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Comparison of creep crack growth rate in heat affected zone of welded joint for 9%Cr ferritic heat resistant steel based on C, dδ/dt, K and Q parameters
Authors:R Sugiura  AT Yokobori Jr  T Yokobori
Affiliation:a Graduate School of Engineering, Department of Nanomechanics, Tohoku University, Aoba 6-6-01, Aramaki, Aoba-ku, Sendai 980-8579, Japan
b National Institute for Materials Science, 1-2-1 Sengen, Tsukuba 305-0047, Japan
c Faculty of Engineering and Science, Teikyo University, Toyosatodai 1-1, Utsnomiya 320-0003, Japan
Abstract:Creep crack growth behavior is very sensitive to the materials’ micro-structures such as the heat affected zone of a weld joint. This is a main issue to be clarified for 9%Cr ferritic heat resistant steel for their application in structural components. In this paper, high temperature creep crack growth tests were conducted on CT specimens with cracks in the heat affected zone of weld joints of W added 9%Cr ferritic heat resistant steel, ASME grade P92. The creep crack growth behavior in the heat affected zone of welded joint was investigated using the Q concept following which the algorithm of predicting the life of creep crack growth has been proposed. Furthermore, three-dimensional elastic-plastic creep FEM analyses were conducted and the effect of stress multiaxiality of welded joint on creep crack growth rate was discussed as compared with that of base metal.
Keywords:P92 steel  Welded joint  Creep crack growth  C&lowast   parameter  Load line displacement rate  Q&lowast   concept  FEM
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