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Fatigue of as-extruded 7005 aluminum alloy
Teng Shih Shih
, Quin Yang Chung
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
13
Scopus citations
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Keyphrases
7005 Aluminum Alloy
100%
As-extruded
100%
Cycles to Failure
66%
Cyclic Loading
33%
Deformed Microstructure
33%
Dynamic Recrystallization
33%
Failure Probability
33%
Fatigue Life
66%
Fatigue Properties
33%
Fatigue Strength
33%
Inclusion Particle
33%
Particle Counting
33%
Rotating Bending
33%
Second Phase Particles
33%
Specific Stresses
33%
Strain Rate
33%
Stress Amplitude
100%
Stress Cycles
33%
Stress Level
33%
Tensile Loading
33%
Tensile Properties
66%
Two-level
33%
Engineering
Cyclic Loading
33%
Deformed Microstructure
33%
Dynamic Recrystallization
33%
Fatigue Life
66%
Fatigue Property
33%
Fatigue Strength
33%
Phase Particle
33%
Strain Rate
33%
Stress Amplitude
100%
Stress Cycle
33%
Tensile Property
66%
Tensiles
33%
Tested Specimen
33%
Material Science
Aluminum Alloy
100%
Fatigue of Materials
66%
Strain Rate
33%
Tensile Property
33%