Company Filing History:
Years Active: 2015-2017
Title: Yuki Taninouchi: Innovator in Copper-Alloy Materials
Introduction
Yuki Taninouchi is a notable inventor based in Naka, Japan. She has made significant contributions to the field of materials science, particularly in the development of advanced copper-alloy materials. With a total of 2 patents, her work focuses on enhancing the performance of terminal materials used in various applications.
Latest Patents
Yuki's latest patents include innovative solutions for tin-plated copper-alloy materials. The first patent describes a tin-plated copper-alloy material for terminals that features a Sn-based surface layer formed on a substrate made of copper alloy. This design includes a Cu–Sn alloy layer that enhances insertion and extraction performance. The specifications detail that the average thickness of the Sn-based surface layer is between 0.2 μm and 0.6 μm, with a dynamic friction coefficient of 0.3 or less.
The second patent outlines a method for producing a tin-plated copper-alloy material for terminals. This invention incorporates a substrate made of copper or copper alloy, with an Sn-based surface layer and a Cu–Ni–Sn alloy layer. The Cu–Ni–Sn alloy layer consists of fine and coarse alloy particles, ensuring optimal performance. The average thickness of the Sn-based surface layer remains consistent, and the coefficient of kinetic friction is maintained at not more than 0.3.
Career Highlights
Yuki has worked with prominent companies, including Mitsubishi Materials Corporation. Her experience in these organizations has allowed her to refine her expertise in materials engineering and innovation.
Collaborations
Yuki has collaborated with talented individuals such as Naoki Kato and Kenji Kubota. These partnerships have contributed to her success and the advancement of her research.
Conclusion
Yuki Taninouchi is a pioneering inventor whose work in copper-alloy materials has the potential to impact various industries. Her innovative patents reflect her commitment to enhancing material performance and functionality.