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Evaluation of transverse thermal stresses in composite plates based on first-order shear deformation theory

机译:基于一阶剪切变形理论的复合板横向热应力评价

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A postprocessing procedure is presented for the evaluation of the transverse thermal stresses in laminated plates. The analytical formulation is based on the first-order shear deformation theory and the plate is discretized by using a single-field displacement finite element model. The procedure is based on neglecting the derivatives of the in-plane forces and the twisting moments, as well as the mixed derivatives of the bending moments, with respect to the in-plane coordinates. The calculatedtransverse shear stiffnesses reflect the actual stacking sequence of the composite plate. The distributions of the transverse stresses through-the-thickness are evaluated by using only the transverse shear forces and the thermal effects resulting from the finite element analysis. The procedure is implemented into a postprocessing routine which can be easily incorporated into existing commercial finite element codes. Numerical results are presented for four- and ten-layer cross-ply laminates subjected tomechanical and thermal loads.
机译:提出了一种后处理程序,用于评估层压板中的横向热应力。分析制剂基于一阶剪切变形理论,并且通过使用单场位移有限元模型来离散化板。该程序基于忽略面内力和扭转力矩的衍生物,以及相对于面内坐标的弯曲力矩的混合衍生物。煅烧的转移剪切刚度反射了复合板的实际堆叠序列。通过仅使用由有限元分析产生的横向剪切力和导致的热效果来评估横向应力的横向应力的分布。该过程实现为后处理程序,可以轻松地结合到现有的商业有限元代码中。为四层和十层交叉层层压材料进行了数值结果,受到的造力和热负荷。

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