Location History:
- Hyogo, JP (1987)
- Kobe, JP (1986 - 1988)
Company Filing History:
Years Active: 1986-1988
Title: Shosuke Iwasaki: Innovator in Aluminum Brazing Alloys
Introduction
Shosuke Iwasaki is a notable inventor based in Kobe, Japan. He has made significant contributions to the field of aluminum brazing materials, holding a total of 5 patents. His work focuses on developing high-performance brazing alloys that enhance the efficiency and durability of aluminum heat exchangers.
Latest Patents
Iwasaki's latest patents include innovative aluminum brazing alloys designed for assembling aluminum heat exchangers. One of his notable inventions consists of alloys that contain 4.5 to 13.5% silicon, from 0.005% to less than 0.1% strontium, and primarily aluminum. These alloys are engineered to provide high-strength brazed joints with a refined microstructure, allowing for effective brazing operations without detrimental cavities. This makes them particularly suitable for the fabrication of superhigh-pressure heat exchangers. Another patent features aluminum brazing alloys that include 4.5 to 13.5% silicon, 0.05 to 0.5% calcium, and the balance primarily aluminum, with optional magnesium and copper components. These alloys also exhibit excellent brazability and high-strength joints, further enhancing their application in high-pressure environments.
Career Highlights
Throughout his career, Shosuke Iwasaki has worked with prominent companies such as Sumitomo Precision Products Co., Ltd. and Sumitomo Light Metal Industries, Ltd. His experience in these organizations has allowed him to refine his expertise in aluminum materials and brazing technologies.
Collaborations
Iwasaki has collaborated with notable colleagues, including Keizo Nanba and Michiki Hagiwara, contributing to advancements in the field of aluminum brazing.
Conclusion
Shosuke Iwasaki's innovative work in aluminum brazing alloys has significantly impacted the manufacturing of heat exchangers. His patents reflect a commitment to enhancing the performance and reliability of these critical components in various applications.