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Effects of strain rate and temperature on the deformation and fracture behaviour of titanium alloy
Su Tang Chiou
, Hsien Lung Tsai
, Woei Shyan Lee
機械工程學系
研究成果
:
Article
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同行評審
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引文 斯高帕斯(Scopus)
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深入研究「Effects of strain rate and temperature on the deformation and fracture behaviour of titanium alloy」主題。共同形成了獨特的指紋。
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Keyphrases
Fracture Behavior
100%
Strain Rate
100%
Deformation Behavior
100%
Strain Rate Effect
100%
Titanium Alloy
100%
Flow Stress
33%
Strain Rate Sensitivity
33%
Activation Volume
33%
Temperature Rise
33%
Mechanical Properties
16%
Split Hopkinson Pressure Bar
16%
Increased Temperature
16%
Toughness
16%
Electron Microscopy Observations
16%
Enhanced Sensitivity
16%
Mechanical Fracture
16%
Volume Increase
16%
Fracture Strain
16%
Sensitivity Decrease
16%
Scanning Electron Microscopy
16%
Rate of Increase
16%
Stress Increment
16%
Optical Microscopy
16%
Fracture Surface
16%
Adiabatic Shear Band
16%
Fracture Feature
16%
Volume Decrease
16%
Optical Scanning
16%
Phase Transformation
16%
Ti Alloy
16%
Deformation Response
16%
Response Behavior
16%
Engineering
Fracture Behavior
100%
Strain Rate
100%
Effect of Strain
100%
Flow Stress
40%
Activation Volume
40%
Strain Rate Sensitivity
40%
Temperature Increase
40%
Split Hopkinson Pressure Bar
20%
Increasing Temperature
20%
Increasing Strain
20%
Rates of Strain
20%
Fracture Surface
20%
Constant Temperature
20%
Fracture Strain
20%
Strain Rate Increase
20%
Adiabatic Shear Band
20%
Deformation Response
20%
Material Science
Strain Rate
100%
Effect of Strain
100%
Fracture Behavior
100%
Titanium Alloy
100%
Density
11%
Scanning Electron Microscopy
11%
Adiabatic Shear Band
11%