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Application of a new energy-based collocation method for nonlinear progressive damage analysis of imperfect composite plates

机译:基于能量的新配置方法在不完善复合板非线性渐进损伤分析中的应用

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摘要

In this paper, an efficient simple numerical method, known as energy-based collocation, is presented to analyze the nonlinear behavior of a geometrically imperfect composite plate subjected to compressive in-plane load while taking into account progressive damage phenomena. This method is based on the energy approach, in which the plate is discretized into the Legendre-Gauss-Lobatto points. The nonlinear governing equations are based on the First-order Shear Deformation Theory (FSDT) and the assumptions of large deflection. The system of nonlinear algebraic equations is solved using the quadratic extrapolation technique. Plates with various boundary conditions and different ranges of thickness are investigated. Hashin and Rotem failure criteria are established to predict failure. Several properties degradation models are proposed for the developed failure mechanism and description of ply degradation. The analysis is performed by a computer program developed based on FORTRAN language. The accuracy of the developed procedure is assessed by comparing numerical results taken from previous works.
机译:在本文中,提出了一种有效的简单数值方法,称为基于能量的搭配,它在考虑了渐进式损伤现象的情况下,分析了承受平面内载荷的几何不完美复合板的非线性行为。该方法基于能量方法,其中将板离散化为Legendre-Gauss-Lobatto点。非线性控制方程基于一阶剪切变形理论(FSDT)和大变形的假设。使用二次外推法求解非线性代数方程组。研究了具有各种边界条件和不同厚度范围的板。建立了Hashin和Rotem故障准则来预测故障。提出了几种性能退化模型,用于开发失效机理和层板退化的描述。分析是通过基于FORTRAN语言开发的计算机程序执行的。通过比较从以前的工作中得到的数值结果来评估所开发程序的准确性。

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