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首页> 外文期刊>Journal of Materials Science >Fracture toughness analysis of anisotropic nickel-based single crystal superalloys at high temperature
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Fracture toughness analysis of anisotropic nickel-based single crystal superalloys at high temperature

机译:各向异性镍基单晶高温合金的断裂韧性分析

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The purpose of this article is intended to study the fracture toughness of anisotropic nickel-based single crystal superalloys at elevated temperature by compact tension (CT) specimen in experiment method. The special attention is put on the orientation and temperature dependence of mechanical properties of single crystal as well as thickness effect of specimen. The experimental results show that crystallographic orientation and temperature have much complex effect on fracture toughness. The difference of fracture toughness of single crystal for different crystallographic orientation at low temperature is much greater than that at high temperature. The nickel-based single crystal specimen may merely become less anisotropic with the increase of the ambient temperature seems as more multi-slip action appears. The fracture mode of the specimens transfers from brittle to ductile as the temperature increases; also, the fracture toughness of single crystal for the same orientation becomes larger with the decreasing of the thickness of single crystal specimen.
机译:本文旨在通过实验方法通过紧凑拉伸(CT)样品研究高温下各向异性镍基单晶高温合金的断裂韧性。特别要注意的是单晶力学性能的取向和温度依赖性以及样品的厚度效应。实验结果表明,晶体学取向和温度对断裂韧性具有复杂的影响。低温下不同晶体取向的单晶的断裂韧性差异远大于高温下的差异。随着环境温度的升高,镍基单晶试样的各向异性可能会降低,因为出现了更多的滑移作用。随着温度的升高,试样的断裂模式从脆性转变为韧性。同样,相同取向的单晶的断裂韧性随着单晶试样厚度的减小而变大。

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