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首页> 外文期刊>International journal of applied mechanics >Acoustic Metamaterials: A Potential for Cabin Noise Control in Automobiles and Armored Vehicles
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Acoustic Metamaterials: A Potential for Cabin Noise Control in Automobiles and Armored Vehicles

机译:声学超材料:控制汽车和装甲车舱噪声的潜力

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摘要

The aim of this paper is to provide an overview of the existing industrial practices used for cabin noise control in various industries such as automotive, marine, aerospace, and defense. However, emphasis is placed on automobiles and armored vehicles. Generally, automobile cabins usually constitute of thin structural panels, where the fundamental frequency typically falls below 200 Hz. If a specific structural mode couples with a specific acoustic mode of the cabin, booming noise occurs. As such, discomfort may be felt by the occupants. Fundamentally, vibroacoustics problems may be minimized if the acoustic modes and the structural modes are decoupled, which is achieved usually by structural modifications or acoustical treatments. However, if excessively performed, the weight limitation of an automobile design will be exceeded; not to mention the adverse effect of increased weight on several factors such as fuel efficiency, mileage life of tires and acceleration of the vehicle. Moreover, current solutions have several drawbacks in low frequency noise control. In light of this, it is of great interest to explore the feasibility of acoustic metamaterials as an alternative with hope to improve cabin noise.
机译:本文的目的是概述汽车,船舶,航空航天和国防等各个行业中用于机舱噪声控制的现有工业实践。但是,重点放在汽车和装甲车上。通常,汽车驾驶室通常由薄的结构面板组成,其基频通常低于200 Hz。如果特定的结构模式与机舱的特定声学模式耦合,则会产生隆隆声。这样,乘员可能会感到不适。根本上,如果声学模式和结构模式解耦,则可以将振动声学问题最小化,这通常通过结构修改或声学处理来实现。但是,如果过度执行,则会超出汽车设计的重量限制;更不用说增加重量对几个因素的不利影响,例如燃油效率,轮胎的里程寿命和车辆加速。此外,当前的解决方案在低频噪声控制中具有多个缺点。有鉴于此,探索声学超材料作为替代品以改善机舱噪声的可行性非常感兴趣。

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