Lui Truan‐sheng | Department Of Materials Science And Engineering National Cheng Kung University
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概要
関連著者
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Lui Truan‐sheng
Department Of Materials Science And Engineering National Cheng Kung University
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Lui Truan-sheng
Department Of Material Science And Engineering National Cheng Kung University
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Lui T‐s
National Cheng Kung Univ. Tainan Twn
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Chen Li-hui
Department Of Materials Science And Engineering National Cheng Kung University
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Chen L‐h
National Cheng Kung Univ. Tainan Twn
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Hung Fei-yi
Department Of Material Science And Engineering National Cheng Kung University
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Lui Truan-sheng
Department Of Materials Science And Engineering National Cheng Kung University
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Hung Fei-yi
Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technolog
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Chen Li‐hui
Dep. Of Materials Sci. And Engineering National Cheng Kung Univ.
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Hung Fei-yi
Inst. Of Nanotechnology And Microsystems Engineering National Cheng Kung Univ.
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Chen Li‐hui
Department Of Materials Science And Engineering National Cheng Kung University
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CHEN Li-Hui
Department of Materials Science and Engineering, National Cheng Kung University
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Chen Li-hui
Dep. Of Materials Sci. And Engineering National Cheng Kung Univ.
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Hung Fei-yi
Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technolog
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HUNG Fei-Yi
Department of Materials Science and Engineering, National Cheng Kung University
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Wang Chih-hsien
Department Of Materials Science And Engineering National Cheng Kung University
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Wu Chao-han
Department Of Materials Science And Engineering National Cheng Kung University
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CHEN Ssu-Ta
Department of Materials Science and Engineering, National Cheng Kung University
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Chen Ssu-ta
Department Of Materials Science And Engineering National Cheng Kung University
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Lan Gong-an
Department Of Materials Science And Engineering National Cheng Kung University
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Lui Truan-sheng
Dep. Of Materials Sci. And Engineering National Cheng Kung Univ.
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WU Chao-Han
Department of Materials Science and Engineering, Center for Micro/Nano Science and Technology, Natio
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YANG Chung-Wei
Department of Materials Science and Engineering, National Cheng Kung University
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Yang Chung-wei
Department Of Materials Science And Engineering National Cheng Kung University
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Chou Chien-chih
Department Of Material Science And Engineering National Cheng Kung University
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Chang Shoou-jinn
Institute Of Electro-optical Science And Engineering Center For Micro/nano Science And Technology Na
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Yang Chung-wei
Department Of Materials Science And Engineering National Formosa University
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LAN Gong-An
Department of Materials Science and Engineering, National Cheng Kung University
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Ku Ming-hsiang
Department Of Materials Science And Engineering National Cheng Kung University
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Hung Fei‐yi
Department Of Material Science And Engineering National Cheng Kung University
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Ku Ming-hsiang
Department Of Materials Science And Engineering Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technology National Cheng Kung University
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WANG Chih-Hsien
Department of Materials Science and Engineering, National Cheng Kung University
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LIN Yi-Chang
Department of Materials Science and Engineering, National Cheng Kung University
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JUO Jiun-Yu
Department of Materials Science and Engineering, National Cheng Kung University
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ZHUANG Kai-Jie
Department of Materials Science and Engineering, Center for Micro/Nano Science and Technology, Natio
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GU Zhi-Feng
Department of Materials Science and Engineering, National Cheng Kung University
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CHEN Ping-Hui
Department of Materials Science and Engineering, National Cheng Kung University
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LAN Kung-An
Department of Materials Science and Engineering, National Cheng Kung University, Center for Micro/Na
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CHAN Cheng-Wei
Department of Materials Science and Engineering, National Cheng Kung University
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YOU Ji-Ge
Department of Materials Science and Engineering, National Cheng Kung University
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LIAO Hung-Chi
Department of Materials Science and Engineering, National Cheng Kung University
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WANG Yuan-Tin
Department of Materials Science and Engineering, National Cheng Kung University
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CHEN Puo-Sheng
Department of Materials Science and Engineering, National Cheng Kung University
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Juo Jiun-yu
Department Of Materials Science And Engineering National Cheng Kung University
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Lin Yi-chang
Department Of Materials Science And Engineering National Cheng Kung University
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Lan Kung-an
Department Of Materials Science And Engineering National Cheng Kung University Center For Micro/nano
