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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >A computational lifetime prediction of a thermal shock experiment. Part I: thermomechanical modelling and lifetime prediction
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A computational lifetime prediction of a thermal shock experiment. Part I: thermomechanical modelling and lifetime prediction

机译:热冲击实验的计算寿命预测。第一部分:热力学建模和寿命预测

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The SPLASH experiment has been designed in 1985 by the CEA to simulate thermal fatigue due to short cooling shocks on steel specimens and is similar to the device reported by Marsh in Ref. [1]. The purpose of this paper is to discuss the mechanical and the fatigue analysis of the experiment using results from FEM computations. The lifetime predictions are obtained using a modified dissipated energy with a maximal pressure term and agree with the experimental observations. The numerical analysis of the mechanical state shows an important evolution of the triaxiality ratio during the loading cycle. Further comparisons and discussions of the fatigue criteria are provided in the second part of the paper (Part II)~2.
机译:SPLASH实验是由CEA于1985年设计的,目的是模拟由于短暂冷却冲击而对钢试样造成的热疲劳,与Marsh在参考文献Ref.1中报道的装置相似。 [1]。本文的目的是讨论使用有限元计算结果进行的力学和疲劳分析。寿命预测是使用最大压力项修改后的耗散能量获得的,并且与实验结果一致。力学状态的数值分析显示了在加载周期中三轴比的重要变化。本文第二部分(第二部分)〜2提供了疲劳标准的进一步比较和讨论。

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