Tanaka Manabu | Joining And Welding Research Institute Osaka University
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概要
関連著者
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Tanaka Manabu
Joining And Welding Research Institute Osaka University
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Tanaka M
Joining And Welding Research Institute Osaka University
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TANAKA Manabu
Joining and Welding Research Institute, Osaka University
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TANAKA Manabu
Osaka university
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Ushio Masao
Joining And Welding Research Institute Osaka University
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USHIO Masao
Joining and Welding Research Institute, Osaka University
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Tanaka Manabu
Osaka Univ. Osaka Jpn
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Nogi K
Joining And Welding Research Institute Osaka University
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Nogi Kiyoshi
Osaka Univ. Osaka Jpn
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NOGI Kiyoshi
Joining and Welding Research Institute, Osaka University
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Lu Shanping
Joining and Welding Research Institute, Osaka University
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Ushio M
Osaka Univ.
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FUJII Hidetoshi
Joining and Welding Research Institute, Osaka University
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Fujii Hidetoshi
Joining And Welding Research Institute Osaka University
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Ushio Masao
Osaka Univ. Osaka Jpn
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Nogi Kiyoshi
Joining And Welding Researc Institute Osaka University
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USHIO Masao
Osaka University
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Lu Shanping
Joining And Welding Research Institute Osaka University
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Nogi Kiyashi
Osaka University
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TASHIRO Shinichi
Joining and Welding Research Institute, Osaka University
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TASHIRO Shinichi
Osaka university
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TERASAKI Hidenori
Osaka University
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SUGIYAMA Hiroyuki
Joining and Welding Research Institute, Osaka University
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Sugiyama Hiroyuki
Joining And Welding Research Institute Osaka University
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Tashiro Shinichi
Joining And Welding Research Institute Osaka University
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LOWKE John
CSIRO
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Lowke J.
Telecommunications And Industrial Physics Csiro
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YAMAZAKI Kei
Kobe Steel
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FUJII Hidetoshi
Osaka University
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NOGI Kiyoshi
Osaka University
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LU Shanping
Osaka University
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Yamamoto Kentaro
Joining And Welding Research Institute Osaka University
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Nakata Kazuhiro
Joining And Welding Res. Inst. Osaka Univ.
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Fujii Hidetoshi
Osaka Univ.
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NAKATA Kazuhiro
Joining and Welding Research Institute, Osaka University
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NAKATA Kazuhiro
Osaka university
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Murphy Anthony
Csiro
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YAMAMOTO Kentaro
Joining and Welding Research Institute, Osaka University
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MURPHY Anthony
CSIRO Materials Science and Engineering
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YAMAMOTO Eri
Kobe Steel
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SUZUKI Keiichi
Kobe Steel
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TERASAKI Hidenori
Joining and Welding Research Institute, Osaka University
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Naito Makio
Joining And Welding Res. Inst. Osaka Univ.
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Murai Kensuke
Photonics Research Institute National Institute Of Advanced Industrial Science And Technology
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Murai Kensuke
Photonics Research Institute National Institute Of Advanced Industrial Science And Technolog (aist)
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LOWKE John
Telecommunications and Industrial Physics, CSIRO
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TERASAKI Hidenori
Graduate school of Osaka University
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Lu oShanping
Joining and Welding Research Institute, Osaka University
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Hiroyuki Sugiyama
Osaka University
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Lu Oshanping
Joining And Welding Research Institute Osaka University
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Naito Makio
Joining And Wielding Research Institute Osaka University
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Nakata K
Osaka Univ. Osaka Jpn
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Nakata Kazuhiro
Joining And Welding Research Institute Osaka University
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Abe Hiroya
Joining And Welding Res. Inst. Osaka Univ.
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ABE Nobuyuki
Joining and Welding Research Institute, Osaka University
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Sugimoto Masaya
System Science And Technology Akita Prefectural University
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Terasaki Hidenori
Joining And Welding Research Institute Osaka University
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Takeda Koichi
System Devices Research Laboratories Nec Corporation
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TSUKAMOTO Masahiro
Joining & Welding Resarch Institute, Osaka University
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Iwao Toru
Tokyo City University
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Iwao Toru
Department Of Electrical And Electronic Engineering Musashi Institute Of Technology
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Lowke John
Csiro Telecommunications And Industrial Physics
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Lowke John
Telecommunications And Industrial Physics Csiro
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Naito M
Japan Fine Ceramics Center
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WU Chuan
Joining and Welding Research Institute, Osaka University
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Inaba Tsuginori
Department Of Electrical Electronic And Communication Engineering Chuo University
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YUMOTO Motoshige
Musashi Institute of Technology
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YUWOTO Motoshige
Musashi Institute of Technology
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NOMA Junichi
Joining and Welding Research Institute, Osaka University
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Tanaka Manabu
Dep. Of Mechanical Engineering Fac. Of Engineering And Resource Sci. Akita Univ.
