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Evaluation of tensile static, dynamic, and cyclic fatigue behavior for a HIPed silicon nitride at elevated temperatures
Chih Kuang Jack Lin
, Michael G. Jenkins, Mattison K. Ferber
機械工程學系
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引文 斯高帕斯(Scopus)
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深入研究「Evaluation of tensile static, dynamic, and cyclic fatigue behavior for a HIPed silicon nitride at elevated temperatures」主題。共同形成了獨特的指紋。
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Engineering
Creep Rupture
100%
Cyclic Fatigue
100%
Tensiles
100%
Pressed Silicon Nitride
100%
Static Fatigue
100%
Dynamic Fatigue
100%
Constant Stress
100%
Stress Rate
100%
Fatigue Behavior
100%
Slow Crack Growth
100%
Failure Mechanism
100%
Cyclic Loading
100%
Elevated Temperature
100%
Failure Time
50%
Growth Mechanism
50%
Maximum Stress
50%
Static Loading
50%
Keyphrases
Fatigue Behavior
100%
Silicon Nitride
100%
Cyclic Fatigue
100%
Static-dynamic
100%
Elevated Temperature
100%
Dynamic Fatigue
100%
Static Fatigue
100%
Cyclic Loading
66%
Fatigue Specimen
66%
Slow Crack Growth
66%
Creep Rupture
66%
Failure Mechanism
66%
Constant Stress Rate
33%
Maximum Stress
33%
Stress Rate
33%
Dynamic Failure
33%
Static Loading
33%
Crack Growth Mechanism
33%
Failure Time
33%
Static Failure
33%
Constant Stress
33%
Tensile Fatigue Behavior
33%
Material Science
Silicon Nitride
100%
Fatigue Behavior
100%
Crack Growth
100%
Static Fatigue
100%
Creep
100%
Static Loading
50%