the fatigue damage of compressor blade is studied by numerical method. The methods of structural fatigue life prediction and damage assessment is proposed
including blade aerodynamic pressure calculation using computational fluid dynamics(CFD)
structural strength analysis based on FEM under different working conditions
and Chaboche fatigue life prediction and damage accumulation equation under multi-level loading by nonlinear continuum damage mechanics. The fatigue damage analysis on an aero-engine high-pressure compressor blade is carried out by this method under aerodynamic and centrifugal loads in typical working conditions. Results indicate that the exhaustion edge in blade root has distinct stress concentration
and it is the dangerous location where fatigue failure is liable to occur. In the process of fatigue loading
the rate of damage accumulation gradually increases
and the blade fractures instantaneously in the end of the loading cycle. Considering the effect of load sequence on damage accumulation behavior
the multi-level loading damage model can reflect the nonlinearity of damage evolution and achieve more accurate calculations compared with Miner linear damage model.
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