This inventor holds 1 USPTO granted patent. Top assignee: Bwxt Y-12, LLC. Active years: 2001.
Company Filing History:
Years Active: 2001
Title: Matthew Rookes Feldman: Innovator in Fireproof Packaging Solutions
Introduction
Matthew Rookes Feldman is an accomplished inventor based in Knoxville, TN (US). He has made significant contributions to the field of hazardous material shipping through his innovative patent. His work focuses on creating safer and more efficient packaging solutions for transporting dangerous materials.
Latest Patents
Feldman's most notable patent is for a fireproof impact limiter aggregate packaging system designed for use inside shipping containers. This invention provides a product and process for creating a homogeneous aggregate material that is fireproof and capable of limiting impacts. The material is specifically designed for use in hazardous material shipping containers, including double-contained Type-B nuclear shipping containers. The process involves mixing inorganic compounds with water, pouring the mixture into void spaces, and curing it to form a solidified protective enclosure around the inner storage containment vessel.
Career Highlights
Matthew Rookes Feldman is currently employed at BWXT Y-12, LLC, where he continues to develop innovative solutions for the safe transport of hazardous materials. His expertise in creating fire-resistant materials has positioned him as a key player in the industry. He holds a patent for his groundbreaking work, which enhances safety and efficiency in shipping hazardous materials.
Collaborations
Feldman has collaborated with notable colleagues such as Gerald A. Byington and Raymon Edgar Oakes, Jr. Their combined expertise contributes to the advancement of safety measures in hazardous material transportation.
Conclusion
Matthew Rookes Feldman is a pioneering inventor whose work in fireproof packaging solutions has made a significant impact on the safety of hazardous material shipping. His innovative patent demonstrates his commitment to enhancing safety and efficiency in this critical field.