the incorporation of short polyvinyl alcohol fibers. These fibers, present in an amount of at least 2 volume % based on the total volume of the material, exhibit an elongation at break of between 4 and 8% and a modulus of more than 130 g/dtex. The invention also includes a process for preparing this advanced material, potentially enhancing the durability and performance of construction elements.

Career Highlights: Throughout his career, Peter has been deeply involved with Inventa AG für Forschung und Patentverwertung, where he has leveraged his expertise in materials science to innovate and develop new products. His work at the company underscores a dedication to research and development, positioning him as a key figure in advancing material technology.

Collaborations: Peter Meier has collaborated with talented professionals such as Peter Schaefer and Marcel Capaul. Together, they are part of a dynamic team at Inventa AG that focuses on pushing the boundaries of material science and patenting their findings, contributing to a wealth of knowledge and expertise in their field.

Conclusion: Peter Meier exemplifies the spirit of innovation in the realm of material science. His patent for a fiber-reinforced cement-like material not only highlights his ingenuity but also serves as a foundational step towards more resilient construction materials. As he continues to work alongside esteemed colleagues, the field can anticipate further advancements driven by his research and collaborative efforts.

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