Company Filing History:
Years Active: 1987-1992
Title: The Innovative Contributions of Suae-Chen Chang
Introduction
Suae-Chen Chang is a prominent inventor based in Baton Rouge, Louisiana. He has made significant contributions to the field of materials science, particularly in the development of advanced polymer compositions. With a total of 8 patents to his name, Chang's work has had a notable impact on various applications, including aerospace and insulation technologies.
Latest Patents
Chang's latest patents showcase his innovative approach to polymer chemistry. One of his notable inventions is the "Acrylate cured polyphosphazenes," which involves polyorganophosphazenes that contain N-(acryloxyhydrocarbyl)ureidohydrocarbyloxy groups. These compounds can be cross-linked through exposure to ultraviolet radiation, enhancing their utility in various applications. Another significant patent is for "Rocket motor insulation using phosphonitrilic elastomeric compositions." This process involves creating a low smoke, low erosion rocket motor insulation by mixing organic fibers, inorganic powder fillers, and a non-fluorinated phosphazene polymer. This innovation is crucial for improving the performance and safety of rocket motors.
Career Highlights
Chang is currently associated with Ethyl Corporation, where he continues to push the boundaries of polymer research and development. His work at Ethyl Corporation has allowed him to collaborate with other talented professionals in the field, further enhancing the innovative capabilities of the organization.
Collaborations
Some of Chang's notable coworkers include Joseph B Tedder, Jr. and J Robert Adams, Jr. Their collaborative efforts have contributed to the advancement of materials science and the successful development of new technologies.
Conclusion
In summary, Suae-Chen Chang is a distinguished inventor whose work in polymer chemistry has led to significant advancements in various industries. His innovative patents and collaborations reflect his commitment to pushing the boundaries of technology and improving material performance.