Midland, MI, United States of America

Myron T Mason


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 11(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: Myron T. Mason: Innovator in Fluorosilicone Gel Compositions

Introduction

Myron T. Mason, an accomplished inventor based in Midland, MI, is recognized for his innovative contributions to the field of silicone technology. With a focus on enhancing the performance and stability of fluorosilicone gels, Mason's work has the potential to reshape applications in various industries.

Latest Patents

Mason holds a notable patent for "Storage stable one-part fluorosilicone gel compositions exhibiting - Concentration levels of copper acetylacetonate previously considered ineffective inhibit or eliminate thermally induced hardening of fluorosilicone gels prepared by a hydrosilylation reaction using one-part curable compositions containing an N,N,N',N'-tetraalkyl alkylenediamine as a catalyst inhibitor." This innovative formulation allows for improved curing characteristics when used alone or in combination with acetylenic alcohols like methylbutynol, effectively modifying the properties of the cured gel.

Career Highlights

Myron T. Mason has made significant strides in his career at Dow Corning Corporation, a global leader in silicone-based technology. His work is pivotal in advancing the capabilities of silicone materials, contributing to new applications that enhance product performance.

Collaborations

Throughout his career, Mason has collaborated with fellow innovator Bernard Vanwert. Their joint efforts have led to valuable insights and advancements in the field of silicone formulations, strengthening the impact of their work within the industry.

Conclusion

Myron T. Mason stands out as a pioneering figure in the development of fluorosilicone gel technologies. With his innovative patent and ongoing contributions at Dow Corning Corporation, Mason continues to drive advancements that could transform the way these materials are utilized across various applications.

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