Location History:
- Minato-ku, JP (2016)
- Tokyo, JP (2016)
Company Filing History:
Years Active: 2016
Title: Mayumi Yamauchi – Innovator in Dripping Inhibitor Technology
Introduction
Mayumi Yamauchi is an inventive force hailing from Minato-ku, Japan. With a remarkable portfolio of two patents, she has made significant contributions to the field of materials science, particularly in the development of innovative dripping inhibitors.
Latest Patents
Yamauchi's latest patents focus on a unique dripping inhibitor that boasts excellent handling characteristics. Specifically, her invention includes a modified polytetrafluoroethylene, which features an average particle size ranging from 300 to 800 micrometers. The inhibitor exhibits an apparent density of 0.40 to 0.52 g/ml, ensuring effective performance. Furthermore, it possesses a compression ratio of 1.20 or less, along with an aggregate disintegration degree of 70% or more when subjected to 50-seconds of vibration. Notably, the cylinder extrusion pressure at a reduction ratio of 1500 is maintained at 80 MPa or less and features a standard specific gravity (SSG) ranging from 2.140 to 2.230.
Career Highlights
Yamauchi is currently employed at Daikin Industries, Ltd., where her expertise continues to flourish. Her work not only reflects her innovative spirit but also demonstrates her commitment to advancing technology in the realms of materials and industrial applications.
Collaborations
Throughout her career, Yamauchi has collaborated with esteemed coworkers such as Taku Yamanaka and Masayoshi Miyamoto. These partnerships have undoubtedly enriched her inventive process and contributed to the successful development of her patents.
Conclusion
Mayumi Yamauchi stands out as a prominent inventor in the field of dripping inhibitors, demonstrating exceptional skill and creativity. Her groundbreaking patents signify her dedication to advancing material sciences and enhancing industrial applications. As she continues her work at Daikin Industries, her contributions will undoubtedly inspire future innovations in this critical area.