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Three-dimensional stress fields due to notches in plates under linear elastic and elastic-plastic conditions

机译:线性弹性和弹塑性条件下板材缺口产生的三维应力场

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The paper deals with a 3D multi-parametric stress field representation ahead of notches in plates of finite thickness under different loading conditions. Under certain hypotheses, the 3D governing equations of elasticity can be reduced to a system where a bi-harmonic equation and a harmonic equation have to be simultaneously satisfied. The former provides the solution of the corresponding plane notch problem, and the latter provides the solution of the corresponding out-of-plane shear notch problem. The solution is valid close the notch edge, through the plate thickness, with exclusion of a very limited zone close to the free surface of the plates. Also, under elastic-plastic conditions there are circumstances where it is possible to separate the in-plane problem from the out-of-plane problem. A new analytical frame is proposed, and the results are compared with those obtained from 3D finite element models of a plate with a square notch. In the presence of remote applied tensile stress, the slope of the induced, out-of-plane, shear stress component matches that of the mode Ⅲ plastic problem.
机译:本文研究了在不同载荷条件下有限厚度板中刻痕之前的3D多参数应力场表示。在某些假设下,可以将3D弹性控制方程式简化为必须同时满足双谐波方程式和谐波方程式的系统。前者提供了相应的平面缺口问题的解决方案,而后者提供了相应的面外剪切缺口问题的解决方案。该解决方案在整个板厚范围内都有效地靠近缺口边缘,但在板的自由表面附近没有非常有限的区域。同样,在弹塑性条件下,有可能将平面内问题与平面外问题分开。提出了一种新的分析框架,并将结果与​​从具有方形凹口的板的3D有限元模型获得的结果进行了比较。在存在远距离施加的拉应力的情况下,感应面外剪切应力分量的斜率与Ⅲ型塑性问题的斜率匹配。

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