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首页> 外文期刊>Journal of low frequency noise, vibration and active control >Improved vehicle interior structure-borne noise induced by the powertrain using parallel dry friction damper
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Improved vehicle interior structure-borne noise induced by the powertrain using parallel dry friction damper

机译:使用平行的干式摩擦阻尼器改善动力总成诱导的车辆内部结构传承噪声

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摘要

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 attention, among which structure-borne noise is hard to diagnose. To solve the problem, the transfer path analysis method of powertrain structure-borne noise has been systematically analyzed. By introduction of the powertrain source-path-receiver model, this method enables the researchers to estimate and study the noise, vibration, and harshness transfer functions and their operational forces. The aim is to further improve noise, vibration, and harshness with minimal negative impact on other vehicle attributes, such as ride comfort, handling, drivability, durability, etc. In this article, a parallel dry friction damper was added to the vehicle nearside powertrain mount, which is the most significant one to the receiver of passenger vehicle for improving its interior structure-borne noise induced by the engine. The test vehicle was a midsize executive vehicle. Since the structure-borne noise is composed of multiple paths, then the transfer path analysis test of the vehicle was carried out, and the transfer function and operational data at speed range started from 20 to 100 km/h were obtained. On the basis of the transfer path analysis results and the above principle, the friction damper on the body side of the nearside mount is improved by combination of the experimental transfer path analysis and the final measurements. The results indicate that a significant reduction for the A-weighted sound pressure level of the interior noise has been gained when the frictional damper was added to conventional mount.
机译:由于车辆舒适性和人们提高生态意识的要求较高,因此对车辆内部噪音的研究得到了广泛的关注,其中结构噪音难以诊断。为了解决问题,系统地分析了动力系结构噪声的转移路径分析方法。通过引入动力总成源路径接收器模型,该方法使研究人员能够估算和研究噪声,振动和严格转移功能及其操作力。目的是进一步改善噪声,振动和严格对其他车辆属性的负面影响,例如乘坐舒适性,处理,驾驶性,耐用性等。在本文中,将平行的干摩擦阻尼器添加到车辆附近的动力总成安装,这是乘用车接收器最重要的一个,用于改善发动机引起的内部结构 - 传承噪声。测试车辆是中型行政车辆。由于结构传播的噪声由多条路径组成,因此进行了车辆的转移路径分析测试,并且在速度范围内的转移函数和操作数据从20到100km / h开始。在转移路径分析结果和上述原理的基础上,通过实验转移路径分析和最终测量的组合改善了接近侧安装的主体侧的摩擦阻尼器。结果表明,当将摩擦阻尼器添加到传统的安装时,已经获得了内部噪声的加权声压水平的显着降低。

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