Matsuda F | Osaka University
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概要
関連著者
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MATSUDA Fukuhisa
Osaka University
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Matsuda F
Osaka University
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Matsuda Fukuhisa
Osaka Univ.
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Ikeuchi K
Kyoto Univ. Kyoto Jpn
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Ikeuchi K
大阪大学接合科学研究所
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NAKAGAWA Hiroji
Osaka University
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IKEUCHI Kenji
Osaka University
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Kikuchi Y
Osaka Univ. Osaka Jpn
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Nakagawa H
Osaka Univ. Jpn
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KIKUCHI Yasushi
Osaka University
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USHIO Masao
Osaka University
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Ushio Masao
Osaka Univ. Osaka Jpn
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LIAO Jinsun
Osaka University
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Liao J
Kurimoto Ltd. Osaka Jpn
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KUSUMOTO Kazuomi
Osaka University
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KURODA Toshio
Osaka University
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Park Hwa
Pukyong National University
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Kuroda T
Osaka University
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Okada H
Manufacturing Department Kurimoto Ltd.
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PARK Hwa
Osaka University
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Fujihira S
Katayama Stra Techs. Ltd.
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OKADA Hitoshi
Kurimoto, Ltd.
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MATSUDA Fukuhisa
Welding Research Institute of Osaka University
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Hrivnak Ivan
Osaka University:technical Univ.
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Hrivnak Ivan
大阪大学溶接工学研究所:kosice工科大学
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Ikeuchi Kenji
Welding Research Institute Osaka University
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KOTANI Keiko
Osaka University
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Matsuda Fukuhisa
Welding Research Inst. Osaka Univ.
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Kotani Keiko
Osaka University:tokoname Ceramic Research Institute Of Aichi Prefecture
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Matsuda Fukuhisa
Welding Department Faculty Of Engineering Osaka University
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Sakaguchi Masaru
Central Research Laboratory Tsumura & Co.
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Sakaguchi Masaru
College Of Industrial Technology
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Li Zhong
Osaka University
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Jung J‐p
Department Of Materials Science & Engineering University Of Seoul
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Zhang Y‐c
Osaka Univ. Osaka Jpn
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Zhang Yue-chang
Osaka University:shanghai Jiao Tong Univ.
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Hatanaka A
Katayama Stra Techs Ltd.
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Magula Vladimir
Osaka University:wri Czechoslovakia
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Magula Vladimir
Osaka University
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LIU Wu
Osaka University
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LI Zhonglin
Osaka University
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Liu W
Osaka Univ. Osaka Jpn
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Honda Yoshiaki
Kurume Technical College
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KOHMOTO Hiroaki
Osaka Univ.
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Qian Z‐d
Tsinghua Univ. Beijing Chn
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Qian Zhong-dong
Osaka University
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Li Zhonglin
Osaka University:harbin Institute Of Technology
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Jung Jae-pil
Osaka University:university Of Seoul
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Tanabe Hiroki
Osaka University:(present Office)horiba Co. Ltd.
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Ohta Makoto
Osaka University
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KIKUCHI Yasushi
Welding Research Institute, Osaka University
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OKABE Takatoshi
Osaka University
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Okabe T
Osaka University
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Mori Kiyokazu
Nissan Motor Co. Ltd.
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MATSUDA Fukuhisha
Osaka University
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Ohta Makoto
Institute For Chemical Research Kyoto University
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Kohmoto Hiroaki
Osaka Univ.:(present Office)mitsubishi Metal Corporation
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TOMITA Shogo
Osaka Univ.
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Kikuchi Yasushi
Welding Research Institute Of Osaka Univ.
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TANABE Hiroki
Osaka University
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NAKATA Kazuhiro
Osaka university
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Hatanaka Akira
Katayama Stra Techs Ltd.
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Magula V
Osaka University:slovakia Welding Research Inst.
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HONDA Yoshioki
Kurume Technical College
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MATSUBARA Yasuhiro
Kurume Technical College
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Nakata Kazuhiro
Osaka Univ. Ibaraki
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SADEK Alber
Osaka University
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FUJII Hiroyuki
Graduate Student, Osaka University
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ISIDA Akiyoshi
Osaka University
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LIU Sung-Po
Osaka University
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SAKAGUCHI Masaru
Osaka University
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KOBAYASHI Masahiro
Hitachi Ltd.
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URAYAMA Yoshinori
Hitachi Ltd.
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KUNIYA Jirou
Hitachi Ltd.
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Liu Sung-po
Osaka University:(present Office)yokohama National Univ.
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FUJIHIRA Shoichiro
Production Engineering & Development Department, Head Works, Katayama Stratech Ltd.
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HATANAKA Akira
Production Engineering & Development Department, Head Works, Katayama Stratech Ltd.
