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Elasticity solution for cross-ply composite and sandwich laminates

机译:交叉复合材料和夹心层压板的弹性解决方案

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摘要

A novel semi-analytical model is presented here for accurate estimation of stresses and displacements in composite and sandwich laminates. Displacements and corresponding transverse stresses are considered as primary variables of interest. Formulation is based on solution of a two-point boundary value problem (BVP) governed by a set of linear first-order ordinary differential equations (ODEs) through the thickness of a laminate. These first-order ODEs are numerically integrated by using fourth-order Runge-Kutta-Gill routine. Present model is free from any simplifying assumptions and also satisfies the continuity requirements of displacements and interlaminar transverse stresses at the laminae interfaces. Solutions for a wide range of composite and sandwich laminates are obtained to validate the present formulation. Results obtained through this technique are seen to compare well with the available three dimensional (3D) elasticity and other two dimensional (2D) analytical and 2D/3D finite element (FE) solutions. Few new benchmark solutions are also presented for future reference.
机译:这里提出了一种新颖的半分析模型,用于精确估计复合材料和夹心层板中的应力和位移。位移和相应的横向应力被认为是主要的变量。配方基于两点边界值问题(BVP)的解决方案,该问题由一组线性一阶常微分方程(ODE)决定,该线性一阶常微分方程(ODE)贯穿层压板的整个厚度。通过使用四阶Runge-Kutta-Gill例程对这些一阶ODE进行数值积分。本模型没有任何简化的假设,也满足了层流界面处位移和层间横向应力的连续性要求。获得了用于多种复合材料和夹心层压板的解决方案,以验证本配方。通过这种技术获得的结果可以与可用的三维(3D)弹性以及其他二维(2D)解析和2D / 3D有限元(FE)解决方案进行比较。还提供了一些新的基准解决方案以供将来参考。

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