Wells, ME, United States of America

Jeffrey M Wittman


 

Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 21(Granted Patents)


Company Filing History:


Years Active: 2019-2022

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3 patents (USPTO):

Title: The Innovations of Jeffrey M. Wittman

Introduction

Jeffrey M. Wittman, based in Wells, ME, is a prolific inventor with a total of three patents to his name. His work primarily focuses on advanced materials and sealing technology, contributing significantly to industries that require high-performance components.

Latest Patents

One of Wittman's notable inventions is the "Compact Brush Seal," which features a unique seal structure comprising a cavity defined by both axial and radial surfaces. This innovative brush seal includes a bristle pack and a backing plate that ensures effective sealing in various applications. Additionally, Wittman has developed a patent regarding "Single Crystal Grain Structure Seals and Method of Forming." This invention highlights advanced materials, specifically single crystal grain structures, which enhance mechanical properties crucial for components subjected to demanding conditions such as high temperature, pressure, and stress.

Career Highlights

Throughout his career, Wittman has been associated with leading aerospace and technology companies, including Raytheon Technologies Corporation and United Technologies Corporation. His experience in these prominent organizations has undoubtedly influenced his innovative approach to solving complex engineering challenges.

Collaborations

Wittman's collaborative efforts have been enhanced by working alongside distinguished professionals in the field, such as Timothy M. Davis and Mark John Rogers. These partnerships have likely contributed to the successful development of his groundbreaking patents.

Conclusion

Jeffrey M. Wittman's contributions to invention and innovation, particularly in the areas of sealing technology and materials science, have positioned him as a notable figure in his field. His patents not only reflect a commitment to excellence but also provide significant advancements for applications requiring robust mechanical performance.

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