Experimental Study on Fatigue-Creep of P/M FGH96 Superalloy with Different Holding Time

Author:

Xiao Yang,Qin Haiqin,Xu Kejun,Wang Yongqi

Abstract

The fatigue-creep deformation characteristics and evolutions of microstructure of P/M superalloy FGH96 widely used for the turbine disc of an aero-engine were investigated experimentally. The low cycle fatigue-creep tests with different holding times were performed at 550℃. The influence of the holding time on the stress-strain curve, cyclic strain response, fatigue-creep life and damage mechanism were discussed. The results reveal that the holding time has a significant effect on the fatigue-creep deformation characteristics. As the holding time increases, the hysteretic energy of inelastic strain rises, the steady-state hysteresis curve shifts to the right and the envelope strain and the envelope strain rate increase. Fatigue-creep life decreases firstly exponentially and then stabilizes. The creep damage gradually plays a leading role. The fracture analysis indicates that the introduction of the holding time makes the section appear as a multi-crack source. The fracture mode changes from transgranular fracture to transgranular-intergranular mixed fracture. The slip bands and a small amount of dimples appear in the crack propagation zone and the dimple characteristics of the transient fracture zone are obvious.

Publisher

EDP Sciences

Subject

General Engineering

Reference26 articles.

1. LYU Zhiqiang. Research on Low Cycle Fatigue Life Prediction Methodology of Aero-Engine Disc[D]. Chengdu: University of Electronic Science and Technology of China, 2012(in Chinese)

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