Iwatsubo Takuzo | Faculty Of Engineering Kobe University
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概要
関連著者
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Iwatsubo Takuzo
Faculty Of Engineering Kobe University
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IWATSUBO Takuzo
Faculty of Engineering, Kobe University
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Kawai Ryoji
Faculty Of Engineering Kobe University
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Kawamura Shozo
Faculty Of Engineering Kobe University
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IWATSUBO Takuzo
Department of Mechanical Engineering, Faculty of Engineering, Kobe University
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Iwatsubo Takuzo
Department Of Mechanical Engineering Kobe University
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SUGANO Toshihiko
Fujitsu Limited
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Iwatsubo T
Department Of Mechanical Engineering Faculty Of Engineering Kobe University
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NAKAGAWA Takao
Faculty of Engineering, Kobe University
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Oks Aleksander
Faculty of Technical Appliances and Automation, Riga Technical University
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Tsyfanskii Semyon
Faculty of Technical Appliances and Automation, Riga Technical University
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Nakagawa Takao
Faculty Of Engineering Kobe University
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Oks Aleksander
Faculty Of Technical Appliances And Automation Riga Technical University
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Tsyfanskii Semyon
Faculty Of Technical Appliances And Automation Riga Technical University
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Ueno Masayuki
Faculty Of Engineering Osaka Electro-communication University
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Ueno Masayuki
Faculty Of Engineering Kobe University
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Nakagawa N
Faculty Of Integrated Arts And Sciences Hiroshima University
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Yang Bo
Graduate School Of Science And Technology Kobe University
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KAWAMURA Shozo
Faculty of Engineering, Kobe University
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NAKAGAWA Noritoshi
Faculty of Engineering, Hiroshima University
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SAHARA Shinsuke
Tsubakimoto Chain Co.,
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Yano Sumio
Faculty Of Engineering Fnkui University
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KAWAI Ryoji
Faculty of Engineering, Kobe University
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Kawai Ryoji
Faculty Of Engineering Kobe University.
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Kawai Ryoji
Faculty Of Engineering The Graduate School Of Science And Technology Kobe University
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Arii Shiro
Faculty Of Engineering Kobe University
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Sahara Shinsuke
Tsubakimoto Chain Co.
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ANDO Takashi
Hyogo Prefectrual Institute of Industril Research
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Iwatsubo Takuzo
Faculty Of Engineering Kobe University.
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Oks Borisovitch
Laboratory Of Machine Dynamics Riga Technical University
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FENG Keqi
Faculty of Engineering, Kobe University
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Kanemori Yuji
R & D Dept., Torishima Pump Mfg. Co., Ltd.,
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KANEMORI Yuji
R&D Dept., Torishima Pump Mfg. Co., Ltd.
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ARII Shirou
The Graduate School of Science and Technology, Kobe University
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IBUKI Tatsuhiro
Division of Mechanical Engineering, Graduate School of Science and Technology, Kobe University
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OMORl Toshiji
Kobe Technical Institute, Mitsubishi Heavy Industries, Ltd.
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IIDA Seiichi
Kobe Technical Institute, Mitsubishi Heavy Industries, Ltd.
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MORI Hiroyuki
Faculty of Engineering, Kobe University
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SHIMBO Kenichi
Faculty of Engineering, Kobe University
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Yano Sumio
Faculty Of Human Development Kobe University
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Kanemori Y
Torishima Pump Mfg. Co. Ltd. Osaka Jpn
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Kanemori Yuji
R & D Dept. Torishima Pump Mfg. Co. Ltd.
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Mori Hiroyuki
Faculty Of Engineering Kobe University
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Nakagawa Noritoshi
Faculty Of Engineering Hiroshima University
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Feng Keqi
Faculty Of Engineering Kobe University
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Arii Shirou
The Graduate School Of Science And Technology Kobe University
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Iida Seiichi
Kobe Shipyard Mitsubishi Heavy Industries Ltd
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Omorl Toshiji
Kobe Technical Institute Mitsubishi Heavy Industries Ltd.
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Shimbo Kenichi
Faculty Of Engineering Kobe University
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Ibuki Tatsuhiro
Division Of Mechanical Engineering Graduate School Of Science And Technology Kobe University
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Iwatsubo Takuzo
Faculty Of Engineering The Graduate School Of Science And Technology Kobe University
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Iwatubo Takuzo
Faculty of Engineering, Kobe University
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Iwatsubo Takuzo
Faculty of Engineering, Kobe University,
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Ando Takasi
Hyogo Prefectrual Institute of Industril Research
著作論文
- Condition Monitoring and Diagnosis System of Rotating Machinery
- Analysis of Transient Sound Energy Flow in Impact Noise
- A Study on the Dynamic Characteristics of Pump Seal : 1st Report, In case of Annular Seal with Eccentricity
- Reliability Analysis of Structures under Seismic Excitation : Part III : Comparison of reliabilities obtained by first passage failure method and cumulative damage failure method
- Reliability Analysis of Structures under Seismic Excitation : Part II : Reliability by cumulative damage failure method
- Reliability Analysis of Structures under Seismic Excitation : Part I : Response ratio of structure having bi-linear spring behavior
- Suppression Phenomena of Resonant Oscillations in Strongly Nonlinear Systems due to Additional Asynchronous Excitations
- Asynchronous Stabilization Phenomena of Resonant Oscillations in Nonlinear Systems
- Obtaining a Model and Control for a Rigid Body Motion System : (Obtaining Inertia Parameters of a Rigid Body and Electromagnetic Characteristics for a Magnetic Levitation System)
- A Computer-Aided-Design Technique for Design of a Six-Section Elliptic Tire-Building Drum
- Rotordynamic Analysis of Submerged Motor Pumps : Influence of Long Seal on the Stability of Fluid Machinery
- Experimental Study of Dynamical Charateristics of a Long Annular Seal (In the Case of Concentric Rotor and Outer Cylinder)
- Coupled Lateral-torsional Vibration of Rotor System Trained by Gears : part 1. Analysis by Transfer Matrix Method
- Selection of Satisfactory Fundamental Solution in Boundary Value Inverse Analysis by B.E.M.
- Detection of the Point Where Rubbing Occurs in a Multisupported Rotor System
- Balancing of Flexible Rotors by Using Flexible Bearing Pedestals
- Balancing of Flexible Rotors
- Reliability Design of the Piping System against Earthquake Excitation
- The Study of Nonlinear Vibration Analysis of Rotor System Using Component Mode Synthesis Method(Analysis Using the Harmonic Balance Method)