Application and Optimization of Damping Pad to a Body-in-White of a Vehicle for Improved Road Noise, Vibration and Harshness Performance

P. Şendur
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引用次数: 1

Abstract

Road noise is expected to become even more important in the vehicle product development cycle due to electrification and challenging lightweight/emission targets. In this study, a topology optimization algorithm is applied to determine the damping pad layout on the roof and floor panels of a Body-in-White (BIW), being the dominant contributors on road noise, vibration and harshness (NVH) performance of an automotive. Optimization algorithm yields the prescribed % of the surface area of these panels where the damping pad should be distributed set by the automotive Original Equipment Manufacturers (OEMs). The objective function is the minimization of the overall acceleration of these panels for the frequencies up to 200 Hz, while the weight of the BIW is considered as the optimization constraint. The results of the optimization are compared with the road NVH performance of panels with full damping and no damping. The optimization results indicate that by using 25% of the damping pad on the roof and floor panels improve the vibration performance especially in the frequency range of 80 Hz to 150 Hz significantly compared to bare BIW panels. Besides, the performance of the 25% damping is almost same as the application of full damping pad for frequencies between 90 Hz to 110 Hz. The results show that the methodology is able to address the trade-offs between road NVH and weight targets effectively.
减振垫在白车身上的应用与优化,以改善道路噪声、振动和粗糙度性能
由于电气化和具有挑战性的轻量化/排放目标,道路噪音预计将在车辆产品开发周期中变得更加重要。在本研究中,应用拓扑优化算法来确定白车身(BIW)车顶和地板上的阻尼垫布局,这是影响汽车道路噪声、振动和粗糙度(NVH)性能的主要因素。优化算法得到汽车原始设备制造商(oem)设定的减震垫应分布的面板表面积的规定百分比。目标函数是使这些面板在高达200hz的频率下的整体加速度最小化,而白车身的重量被认为是优化约束。将优化结果与全阻尼和无阻尼面板的路面NVH性能进行了比较。优化结果表明,在屋顶和地板上使用25%的阻尼垫比裸白车身板的振动性能有明显改善,特别是在80 ~ 150 Hz的频率范围内。此外,在90 Hz ~ 110 Hz的频率范围内,25%阻尼与全阻尼垫的性能几乎相同。结果表明,该方法能够有效地解决道路NVH和权重目标之间的权衡问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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