考虑接触非线性的汽车内饰吱响分析

IF 2.8 Q2 TRANSPORTATION SCIENCE & TECHNOLOGY
Tianyi Li, Peiran Li, Dayong Jiang, B. Qiu
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引用次数: 2

摘要

为了提高汽车内饰件的吱响和响动性能水平,在进行内饰件噪声分析时需要考虑结构部件的接触非线性特性。建立了内部构件的有限元S&R分析模型,通过施加外力激励,分析了内部构件间接触点的时域振动特性。根据内部材料之间的接触等效模型,得到了接触点之间的相互作用力。将外部激励和内部相互作用力作为总激励进行分析,得到响应结果。通过实验验证,与S&R性能划分方法相比,分析结果与试验结果一致。基于该模型进行了S&R风险优化,显著降低了风险水平。研究表明,在内饰总成S&R分析中考虑接触点的非线性接触问题,可以准确预测汽车S&R性能水平,对汽车S&R性能的正向开发和优化设计具有重要的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Squeak and Rattle Analysis of Automotive Interiors Considering Contact Nonlinearity
In order to improve the squeak and rattle (S&R) performance level of automotive interiors, the contact nonlinear characteristics of structural components need to be considered when performing interior noise analysis. The finite element model of S&R analysis of the interior assembly is built, and the time-domain vibration characteristics of the contact points between the interior panels are analyzed by applying external forced excitation. The interaction force between contact points is obtained according to the contact equivalent model between interior materials. The external excitation and internal interaction force are analyzed as the total excitation to obtain the response results. Through experimental verification, compared with the S&R performance division method, the analysis results are consistent with the test results. Based on this model, S&R risk optimization is carried out, and the risk level is significantly reduced. The research shows that the level of S&R performance can be accurately predicted by considering the nonlinear contact problem of the contact point in the S&R analysis of interior assembly, which has important guiding significance for the forward development and optimization design of automobile S&R performance.
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来源期刊
CiteScore
6.40
自引率
41.20%
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