Ueoka Tetsugi | Faculty Of Engineering High-tech Research Center Kanagawa University
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概要
関連著者
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Ueoka Tetsugi
Faculty Of Engineering High-tech Research Center Kanagawa University
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Ueoka T
Faculty Of Engineering High-tech Research Center Kanagawa University
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Tsujino Jiromaru
Faculty Of Electrical Engineering Kanagawa University
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Ueoka Tetsugi
Faculty Of Electrical Engineering Kanagawa University
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TSUJINO Jiromaru
Faculty of Electrical Engineering, Kanagawa University
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UEOKA Tetsugi
Faculty of Electrical Engineering, Kanagawa University
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Tsujino Jiromaru
Graduate School Of Engineering High-tech Research Center Kanagawa University
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Tsujino Jiromaru
Kanagawa Univ. Yokohama Jpn
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HONGOH Misugi
Faculty of Engineering, High-Tech Research Center, Kanagawa University
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Hongoh Misugi
Faculty Of Engineering High-tech Research Center Kanagawa University
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辻野 次郎丸
神奈川大学
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WATANABE Ichiro
Faculty of Engineering, Keio University.
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Watanabe I
Department Of Electrical And Electronic Engineering Faculty Of Engineering Kanazawa University
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Miura Hiroyuki
Faculty Of Engineering High-tech Research Center Kanagawa University
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Watanabe I
Sankyo Co. Ltd. Tokyo Jpn
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YOSHIKUNI Masafumi
Faculty of Engineering, High-Tech Research Center, Kanagawa University
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UEOKA Tetsugi
KANAGAWA University, Faculty of Engineering
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Yoshikuni Masafumi
Faculty Of Engineering High-tech Research Center Kanagawa University
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Karatsu Ryohei
Kanagawa University Faculty Of Engineering
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Watanabe Ichiro
Faculty Of Engineering Keio University
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辻野 次郎丸
神奈川大学・工学研究科
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Fujita Yuki
Faculty Of Engineering Kanagawa University
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DAIGO Hiroshi
Faculty of Engineering, Kanagawa University
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Aoyama Tohru
Graduate School of Engineering, High-Tech Research Center Kanagawa University
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Kyuzen Takafumi
Graduate School of Engineering, High-Tech Research Center Kanagawa University
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Ueoka Tetsugi
Graduate School Of Engineering High-tech Research Center Kanagawa University
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Aoyama Tohru
Graduate School Of Engineering High-tech Research Center Kanagawa University
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Daigo Hiroshi
Faculty Of Engineering Kanagawa University
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Nakahama Yoshinori
Faculty Of Engineering Kanagawa University
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TANAKA Shun
KANAGAWA Uuniversity, Faculty of Engineering
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KARATSU Ryohei
KANAGAWA Uuniversity, Faculty of Engineering
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KIKUCHI Yuya
Faculty of Engineering, High-Tech Research Center, Kanagawa University
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TSUBOI Shunichi
Faculty of Engineering, Kanagawa University
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Kyuzen Takafumi
Graduate School Of Engineering High-tech Research Center Kanagawa University
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Kikuchi Yuya
Faculty Of Engineering High-tech Research Center Kanagawa University
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Tsuboi Shunichi
Faculty Of Engineering Kanagawa University
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Tanaka Shun
Kanagawa University Faculty Of Engineering
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Koike Yuji
Faculty of Engineering, KANAGAWA University
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Suzaki Yoshifumi
Department Of Advanced Material Science Faculty Of Engineering Kagawa University
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Iwase Eri
Faculty Of Engineering Kanagawa University
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Koike Yuji
Faculty Of Engineering Univ. Kanagawa
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Mizuno K
Kanagawa Univ. Yokohama Jpn
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Suzaki Yukihide
