Guyomar Daniel | Laboratoire de Génie Electrique et de Ferroélectricité, Institut National des Sciences Appliquées de Lyon, 8 rue de la Physique, 69621 Villeurbanne Cedex, France
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概要
- Guyomar Danielの詳細を見る
- 同名の論文著者
- Laboratoire de Génie Electrique et de Ferroélectricité, Institut National des Sciences Appliquées de Lyon, 8 rue de la Physique, 69621 Villeurbanne Cedex, Franceの論文著者
関連著者
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Guyomar Daniel
Laboratoire de Génie Electrique et de Ferroélectricité, Institut National des Sciences Appliquées de Lyon, 8 rue de la Physique, 69621 Villeurbanne Cedex, France
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Guyomar Daniel
Laboratoire De Genie Electrique Et Ferroelectricite
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Guyomar Daniel
Laboratoire De Genie Electrique Et Ferroelectricite (lgef) Insitut National Des Sciences Appliquees
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Nishi Yoshitake
Graduate School Of Engineering Tokai University
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Guyomar Daniel
Lab. De Genie Electrique Et Ferroelectricite (lgef) Inst. National Des Sciences Appliquees De Lyon (
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NISHI Yoshitake
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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Yuse Kaori
Laboratoire De Genie Electrique Et Ferroelectricite (lgef) Institut National Des Sciences Appliquees
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神田 昌枝
東海大学大学院工学研究科金属材料工学専攻
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Kanda Masae
Graduate School Of Engineering Tokai University
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Kanda Masae
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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Nishi Yoshitake
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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Lebrun Laurent
Laboratoire De Genie Electrique Et Ferroelectricite (lgef) Institut National Des Sciences Appliquees
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Nishi Yoshitake
Dep. Of Sci. And Technol. Doctoral Graduate School Of Sci. And Engineering Tokai Univ.
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YUSE Kaori
Laboratoire de Genie Electrique et Ferroelectricite (LGEF)
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Lebrun Laurent
Laboratoire de Génie Electrique et Ferroélectricité, INSA de Lyon, bât Gustave Ferrié, 8 rue de la physique, Villeurbanne Cedex 69621, France
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YUSE Kaori
Laboratoire de Genie Electrique et Ferroelectricite (LGEF), Insitut National des Sciences Appliquees
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Guiffard Benoit
Laboratoire De Genie Electrique Et Ferroelectricite (lgef) Institut National Des Sciences Appliquees
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Nishi Yoshitake
Department Of Materials Science Tokai University
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Nishi Yoshitake
Department Materials Science Tokai University
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KANDA Masae
Laboratoire de Genie Electrique et Ferroelectricite (LGEF)
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Guiffard Benoit
Laboratoire de Génie Electrique et Ferroélectricité, INSA de Lyon, bât Gustave Ferrié, 8 rue de la physique, Villeurbanne Cedex 69621, France
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SEBALD Gael
Institute of Fluid Science, TOHOKU University
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OKAWA Junya
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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KANDA Masae
Laboratoire de Genie Electrique et Ferroelectricite (LGEF), Insitut National des Sciences Appliquees
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EBIHARA Yoshihide
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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UCHIDA Haru-Hisa
Department of Human Developments, Tokai University
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KUNIKYO Nobuaki
Graduate School of Engineering, Tokai University
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LEBRUN Laurent
Laboratoire de Genie Electrique et Ferroelectricite (LGEF), Institut National des Sciences Appliquee
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Sebald Gael
東北大
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Okawa Junya
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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Uchida Haru-hisa
Department Of Human Developments Tokai University
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Uchida Haru-hisa
Department Of Human Development Faculty Of Humanity And Culture Tokai University
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Kunikyo Nobuaki
Graduate School Of Engineering Tokai University
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Ebihara Yoshihide
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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GUIFFARD Benoit
Laboratoire de Genie Electrique et Ferroelectricite (LGEF)
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Guyomar Daniel
Lgef Insa Lyon
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QIU Jinhao
Institute of Fluid Science, TOHOKU University
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SUKIGARA Tohru
Honda R&D Co., Ltd. Tochigi R&D Center
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SHIMAZU Akio
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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SUENAGA Ryuichi
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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KUBO Daiji
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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SEBALD Gael
Tohoku University
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GUYOMAR Daniel
Insa de Lyon
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裘 進浩
東北大学流体科学研究所
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NISHI Yoshitake
Graduate School of Engineering, Tokai University
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KANDA Masae
Graduate School of Engineering, Tokai University
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KUNIKYOH Nobuhiro
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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KANDA Masae
Department of Metallurgical Engineering, Graduate School of Engineering, Tokai University
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IWATA Keisuke
School of Science and Technology, Tokai University
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GUIFFARD Benoit
Laboratoire de Genie Electrique et Ferroelectricite (LGEF), Institut National des Sciences Appliquee
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Richard Claude
Laboratoire De Genie Electrique Et Ferroelectricite
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裘進 浩
東北大学流体科学研究所
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Qiu Jinhao
Institute Of Fluid Science Tohoku University
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Iwata Keisuke
School Of Science And Technology Tokai University
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Qiu J
Institute Of Fluid Science Tohoku University
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MAGNET Christophe
Laboratoire de Genie Electrique et Ferroelectricite
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LEFEUVRE Elie
Laboratoire de Genie Electrique et Ferroelectricite
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Kubo Daiji
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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Shimazu Akio
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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Sukigara Tohru
Honda R&d Co. Ltd. Tochigi R&d Center
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Suenaga Ryuichi
Department Of Metallurgical Engineering Graduate School Of Engineering Tokai University
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GUYOMAR Daniel
Laboratoire de Genie Electrique et Ferroelectricite (LGEF)
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Qiu Jinhao
Intelligent System Laboratory, Institute of Fluid Science, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan
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Sebald Gael
Intelligent System Laboratory, Institute of Fluid Science, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan
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Hoshi Daisuke
Intelligent System Laboratory, Institute of Fluid Science, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan
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Boucher Eric
Laboratoire de Génie Electrique et Ferroélectricité, INSA de Lyon, bât Gustave Ferrié, 8 rue de la physique, Villeurbanne Cedex 69621, France
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LEBRUN Laurent
Laboratoire de Genie Electrique et Ferroelectricite (LGEF)
著作論文
- Giant Bending Strain of Reversible Motion of Uni-Morph Soft Mover Composites Driven by Hydrogen Storage Alloy Powders Dispersed in Polyurethane Sheet
- Hysteresis cancellation using self-sensing actuation in a multistack actuator
- Reversible Bending Motion of Unimorph Composites Driven by Combining LaNi_5 Alloy Powders Dispersed Polyurethane and Thin Supporting Copper Sheet under Partial Hydrogen Gas Pressure
- Impact Value of High Electric Conductive ABS Composites with Copper Powder Dispersion Prepared by Solution-Cast Method
- High Electric Conductive PMMA Composites without Impact Value Decay by Dispersion of Copper Powder
- Smart piezoelectric transformer using a non linear output voltage processing technique
- Solidification Thickness Dependent Electrostriction of Polyurethane Films
- Modeling and Characterization of Piezoelectric Fibers with Metal Core
- Influence of the Niobium or Fluorine Dopant Concentration on the Properties of Mn-Doped Lead Zirconate Titanate Ceramics