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Dive into the research topics where Makoto Setoyama is active.

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Featured researches published by Makoto Setoyama.


Surface & Coatings Technology | 1996

Formation of cubic-A1N in TiN/A1N superlattice

Makoto Setoyama; Akira Nakayama; Motoyuki Tanaka; Nobuyuki Kitagawa; Toshio Nomura

Abstract Ceramic superlattice is one of approaches for new ceramic film development. We deposited TiN/A1N superlattice films by arc ion-plating process, and evaluated the crystal structure of these films by transmission electron diffraction and X-ray diffraction. It was revealed that the crystal structure of A1N changes from Wurtzite type to NaCl type for superlattice periods ≤ 3 nm. The film hardness increased to about twice that of the TiN single layer film at a period = 2.5 nm. NaCl phase of A1N is one of the phases that exists under high pressure and it is expected that there will be a high bulk modulus.


Thin Solid Films | 1999

Thermal stability of TiN/AlN superlattices

Makoto Setoyama; M. Irie; Hisanori Ohara; Masanori Tsujioka; Y Takeda; Toshio Nomura; Nobuyuki Kitagawa

Abstract In this paper, the thermal study of a TiN/AlN superlattice was reported. The thermal stability of a superlattice structure and a crystal structure of cubic AlN in a TiN/AlN superlattice were evaluated by using in situ high temperature transmission electron microscopy (HTTEM), X-ray diffraction (XRD) measurements and TEM observations after an annealing treatment in a hydrogen atmosphere, and semi in situ high temperature X-ray diffraction (HTXRD) in a nitrogen atmosphere. It was confirmed that the superlattice structure remained up to 1473 K for a short time by HTTEM observation. HTXRD studies showed that the superlattice structure and c-AlN remained after 1273 K annealing for 3.5 h. According to the change of low angle diffraction intensity of HTXRD, two kinds of diffusion processes may operate. One was short range diffusion that improved the superlattice structure from 1073–1233 K and the other was long range diffusion that started at above 1233 K.


Archive | 1993

Ultra-thin film laminate

Makoto Setoyama; Motoyuki Tanaka; Akira Nakayama; Takashi Yoshioka; Yasuhisa Hashimoto; Kazuo Yamagata; Mitsunori Kobayashi


Archive | 1995

Layered film made of ultrafine particles and a hard composite material for tools possessing the film

Satoru Kukino; Tetsuo Nakai; Mitsuhiro Goto; Takashi Yoshioka; Makoto Setoyama


Archive | 1995

Super hard composite material for tools

Satoru Kukino; Mitsuhiro Goto; Tetsuo Nakai; Makoto Setoyama; Takashi Yoshioka


Archive | 1995

Hard composite material for tools

Satoru Kukino; Mitsuhiro Goto; Tetsuo Nakai; Makoto Setoyama; Takashi Yoshioka


Archive | 1995

Hyperfine particle laminated film and laminated high hardness material for tool with same

Mitsuhiro Goto; Akira Kukino; Tetsuo Nakai; Makoto Setoyama; Takeshi Yoshioka; 哲男 中井; 暁 久木野; 剛 吉岡; 光宏 後藤; 誠 瀬戸山


Archive | 2002

Amorphous carbon coated tools and method of producing the same

Haruyo Fukui; Yoshiharu Utsumi; Miki Irie; Hisanori Ohara; Hideki Moriguchi; Satoru Kukino; Makoto Setoyama; Satoshi Ohtani; Naoto Okazaki; Kiyoshi Ogata


Archive | 2011

SURFACE COATING CUTTING TOOL

Sachiko Koike; Makoto Setoyama; Hideki Moriguchi


Archive | 2002

Amorphous carbon coated tool and fabrication method thereof

Satoshi Ohtani; Naoto Okazaki; Kiyoshi Ogata; Haruyo Fukui; Miki Irie; Yoshiharu Utsumi; Hisanori Ohara; Hideki Moriguchi; Akihiko Ikegaya; Keiichi Tsuda; Makoto Setoyama

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Satoru Kukino

Sumitomo Electric Industries

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Hideki Moriguchi

Sumitomo Electric Industries

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Takashi Yoshioka

Sumitomo Electric Industries

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Haruyo Fukui

Sumitomo Electric Industries

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Mitsuhiro Goto

Sumitomo Electric Industries

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Tetsuo Nakai

Sumitomo Electric Industries

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Katsumi Okamura

Sumitomo Electric Industries

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Akira Nakayama

Sumitomo Electric Industries

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Motoyuki Tanaka

Sumitomo Electric Industries

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Naoya Omori

Sumitomo Electric Industries

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