Company Filing History:
Years Active: 2017-2019
Title: Innovations of Ja Yoon Kim in Thermoplastic Resin Composition
Introduction
Ja Yoon Kim is an accomplished inventor based in Uiwang-si, South Korea. He has made significant contributions to the field of thermoplastic resin compositions, holding a total of four patents. His work focuses on enhancing the properties of materials used in various applications, particularly in the automotive industry.
Latest Patents
One of his latest patents is a thermoplastic resin composition with improved heat resistance and coloring properties. This invention relates to an acrylic resin composition that includes an acrylic graft copolymer, an aromatic vinyl-cyano vinyl-based copolymer, and an acrylic resin. This composition is particularly suitable for automotive exterior materials due to its enhanced coloring properties and heat resistance. Another notable patent is a thermoplastic resin composition that comprises an acrylic graft copolymer, an aromatic vinyl-vinyl cyanide-based copolymer, a light stabilizer, and a UV absorber. This composition is designed to achieve excellent coloring properties and weather resistance, ensuring a high-quality external appearance.
Career Highlights
Ja Yoon Kim is currently employed at Lotte Advanced Materials Co., Ltd., where he continues to innovate and develop advanced materials. His expertise in thermoplastic resins has positioned him as a key player in the industry, contributing to the advancement of material science.
Collaborations
He collaborates with talented coworkers, including Ji Eun Park and Kyun Ha Ban, who contribute to the innovative environment at Lotte Advanced Materials Co., Ltd. Their teamwork fosters creativity and drives the development of cutting-edge materials.
Conclusion
Ja Yoon Kim's contributions to thermoplastic resin compositions demonstrate his commitment to innovation and excellence in material science. His patents reflect a deep understanding of the needs of the automotive industry and a dedication to improving product performance.