Naka, Japan

Yoshinori Tateishi


Average Co-Inventor Count = 8.0

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 1990

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1 patent (USPTO):Explore Patents

Title: Yoshinori Tateishi: Innovator in Nuclear Reactor Technology

Introduction

Yoshinori Tateishi is a prominent inventor based in Naka, Japan. He is known for his significant contributions to the field of nuclear reactor technology. His innovative work has led to advancements in materials used for cladding tubes in nuclear reactors.

Latest Patents

One of Yoshinori Tateishi's notable patents is the "Dispersion strengthened ferritic steel cladding tube for nuclear reactor." This invention features a double-layer structure designed for use in nuclear reactors. The cladding tube comprises a tube body made of dispersion strengthened ferritic steel, which contains a ceramic dispersed within it and has a chromium content ranging from 8 to 13% by weight. The inner surface of the tube body is lined with ferritic steel that contains 18 to 30% by weight of chromium. This design not only ensures excellent compatibility with mixed oxide fuel but also provides outstanding high-temperature strength and swelling resistance. Additionally, a method for producing the cladding tube using powder metallurgy is included in the patent.

Career Highlights

Throughout his career, Yoshinori Tateishi has worked with several notable companies, including Doryokuro Kakunenryo Kaihatsu Jigyodan and Sumitomo Metal Industries, Inc. His experience in these organizations has contributed to his expertise in materials science and engineering.

Collaborations

Yoshinori has collaborated with esteemed colleagues such as Takanari Okuda and Shigeo Nomura. These partnerships have further enriched his research and development efforts in the field of nuclear technology.

Conclusion

Yoshinori Tateishi's innovative contributions to the development of dispersion strengthened ferritic steel cladding tubes have made a significant impact on nuclear reactor technology. His work exemplifies the importance of advancements in materials science for enhancing the safety and efficiency of nuclear energy.

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