Singular Solutions of Multi-Material Wedges Under Thermomechanical Loading

W. Yin, K. Jane, Chien-chang Lin
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Abstract

Multi-material wedges associated with free edges, matrix and interface cracks, adhesive joints, skin-stiffener attachments and other types of discontinuities in composite structures generally incur singular stress fields at the vertex of the wedge. Accurate elasticity solutions of the wedge under thermo-mechanical loads may be obtained by combining eigensolutions with appropriate coefficients and a particular solution associate with the loading. When the wedge is under a temperature load, or when the two exterior edges of the wedge are subjected to non-vanishing traction loads, the elasticity solution may differ significantly from the asymptotic solution as given by the dominant singular term. In such cases, a failure criterion in terms of the asymptotic solution or the stress intensity factors may not be appropriate.
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热机械载荷下多材料楔的奇异解
在复合材料结构中,与自由边缘、基体和界面裂纹、粘结接头、蒙皮加劲附件和其他类型的不连续有关的多材料楔通常会在楔的顶点产生奇异应力场。将特征解与适当的系数相结合,结合与载荷有关的特解,可以得到楔体在热机械载荷作用下的精确弹性解。当楔体承受温度载荷时,或者当楔体的两个外边缘承受不消失的牵引载荷时,弹性解可能与由优势奇异项给出的渐近解有很大不同。在这种情况下,基于渐近解或应力强度因子的失效准则可能不合适。
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