Cypress, CA, United States of America

Chris Downie

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Chris Downie: Innovator in Ceramic Matrix Composites

Introduction

Chris Downie is an accomplished inventor based in Cypress, California. He has made significant contributions to the field of ceramic matrix composites, particularly through his innovative methods of production. His work is recognized for its potential to enhance the performance and durability of composite materials.

Latest Patents

Chris Downie holds a patent for a method of producing machined ceramic matrix composite (CMC) surfaces without exposing the fiber. This method involves providing a ceramic fiber preform that includes a three-dimensional framework of a plurality of ceramic fibers. Prior to melt infiltration, a layer of machinable stock is added to a target area of the ceramic fiber preform. The process continues with melt infiltration, forming the ceramic matrix composite part, which is then cooled and machined in the target area where the machinable stock is located.

Career Highlights

Chris Downie is currently employed at Rolls-Royce High Temperature Composites Inc. His work at this prestigious company has allowed him to focus on advancing the technology and applications of ceramic matrix composites. His innovative approach has positioned him as a key player in the development of high-performance materials.

Collaborations

Throughout his career, Chris has collaborated with notable colleagues, including Jeffrey M. Crutchfield and Pathikumar Sellappan. These collaborations have fostered an environment of innovation and have contributed to the advancement of composite technologies.

Conclusion

Chris Downie's contributions to the field of ceramic matrix composites exemplify the impact of innovative thinking in material science. His patented methods and collaborative efforts continue to push the boundaries of what is possible in high-temperature applications.

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