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Sustainable Acoustics for Powertrain Noise Reduction

机译:可持续声学降低动力总成的声学

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摘要

A common way to reduce the noise of automotive powertrains, both with internal combustion engine (ICE) and electric driveline, is to cover their noise radiating areas. However, the parts used for this purpose, besides being effective from the NVH standpoint, also have to fulfil several non-NVH requirements. For ICE, they have to provide a certain level of thermal insulation while favoring the reduction of fuel consumption and CO2 emissions. For electric powertrains, lightweight, environmental footprint and sustainability become preponderant in the design of engine covers. Combining these multidimensional requirements, a new fiber-based mono-material product for engine-mounted applications is proposed. It is able to provide optimum noise protection in the passenger cabin and greater driving comfort while keeping high level of sustainability, good heat resistance and relatively low weight. This paper deals with the acoustic benchmarking of the newly developed product against various more traditional solutions available on the market. Using an experimental approach, the newly developed solution is positioned against the other bills of materials, in terms of acoustic absorption and insulation performance first at material level. Then, an acoustic performance comparison is carried out at part level on an electric motor mock-up.
机译:使用内燃机(ICE)和电动传动系统,降低汽车动力总成噪音的一种常见方法是覆盖其噪声辐射区域。但是,除了从NVH的角度有效,用于此目的的零件还必须满足几个非NVH要求。对于ICE,他们必须提供一定水平的热绝缘材料,同时有利于减少燃料消耗和CO2排放。对于电力总成,轻巧,环境足迹和可持续性在发动机盖的设计中变得优势。结合了这些多维要求,提出了一种新的基于纤维的单材料产品,用于发动机安装的应用。它能够在乘客舱中提供最佳的噪声保护,并保持更高的驾驶舒适度,同时保持高水平的可持续性,良好的耐热性和相对较低的重量。本文介绍了新开发的产品的原声基准针对市场上可用的各种传统解决方案。使用实验方法,新开发的解决方案定位在其他材料法案上,就材料级别的声学吸收和绝缘性能而言。然后,在电动机模型上进行部分级别进行声学性能比较。

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