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Study on the effect of inclusion shape on crack-inclusion interaction using digital gradient sensing method

机译:用数字梯度传感方法研究夹杂物形态对裂纹-夹杂物相互作用的影响

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摘要

The effect of inclusion shape on the mode I stress intensity factor of the matrix crack interaction with a rigid inclusion was studied experimentally using digital gradient sensing (DGS) method. First, the noncontact optical measurement system of DGS was built up, and the specimens with different shapes of inclusion ahead of matrix crack were performed using transparent epoxy resin. Then, the angular deflection contour at the crack tip with different shapes of inclusions was obtained, and the stress intensity factors were extracted from the stress gradient filed based on least square fitting. Finally, a numerical simulation was conducted on the same problem using ABAQUS, and the stress intensity factors computed from FEM were compared with the experimental results. The results show that the stress intensity factors extracted from the stress gradient filed are agreed well with the numerical and theoretical results.
机译:使用数字梯度传感(DGS)方法,实验研究了夹杂物形状对基体裂纹与刚性夹杂物相互作用的I型应力强度因子的影响。首先,建立了DGS的非接触式光学测量系统,并使用透明环氧树脂对基体裂纹之前包含不同夹杂物形状的试样进行了测试。然后,获得具有不同夹杂物形状的裂纹尖端处的角偏转轮廓,并从基于最小二乘拟合的应力梯度中提取应力强度因子。最后,使用ABAQUS对同一问题进行了数值模拟,并将有限元法计算的应力强度因子与实验结果进行了比较。结果表明,从应力梯度场提取的应力强度因子与数值和理论结果吻合良好。

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