Location History:
- Tottori, JP (1989)
- Ketaka, JP (1990)
Company Filing History:
Years Active: 1989-1990
Title: Osamu Miyamoto: Innovator in Fragrant Fibrous Structures
Introduction
Osamu Miyamoto is a notable inventor based in Ketaka, Japan. He has made significant contributions to the field of fibrous structures, particularly in the area of durable fragrances. With a total of 2 patents to his name, his work has garnered attention for its innovative approach to enhancing the sensory experience of fabrics and apparel.
Latest Patents
Miyamoto's latest patents focus on the development of fibrous structures that incorporate microcapsules encapsulating a perfume and a resinous binder. These structures are designed to provide a long-lasting fragrance, making them ideal for use in various textiles. The process involves applying a treating liquid that contains microcapsules made from a formaldehyde-based resin, which encloses the perfume and a resinous binder, preferably a silicone resin. The specific weight ratio of the microcapsules to the resinous binder ranges from 2/1 to 1/5, with an add-on amount of 0.3 to 7.0% based on the weight of the fibrous structure. The fibrous structure is then dried at a temperature of less than 150 degrees Celsius to ensure that the microcapsules adhere effectively to the fiber surfaces.
Career Highlights
Osamu Miyamoto is currently associated with Kanebo, Limited, where he continues to innovate in the field of textile technology. His work has not only advanced the functionality of fabrics but has also enhanced their aesthetic appeal through the integration of fragrance.
Collaborations
Miyamoto has collaborated with notable colleagues, including Akira Ono and Toshikazu Fuse, to further his research and development efforts in the textile industry.
Conclusion
Osamu Miyamoto's contributions to the field of fragrant fibrous structures exemplify the intersection of innovation and practicality in textile technology. His patents reflect a commitment to enhancing consumer experiences through advanced materials.