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Three different existing accumulation rules for limit load, i.e., linear equation, parabolic equation and quadratic equation were discussed on the basis of FE results.
Four damage accumulation rules and eight residual strength approaches are fit to the static, constant amplitude fatigue, residual strength, and two block repeated fatigue loading for each data set.
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A linear damage accumulation rule is used.
The nonlinear damage accumulation rule proposed in this paper improves the deficiencies inherent in the linear damage accumulation rule and still maintains its simplicity in the application.
Based on a damage accumulation rule, the life can be predicted for service loads.
A linear damage accumulation rule is assumed and the rain-flow cycle counting method is considered.
The final statistical fatigue life evaluation model is based on Palmgren-Miner's damage accumulation rule.
Damage accumulation rule has been formulated incrementally and connected with a monotonic work-hardening curve.
A linear damage accumulation rule has been used to estimate the risk for fatigue damage.
Accordingly, a nonlinear damage accumulation rule is utilized to predict the onset of fracture.
The linear damage accumulation rule is used to predict the multiaxial creep-fatigue life at high temperature.
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