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Structural Robust Optimal Design based on Orthogonal Experimental and Parametric Finite Element Analysis

机译:基于正交试验和参数有限元分析的结构稳健优化设计

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In this paper, based on orthogonal experiment, piccolo tube dynamic optimization was performed to achieve the purposes of reducing the time of sample, identifying the key parameters and optimizing design. Firstly, parameterized finite element model of the piccolo tube was built. After that, the orthogonal experiment under four design variables covering three levels was performed. After 10 times dynamics simulation analysis (9 times simulation for orthogonal experiment and 1 time simulation for optimal design verification experiment), the optimal design of the piccolo tube was quickly determined. The first order natural frequency of the piccolo tube was improved to 1771HZ from initial design 1496.3HZ. The trend and sensitivity between the design variables and structural performance were obtained. The analyze process shows that the proposed method is simple and efficient. It can provide technical reference for piccolo tube optimization design and other complex structures.
机译:本文在正交试验的基础上,对短笛管进行了动态优化,以达到减少采样时间,识别关键参数和优化设计的目的。首先,建立了短笛管的参数化有限元模型。之后,在涵盖三个层次的四个设计变量下进行了正交试验。经过10次动力学仿真分析(正交实验为9次仿真,最佳设计验证实验为1次仿真),很快就确定了短笛管的最佳设计。短笛管的一阶固有频率从最初的1496.3HZ提高到了1771HZ。获得了设计变量与结构性能之间的趋势和敏感性。分析过程表明,该方法简单有效。它可以为短笛管的优化设计和其他复杂结构提供技术参考。

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