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A simple technique for constructing the full stress and displacement fields in elastic plates with multiple cracks

机译:构造具有多个裂缝的弹性板中的全部应力和位移场的简单技术

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Full displacement and stress fields in a two-dimensional elastic solid with multiple interacting cracks is constructed in an approximate way, in elementary functions. It is done by approximating the actual displacement discontinuity (COD) on each crack, in each of modes I and II, by a product of the ellipse corresponding to an isolated crack and a quadratic polynomial. The polynomial's coefficients, that reflect crack interactions, are chosen to match the SIFs and the average tractions on cracks (quantities found, for example, by a simple method of analysis of crack interactions; Kachanov, M. Elastic solids with many cracks: a simple method of analysis. International Journal of Solids and Structures, 23, 1987. 23-43). We then use this approximated CODs in the representation of the displacement field in the solid in terms of integrals over crack lines, with CODs as kernels. The constructed field differs from the actual one by the field generated by such traction distributions on cracks that have zero averages and produce zero stress intensity factors. The accuracy of the suggested method depends on the configuration, but, generally, remains good at spacings between cracks that are substantially smaller than the crack lengths.
机译:在基本功能中,以近似方式构造了具有多个相互作用的裂纹的二维弹性固体中的全位移场和应力场。通过在模式I和II中的每个模式下,通过对应于孤立裂纹的椭圆和二次多项式的乘积来近似估计每个裂纹的实际位移不连续性(COD)来完成。选择反映裂纹相互作用的多项式系数以匹配SIF和裂纹的平均牵引力(例如,通过一种简单的裂纹相互作用分析方法来找到数量; Kachanov,M.有很多裂纹的弹性固体:一个简单分析方法,国际固体和结构杂志,23,1987,23-43)。然后,我们以裂纹线上的积分为单位,以固体中位移场的表示形式使用这种近似的COD,以COD为核。构造场与实际场的不同之处在于,这种牵引力分布在裂纹上产生的场的平均值为零,应力强度因子为零。所建议方法的精度取决于构造,但是,通常,在裂纹之间的间距明显小于裂纹长度的情况下,仍保持良好的状态。

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