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不同材料布置的复合材料结构中应力集中的数值优化

Numerical Optimization of Stress Concentration in Composite Structures for Different Material Arrangement.

作者信息

Pate Sushant Bhalchandra, Korycki Ryszard

机构信息

Kaunas University of Technology, Donelaičio St., 73, 44249 Kaunas, Lithuania.

Department of Technical Mechanics, Informatics and Chemistry of Polymer Materials, Faculty of Material Technologies and Textile Design, Lodz University of Technology, Zeromskiego, 116, 90-924 Lodz, Poland.

出版信息

Materials (Basel). 2021 May 30;14(11):2957. doi: 10.3390/ma14112957.

Abstract

Complex machine parts are characterized by different shapes, material characteristics and working loads. The simultaneous theoretical optimization of shape and material properties is difficult because the single objective functional with a unique physical interpretation is unknown for these two features. The optimization is the multi-criteria procedure or the functional is a weighted average of partial criteria with the assumed weight values. Therefore, the structure and material characteristics are optimized numerically. The main goal of the article was to model and optimize the stress distribution inside the composite plates subjected to complex load. The advanced material composition was made of four different materials: steel, ductile iron, E-glass fibers and carbon fibers. The stress distributions were optimized for the homogeneous plate, the sandwich composite made of metal and textile layers, and the plate with additional stiffening elements (ribs and another plate along the neck portion). Based on the numerical simulations, the optimal structural shapes and material arrangements were determined.

摘要

复杂的机器零件具有不同的形状、材料特性和工作载荷。形状和材料性能的同步理论优化很困难,因为这两个特征的具有独特物理解释的单一目标函数是未知的。优化是一个多标准过程,或者该函数是具有假定权重值的部分标准的加权平均值。因此,对结构和材料特性进行数值优化。本文的主要目标是对承受复杂载荷的复合板内部的应力分布进行建模和优化。先进的材料组合由四种不同的材料制成:钢、球墨铸铁、E玻璃纤维和碳纤维。针对均质板、由金属和纺织层制成的夹层复合材料以及带有附加加强元件(肋条和沿颈部的另一块板)的板,对应力分布进行了优化。基于数值模拟,确定了最佳的结构形状和材料布置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dae/8198253/6f45c248efd2/materials-14-02957-g001.jpg

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