This inventor holds 1 USPTO granted patent. Top assignee: Lockheed Martin Corporation. Active years: 1998.
Company Filing History:
Years Active: 1998
Title: Stephanie D McNay: Innovator in Aircraft Materials
Introduction
Stephanie D McNay is a notable inventor based in Acton, California. She has made significant contributions to the field of aircraft materials, particularly through her innovative patent related to photocurable materials. Her work is essential for enhancing the performance and durability of high-performance aircraft.
Latest Patents
Stephanie holds a patent for "Photocurable low observable aircraft materials." This invention involves a hybrid cure mechanism designed to polymerize highly filled, optically opaque, acrylate polymeric material compositions using radiant energy. The hybrid cure mechanism is particularly useful for repairing surface coatings on high-performance aircraft, where a long application life and rapid curing capability are crucial. The electrically conductive resinous paint or gap filler developed in this patent can be applied to both composite and metallic surfaces, making it valuable in production lines for high-performance aircraft.
Career Highlights
Stephanie is currently employed at Lockheed Martin Corporation, a leading aerospace and defense company. Her role involves working on advanced materials that contribute to the safety and efficiency of aircraft. Her expertise in polymeric materials has positioned her as a key player in the development of innovative solutions for the aerospace industry.
Collaborations
Stephanie has collaborated with notable colleagues, including Dustin B Martin and Thomas L Marino. These partnerships have allowed her to leverage diverse expertise and enhance the impact of her inventions in the field.
Conclusion
Stephanie D McNay is a pioneering inventor whose work in photocurable aircraft materials is shaping the future of aerospace technology. Her contributions are vital for the advancement of high-performance aircraft, ensuring they meet the demands of modern aviation.
