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Vibration Isolation of Automotive Vehicle Engine Using Periodic Mounting Systems

机译:使用定期安装系统的汽车发动机隔振

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Customer awareness and sensitivity to noise and vibration levels have been raised through increasing television advertisement, in which the vehicle noise and vibration performance is used as the main market differentiation. This awareness has caused the transportation industry to regard noise and vibration as important criteria for improving market shares. One industry that tends to be in the forefront of the technology to reduce the levels of noise and vibration is the automobile industry. Hence, it is of practical interest to reduce the vibrations induced structural responses. The automotive vehicle engine is the main source of mechanical vibrations of automobiles. The engine is vulnerable to the dynamic action caused by engine disturbance force in various speed ranges. The vibrations of the automotive vehicle engines may cause structural failure, malfunction of other parts, or discomfort to passengers because of high level noise and vibrations. The mounts of the engines act as the transmission paths of the vibrations transmitted from the excitation sources to the body of the vehicle and passengers. Therefore, proper design and control of these mounts are essential to the attenuation of the vibration of platform structures. To improve vibration resistant capacities of engine mounting systems, vibration control techniques may be used. For instance, some passive and semi-active dissipation devices may be installed at mounts to enhance vibration energy absorbing capacity. In the proposed study, a radically different concept is presented whereby periodic mounts are considered because these mounts exhibit unique dynamic characteristics that make them act as mechanical filters for wave propagation. As a result, waves can propagate along the periodic mounts only within specific frequency bands called the "Pass Bands" and wave propagation is completely blocked within other frequency bands called the "Stop Bands". The experimental arrangements, including the design of mounting systems with plain and periodic mounts will be studied first. The dynamic characteristics of such systems will be obtained experimentally in both cases. The tests will be then carried out to study the performance characteristics of periodic mounts with geometrical and/or material periodicity. The effectiveness of the periodicity on the vibration levels of mounting systems will be demonstrated theoretically and experimentally. Finally, the experimental results will be compared with the theoretical predictions.
机译:通过增加电视广告,提高了客户对噪声和振动水平的认识和敏感性,其中以车辆的噪声和振动性能为主要市场差异。这种认识已使运输业将噪声和振动视为提高市场份额的重要标准。汽车行业是一种在降低噪音和振动水平方面处于技术领先地位的行业。因此,减少振动引起的结构响应具有实际意义。机动车发动机是汽车机械振动的主要来源。发动机容易受到各种速度范围内的发动机干扰力引起的动态作用。由于高水平的噪音和振动,机动车辆发动机的振动可能会导致结构故障,其他部件故障或使乘客感到不适。发动机的支座用作从激励源传递到车辆和乘客身体的振动的传递路径。因此,对这些安装座进行适当的设计和控制对于衰减平台结构的振动至关重要。为了提高发动机安装系统的抗振能力,可以使用振动控制技术。例如,一些无源和半有源耗散设备可以安装在底座上,以增强振动能量吸收能力。在提出的研究中,提出了一种根本不同的概念,其中考虑了周期性安装座,因为这些安装座具有独特的动态特性,使其成为波传播的机械滤波器。结果,波只能在称为“通带”的特定频带内沿着周期性安装架传播,而波的传播在称为“阻带”的其他频带内完全被阻止。首先将研究实验布置,包括带有平装和定期安装架的安装系统的设计。在两种情况下,都将通过实验获得此类系统的动态特性。然后将进行测试,以研究具有几何和/或材料周期性的周期性安装座的性能特征。理论上和实验上将证明周期性对安装系统振动水平的有效性。最后,将实验结果与理论预测值进行比较。

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