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Influence of surface recrystallization on the low cycle fatigue behaviour of a single crystal superalloy

机译:表面再结晶对单晶高温合金低周疲劳行为的影响

摘要

This paper investigated the effect of surface recrystallization (RX) on the low cycle fatigue (LCF) behaviour of a single crystal (SX) superalloy. LCF tests on both raw and recrystallized samples showed that fatigue life was significantly reduced by surface RX. Fractography indicated that fatigue cracks initiated from the casting defects in RX layer and multiple crack initiations were commonly observed. Moreover, RX grains exhibited predominantly transgranular cracking, in contrast to the intergranular fracture reported in literature. The fatigue crack propagation behaviour was discussed in light of fracture mechanics and crack growth life model. The fatigue cycles required to penetrate RX layer were estimated to be about one magnitude lower than that in forming an equivalent crack in SX specimens. It is suggested that the earlier crack initiation and promoted crack propagation in RX layer, as well as the trend of multiple initiations, are responsible for the fatigue degradation by RX.
机译:本文研究了表面再结晶(RX)对单晶(SX)高温合金低循环疲劳(LCF)行为的影响。对原始和重结晶样品的LCF测试表明,表面RX明显降低了疲劳寿命。断口扫描表明,通常观察到由RX层中的铸造缺陷引发的疲劳裂纹和多次裂纹萌生。此外,与文献报道的晶间断裂相反,RX晶粒主要表现出跨晶裂纹。根据断裂力学和裂纹扩展寿命模型讨论了疲劳裂纹扩展行为。估计穿透RX层所需的疲劳周期比在SX试样中形成等效裂纹的疲劳周期低约一个数量级。建议在RX层中较早的裂纹萌生和裂纹扩展加速以及多次萌生的趋势是RX导致疲劳退化的原因。

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