La Murette, France

Martin Peter Schmidt


Average Co-Inventor Count = 2.9

ph-index = 2

Forward Citations = 17(Granted Patents)


Company Filing History:


Years Active: 1999-2001

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2 patents (USPTO):Explore Patents

Title: **Martin Peter Schmidt: Innovator in Aluminum Alloy Technologies**

Introduction:

Martin Peter Schmidt is a notable inventor based in La Murette, France. With a focus on advanced aluminum alloy technologies, he holds two patents that enhance both the manufacturing and application of these materials in various structural contexts.

Latest Patents:

Martin Schmidt's latest patents showcase his innovative approaches in the aluminum industry. The first patent is titled **"Method for making thin, high-strength, highly formable aluminum alloy strips."** This process involves several critical steps, starting with the formation of an aluminum alloy with a specific composition, followed by a continuous casting technique that produces strips of varying thickness.

His second patent, **"AlMgMn alloy product for welded construction with improved corrosion,"** introduces a rolled or extruded aluminum alloy optimal for mechanical construction. The unique composition of this product ensures enhanced corrosion resistance, making it suitable for applications in boats, offshore structures, and industrial vehicles.

Career Highlights:

Martin Schmidt is currently associated with Pechiney Rhenalu, a company renowned for its innovation in lightweight and durable materials. His contributions have been pivotal in advancing the capabilities and applications of aluminum alloys.

Collaborations:

In his career, Martin has worked alongside talented colleagues, including Jean-Marc Legresy and Herve Gehanno. Their collaborative efforts have fostered an environment of creativity and innovation, driving the development of superior aluminum materials in the industry.

Conclusion:

Martin Peter Schmidt's contributions to aluminum alloy technology are significant, with patented methods that not only improve manufacturing processes but also enhance the performance of aluminum products in various demanding applications. His work continues to influence the field and drive forward innovation in material science.

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