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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A new variable-order singular boundary element for two-dimensional stress analysis
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A new variable-order singular boundary element for two-dimensional stress analysis

机译:二维应力分析的一种新的变阶奇异边界元

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摘要

A new variable-order singular boundary element for two-dimensional stress analysis is developed. This element is an extension of the basic three-node quadratic boundary element with the shape functions enriched with variable-order singular displacement and traction fields which are obtained from an asymptotic singularity analysis. Both the variable order of the singularity and the polar profile of the singular fields are incorporated into the singular element to enhance its accuracy. The enriched shape functions are also formulated such that the stress intensity factors appear as nodal unknowns at the singular node thereby enabling direct calculation instead of through indirect extrapolation or contour-integral methods. Numerical examples involving crack, notch and corner problems in homogeneous materials and bimaterial systems show the singular element's great versatility and accuracy in solving a wide range of problems with various orders of singularities. The stress intensity factors which are obtained agree very well with those reported in the literature.
机译:提出了一种新的二维应力分析的变阶奇异边界元。该元素是基本三节点二次边界元素的扩展,其形状函数丰富了从渐近奇异性分析获得的可变阶奇异位移和牵引场。奇异变量的阶数和奇异场的极性轮廓都被合并到奇异元素中以提高其准确性。还对丰富的形状函数进行了公式化,使得应力强度因子在奇异节点处显示为节点未知量,从而实现了直接计算,而不是通过间接外推法或轮廓积分法。涉及均质材料和双材料系统中的裂纹,缺口和拐角问题的数值示例表明,该奇异元件在解决各种不同奇异阶数的问题时具有很高的通用性和准确性。所获得的应力强度因子与文献报道的非常吻合。

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