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THE ENERGY APPROACH OF ELASTIC-PLASTIC FRACTURE MECHANICS APPLIED TO THE ANALYSIS OF THE WARM PRE-STRESS EFFECT

机译:弹性塑料断裂力学的能量探讨应用于热预应力效应的分析

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An experimental program was recently carried out in the context of a MPA-EDF collaboration, in order to study the "Warm Pre-Stress" effect on CT25 side-grooved specimens made of 18MND5 (equivalent to A508) ferritic steel. At EDF, an energy approach has been developed and an energy release rate, called Gp, has been defined. Conversely to the J-approach, this energy approach is, in principle, valid in all situations, and can be used in particular to study the "Warm Pre-Stress" effect in RPV structural integrity assessment. For the WPS cycle called "LCF" (Loading + Cooling + Fracture), the comparison to the experimental results and to the results obtained with the Beremin model is very satisfactory, all the results being in a good agreement. For the WPS cycle called "LUCF" (Loading + Unloading + Cooling + Fracture) the results obtained with the energy method, compared to experimental results, show a conservatism which is not very important, anyway smaller than the conservatism obtained with the Beremin model.
机译:最近在MPA-EDF协作的背景下进行实验程序,以研究由18Mnd5(相当于A508)铁素体钢的CT25侧槽样品对“温暖的预应力”作用。在EDF,已经开发了一种能量方法,已经确定了称为GP的能量释放率。相反,在J-DECING上,原则上,这种能量方法在所有情况下都有效,并且可以特别用于研究RPV结构完整性评估中的“温暖预应力”效应。对于称为“LCF”的WPS循环(加载+冷却+骨折),与实验结果的比较和与Beremin模型获得的结果非常令人满意,所有结果都处于良好的一致性。对于称为“Lucf”的WPS循环(加载+卸载+冷却+骨折)与实验结果相比,通过能量法获得的结果显示了保守主义,其不是非常重要的,无论如何小于使用Beremin模型获得的保守主义。

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