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FUKADA Yasuto
Iron & Steel Research Laboratories, Sumitomo Metals Industry, Ltd.
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HORII Yukuhiko
Steel Research Laboratories, Nippon Steel Co.
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OKADA Hitoshi
Manufacturing Department, Kurimoto, Ltd.
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SHIWAKU Toyoaki
Steel Plate & Sheet Development Department, Kakogawa Works, Kobe Steel, Ltd.
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SHIGA Chiaki
Iron & Steel Research Laboratories, Kawasaki Steel Co.
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SUZUKI Shinichi
Materials and Processing Research Center, NKK Co.
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PARK Hwa-Soon
Pusan National Univ.
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FUJIHIRA Shoichiro
Osaka University
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FUJIHIRA Shoichiro
Katayama Stra Techs. Ltd.
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FUJIHIRA Shouichiro
Katayama Iron Works Ltd.
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HORINOUCHI Tsutomu
Osaka University
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ZHANG Yue-Chang
Shanghai Jiao Tong Univ.
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Fukada Y
Iron & Steel Research Laboratories Sumitomo Metals Industry Ltd.
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IWAGI Osamu
Osaka University
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MORI Koujirou
Osaka University
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Zhang Yue-chang
Osaka University
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MURAKAWA Toshihiro
Osaka Univ.
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YAMAGUCHI Michio
Yamagata Research Institute of Technology
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Shiwaku Toyoaki
Steel Plate & Sheet Development Department Kakogawa Works Kobe Steel Ltd.
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TSURUTA Sanae
Nippon Steel Corp.
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Fujii H
Sanyo Electric Co. Ltd.
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Horii Yukuhiko
Steel Research Laboratories Nippon Steel Co.:(present Office)japan Power Engineering And Inspection
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Kobayashi M
Hitachi Ltd.
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Shiga Chiaki
Iron & Steel Research Laboratories Kawasaki Steel Co.
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Matsubara Yasuhiro
Kurume National College Of Technology
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Suzuki Shinichi
Materials And Processing Research Center Nkk Co.
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HONDA Yoshioki
Kurume College of Technology
著作論文
- New Aspects of Sensitization Behavior in Recent 316 Type Austenitic Stainless SteelsAustenitic Stainless Steels(Materials, Metallurgy & Weldability)
- Microstructural Investigations on Decomposition Behaviour of M-A Constituent and Recovery of Ductility due to PWHT in Simulated HAZ of HSLA Steels(Materials, Metallugy & Weldability)
- Quantitative Evaluation of Solidification Brittleness of Weld Metal during Solidification by In-Situ Observation and Measurement (Report II) : Solidification Ductility Curves for Steels with the MISO Technique(Materials, Metallurgy & Weldability)
- Quantitative Evaluation of Solidification Brittleness of Weld Metal during Solidification by Means of In-Situ Observation and Measurement (Report I) : Development of the MISO Technique(Materials, Metallurgy & Weldability)
- Effect of Surface Coating around Tungsten Electrode on Formation of "Rim"
- New Sintered Electrode of Ir-Y_2O_3 System for Air-Plasma Cutting(Materials, Metallurgy & Weldability)
- New Cathode Material for Air-Plasma Cutting (Report IV) : Direct Observation of Cathode Surface Erosion Process(Physics, Process, Instrument & Measurement)
- New Cathode Material for Air-Plasma Cutting (Report III) : Effect of Thermal and Electric Properties of Ru-Y_2O_3 on Electrode Consumption(Physics, Process, Instruments & Measurement)
- New Cathode Material for Air-Plasma Cutting (Report II) : Effect of Sintering Temperature on Electrode Consumption(Physics, Process, Instrument & Measurement)
- New Cathode Materials for Air-Plasma Cutting(Materials, Metallurgy & Weldability)
- Stress Corrosion Cracking Susceptibilities of Carbon Steel and its Welded Joint in High Temperature Water(Materials, Metallurgy & Weldability)
- Stress Corrosion Cracking Susceptibilities of Carbon Steels in High Temperature and High Pressure Water(Materials, Metallurgy & Weldability)
- Investigation of Metallography and Behavior of M-A Constituent in Weld HAZ of HSLA Steels(Materials, Metallurgy & Weldability)
