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首页> 外文期刊>International journal of materials & product technology >Robust topological design of laminated composite plate under interval random hybrid uncertainties
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Robust topological design of laminated composite plate under interval random hybrid uncertainties

机译:间隔随机杂交不确定性下叠层复合板的鲁棒拓扑设计

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摘要

The laminated composite plate is widely used in contemporary industrial applications. In this work, a robust topology optimisation method is studied to overcome the possible uncertainties existed in the laminated composite plate. Based on the first-order shear deformation theory (FSDT), the laminated composite plate is modelled. A hybrid interval random model is employed to describe the imprecise probability of uncertain material properties and ply orientations in the laminated composite plate, which considers the measurement accuracy and cost in actual engineering. By using the first-order Taylor series expansion twice, the imprecise probabilistic parameters can be exactly expressed by interval values. A hybrid perturbation technique (HPT) is proposed to efficiently estimate the 'worst-case' of the laminated composite under uncertainties. The sensitivity of the structural mean compliance in the 'worst-case' with respect to design variables is further derived. The bi-directional evolutionary structural optimisation (BESO) method is employed to find the robust distribution of the material. Several numerical examples including both static and dynamic situations of the CCCC plate are presented, and the effectiveness of the proposed method is demonstrated clearly.
机译:层压复合板广泛用于现代工业应用。在这项工作中,研究了一种鲁棒拓扑优化方法,以克服层压复合板中存在的可能的不确定性。基于一阶剪切变形理论(FSDT),模拟层压复合板。采用混合间隔随机模型来描述层压复合板中不确定材料特性和帘布层取向的不精确概率,其考虑了实际工程中的测量精度和成本。通过两次使用一阶泰勒系列扩展,可以通过间隔值精确地表达不精确的概率参数。提出了一种杂交扰动技术(HPT),以有效地估计在不确定因素下层压复合材料的“最坏情况”。进一步推导出对设计变量的“最差案例”中结构平均值对设计变量的敏感性。使用双向进化结构优化(BESO)方法来找到材料的稳健分布。提出了包括CCCC板的静态和动态情况的若干数值示例,并且清楚地证明了所提出的方法的有效性。

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