Location History:
- Atsugi, JP (1986)
- Ebina, JP (2017)
Company Filing History:
Years Active: 1986-2017
Title: Saburo Abe: Innovator in Sliding Mechanisms and Friction Materials
Introduction
Saburo Abe is a notable inventor based in Atsugi, Japan. He has made significant contributions to the fields of sliding mechanisms and friction materials, holding a total of 2 patents. His work has been influential in enhancing the performance and durability of various mechanical systems.
Latest Patents
Abe's latest patents include a sliding mechanism that features first and second members that are slidable relative to each other. This mechanism incorporates a grease composition that contains a thickening agent and a base oil. Notably, the grease composition utilizes lithium 12-hydroxystearate as the thickening agent and dioctyl sebacate and/or poly-α-olefin as the base oil. Additionally, at least one of the sliding surfaces is coated with a hard carbon film of diamond-like carbon. Another significant patent is for a friction material that is obtained by flame spraying a metal, which can serve as a sacrificial anode for iron, onto the surface of a friction material substrate. This innovation demonstrates excellent resistance to judder and provides outstanding rust prevention.
Career Highlights
Throughout his career, Saburo Abe has worked with prominent companies such as Nissan Motor Company Limited and Hitachi Chemical Company, Ltd. His experience in these organizations has allowed him to apply his innovative ideas in practical settings, contributing to advancements in automotive and chemical engineering.
Collaborations
Abe has collaborated with notable coworkers, including Akira Nishimura and Kazuaki Kawasaki. These partnerships have fostered a creative environment that has led to the development of groundbreaking technologies.
Conclusion
Saburo Abe's contributions to the fields of sliding mechanisms and friction materials highlight his innovative spirit and dedication to engineering excellence. His patents reflect a commitment to improving mechanical performance and reliability.