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Parametric study of notch geometry in standardized chevron notched fracture test specimens for advanced ceramics

机译:先进陶瓷标准化人字形缺口试验样品中缺口几何形状的参数研究

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The purpose of this study was to determine the relative influences of selected geometric parameters on the resulting stress intensity factor geometry correction factor, Y, for chevron notched fracture test specimens, stable crack propagation during the test and stability of the resulting fracture process. Finite element analysis (FEA) was used to model test specimen geometries specialized in American Society for Testing and Materials (ASTM) Standard Test Method C 1421 [1]. Geometric parameters studied include notch thickness, notch corner radius, notch symmetry, notch centering, test specimen width and test specimen thickness. The results showed that the allowed notch thickness should not be increased. The assumption that the influence of the test specimen width is small is correct. The calculations showed that the eccentricity of the notch has no influence on Y. The results for the symmetry were good for the lower limits, and the difference to the ASTM values was less than two percent. The biggest differences were for the changes in the specimen bright. The differences of the FEA results compared to the ASTM values were up to five percent. The study of the crack stability showed that the notch can not be modeled ideal with a sharp notch and that the importance of the crack initiation.
机译:这项研究的目的是确定选定的几何参数对V型缺口切口试样的应力强度因子几何校正因子Y的相对影响,测试过程中裂纹的稳定扩展以及所得断裂过程的稳定性。有限元分析(FEA)用于对美国几何学与材料学会(ASTM)标准测试方法C 1421 [1]中专门设计的试样几何形状进行建模。研究的几何参数包括切口厚度,切口拐角半径,切口对称性,切口对中,试样宽度和试样厚度。结果表明,不应增加允许的切口厚度。试样宽度的影响较小的假设是正确的。计算结果表明,槽口的偏心距对Y值没有影响。对称性的结果在较低的范围内很好,与ASTM值的差小于2%。最大的差异在于样品亮度的变化。与ASTM值相比,FEA结果的差异高达5%。对裂纹稳定性的研究表明,不能用尖锐的缺口来模拟理想的缺口,并且说明裂纹萌生的重要性。

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