开发了一种创新的方法来研究结构和相关参数对水衬套动力性能的影响

Ma Tianfei, Qiao Xuebing, Hu Jiehong
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引用次数: 0

摘要

由于固有的物理限制,传统的弹性体轴套不能同时满足低频振动控制和高频结构噪声隔离的相互冲突的要求。这些相互矛盾的要求导致了水衬套的发展。简单介绍了液压衬套的工作原理。同时,给出了两个最重要的动态特性参数。在多学科仿真软件AMESim (Advanced Modeling and simulation Environment for systems Engineering)中建立了新型的液压衬套模型。利用数学软件MATLAB (Matrix Laboratory)在AMESim软件中对模型的仿真结果进行处理。在MTS 831伺服液压试验台上进行了动态特性试验。实验数据与仿真结果吻合较好。从而证明了虚拟样机模型的正确性和可信性。最后,利用该模型研究了结构参数及相关参数对水衬套动力性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Notice of RetractionDevelopment of an innovative method for researching the structural and related parameters effect on the dynamic behavior of hydrobushings
Due to their own inherent physical limitations conventional elastomeric bushings cannot simultaneously satisfy the conflicting requirements of low frequency shake control versus high frequency structure-borne noise isolation. These contradicting requirements have brought about the development of hydrobushings. The operational principle of hydrobushings was introduced simply. Meanwhile, two most important dynamic characteristic parameters were illustrated. The novel and innovative model of hydrobushing was built in multi-disciplinary simulation software AMESim (Advanced Modeling and Simulation Environment for systems Engineering). The mathematical software MATLAB (Matrix Laboratory) was used to process the simulation results of model in software AMESim. The dynamic characteristic tests were performed with MTS 831 servo-controlled hydraulic test rig. And experimental data are conformable to the simulation results. Therefore, it proves that virtual prototype model is correct and believable. Finally, this innovative model was used to research how the structural and related parameters have an effect on the dynamic behavior of hydrobushings.
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