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Higher-order zig-zag model for analysis of thick composite beams with inclusion of transverse normal stress and sublaminates approximations

机译:高阶之字形模型,用于分析包含横向法向应力和层间近似的厚组合梁

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摘要

A modified zig-zag technical theory, suitable for the analysis of thick composite beams with rectangular cross section, general lay-up and in cylindrical bending is developed and tested. An equivalent single-layer model and a multiple-layer model are implemented. The displacement field of both these models is postulated as to allow for appropriate jumps in the strains, so that the transverse shear and the transverse normal stress and stress gradient continuity at the interfaces are met. A third-order piecewise approximation for the in-plane displacement and a fourth-order piecewise approximation for the transverse displacement are assumed in the two models. Their predictive capability is investigated in sample cases wherein the exact three-dimensional elasticity and other approximate solutions are available. On the basis of this numerical investigation, they appear to predict accurately and efficiently the displacement and stress fields of composite beams with layers of different materials.
机译:开发并测试了一种改进的之字形技术理论,该理论适用于分析矩形截面,整体铺设和圆柱弯曲的厚组合梁。实现了等效的单层模型和多层模型。假定这两个模型的位移场都考虑到应变的适当跳跃,从而满足了界面处的横向剪力和横向法向应力以及应力梯度的连续性。在两个模型中,假设面内位移为三阶分段近似,而横向位移为四阶分段近似。在具有精确三维弹性和其他近似解的示例情况下,研究了它们的预测能力。在此数值研究的基础上,他们似乎可以准确有效地预测具有不同材料层的复合梁的位移和应力场。

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