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A new type of semi-active hydraulic engine mount using controllable area of inertia track

机译:新型半主动液压发动机悬置,其惯性区域可控

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摘要

Automotive engine mounts function to constrain the engine shake motion resulting at low-frequencies, as well as to isolate noises and vibrations generated by the engine with unbalanced disturbances at the high frequencies. The property of the mount depends on vibration amplitude and excitation frequency. It means that the excitation amplitude is large in low excitation frequency range and small in high frequency range. In this paper, a new hydraulic engine mount with a controllable area of inertia track is proposed and investigated. Theoretical works with the mount model to isolate the engine-related vibrations were conducted by an optimal algorithm to control the area of the inertia track under shocks and multi-signal force excitations. This research clearly gives an analysis of the considerable changes in the mount dynamic properties according to the changes in the inertia track area. Consequently, when the inertia track area is tuned, the transmissibility of the mount is effectively reduced.
机译:汽车发动机支架的作用是限制因低频而引起的发动机震动,并隔离发动机产生的噪声和振动,以及在高频时产生的不平衡干扰。支架的性能取决于振动幅度和激励频率。这意味着激励幅度在低激励频率范围内较大而在高频范围内较小。本文提出并研究了一种具有可控惯性区域的液压发动机支架。通过一种优化算法来进行座架模型的理论工作,以隔离与发动机有关的振动,以控制在冲击和多信号力激励下惯性轨道的面积。这项研究清楚地给出了根据惯性轨道区域的变化对安装动态特性的重大变化的分析。因此,当调整惯性轨道区域时,有效地降低了支架的透射率。

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