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Experimental and numerical investigations of the warm-prestressing (WPS) effect considering different load paths

机译:考虑不同载荷路径的热预应力(WPS)效应的实验和数值研究

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The effect of warm prestressing has been investigated representative for the core weld metal of the RPV Stade. Model experiments on CT specimens show a significant rise of effective fracture toughness K_eff after warm prestressing and the conservative WPS hypothesis, ‘no failure, if K_1/ t ≤0', is verified. Partial unloading and reheating show no influence on the effective fracture toughness K_eff. The magnitude of the WPS effect as a function of warm prestress level and temperature. path of unloading and cooling can be predicted using a modified Beremin model with temperature dependent parameters. It is shown that the Weibull stress is an appropriate crack tip loading parameter for decreasing load paths.
机译:对于RPV Stade的芯焊缝金属,已经对热预应力的影响进行了研究。在CT样品上进行的模型实验表明,在温暖的预应力作用下,有效断裂韧度K_eff显着提高,并且保守的WPS假设“如果K_1 / t≤0,则不会失败”。部分卸载和再加热对有效断裂韧性K_eff没有影响。 WPS效果的大小取决于预应力水平和温度的变化。可以使用具有温度相关参数的改良Beremin模型来预测卸载和冷却的路径。结果表明,威布尔应力是减小载荷路径的合适的裂纹尖端载荷参数。

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