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Prediction of NVH behaviour of trimmed body components in the frequency range 100-500 Hz

机译:在100-500 Hz频率范围内预测修整后的身体部位的NVH行为

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摘要

The work within this paper focuses on the application and validation of numerical methods for predicting the acoustic and structural NVH behaviour of trimmed body components in an automotive context. In particular, the level of modelling refinement and accuracy necessary to establish a reliable finite element analysis model for comparative purposes in the development of alternative designs is investigated.rnSpecifically, the roof structure of a passenger car was investigated from various performance aspects, using both structural and acoustic excitation. The roof was initially tested in situ, with and without interior lining, to provide a reference for subsequent component tests. It was then detached from the car, mounted in a stiff frame and tested in a transmission window using both acoustic and structural excitation.rnA finite element model of the detached component was developed using shell and solid elements for the structure and solid elements for the interior lining. Predictions were carried out to evaluate the STL as well as the vibrational frequency response due to a force applied to the structure. Special attention was given to the modelling of the headliner as well as the air gap separating the headliner from the outer sheet metal. A sensitivity study of various headliner properties was performed in addition to a comparison between solutions calculated using standard Nastran elements and augmented poro-elastic elements via the software package CDH/EXEL.rnThe main objective of the current work has been to establish a datum reference for alternative designs. From this aspect, the validation of the numerical modelling methodology, in particular the level of detail and accuracy used, was a crucial step. It was found that the predictions agreed very well with the measured data. As an additional, very interesting result, it was also found that the in situ testing correlated well with the transmission suite testing.
机译:本文中的工作集中于数值方法的应用和验证,这些方法可用于预测汽车环境中修整过的车身部件的声学和结构NVH行为。特别是,在替代设计的开发中,研究了建立可靠的有限元分析模型以进行比较的必要模型的精确度和准确性。特别是,从各个性能方面对乘用车的车顶结构进行了研究,同时使用了两种结构和声激发。最初对屋顶进行了现场测试,有无内部衬里,为后续的组件测试提供参考。然后将其从汽车上拆下,安装在刚性框架中,并使用声学和结构激励在透射窗中进行测试。rn使用壳体和实体元素来构造结构,并使用内部实体元素来开发分离组件的有限元模型。衬垫。进行了预测以评估STL以及由于施加到结构上的力引起的振动频率响应。特别注意了车顶内衬的造型以及将车顶内衬与外部钣金分开的空气间隙。除了对使用标准Nastran元素和增强的多孔弹性元素通过软件包CDH / EXEL计算出的溶液进行比较之外,还进行了各种车顶衬里特性的敏感性研究。当前工作的主要目的是建立基准面参考替代设计。从这个方面来看,数值建模方法的验证,特别是所用细节和准确性的水平,是至关重要的一步。发现预测与实测数据非常吻合。作为另一个非常有趣的结果,还发现原位测试与传输套件测试具有很好的相关性。

著录项

  • 来源
    《Applied Acoustics》 |2010年第8期|P.708-721|共14页
  • 作者单位

    Centre for ECO~2 Vehicle Design, KTH Aeronautical and Vehicle Engineering, Kungliga Tekniska Hoegskolan (KTH), SE-100 44 Stockholm, Sweden;

    rnCentre for ECO~2 Vehicle Design, KTH Aeronautical and Vehicle Engineering, Kungliga Tekniska Hoegskolan (KTH), SE-100 44 Stockholm, Sweden;

    rnCentre for ECO~2 Vehicle Design, KTH Aeronautical and Vehicle Engineering, Kungliga Tekniska Hoegskolan (KTH), SE-100 44 Stockholm, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    NVH prediction; trimmed body components; finite element method; STL; biot modelling;

    机译:NVH预测;修整过的车身部件;有限元法STL;比奥模型;
  • 入库时间 2022-08-17 13:30:50

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