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Chen Puo-sheng
Department Of Materials Science And Engineering National Cheng Kung University
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Gu Zhi-feng
Department Of Materials Science And Engineering National Cheng Kung University
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Liao Hung-chi
Department Of Materials Science And Engineering National Cheng Kung University
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Zhuang Kai-jie
Department Of Materials Science And Engineering Center For Micro/nano Science And Technology Nationa
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Wang Yuan-tin
Department Of Materials Science And Engineering National Cheng Kung University
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Chen Ping-hui
Department Of Materials Science And Engineering National Cheng Kung University
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Chan Cheng-wei
Department Of Materials Science And Engineering National Cheng Kung University
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You Ji-ge
Department Of Materials Science And Engineering National Cheng Kung University
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Hu Zhan-shuo
Institute Of Electro-optical Science And Engineering Center For Micro/nano Science And Technology Na
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Chen Kuan-jen
Institute Of Microelectronics National Cheng Kung University
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Chen Kuan-jen
Institute Of Mechanical And Electromechanical Engineering National Formosa University
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KU Ming-Hsiang
Department of Materials Science and Engineering, National Cheng Kung University
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CHUANG Hsu-Chi
Department of Materials Science and Engineering, National Cheng Kung University
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XIAO Ren-Syuan
Institute of Nanotechnology and Microsystems Engineering, Center for Micro/Nano Science and Technolo
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TSENG Yi-Wei
Institute of Nanotechnology and Microsystems Engineering, Center for Micro/Nano Science and Technolo
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Xiao Ren-syuan
Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technolog
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Tseng Yi-wei
Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technolog
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Chuang Hsu-chi
Department Of Materials Science And Engineering National Cheng Kung University
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Chen Yen-ting
Department Of Materials Science And Engineering Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technology National Cheng Kung University
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Chiang Wen-ting
Department Of Materials Science And Engineering Institute Of Nanotechnology And Microsystems Engineering Center For Micro/nano Science And Technology National Cheng Kung University
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Lin Yi-Chang
Department of Electronic Engineering, Ching Yun University, Jhongli 32097, Taiwan
著作論文
- Examination of the Tensile Deformation Resistance and Ductility of Friction Stir Processed Al-Cu 2218 Alloy at Elevated Temperatures
- The Charge-Discharge Characteristics of Woody Carbon Modified with Fe_3O_4 Nano Phase Using the Hydrothermal Method
- Microstructural Characteristics and the Charge-Discharge Characteristics of Sn-Cu Thin Film Materials
- Electric Flame-Off Characteristics and Fracture Properties of 20μm Thin Copper Bonding Wire
- Weibull Statistics for Evaluating Failure Behaviors and Joining Reliability of Friction Stir Spot Welded 5052 Aluminum Alloy
- Mechanical Properties and Resonant Characteristics of Friction Stirred AZ31-Mg Alloy
- The Recrystallization of Microelectronic Lead-Free Solders
- Influence of Ga addition on Microstructure, Tensile Properties and Surface Oxide Film Characteristics of Microelectronic Sn-9Zn-xGa Solders
- Microstructures and Fusing Electrical Current of Microelectronic Sn-9Zn-(0.25RE) Solders
- Deformation Fracture Characteristics of Microelectronic Sn-3.0Ag-0.5Cu-xNi Solders
- The Effect of Electrical Current on Tensile Properties and Vibration Characteristics of Sn-9Zn-1Cu Lead-Free Solder
- Electrochemical Characteristics of LiMn_2O_4 (Li/Ni) Cathode Materials
- Recrystallization Effect and Electric Flame-Off Characteristic of Thin Copper Wire
- Thin Film Characteristics of Sn-3.5Ag-(2.0Cu) Alloy
- Phase Transformation of an Austempered Ductile Iron during an Erosion Process
- Effect of Austempering Duration on Erosion Wear Resistance of ADI by Al_2O_3 Particle
- The Microstructural Effects on Tensile Properties and Erosion Wear Resistance in Upper Bainitic ADI Related to Variation in Silicon Content
- Effect of Morphology and Si Content on SiO_2 Particle Erosion of Full Pearlitic Spheroidal Graphite Cast Iron
- Effect of Si Content on SiO_2 Particle Erosion of Spheroidal Graphite Cast Iron
- Effect of Revolutionary Pitch on the Microhardness Drop and Tensile Properties of Friction Stir Processed 1050 Aluminum Alloy
- Microstructural Stability of Friction Stirred AA 2218 Alloy on Tensile Properties at Elevated Temperature
- Variation of Microstructure and Electrical Conductivity of Amorphous AgInSbTe and SbTe Films during Crystallization
- Activation Energy of AgInSbTe Film through Isothermal Sheet Resistance Measurements
- Microstructures and the Charge-Discharge Characteristics of Advanced Al-Si Thin Film Materials
- Embrittlement Mechanism on Tensile Fracture of 7075 Al Alloy with Friction Stir Process (FSP)
- Effect of the Twins on Mechanical Properties of AISI 304 Stainless Steel Wire Using Electrical Current Method
- Effect of Zinc Content on Microstructural Evolution and Electrification-Fusion-Induced Failure Mechanism of Sn-xZn Alloys
- Structural Effects and Charge-Discharge Characteristics of Mg-C/Mg-Li Alloy Thin Film Materials
- The Bias-Crystallization Mechanism on Structural Characteristics and Electrical Properties of Zn-In-Sn-O Film
- The Role of Eutectic Phase and Acicular Primary Crystallized Zn Phase on Electrification-Fusion Induced Fracture of Sn-xZn Solder Alloys
- Effects of Vacuum Annealing on the Charge-Discharge Characteristics of Eutectic Al-Si/Al Thin Film as Anode Material for Li-Ion Batteries
- Electric Current-Induced Liquation Features of Cast Pure Tin
- Microstructural Effects of Zn/Mg Ratio and Post Heat Treatment on Tensile Properties of Friction Stirred Process (FSP) Al-xZn-yMg Alloys
- Microstructural Characteristics of InGaZnO Thin Film : Using an Electrical Current Method