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Automotive body-in-white concept modeling method for the NVH performance optimization

机译:用于NVH性能优化的汽车身体定性概念建模方法

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Despite automotive advanced CAE model, concept model can be created in early design phase of development. The members and panels of the body in white (BIW) are modeled and approximated using beam and shell elements. The joints properties are then obtained from the original detailed CAE model using Guyan reduction method. The automotive seat concept model is also created and added to the concept BIW model. The developed models show good correlation with corresponding advanced CAE models as well as corresponding modal tests results in low frequency range. The interaction of the seat and BIW modes, which can be the cause of a poor seat vibration, is considered as a problem for structural optimization. Optimization of the BIW and the seat structure to prevent this mode interaction is only feasible in the early design phase. Sensitivity analysis and optimization of the structure were successfully conducted on the BIW-Seat concept model. The developed NVH CAE concept model demonstrates a good method to enhance the NVH performance in early stage of design. The proposed method can be used to effectively predict and optimize the BIW structure.
机译:尽管汽车先进的CAE模型,但概念模型可以在开发的早期设计阶段创建。使用梁和壳体元件建模和近似身体的主体(BIW)的构件和面板。然后使用Guyan Cranse方法从原始详细的CAE模型获得接合性质。还创建了汽车座椅概念模型并将其添加到概念BIW模型中。开发的模型与相应的高级CAE模型以及相应的模态测试结果显示出良好的相关性,导致低频范围。座椅和BIW模式的相互作用,这可能是座振动差的原因,被认为是结构优化的问题。 PIW和座椅结构的优化以防止这种模式相互作用仅在早期设计阶段是可行的。在BIW座椅概念模型上成功进行了结构的灵敏度分析和优化。发达的NVH CAE概念模型演示了一种提高设计早期NVH性能的良好方法。所提出的方法可用于有效地预测和优化BIW结构。

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