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Fatigue Reliability under Random Loads
R. Talreja
Research output
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Contribution to journal
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Journal article
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Research
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peer-review
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Dive into the research topics of 'Fatigue Reliability under Random Loads'. Together they form a unique fingerprint.
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Keyphrases
Random Loading
100%
Fatigue Reliability
100%
Statistical Analysis
50%
Material Strength
50%
Homogeneous Distribution
25%
Tensile Strength
25%
Initiation Mechanism
25%
Non-failure
25%
Crack Initiation
25%
Probability Distribution
25%
Fatigue Damage
25%
Survival Probability
25%
Weibull Distribution
25%
Strength Increase
25%
Safe Operation
25%
Crack Propagation Stages
25%
Two-component Distribution
25%
Strength Change
25%
Steel Specimen
25%
Engineering
Random Loads
100%
Fatigue Reliability
100%
Limiting Value
25%
Safe Operation
25%
Fatigue Damage
25%
Homogeneous Distribution
25%
Increase Strength
25%
Ultimate Tensile Strength
25%
Crack Propagation
25%
Crack Initiation
25%
Material Science
Random Loads
100%
Strength of Materials
50%
Crack Propagation
25%
Ultimate Tensile Strength
25%
Fatigue Damage
25%
Crack Initiation
25%
Weibull Distribution
25%
Physics
Probability Theory
100%
Strength of Materials
50%
Ultimate Tensile Strength
25%
Crack Propagation
25%
Fatigue Damage
25%
Weibull Distribution
25%
Crack Initiation
25%