Specific crack enthalpy as material characterization parameter

M. Es-Saheb, S. Khan
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Abstract

Abstract In this study, the specific crack enthalpy (damage), considered a material characterization parameter according to crack layer theory, is discussed. The crack region and its accompanying damage become a crack layer. Fatigue crack propagation experiments were conducted on HT60 and HT80 steel. The specific enthalpy γ* of fracture due to ductile crack propagation in steel HT60 and HT80 has been calculated. The energy release rate and damage coefficients were determined at different stress ratios varying from R = 0.04 to 0.8. The crack layer translational resistance moment R1 has been determined. Because interpreting the data of crack propagation on two types of steel in the light of this theory reveals reasonable similarity, the need to set up experiments specifying the limitations and applicability of the theory is essential.
以比裂纹焓作为材料表征参数
摘要本文根据裂纹层理论,讨论了作为材料表征参数的比裂纹焓(损伤)。裂纹区域及其伴随的损伤形成裂纹层。对HT60和HT80钢进行了疲劳裂纹扩展试验。计算了HT60和HT80钢韧性裂纹扩展断裂的比焓γ*。在R = 0.04 ~ 0.8范围内,测定了不同应力比下的能量释放率和损伤系数。确定了裂纹层的平移阻力矩R1。由于根据该理论解释两种钢的裂纹扩展数据显示出合理的相似性,因此有必要进行实验,以明确该理论的局限性和适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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