首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Deformation and Failore Behavior during Thermo-Mechanical Fatigue of a Nickel-Based Single Crystal Superalloy
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Deformation and Failore Behavior during Thermo-Mechanical Fatigue of a Nickel-Based Single Crystal Superalloy

机译:镍基单晶高温合金热机械疲劳过程中的变形和失效行为

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摘要

The out-of-phase thermo-mechanical fatigue (OP TMF) in a <001> oriented single crystal nickel-based superalloy CMSX-4 has been studied. OP TMF life was less than a half of low cycle fatigue(LCF) life in spite of a small hysteresis loop area of OP TMF compared to that of LCF. The failure was caused by the initiation of a crack at the oxide-layered surface followed by its planar growth along the <100> y channel in both LCF and OP TMF. However, deformation twins appeared near the major crack of OP TMF. The multiple groups of parallel twin plates on {111} planes provided a preferential path for crack propagation, which caused a significant decrease in OP TMF life. Additionally, the analysis on the surface crack morphology revealed that the tensile strain at the minimum temperature of OP TMF was found to accelerate the crack propagation.
机译:已经研究了在<001>取向的单晶镍基高温合金CMSX-4中的异相热机械疲劳(OP TMF)。尽管OP TMF的磁滞回线面积比LCF小,但OP TMF的寿命仍不到低循环疲劳(LCF)寿命的一半。失效是由于在LCF和OP TMF中沿氧化物层表面的裂纹引发,然后沿<100> y通道平面生长而引起的。但是,变形双胞胎出现在OP TMF的主要裂纹附近。 {111}平面上的多组平行双板为裂纹扩展提供了一条优先路径,这大大降低了OP TMF寿命。另外,对表面裂纹形态的分析表明,在OP TMF的最低温度下发现了拉伸应变,从而加速了裂纹的扩展。

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