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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >An improved method for calculation of creep damage during creep-fatigue cycling
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An improved method for calculation of creep damage during creep-fatigue cycling

机译:一种计算蠕变疲劳循环时蠕变损伤的改进方法

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Thermal mechanical cycling can result in creep-fatigue cycles in which the creep dwell has a wide variety of positions within the cycle. The effects of creep dwell position have been investigated using tests on three austenitic stainless steels: Type 316H, cast Type 304L and Type 347 weld metal. The analysis of these tests has resulted in the proposal of a new method to calculate creep damage. This method has been shown to give better predictions for the creep damage at failure than both the standard ductility exhaustion approach and the time fraction approach. In particular, the new method gives improved predictions of creep damage at failure for cycles with intermediate dwells and for cycles with low strain ranges. The present paper summarises the validation of this new method, the effects of multiaxial states of stress and the effects of compressive dwells.
机译:热机械循环会导致蠕变疲劳循环,其中蠕变驻留在循环内的位置多种多样。蠕变驻留位置的影响已通过对三种奥氏体不锈钢的测试进行了研究:316H型,304L铸造型和347型焊接金属。通过对这些测试的分析,提出了一种计算蠕变损伤的新方法的建议。与标准延性疲劳方法和时间分数方法相比,该方法已显示出对失效时蠕变损伤的更好预测。特别是,对于中间停留的周期和低应变范围的周期,新方法可以更好地预测失效时的蠕变损伤。本文总结了这种新方法的有效性,应力的多轴状态的影响以及压缩停留的影响。

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