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Thermo-mechanics of undamaged and damaged multilayered composite plates: a sub-laminates finite element approach

机译:完好无损的多层复合板的热力学:亚层压有限元方法

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In this work a plate mixed finite element based on a refined zig-zag plate model is formulated for the analysis of multilayered composite plates subjected to thermal and mechanical loads. The zig-zag plate model is characterised by: (ⅰ) through-the-thickness cubic in-plane displacements and linear transverse displacement, (ⅱ) transverse shear stresses continuity, (ⅲ) satisfaction of traction equilibrium conditions on top and bottom faces of the laminate thus allowing for the presence of tangential distributed loads, (ⅳ) the transverse normal deformability is taken into account by means of a σ_(33) supposed constant along the thickness and by the use of the complete constitutive equations of orthotropic materials, (ⅴ) use, as degrees of freedom of the model, of displacements and transverse shear stresses of external faces of the laminate. In particular, this last property may be extended to the associated plate finite element that, having its nodal degrees of freedom on the external faces, allows a through-the-thickness discretisation in some sub-domains called sub-laminates. Some numerical results are presented in order to show that the use of more sub-laminates improves the capability of the approach to capture with high accuracy the though-the-thickness distributions of transverse displacements, strains and stresses also for very thick plates.
机译:在这项工作中,基于精细之字形板模型的板混合有限元被制定用于分析承受热和机械载荷的多层复合板。之字形板模型的特征是:(ⅰ)整个厚度的立方面内位移和线性横向位移,(ⅱ)横向剪应力连续性,(ⅲ)满足顶面和底面的牵引平衡条件层压材料从而允许存在切向分布的载荷(ⅳ)通过沿厚度方向假定为常数的σ_(33)以及正交各向异性材料的完整本构方程来考虑横向法向变形性(() ⅴ)使用层压板外表面的位移和横向剪应力作为模型的自由度。特别地,该最后的特性可以扩展到相关的板有限元,该板有限元的外表面具有节点自由度,可以在某些称为子叠层的子域中进行厚度离散。提出了一些数值结果,以表明使用更多的亚层板可以提高该方法以高精度捕获非常厚板的横向位移,应变和应力的厚度分布的能力。

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