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Automotive vibration and noise control using smart materials: a state of art and challenges

机译:使用智能材料的汽车振动和噪声控制:最新技术和挑战

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摘要

In the past several years, there has been increased market place awareness of noise, vibration, and harshness performance in automobiles. The differentiation between the quality and reliability levels of automobiles has become less pronounced and, as a result, manufacturers have had to demonstrate superiority by focusing on NVH concerns. The automotive industry is currently spending millions of dollars on NVH work to develop new materials and damping techniques so that the damping treatments are lighter, cheaper and more effective. Some of the methods used to control noise, vibration and harshness includes the use of different carpeting treatments, the addition of rubber or asphalt material to car panels, gap sealant, and the injection of expandable foam into body panels. The aim of this study is to explore the feasibility of smart damping materials such as magnetorheological elastomers (MRE), piezoelectric materials, with its basic properties, for augmenting and improving the performance benefits of damping materials. This study also evaluates the noise and vibration benefits of smart damping materials as compared to conventional damping treatments.
机译:在过去的几年中,市场对汽车中的噪声,振动和粗糙度性能的认识不断提高。汽车质量和可靠性水平之间的区别变得不太明显,因此,制造商不得不通过关注NVH问题来证明其优越性。汽车行业目前在NVH上花费了数百万美元,以开发新的材料和阻尼技术,从而使阻尼处理更轻,更便宜,更有效。用于控制噪音,振动和刺耳声的一些方法包括使用不同的地毯处理,在汽车面板中添加橡胶或沥青材料,间隙密封剂以及将可膨胀泡沫注入车身面板。这项研究的目的是探索诸如磁流变弹性体(MRE),压电材料等智能阻尼材料的可行性,以及其基本特性,以增强和改善阻尼材料的性能。这项研究还评估了与传统阻尼处理相比,智能阻尼材料在噪声和振动方面的优势。

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