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On the Quantification of the Constraint Effect Along a Three-Dimensional Crack Front

机译:关于三维裂纹前沿的约束效果的量化

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In this paper we examined the characterization of constraint effects for surface cracked plates under uniaxial and biaxial tension loadings. First, three-dimensional (3D) modified boundary layer analyses were conducted using the finite element method to study the constraint effect at a typical 3D crack front. The analyses were carried out using small geometry change formulation and deformation plasticity material model. Elastic-plastic crack front stress fields at a constant J and various T-stress levels were obtained. Three-dimensional elastic-plastic analyses were performed for semi-circular surface cracks In a finite thickness plate, under remote uniaxial and biaxial tension loading conditions. In topological planes perpendicular to the crack fronts, the crack stress fields were obtained. Then, J-Q and J-T two-parameter approaches are used in characterizing the elastic-plastic crack-tip stress fields along the 3D crack front. It is found that the J-Q characterization provides good estimate for the constraint effect for crack-tip stress fields. Reasonable agreements are achieved between the T-stress based Q-factors and the Q-factors obtained from finite element analysis.
机译:在本文中,我们检查了单轴和双轴张力载荷下表面裂纹板的约束效果的表征。首先,使用有限元方法进行三维(3D)改进的边界层分析,以研究典型的3D裂纹前沿的约束效果。使用小几何变化配方和变形塑性材料模型进行分析。获得恒定J和各种T应力水平的弹性塑料裂纹前应力场。在远程单轴和双轴张力负载条件下,对有限厚板中的半圆形表面裂缝进行三维弹性塑料分析。在垂直于裂缝前突出的拓扑飞机中,获得裂纹应力场。然后,J-Q和J-T双参数方法用于表征沿着3D裂缝前沿的弹性塑料裂纹尖端应力场。发现J-Q表征提供了对裂纹尖端应力场的约束效果提供了良好的估计。基于T应力的Q因子和从有限元分析获得的Q因子之间实现了合理的协议。

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