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Assessment of vibration and transmissibility behaviour of a rubber engine mount considering vibration tuned modification

机译:考虑振动调整修正的橡胶发动机悬置的振动和传递性能评估

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摘要

Most research and development of internal combustion engine mounting system is to achieve and improve the primary vibration isolator of the engine from the chassis. The purpose of this study is to gain a better knowledge and evaluate the vibration assessment and transmissibility of a rubber engine mount (REM) in vibration suppression of a vehicle engine. The experimental test stand is designed to present the simulation of the actual operating condition which was used on a Lada 2107 vehicle's engine and manual gearbox supported by three types of engine mounting. An improved understanding of the vibration signal is required for early detection of transmissibility. Vibration isolation performances of the engine mount system, such as acceleration and transmitted force, are experimentally evaluated and they are presented in both time and frequency domains. The engine mounting transmission ratios (EMTR) are presented at various engine operating speeds with different mount types. Moreover, the results indicate that root mean square (RMS) of EMTR performance is improved by 14%, 16.5%, 17.9%, 18.6% and 19% at an engine speed of 800 rpm, 1,600 rpm, 2,400 rpm, 3,100 rpm, 4,000 rpm, respectively by using the proposed engine cone and shear mounting system associated with the tuned vibration absorber modification.
机译:内燃机安装系统的大部分研究与开发是从底盘实现和改进发动机的主要隔振器。这项研究的目的是获得更好的知识并评估橡胶发动机悬架(REM)在车辆发动机减振中的振动评估和可传递性。实验性试验台旨在模拟实际操作条件,该条件用于Lada 2107车辆的发动机和由三种类型的发动机支架支撑的手动变速箱。需要对振动信号有更好的了解,以便及早发现透射率。通过实验评估了发动机悬置系统的隔振性能,例如加速度和传递的力,并在时域和频域中进行了介绍。发动机安装传动比(EMTR)以不同的发动机运行速度和不同的安装类型显示。此外,结果表明在800 rpm,1,600 rpm,2,400 rpm,3,100 rpm,4,000的发动机转速下,EMTR性能的均方根(RMS)分别提高了14%,16.5%,17.9%,18.6%和19%分别通过使用与调整后的减振器修改相关的拟议的发动机锥体和剪切安装系统来实现rpm。

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