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Experimental investigation of fatigue crack growth behavior of GH2036 under combined high and low cycle fatigue
Affiliation:1. Politecnico di Milano, Dept. Mechanical Engineering, Via La Masa 1, Milano 20156, Italy;2. Ansaldo Energia, Via A. Lorenzi, Genova, Italy
Abstract:Fatigue crack growth rates have been experimentally determined for the superalloy GH2036 (in Chinese series) at an elevated temperature of 550 °C under pure low cycle fatigue (LCF) and combined high and low cycle fatigue (CCF) loading conditions by establishing a CCF test rig and using corner-notched specimens. These studies reveal decelerated crack growth rates under CCF loading compared to pure LCF loading, and crack propagation accelerates as the dwell time prolongs. Then the mechanism of fatigue crack growth at different loadings has been discussed by using scanning electron microscope (SEM) analyses of the fracture surface.
Keywords:Combined fatigue  Fatigue crack growth  Load interaction  GH2036  Fracture surface
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