Location History:
- Yotsukaido, JP (2010)
- Chiba, JP (1996 - 2022)
- Sakura, JP (1991 - 2024)
Company Filing History:
Years Active: 1991-2024
Title: **Innovative Contributions of Yoshiyuki Sano in the Field of Alumina Particles**
Introduction
Yoshiyuki Sano, an accomplished inventor based in Chiba, Japan, has made significant strides in the materials science arena, particularly in the development of innovative alumina particles. With a remarkable portfolio of 10 patents, Sano's expertise focuses on enhancing the properties and production methods of these particles, catering to various industrial applications.
Latest Patents
Among his latest innovations, Sano has patented a method for producing flaky alumina particles that include mullite in their surface layer. This process involves mixing aluminum and molybdenum compounds, alongside silicon, in specific proportions to create high-performance materials. Another noteworthy patent details the production of tabular alumina particles designed to minimize wear on manufacturing equipment. These plate-like particles contain germanium or its compounds and are engineered to meet precise density and ratio requirements, ensuring optimal functionality.
Career Highlights
Throughout his career, Yoshiyuki Sano has served at distinguished companies, including Dic Corporation and Dainippon Ink and Chemicals, Incorporated. His extensive experience in these organizations has greatly influenced his research and development efforts, leading to groundbreaking innovations in the field of alumina materials.
Collaborations
Sano has collaborated with several talented individuals, including colleagues Hidetsugu Takagaki and Shingo Takada. These collaborations have been instrumental in fostering innovative ideas and advancing their mutual objectives in the field of materials science.
Conclusion
Yoshiyuki Sano's contributions to the development of alumina particles underscore his role as a pioneer in the industry. With his innovative patent portfolio and collaborative efforts, Sano continues to drive forward advancements that enhance the performance and application of these crucial materials. His work not only highlights his inventive spirit but also represents a significant impact on the materials science community.