- Nitrogen Content of 316L Weld Metal and Its Fine Particle by Means of High-pressure MIG Arc Welding
- Weldability of High Nitrogen Austenitic Stainless Steel Reports 2 : Nitrogen Absorption of 316L Weld Metal and Its fine particles in Extreme Environments(Materials, Metallurgy & Weldability)
- Microstructurs and Toughness of High Heat Input Electro-Slag Weld Metal of 50Kgf/mm^2 Class Constructional Steels(Materials, Metallurgy & Weldability)
- Effect of Oxide Morphology on Bond Strength of Diffusion-Bonded Interfaces of Al-Alloys(Materials, Metallurgy & Weldability)
- Interfacial Oxide in Diffusion-Bonded Joints of Al-Binary Alloys by Transmission Electron Microscopy(Materials, Metallurgy & Weldability)
- Behavior of Interfacial Oxide during Diffusion Bonding of Aluminum Alloys and Its Influence on Joint Strength(Materials, Metallurgy & Weldability)
- Toughness Characteristics and Its Improvement of Electroslag Weld Metal of Structural Steel Plate
- Effect of Temper-bead Thermal Cycle on Toughness of Weld ICCGHAZ of Low Alloy Steel SQV-2A
- Review of Mechanical and Metallurgical Investigations of M-A Constituent in Welded Joint in Japan
- Effect of M-A Constituent on Fracture Behavior of 780 and 980MPa Class HSLA Steels Subjected to Weld HAZ Thermal Cycles(Materials, Metallurgy & Weldability)
- Weld HAZ Toughness and Its Improvement in Low Alloy Steel SQV-2A for Pressure Vessels (Report 3) : Toughness Improvement by PWHT(Materials, Metallurgy & Weldability)
- Weld HAZ Toughness and Its Improvement of Low Alloy Steel SQV-2A for Pressure Vessels (Report 2) : Microstructure and Charpy Impact Behavior of Intercritically Reheated Coarse Grained Heat Affected Zone (ICCGHAZ)(Materials, Metallurgy & Weldability)
- Improvement of Toughness of Weld Metal by High Heat Input Electroslag Welding Process (Part 3)(Materials, Metallurgy & Weldability)
- Weld HAZ Toughness and Its Improvement of Low Alloy Steel SQV-2A for Pressure Vessels (Report 1) : Effect of cooling time on microstructure and Charpy impact value in single thermal cycle(Materials, Metallurgy & Weldability)
- New Internal Friction Peak in Hydrogenated Palladium(Materials, Metallurgy & Weldability)
- Characteristics for Solidification and Transformed Microstructure of Electroslag Weld Metal in Low Carbon Structural Steel(Materials, Metallurgy & Weldability)
- Proposal of TZT Diagram for Microstructural Analysis of Transition Zone in Dissimilar Metal Welding : Formation Mechanism of Austenite Coarse Grain-boundary as the Site of Disbonding between 2・1/4Cr-1Mo Steel and Type 309 Overlaid Metal(Materials, Metallu
- Proposal of New Bonding Technique "Instantaneous Liquid Phase (ILP) Bonding"(Physics, Process & Instrument)
- Investigation of M-A Constituent in High Strength Steel Welds
- Toughness Improvement of the HAZ for Machine Structural Carbon and Low Alloy Steels (Report 2) : Effect of Cooling Time and Isothermal Heating Treatment on Medium and High Carbon Low Alloy Steels(Materials, Metallurgy & Weldability)
- Toughness Improvement of the HAZ for Machine Structural Carbon and Low Alloy Steels (Report 1) : Effect of Cooling Time and Isothermal Heating Treatment on Medium and High Carbon Steels(Materials, Metallurgy & Weldability)
- Microstructure in Weld Heat-affected Zone of Beta Titanium Alloy(Materials, Metallugy & Weldability)
- Weld Cold Cracking in HAZ of Engineering Carbon and Low Alloy Steel (Report IV) : Susceptibility and Crack Free Condition to Quenching Crack Type Cold Cracking under Various Cooling Conditions(Materials, Metallurgy & Weldability)
- Weld Cold Cracking in HAZ of Engineering Carbon and Low Alloy Steel (Report III) : Effect of Chemical Composition on Cold Cracking Susceptibility of Quenching Crack Type(Materials, Metallurgy & Weldability)
- Weld Cold Cracking in HAZ of Engineering Carbon and Low Alloy Steel (Report II) : Applicability of Simulation Test for Cold Cracking of Quenching Crack Type(Materials, Metallurgy & Weldability)
- Weld Cold Cracking in HAZ of Engineering Carbon and Low Alloy Steel (Report I) : Behavior of Cracking in the RRC Test of SNCM439 and SK5(Materials, Metallurgy & Weldability)
- Quantitative Evaluation of Solidification Brittleness of Weld Metal during Solidification by In-Situ Observation and Measurement (Report IV) : Effect of Grain-Boundary Sliding on Strain-Rate Dependence of Critical Strain Required for Solidification Crack
- Proposal of Hydrogen Blistering Mechanism Associated with Disbonding between 2・1/4Cr-1Mo Steel and Type 309 Overlaid Metal
- Quantitative Evaluation of Solidication Brittleness of Weld Metal during Solidification by In-Situ Observation and Measurement (Report III) : Effect of Strain Rate on Minimum Ductility Required for Solidification Crack Initiation in Carbon Steels, Stainle