Department Of Advanced Material Science Faculty Of Engineering Kagawa University
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SUZAKI Yukihide
Faculty of Engineering, Kanagawa University
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UCHIDA Kazutoshi
Faculty of Engineering, Kanagawa University
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ANDOH Akikazu
Faculty of Engineering, Kanagawa University
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Tsuboi Hidenori
Faculty Of Engineering Kanagawa University
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OGAWA Masato
Faculty of Engineering, Kanagawa University
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HIRASAWA Masakazu
Faculty of Engineering, Kanagawa University
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Mizuno Keisuke
Faculty Of Engineering Kanagawa University
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NAKAHARA Yoshinori
Faculty of Engineering, Kanagawa University
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KYUZEN Takafumi
KANAGAWA University, Faculty of Engineering
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Doi TAKAHARU
KANAGAWA University, Faculty of Engineering
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Ueoka Tetsugi
Graduate School of Engineering, High-Tech Research Center Kanagawa University
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Ogawa Masato
Faculty Of Engineering Kanagawa University
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Andoh Akikazu
Faculty Of Engineering Kanagawa University
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Doi Takaharu
Kanagawa University Faculty Of Engineering
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Aoyama Tohru
Faculty of Engineering, KANAGAWA University
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Karatsu Ryohei
Faculty of Engineering, KANAGAWA University
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TSUJINO Jiromaru
Facalty of Engineering, High-Tech Research Center, Kanagawa University
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FUKAZU Yasuo
Faculty of Engineering, Kanagawa University
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Fukazu Yasuo
Faculty Of Engineering Kanagawa University
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Uchida Kazutoshi
Faculty Of Engineering Kanagawa University
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Hirasawa Masakazu
Faculty Of Engineering Kanagawa University
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Karatsu Ryohei
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
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Aoyama Tohru
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
著作論文
- Frequency Characteristics of Ultrasonic Plastic Welding : 27kHz to 180kHz Ultrasonic Plastic Welding Systems(Advanced Technology of Vibration and Sound)
- 119 FREQUENCY CHARACTERISTICS OF ULTRASONIC PLASTIC WELDING : 27kHz TO 180kHz ULTRASONIC PLASTIC WELDING SYSTEMS(O.S.1 Usage of Sound Energy)
- P2-66 Temperature Distributions of Welding Specimens Using Various Frequency Ultrasonic Plastic Welding Systems(Short presentation for poster)
- Studies on Ultrasonic Butt Welding System Using A Large Capacity Static Induction Thyristor Power Amplifier : High Power Ultrasonics
- Welding Characteristics of 40 kHz Ultrasonic Plastic Welding System Using Fundamental and Higher-Resonance-Frequency Vibrations
- Ultrasonic Butt Welding of Aluminum, Copper and Steel Plate Specimens
- Ultrasonic Butt Welding of Large Metal Plates by Shiftirng Welding Tip Driving Position
- Studies on Ultrasonic Butt Welding Using 19 kHz Vibration Systems : High Power Ultrasonics
- P3-65 Vibration and Welding Characteristics of a 27 kHz Complex Vibration Source Using Longitudinal vibration disk and Six Bolt-clamped Langevin Type PZT Transducers(Poster session 3)
- P3-59 Vibration and Welding Characteristics of a Complex Vibration Source Using a (1,1) Transverse Vibration Disk with 40-mm-Diameter Bolt-clamped Langevin Type PZT Transducers(Poster session 3)
- P3-64 Vibration Characterisitics and Dimensions of Diagonal Slits for a 27 kHz Ultrasonics Vibration Converter(Poster session 3)
- P3-63 Vibration and Welding Characteristics of a 27 kHz Complex Vibration Source Using a (2,1) Transverse Vibration Disk and Six Bolt-clamped Langevin Type PZT transducers(Poster session 3)
- P3-61 Configuration of a 20 kHz Ultrasonic Complex Vibration Welding System Using a Transverse Vibration Welding Tip and a Complex Vibration Converter with Diagonal Slits(Poster session 3)
- Configurations of Large Capacity Ultrasonic Complex Vibration Sources with Complex Transverse Vibration Rods and a Disk with Multiple Transducers(Advanced Technology of Vibration and Sound)
- 211 CONFIGURATIONS OF LARGE CAPACITY ULTRASONIC COMPLEX VIBRATION SOURCES WITH COMPLEX TRANSVERSE VIBRATION RODS AND A DISK WITH MULTIPLE TRANSDUCERS(O.S.5 Advanced Technology for Usage of Sound and Vibration I)
- Ultrasonic Butt Welding of Anticorrosive Aluminum and Copper Plate Specimens : High Power Ultrasonics
- Driving and Welding Characteristics of An Ultrasonic Butt Welding System Using A Large Capacity Power Amplifier : High Power Ultrasonics