首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Transfer path analysis and control of vehicle structure-borne noise induced by the powertrain
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Transfer path analysis and control of vehicle structure-borne noise induced by the powertrain

机译:动力总成引起的车辆结构噪声的传递路径分析与控制

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Because of the higher requirements for vehicle comfort and people's increasing ecological consciousness, research on the interior noise in a vehicle has received wide concern, among which structure-borne noise is hard to diagnose and control. To solve the problem, the transfer path analysis method of powertrain structure-borne noise has been systematically analysed. By introduction of the powertrain source-path-receiver model, this method enables us to estimate and study the vibro-acoustic transfer functions and their operational forces. Since structure-borne noise is composed of multiple paths, the aim of this paper is to discuss different synthesis methods for this noise. On the basis of previous discussion, the transfer path analysis test of a certain vehicle is carried out, and the transfer function and operational data at idle and second-gear wide-open throttle are obtained. The test data are processed and an acoustic contribution analysis of the target is performed using LMS software. The results of analysis show that the right-hand side mount represents the main contribution path. Then the match principle of the bracket dynamic stiffness of the powertrain isolation system is proposed. On the basis of the transfer path analysis results and the above principle, the bracket on the body side of the right-hand side mount is improved by combination of the experimental transfer path analysis and the finite element method. The test results show that the A-weighted sound pressure level of the interior noise at idle and second-gear wide-open throttle are reduced by 2.9 dB(A) and 4 dB(A) respectively after improvement. Also there is no obvious booming noise at second-gear wide-open throttle. It is expected that this paper can help automotive noise, vibration and harshness engineers to perform trouble shooting and sound design.
机译:背景技术由于对车辆舒适性的更高要求以及人们日益提高的生态意识,对车辆内部噪声的研究已引起广泛关注,其中难以诊断和控制结构性噪声。为了解决该问题,系统地分析了动力总成结构噪声的传递路径分析方法。通过引入动力总成源-路径-接收器模型,该方法使我们能够估算和研究振动声传递函数及其作用力。由于结构噪声由多条路径组成,因此本文的目的是讨论该噪声的不同合成方法。在前面的讨论的基础上,进行了某辆汽车的传递路径分析测试,并获得了怠速和二档大开节气门时的传递函数和运行数据。使用LMS软件处理测试数据并执行目标的声学贡献分析。分析结果表明,右侧安装座代表了主要的贡献路径。然后提出了动力总成隔振系统支架动态刚度的匹配原理。根据传递路径分析结果和上述原理,结合实验传递路径分析和有限元方法,改进了右侧支架主体侧的支架。测试结果表明,改进后,怠速和二档大开节气门的内部噪声的A加权声压级分别降低了2.9 dB(A)和4 dB(A)。在二档全开油门处也没有明显的隆隆声。希望本文可以帮助汽车噪声,振动和粗糙度工程师进行故障排除和声音设计。

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