Thousand Oaks, CA, United States of America

Sieg Borck


Average Co-Inventor Count = 6.0

ph-index = 1


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Sieg Borck

Introduction

Sieg Borck is a notable inventor based in Thousand Oaks, CA (US). He has made significant contributions to the field of thermal insulation technology. His innovative approach has led to the development of a unique patent that addresses high-temperature applications.

Latest Patents

Borck holds a patent for a high-temperature thermal insulation quilt assemblage. This invention consists of an inner quilt and an outer quilt, each designed to conform to the shape of an object with surface temperatures reaching as high as 3000°F during operation. The inner quilt features a silicic-impregnated quartz fabric case, multiple blankets of ceramic insulation material, and quartz-fiber thread cross-stitching to minimize quilt thickness. Additionally, the inner quilt includes a tantalum foil placed between two blankets of ceramic insulation material, along with sewn-on tie straps. The outer quilt is equipped with sewn-on lacing strips for securing its edges, and its outermost surface is coated with silicone rubber.

Career Highlights

Throughout his career, Sieg Borck has focused on developing advanced materials that enhance thermal protection. His work has been instrumental in various high-temperature applications, showcasing his expertise in material science and engineering.

Collaborations

Borck has collaborated with notable colleagues, including Paul M Chewey and Robert M Fingerhut. These partnerships have contributed to the advancement of his innovative projects and have fostered a collaborative environment for research and development.

Conclusion

Sieg Borck's contributions to thermal insulation technology exemplify the spirit of innovation. His patented high-temperature thermal insulation quilts represent a significant advancement in the field, demonstrating his commitment to enhancing safety and efficiency in high-temperature environments.

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