SOYAMA Hitoshi | Department of Nanomechanics Tohoku University
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概要
関連著者
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SOYAMA Hitoshi
Department of Nanomechanics Tohoku University
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Takakuwa Osamu
Department Of Medical Oncology And Immunology Nagoya City University Graduate School Of Medical Scie
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Saka Masumi
Department Of Machine Intelligence & Systems Engineering Graduate School Of Engineering Tohoku U
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Soyama Hitoshi
Associate Professor Department Of Engineering Tohoku University
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Sekine Yuichi
Department Of Immunology Graduate School Of Pharmaceutical Sciences Hokkaido University
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祖山 均
東北大
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坂 真澄
東北大
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SAKA Masumi
Department of Nanomechanics, Tohoku University
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Sekine Yuichi
Department Of Nanomechanics Tohoku University
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Sasaki Kei
Tohoku University
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Odhiambo Dan
Tohoku University
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坂 真澄
東北大学大学院工学研究科
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Fujii Masahiro
Graduate School Of Natural Science And Technology Okayama University
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SEKI Masanori
Graduate School of Natural Science and Technology, Okayama University
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YOSHIDA AKIRA
Department of Radiological Sciences, Hiroshima Prefectural College of Health Science
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坂 真澄
東北大学大学院
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Saka Masumi
Dept. Of Mechanical Engineering Tohoku Univ.
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Saito Kenichi
Department Of Veterinary Physiology Nippon Veterinary And Life Science University
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Soyama Hitoshi
Dept. Of Mechanical Engineering Tohoku Univ.
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SEKI Masanori
Department of Mechanical Engineering, Okayama University
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Nishimura Satoshi
Department Of Applied Chemistry And Chemical Engineering Graduate School Of Science And Engineering
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OYAMA Yosuke
Department of Nanomechanics, Tohoku University
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Seki Masanori
Department Of Mechanical Engineering Okayama University
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Seki Masanori
Department Of Bacteriology Faculty Of Medical Sciences Kyushu University
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SASAKI Kei
Department of Machine Intelligence & Systems Engineering, Graduate School of Engineering, Tohoku Uni
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ODHIAMBO Dan
Department of Machine Intelligence & Systems Engineering, Graduate School of Engineering, Tohoku Uni
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Oyama Yosuke
Department Of Nanomechanics Tohoku University
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Kumano Hiroyuki
Department Of Mechanical Engineering Tohoku University
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Saito Kenichi
Dept. Of Mechanical Engineering Tohoku Univ.
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Yoshida Akira
Department Of Mechanics And Robotics Hiroshima International University
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Yoshida Akira
Department Of Agricultural Chemistry Nagoya University
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Saito Kenichi
Department Of Kampo Medicinal Science Hokkaido College Of Pharmacy
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Sasaki Kei
Department of Clothing Japan Women's University
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SOYAMA Hitoshi
Department of Nanomechanics, Tohoku University
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TAKAKUWA Osamu
Department of Nanomechanics, Graduate School of Engineering, Tohoku University
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TAKAKUWA Osamu
Department of Nanomechanics, School of Engineering, Tohoku University
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NISHIE Naruto
Nakashima Propeller Co.,Ltd.
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KOBAYASHI Yuji
New Product Development Center, Sintokogio, Ltd.
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GOWA Daisuke
New Product Development Center, Sintokogio, Ltd.
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NAITO Akima
Graduate School of Tohoku University
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NAITO Akima
Department of Nanomechanics, Graduate School of Engineering, Tohoku University
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Saito Kenichi
Department of Chemistry, Faculty of Science, Hokkaido University
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KOZAI Seiya
Daikin Industries, Ltd.
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KAKUDA Masamitsu
Division of Mechanical and Systems Engineering, Graduate School of Okayama University
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NAGASAKA Kazuya
Department of Nanomechanics, Graduate School of Engineering, Tohoku University
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YAMAMIYA Kouhei
Department of Nanomechanics, Graduate School of Engineering, Tohoku University
著作論文
- Surface Modification of Alloy Tool Steel for Forging Dies by Cavitation Peening
- Cavitation Shotless Peening for Surface Modification of Alloy Tool Steel
- 402 Cavitation Shotless Peening for Surface Modification of Alloy Tool Steel
- GSD-03 IMPROVEMENT IN FATIGUE STRENGTH OF STEEL GEAR BY NEXT-GENERATION CAVITATION PEENING(GEAR STRENGTH AND DURABILITY, INCLUDING GEAR MATERIALS AND HEAT TREATMENT TECHNIQUES)
- Improvement of the Fatigue Strength of Stainless Steel SUS316L by a Cavitating Jet with an Associated Water Jet in Water
- Enhancing the Aggressive Strength of a Cavitating Jet and Its Practical Application
- Evaluation of Peening Intensity of Cavitation Shotless Peening by Using Almen Strip(Student Poster Session)
- Improvement in Fatigue Strength of Silicon Manganese Steel SUP7 by Using a Cavitating Jet
- Optimum Injection Pressure of a Cavitating Jet for Introducing Compressive Residual Stress into Stainless Steel
- Rolling Contact Fatigue Life of Steel Rollers Treated by Cavitation Peening and Shot Peening
- Evaluation of Stress Anisotropy and Shearing Stress Using an Eddy Current Method with a Tangential-Rectangular Coil
- Fatigue Strength of Steel Rollers and Gears Treated by Cavitation Peening with Short Processing Time (A Case of Processing Time of 1 min and 5 min) : (A Case of Processing Time of 1 min and 5 min)
- Similarity Law on Shedding Frequency of Cavitation Cloud Induced by a Cavitating Jet
- An Indicator for the Suppression of Fatigue Crack Growth by Hybrid Peening