Company Filing History:
Years Active: 2024
Title: Innovations of Soon-Yong Park in Flame Retardant Fabrics
Introduction
Soon-Yong Park is a notable inventor based in Daejeon, South Korea. He has made significant contributions to the field of flame-retardant materials, particularly in the development of non-woven fabrics for mattresses. With a total of 2 patents, his work focuses on enhancing safety and performance in textile applications.
Latest Patents
One of his latest patents is titled "Flame retardant non-woven fabric for mattress and manufacturing method thereof." This invention relates to a flame-retardant nonwoven fabric that comprises flame-retardant rayon (FR-Rayon) staple fibers, modacrylic staple fibers, polyimide (PI) staple fibers, and low melting polyester (LM PET) staple fibers. The specific weight percentages of these fibers are designed to provide enhanced flame retarding and mechanical properties. Another significant patent is "Cloth for mattress and method for manufacturing the same." This patent describes a cloth for mattresses that includes a knitted fabric made from blended yarns containing flame retardant rayon fibers, modacrylic fibers, polyimide fibers, and low-melting polyester fibers. The resulting cloth exhibits excellent flame retardancy and is safe for contact with the human body.
Career Highlights
Throughout his career, Soon-Yong Park has worked with various companies, including Ditgreen Co. Ltd. and Kaneka Corporation. His experience in these organizations has contributed to his expertise in developing innovative textile solutions.
Collaborations
Some of his notable coworkers include Hyo-Sup Chang and Woo-Hyung Lee. Their collaborative efforts have likely played a role in advancing the research and development of flame-retardant materials.
Conclusion
Soon-Yong Park's contributions to the field of flame-retardant fabrics demonstrate his commitment to innovation and safety in textile applications. His patents reflect a deep understanding of material science and a dedication to improving product performance.