A discrete model for the design sensitivity analysis of multi-layered composite shells of revolution

Cristovão M. Mota Soares, N.M. Marques Cordeiro, J.Infante Barbosa
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引用次数: 12

Abstract

This paper studies the sensitivity analysis for the optimization of the multi-layered composite axisymmetric shells subjected to arbitrary static loading and free vibrations. The structural analysis is carried out using a two node frustum-cone finite element with 16 degrees of freedom based on Love-Kirchhoff assumptions. The design variables are the angle of orientation of the fibers and/or the vectorial distances from middle surface to upper surface of each ply. The constraint functions are displacements, stresses (Tsai-Hill criterion) and the natural frequency of a specified mode shape. Four types of objective functions can be used: maximum displacement or natural frequency or elastic strain energy and material volume. The design sensitivities are calculated analytically, semi-analytically and by global finite difference. The potentiality of the proposed model and the accuracy of the sensitivities of response are discussed with reference to the applications.

多层复合材料旋转壳设计灵敏度分析的离散模型
本文研究了多层轴对称复合材料壳体在任意静载荷和自由振动作用下的灵敏度分析。采用基于Love-Kirchhoff假设的16自由度双节点锥锥有限元进行结构分析。设计变量是纤维的取向角和/或从每层的中表面到上表面的矢量距离。约束函数是位移、应力(Tsai-Hill准则)和指定模态振型的固有频率。可以使用四种类型的目标函数:最大位移或固有频率或弹性应变能和材料体积。设计灵敏度分别采用解析法、半解析法和全局有限差分法计算。结合实际应用,讨论了该模型的可行性和响应灵敏度的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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