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Optimization Design of the Rectangular 3-D Braided Composite Based on PSO Algorithm

机译:基于PSO算法的矩形3-D编织复合材料优化设计。

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Due to the better performance of three-dimensional (3-D) braided composite, the new type composites have been obtained rapid development. In this paper, considering wide application of hollow-rectangular-section 3-D braided composite in engineering, the stiffness analysis of the hollow-rectangular-section three-dimensional braided composite made by 2-step method were performed. Then, the mathematical models for optimization of the stiffness of the 3-D braided composite were proposed. The objective functions are the stiffness coefficient of the composite. The design variables are the braiding parameters of the composites and sectional geometrical size of the composite. The results of numeral examples show that the better stiffness characteristic could be obtained by using hybrid optimization algorithm based on Particle Swarm Optimization (PSO), contenting the determinate restriction. The method proposed here is useful for the design and engineering application of the kind of member.
机译:由于三维(3-D)编织复合材料的性能更好,新型复合材料得到了快速的发展。本文考虑了中空矩形截面的三维编织复合材料在工程中的广泛应用,对采用两步法制备的中空矩形截面的三维编织复合材料的刚度进行了分析。然后,提出了优化3-D编织复合材料刚度的数学模型。目标函数是复合材料的刚度系数。设计变量是复合材料的编织参数和复合材料的截面几何尺寸。数值算例结果表明,基于确定的约束条件,采用基于粒子群优化算法的混合优化算法可以获得较好的刚度特性。这里提出的方法对于这种构件的设计和工程应用是有用的。

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