Company Filing History:
Years Active: 1980-1985
Title: The Innovative Contributions of Noboru Shinoda
Introduction
Noboru Shinoda, an accomplished inventor based in Bizen, Japan, has made significant strides in the field of refractory materials. With a total of two patents to his name, his innovations demonstrate a profound understanding of material science and engineering, particularly in enhancing the performance characteristics of refractory products.
Latest Patents
Noboru Shinoda's latest patents underscore his commitment to advancing refractory technology. The first patent focuses on "Silicon Nitride Composite Refractories," which incorporates silicon nitride bonds to enhance thermal shock resistance, molten steel resistance, and mechanical strength. This patented composition contains 20 to 60 wt% silicon nitride, 10 to 50 wt% refractory materials, and 1 to 30 wt% boron nitride. Additionally, it can include 0.5 to 10 wt% carbon fibers, enabling the formation of bonding structures that optimize the material's performance.
The second patent pertains to "Carbonaceous Bricks and the Method for Producing the Same." This invention addresses the vulnerabilities of conventional carbonaceous bricks by developing a fire and corrosion-resistant alternative that withstands mechanical impact. This innovation is achieved by mixing less than 60 wt% of inorganic material with 40 to 100 wt% pellets made primarily of carbon and using a bonding agent that consists of pulverized phenol resin, liquid thermosetting resin, and/or a setting accelerator, ensuring the bricks contain over 40 wt% of carbon.
Career Highlights
Throughout his career, Noboru Shinoda has worked with notable organizations, including Kyushu Refractories Co., Ltd., and Kyusyu Refractories Co., Ltd. His roles in these companies have allowed him to apply his expertise in material science, resulting in the development of patents that push the boundaries of refractory materials.
Collaborations
Noboru's innovative journey has been enriched by collaborations with talented colleagues, including Akira Watanabe and Yoshimitsu Takeuchi. These partnerships have facilitated the exchange of ideas and expertise, contributing to the advancement of high-performance materials in the field of refractories.
Conclusion
Noboru Shinoda's work exemplifies the impact of innovation in the field of refractory materials. His patents reflect a dedication to enhancing material performance, making significant contributions to industries reliant on advanced refractory solutions. As innovations continue to evolve, Shinoda's contributions will undoubtedly influence the future landscape of material engineering.
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