Yozo Suga
Nippon Steel
57 Papers
485 Citations
Yozo Suga is an academic researcher from Nippon Steel. The author has contributed to research in topics: Electrical steel & Annealing (metallurgy). The author has an hindex of 14, co-authored 57 publications.
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Papers
Fabrication of Ni3Al thin foil by cold-rolling
TL;DR: In this article, thin foils of stoichiometric Ni 3 Al with thicknesses ranging from 57 to 315 μm were successfully fabricated by heavily cold-rolling without intermediate annealing.
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Recent developments in grain-oriented silicon-steel
TL;DR: In this paper, the acquired inhibitor method was used to avoid the metallurgical problems associated with the manufacture of grain-oriented silicon-steel with high permeability using AIN as an inherent inhibitor.
58
Fabrication of thin Ni3Al foils by cold rolling
TL;DR: In this article, cold rolling of single-crystalline Ni3Al was performed to fabricate thin foils of 23 μm in thickness and 50 mm in width, which exhibited high tensile fracture strength without plastic elongations.
56
Patent
Method for treating an electromagnetic steel sheet and an electromagnetic steel sheet having marks of laser-beam irradiation on its surface
Tadashi Ichiyama,Shigehiro Yamaguchi,Tohru Iuchi,Nakamura Motoharu,Yozo Suga +4 more
- 22 Jan 1981
TL;DR: In this article, a process of providing electromagnetic steel strips or sheet with excellent magnetic properties is described, which comprises the steps of irradiating with a laser-beam the surface of an electromagnetic steel sheet which has been finally annealed, thereby locally forming marks of the laserbeam irradiation on the surfaces of the steel, and subjecting the steel sheet to the formation of an insulating film on the sheet surface at a temperature of the sheet not exceeding 600° C.
26
Patent
Method for producing a grain-oriented electrical steel sheet having a high magnetic flux density
Yozo Suga,Fumio Matsumoto,Tadashi Nakayama +2 more
- 21 Sep 1983
TL;DR: In this paper, the authors proposed a method for producing a grain-oriented electrical steel sheet, where the S content of the steel is set to a level as low as possible. But the present method does not use MnS as an inhibitor.
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