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Study on Lightweight of Vehicle Body Structure Based on Implicit Parametric Model

机译:基于隐式参数模型的车身结构轻量化研究

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In the early development phase of a passenger car, the implicit parametric model of the lower body of BIW was built by SFE CONCEPT and combined with the finite element model of other parts of BIW to compose the parametric BIW model. On an Optimus workflow including BIW stiffness and vibration mode, design variables and their effective range were defined based on engineering experiences and vehicle features. A Response Surface Model (RSM) was created through Design of Experiments (DOE), and effects of key parameters of BIW structure on the stiffness and vibration mode were analyzed. Finally global optimization was conducted, and the lightweight vehicle body structure in compliance with performance requirements of modal and stiffness purposes was obtained, which saved 11.35 kg (154.55 → 143.20 kg) and lightweight effect was 7.34 %.
机译:在乘用车的早期开发阶段,SFE CONCEPT建立了BIW下半身的隐式参数模型,并与BIW其他部分的有限元模型相结合,构成了参数化BIW模型。在包括BIW刚度和振动模式的Optimus工作流程中,根据工程经验和车辆特征定义了设计变量及其有效范围。通过实验设计(DOE)创建了响应面模型(RSM),并分析了白车身结构关键参数对刚度和振动模式的影响。最后进行了全局优化,获得了符合模态和刚度性能要求的轻量化车身结构,节省了11.35 kg(154.55→143.20 kg),减轻了7.34%的重量。

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