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Noma Junichi
Joining And Welding Research Institute Osaka University
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Wu Chuan
Joining And Welding Research Institute Osaka University
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Tsukamoto Masahiro
Joining And Welding Research Institute Osaka University
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Abe Nobuyuki
Joining And Welding Research Institute Osaka University
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TAKAHASHI Hideyoshi
System Science and Technology, Akita Prefectural University
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Takahashi Hideyoshi
System Science And Technology Akita Prefectural University
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MORI Yusuke
Tokyo City University
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Abe Nobuyuki
Joining & Welding Resarch Institute Osaka University
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NOMA Junichi
Institute of Nanotechnology and Material Science, Kurimoto, LTD.
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Liu Zhongjie
Welding & Mechatronics Company Daihen Corporation
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MORI Yusuke
Musashi Institute of Technology
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IWO Toru
Musashi Institute of Technology
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YAMAMOTO Kentaro
Graduate school, Osaka University
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YAMAZAKI Kei
Welding Company, Kobe Steel, Ltd.
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YAMAMOTO Eri
Welding Company, Kobe Steel, Ltd.
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SUZUKI Keiichi
Welding Company, Kobe Steel, Ltd.
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MURPHY A.
CSIRO Materials Science and Engineering
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MIYATA Minoru
Joining and Welding Research Institute Osaka University
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Terasaki Hidenori
Joining And Welding Res. Inst. Osaka Univ.
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Ueyama Tomoyuki
Welding & Mechatronics Company Daihen Corporation
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ONO Kohei
Welding & Mechatronics Company, DAIHEN Corporation
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ERA Tetsuo
Welding & Mechatronics Company, DAIHEN Corporation
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Era Tetsuo
Welding & Mechatronics Company Daihen Corporation
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Yamamoto Kentaro
Graduate School Osaka University
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Takeda Koichi
System Science And Technology Akita Prefectural University
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Ono Kohei
Welding & Mechatronics Company Daihen Corporation
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SUGIYAMA Hiroyuki
Osaka University
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MURPHY A.
CSIRO
著作論文
- Metal Vapor Behavior in GTA Welding of a Stainless Steel Considering the Marangoni Effect
- Weld Shape Variation in Ar-O_2 and Ar-CO_2 Shielded GTA Welding(Physics, Processes, Instruments & Measurements)
- Interaction between shielding gas compositions and welding parameters in determining GTA weld shape
- 412 Effect of Welding Parameters on Weld Shape in Ar-O_2 Shielded GTA Welding
- Time Dependent Numerical Analysis of Stationary GTA Welding Process(Physics, Processes, Instruments & Measurements)
- Approach to Evaluations of High Temperature Materials Processing from A Computational Simulation of Arc-electrodes System
- Numerical Study of Stationary TIG Welding Process(Physics, Processes, Instruments & Measurements, INTERNATIONAL SYMPOSIUM OF JWRI 30TH ANNIVERSARY)
- Effects of Anode Heat Transfer on Weld Penetration in Gas Tungsten Arc Welding(Physics, Processes, Instruments & Measurements, INTERNATIONAL SYMPOSIUM OF JWRI 30TH ANNIVERSARY)
- Effect of Anode Heat Transfer on Melted Penetration in Welding Process by Free-burning Argon Arc
- Steady State Calculations of Stationary Gas Tungsten Arc Welding from A Unified Arc-Electrodes Model(Physics, Processes, Instruments & Measurements)
- Effects of Metal Vapor on Thermodynamic State in Helium GTA(Physics, Processes, Instruments & Measurements)
- Effects of Metal Vapor on Plasma State in Helium Gas Tungsten Arcs
- Effects of Oxygen Additions to Argon Shielding Gas on GTA Weld Shape
- 308 Mechanisms of Weld Shape Variation in CO_2 Shielding Gas Addition GTA Welding
- Marangoni Convection and Welding Penetration in A-TIG Welding(Physics, Processes, Instruments & Measurements, INTERNATIONAL SYMPOSIUM OF JWRI 30TH ANNIVERSARY)
- 220 Relationship between GTA Weld Shape and O_2 Content in Argon Shielding Gas
- Oxide Flux Quantity and Size Effects on the Penetration Depth in A-TIG Welding(Materials, Metallurgy & Weldability)
- Weld Penetration and Marangoni Convection with Oxide Fluxes in GTA Welding
- 324 Effect of Oxide Fluxes on the Penetration Depth in GTAW
- Numerical Analysis for Weld Formation Using a Free-Burning Helium Arc at Atmospheric Pressure(Advanced Fusion of Functional Fluids Engineering)
- Pulsed Laser Irradiation for Triggered Discharge in Arc Welding System
- Analytical Approach to Anode Boundary Layer of Gas Tungsten Arcs
- Effect of Pressure on the Behavior of Cathode Spots in Oxide Removal by Arc Discharge
- Influence of Hydrogen Induced Thermal Pinch on Nanoparticle Formation in Arc Plasma
- Effects of Metal Vapor for Temperature Distribution of Transient Arc in Pulsed TIG Welding
- Numerical Analysis of Metal Vapor Behavior with Multi-diffusion System in TIG Welding of Stainless Steel
- Numerical simulation of AC plasma arc welding
- Development of Plasma GMA welding system