Mid-thickness studies of the stress intensity factor in the bulk of bainitic steel

P. Lopez‐Crespo, J. Vazquez-Peralta, C. Simpson, T. Buslaps, P. Withers
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Abstract

The current work aims at estimating the stress intensity factor deep inside the bulk from elastic strain data measured by synchrotron X-ray diffraction. Key features affecting the evaluation of the stress intensity factor are the number of terms in the analytical model describing the crack tip field, the extension and position of the area of interest of the experimental data, the effect of the experimental data collected within the plastic zone and the number of elastic strain data points used. Here a parametric study of these features is presented in terms of their influence for the stress intensity factor determination. It was found that 3 or 4 terms in Williams’ expansion is often sufficient; the data should be collected from across the full range of angles around the crack tip; and the number of points/number of terms should be greater than 40.
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贝氏体钢体中厚应力强度因子的研究
目前的工作旨在从同步x射线衍射测量的弹性应变数据中估计体内深处的应力强度因子。影响应力强度因子评估的关键特征是分析模型中描述裂纹尖端场的项数、实验数据感兴趣区域的扩展和位置、在塑性区域内收集的实验数据的影响以及所使用的弹性应变数据点的数量。在这里,这些特征的参数研究提出了他们的影响,应力强度因子的确定。我们发现,在Williams的展开中,3或4项通常是足够的;数据应在裂纹尖端周围的整个角度范围内收集;并且点的个数/项的个数应该大于40。
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