Creep Behavior of a Nickel-Based Superalloy Under Cyclic Temperatures

Qiang Zhang, Yun-Chen Jiang, Xiaoan Hua, Yantao Sun, Shengliang Zhang, Xiaoguang Yang
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Abstract

Thermal cycling creep behaviors of Ni-based alloy DZ125 have been studied by means of tests with different stress, overheating duration and temperature. The test results revealed that thermal cycling creep with short overheating duration will offset alloys’ thermal equilibrium state. The decrease on creep resistance of materials suffering thermal cycling creep is analyzed from a microstructure perspective. A phenomenological relationship between overheating number and microstructure evolution has been revealed. Furthermore, an efficient life prediction method specifically for thermal cycling creep was firstly proposed in this research with satisfying accuracy.
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循环温度下镍基高温合金的蠕变行为
通过不同应力、过热时间和温度的试验,研究了ni基合金DZ125的热循环蠕变行为。试验结果表明,过热时间短的热循环蠕变会抵消合金的热平衡状态。从微观结构角度分析了热循环蠕变对材料抗蠕变性能的影响。揭示了过热次数与微观组织演变之间的现象关系。此外,本研究首次提出了一种针对热循环蠕变的高效寿命预测方法,并取得了满意的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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