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Structural Modal Analysis and Optimization of SUV Door Based on Response Surface Method

机译:基于响应面法的SUV门结构模态分析与优化

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Sensitivity analysis and response surface methods were employed to optimize the structural modal of SUV doors. A finite element numerical simulation model was established and was calibrated by restraint modal tests. To screen out highly sensitive panels, a sensitivity analysis for the thickness of door panels was proposed based on the fifth-order modal frequency of the door. Data points were obtained by a faced central composite design with the design variables from the thickness of the highly sensitive panels, and a second-order explicit response surface function of the fifth-order modal frequency of the vehicle door was established. An optimization model was established according to the response surface method. The final results demonstrate that the modal-frequency matching of the door and body in white was optimized after changing the thicknesses, with a 5.74% material reduction.
机译:采用灵敏度分析和响应面方法来优化SUV门的结构模态。建立了有限元数值模拟模型,通过抑制模态测试校准。为了筛选高敏感的面板,基于门的第五阶模态频率提出了用于门板厚度的灵敏度分析。通过面对中心复合设计获得数据点,该设计与高敏感面板的厚度的设计变量,并且建立了车门的第五阶模态频率的二阶显式响应面功能。根据响应面法建立优化模型。最终结果表明,在更换厚度后,在白色优化了白色和身体的模态 - 频率匹配,其材料减少了5.74%。

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