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A modified normalization method for determining fracture toughness of steel

机译:一种用于确定钢断裂韧性的改进的归一化方法

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Normalization method (NM) is a practical method for determining the J-R curves and fracture toughness of steels. There is some concern, however, about the performance of this method on steels with small strain hardening exponent and yield strength owing mainly to the assumption of infinite strain hardening exponent. This paper intends to analytically modify the NM by removing this assumption and incorporating the strain hardening in calculating the blunting corrected crack length. This modification enables the NM to be applied to steels with small strain hardening exponent and yield strength. Experiments are undertaken to verify the modified NM (CNM). A comparison of fracture toughness determined by CNM with that by the unloading compliance method and NM corroborates the improved accuracy of the developed CNM. The paper concludes that the developed CNM overcomes the deficiency of the NM for steels with small strain hardening exponent and yield strength.
机译:标准化方法(NM)是用于确定钢的J-R曲线和断裂韧性的实用方法。然而,关于这种方法在具有小应变硬化指数和屈服强度的钢上的性能的关注,主要是由于无限应变硬化指数的假设。本文旨在通过去除这种假设并结合在计算钻孔校正裂缝长度时进行该假设来分析NM。该改性使NM能够施加到具有小应变硬化指数和屈服强度的钢材。进行实验以验证改性NM(CNM)。通过CNM测定的裂缝韧性与通过卸载顺应性法和NM的裂缝韧性证实了显影CNM的提高精度。本文得出结论,发达的CNM克服了具有小应变硬化指数和产量强度的钢的缺乏。

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