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Propagation of microcracks in single crystalline nickel-based superalloys: size effects on the crack opening

机译:微裂纹在单晶镍基高温合金中的传播:尺寸对裂纹开口的影响

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摘要

The lifetime of single crystals (SX) as established high temperature materials for turbine blades is mainly determined by the propagation of microcracks. So far mainly long crack data are available for SX turbine blade materials measured on the basis of the established K-concept. This data pool is used for the calculation of lifetime although short cracks normally lead to failure. However, microstructurally and physically short cracks behave different from long cracks and cannot be described by using the K-concept. A comprehensive study of short crack data was carried out for the SX nickel-based superalloy CMSX-4 as a model alloy at temperatures from room temperature up to 1223 K. Additionally the crack propagation rate and the crade-tip-opening displacement was investigated close to the crack tip in situ by scanning electron microscopy. Thereby the physical model of alternating slip was investigated locally and it was shown that the local crack opening displacement of short cracks cannot be predicted by elastic-plastic fracture mechanics.
机译:作为涡轮机叶片已确立的高温材料的单晶(SX)的寿命主要取决于微裂纹的传播。到目前为止,根据已建立的K概念,主要可以得到SX涡轮叶片材料的长裂纹数据。尽管短裂缝通常会导致故障,但该数据池用于计算寿命。但是,微观和物理上的短裂纹的行为不同于长裂纹,因此无法使用K概念来描述。在室温至1223 K的温度范围内,对作为模型合金的SX镍基高温合金CMSX-4进行了短裂纹数据的综合研究。此外,还研究了裂纹扩展速率和裂纹尖端开口位移。通过扫描电子显微镜原位观察到裂纹尖端。因此,对局部滑动交替的物理模型进行了研究,结果表明,弹塑性断裂力学无法预测出短裂纹的局部裂纹开口位移。

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