This inventor holds 1 USPTO granted patent. Top assignee: Owens Corning Fiberglas Technology, Inc.. Active years: 2006.
Company Filing History:
Years Active: 2006
Title: Innovations in Moldable Materials: The Contributions of James L Thomason
Introduction: James L Thomason, an inventor based in Lanaken, Belgium, has made significant strides in the field of material science with his innovative approach to moldable pellets. His work primarily focuses on the development of a unique moldable pellet that integrates synthetic cellulose fibers and thermoplastic polymers, creating versatile and sustainable materials for modern applications.
Latest Patents: James L Thomason holds a patent for a moldable pellet that combines synthetic cellulose fibers with thermoplastic polymers. This inventive pellet is designed for producing high-impact, non-abrasive, and recyclable structural composites. The patented formulation allows for variations in the concentration of cellulose fibers, which may range from approximately 10% by weight or higher. This innovation is suitable for diverse molding applications, including injection molding, extrusion compression molding, and conventional compression molding.
Career Highlights: Thomason's tenure at Owens Corning Fiberglas Technology, Inc. has been marked by his dedication to developing advanced materials that meet industry needs. His expertise in creating moldable materials has contributed to the production of high-performance composite products, positioning him as a notable figure in the field.
Collaborations: Throughout his career, Thomason has collaborated with notable colleagues such as Frank R Cichocki, JR and Terry L Cheney. These collaborations reflect a commitment to teamwork and innovation, helping to drive advancements in the field of material technology.
Conclusion: James L Thomason's contributions to the development of moldable pellets underscore the importance of innovation in material science. His patent for a composite material that combines synthetic cellulose fibers with thermoplastic polymers represents a significant advancement, providing sustainable options for manufacturing processes. As he continues his work at Owens Corning Fiberglas Technology, Inc., Thomason's innovations are likely to influence the future of structural composites and sustainable materials.
