Company Filing History:
Years Active: 2018
Title: Innovations by Jordan Philip Seeger in Composite Manufacturing
Introduction
Jordan Philip Seeger is an accomplished inventor based in Colonie, NY (US). He has made significant contributions to the field of composite manufacturing, particularly in the development of curing systems for wind blade production and repair. His innovative approach combines ultraviolet (UV) and infrared (IR) radiation to enhance the curing process of composite materials.
Latest Patents
Jordan holds a patent for a UV-IR combination curing system and method for the manufacture and repair of composite parts. This system utilizes dual radiation sources to cure glass fiber reinforced laminates that contain a photo initiator. The unique configuration allows for various setups, including discrete stand-alone UV and IR lamps, a combination UV/IR lamp, or multiple UV lamps with thermal IR radiation. The method involves initially heating the laminate with IR radiation to temperatures between 40°C and 100°C before activating the UV radiation source, ensuring high glass transition and complete curing of thick laminates.
Career Highlights
Jordan is currently employed at General Electric Company, where he applies his expertise in composite materials and curing technologies. His work has been instrumental in advancing manufacturing processes that are critical for the production of wind blades, which are essential for renewable energy solutions.
Collaborations
Jordan has collaborated with notable colleagues, including Xiaomei Fang and Thomas Miebach, to further enhance the development of innovative manufacturing techniques. Their combined efforts contribute to the ongoing evolution of composite technology.
Conclusion
Jordan Philip Seeger exemplifies the spirit of innovation in the field of composite manufacturing. His patented UV-IR combination curing system represents a significant advancement in the industry, showcasing his commitment to improving manufacturing processes for sustainable energy solutions.