Company Filing History:
Years Active: 2011
Title: Kyung-Man Choi: Innovator in Polymer Adhesion Technologies
Introduction
Kyung-Man Choi, based in Busan-si, South Korea, stands out as an accomplished inventor known for his innovation in polymer technologies. With a notable patent to his name, he has made significant contributions to the field of adhesion enhancement for polymer compositions.
Latest Patents
Kyung-Man Choi's patent, titled "Adhesion enhancer for polymer composition substrate and polymer composition containing the same," addresses the challenges associated with improving adhesion performance of polymer substrates to primers. This invention comprises an adhesion enhancer that includes an alcohol, a phenol, or another organic compound featuring a hydroxyl group, supported by a porous material. The polymer composition substrate, enhanced by adding over 0.5 parts by weight of the adhesion enhancer relative to 100 parts by weight of the polymer, demonstrates impressive adhesion to primers with isocyanate groups. Notably, this improvement is achieved without the need for roughening the substrate’s surface or using organic solvents.
Career Highlights
In his career, Kyung-Man Choi has worked with esteemed organizations, including Nanotech Ceramics Co., Ltd. and the Korea Institute of Footwear & Leather Technology. His experience in these institutions has equipped him with extensive knowledge and expertise in material sciences and polymers.
Collaborations
Collaborating with fellow professionals has been an integral part of Kyung-Man Choi’s journey. Among his colleagues, Sang-Ok Jeong and Wan-Ouk Kim have been notable collaborators, contributing to the advancement of research and innovation in polymer technology.
Conclusion
Kyung-Man Choi's contributions to adhesion enhancement in polymer compositions position him as an influential figure in the materials science industry. His patent reflects a significant advancement that promises to improve industrial applications, showcasing the impact of innovative thinking on everyday materials.