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首页> 外文期刊>Journal of intelligent material systems and structures >MRE Properties under Shear and Squeeze Modes and Applications
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MRE Properties under Shear and Squeeze Modes and Applications

机译:剪切和挤压模式下的MRE属性及其应用

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Magnetorheological elastomers (MREs) are smart materials whose mechanical properties, like their modulus and elasticity, can be controlled by an external magnetic field. This feature has resulted in a number of novel applications, such as adaptive tuned dynamic vibration absorbers for suppressing unwanted vibrations over a wide frequency range. MRE-based devices operate in different modes, such as shear mode and squeeze mode; however, the study of mechanical performances of MREs under squeeze mode is very rare. This article aims to investigate MRE performances under both shear and squeeze modes. Experimental studies and simulations were conducted to analyze the MR effect in both modes. These studies indicate a different working frequency ranges for both modes. In a case study, a MRE-based vibration absorber was built up in a simulation and its mechanical performances were analyzed, which demonstrated good capabilities in reducing vibrations.
机译:磁流变弹性体(MRE)是智能材料,其机械性能(例如模量和弹性)可以通过外部磁场控制。此功能已导致了许多新颖的应用,例如用于在宽频率范围内抑制有害振动的自适应调谐动态吸振器。基于MRE的设备以不同的模式运行,例如剪切模式和挤压模式。然而,在挤压模式下对MRE的力学性能的研究很少。本文旨在研究剪切和挤压模式下的MRE性能。进行了实验研究和仿真,以分析两种模式下的MR效应。这些研究表明两种模式的工作频率范围不同。在一个案例研究中,在模拟中构建了基于MRE的减震器,并对其机械性能进行了分析,证明了其在减少振动方面的良好能力。

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