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Effect of specimen thickness on fatigue crack growth rate

机译:试件厚度对疲劳裂纹扩展速率的影响

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Fatigue tests were performed on the compact tension (CT) specimens of Type 304 stainless steel and Inconel 718. To investigate the effects of specimen thickness on crack tip deformation and fatigue crack growth rate (FCGR), specimens of different thickness were used. In the analysis, the elastic plastic fracture mechanics (EPFM) parameter known as the cyclic J-integral, ΔJ was adopted to observe the local plasticity at the crack tip and compared with the linear elastic fracture mechanics (LEFM) parameter known as the stress intensity factor range, AK The results show that FCGR is a function of specimen thickness, the effect of which is accelerated as specimen thickness increases. Therefore, it is thought that not only applied stress level but also specimen thickness should be taken into account in the measurement of FCGR, which is not considered in ASTM E 647 (ASTM E 647, 1995. Standard test method for measurement of fatigue crack growth rates.).
机译:对304型不锈钢和Inconel 718的紧密拉伸(CT)试样进行了疲劳试验。为了研究试样厚度对裂纹尖端变形和疲劳裂纹扩展率(FCGR)的影响,我们使用了不同厚度的试样。在分析中,采用称为循环J积分的弹性塑性断裂力学(EPFM)参数ΔJ观察裂纹尖端的局部塑性,并将其与称为应力强度的线性弹性断裂力学(LEFM)参数进行比较系数范围AK结果表明,FCGR是样品厚度的函数,随着样品厚度的增加,其作用加快。因此,人们认为在FCGR的测量中不仅应考虑施加的应力水平,而且还应考虑试样的厚度,这在ASTM E 647(ASTM E 647,1995)中没有考虑。费率。)。

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