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Influence of Load Interaction between Creep and TMF on the Life of Single Crystal Nickel-Based Superalloy

机译:蠕变与TMF之间的负荷相互作用对单晶镍高超合金寿命的影响

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摘要

Experimental investigation on the influence of load interaction on the life of Single Crystal Nickel-based Superalloy is conducted. Three kinds of load spectrums considering single and coupled failure mode are designed. Life tests are carried out under creep, thermo-mechanical fatigue (TMF), and creep-TMF interaction loading. The test results show that test lives, under the creep-TMF interaction loading, are lower than the life predictions given by the linear damage accumulation (LDA) rule, indicating that the load coupling can accelerate the damage evolution process. The microstructure of fractured specimens shows that under the creep-TMF interaction loading, rafting cause more dislocations to accumulate in the at γ/γ' phase boundary, which could be the evidence of life decrease.
机译:对单晶镍基超合金寿命影响的实验研究。 考虑单个和耦合故障模式的三种负载谱是设计的。 终身试验在蠕变,热机械疲劳(TMF)和蠕变-TMF相互作用负载下进行。 测试结果表明,在蠕变-TMF互动加载下,测试生命低于线性损伤累积(LDA)规则的寿命预测,表明负载耦合可以加速损坏进化过程。 裂缝样本的微观结构表明,在蠕变-TMF相互作用负载下,漂流导致更多的脱位在γ/γ'相边界中积聚,这可能是生命的证据。

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