Hot Water Jet Erosion Characteristics of Ti-Ni Shape Memory Alloys
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概要
- 論文の詳細を見る
- Japan Institute of Metalsの論文
- 2002-05-01
著者
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Niu Li-bin
Faculty Of Engineering Shinshu University
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SAKUMA Toshio
Central Research Institute of Electric Power Industry
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SAKAI Yoshihiro
Fuji Electric Co., Ltd.
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KYOUGOKU Hideki
Faculty of Engineering, Kinki University
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TAKAKU Hiroshi
Faculty of Engineering, Shinshu University
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Takaku Hiroshi
Faculty Of Engineering Shinshu University
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Kyougoku Hideki
Faculty Of Engineering Kinki University
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Sakai Yoshihiro
Fuji Electric Co. Ltd.
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NIU Li-Bin
Faculty of Engineering, Shinshu University
関連論文
- Hot Water Jet Erosion Characteristics of Ti-Ni Shape Memory Alloys
- Tensile Fracture Behaviors in Double-notched Thin Plates of a Ductile Steel
- Initiation and Growth Behavior of Creep Voids in an Austenitic Steel with High Ductility under Multi-axial Stresses
- Creep Rupture Properties of an Austenitic Steel with High Ductility under Multi-axial Stresses
- Effect of Stress States on Creep Fracture Modes of an Austentic Steel with High Ductility
- Effect of Copper Content on Superelasticity Characteristics in Ti-Ni and Ti-Ni-Cu Alloy Wires
- A New Constitutive Equation for Superelastic Deformation and Prediction of Martensite Volume Fraction in Titanium-Nickel-Cupper Shape Memory Alloy
- Effect of Cyclic Deformation on Thermo-Mechanical Characteristics in Ti-Ni-Cu Alloy Wires with Various Copper Contents
- A New Fatigue Model for Titanium-Nickel-Cupper Shape Memory Alloy Subjected to Superelastic Cyclic Deformation
- D313 CORROSION RESISTANCE OF MATERIALS FOR GEOTHERMAL STEAM TURBINES
- E-2 TENSION-TORSION CREEP FRACTURE BEHAVIORS OF NOTCHED SPECIMENS OF AUSTENITIC STEEL SUS310S(Session: Thermal Fatique/Creep)
- Output Power Characteristics of Reciprocating Heat Engine Using Shape Memory Alloy
- Probabilistic Estimation of the Degradation of Function and Strength of Ti-41.7Ni-8.5Cu (at%) Shape Memory Alloys under Thermo-Mechanical Cyclic Conditions
- Effects of Cold Working and Heat Treatment on Transformation Temperature of Ti-41.7Ni-8.5Cu (at%) Shape Memory Alloy and Its Probabilistic Prediction
- Working Characteristics of a Reciprocating-Type Heat Engine Using Shape Memory Alloys
- Accelerated Corrosion Behavior due to Alternating Dry-Wet Conditions for LP Steam Turbine Materials of Fossil Power Plants
- Tension-Torsion Creep Fracture Behaviors of Notched Specimens of Austenitic Steel SUS310S
- 212 Fabrication of Ti-Ni-Cu Shape Memory Alloys by Spark-Plasma Sintering and Their Shape Memory Characteristics