Liao Guojiang, Zhang Wenzheng, Zeng Qingna, Peng Xiangfeng, Wu Wanjun, Liu Shuai, Lan Bin, Zhang Yixiong
Science and Technology on Reactor System Design Technology Laboratory, Nuclear Power Institute of China, Chengdu 610213, China.
Polymers (Basel). 2022 Sep 6;14(18):3708. doi: 10.3390/polym14183708.
Magnetorheological elastomer (MRE) is a kind of smart material, whose mechanical property can be controlled by the external magnetic field quickly and reversibly. The damping property of MRE is one of the most concerned properties when designing MRE based devices. In this work, the influence of gamma radiation on the damping property of MRE was investigated. Six different exposures of gamma radiation were applied to the MRE samples. The highest gamma radiation dose was up to 1 × 10 Gy(Si), which can cover most of the engineering application scenarios. The influence of gamma radiation on the damping-strain relation and the damping-magnetic-field relation were studied. The probable mechanisms were discussed in detail. It is found that the gamma radiation does not affect the variation trend of loss factor of MRE with increasing strain amplitude or magnetic flux density. But it affects the variation trend of the maximum change of strain-induced or magnetic-field-induced loss factor of MRE. Besides, with constant strain and constant magnetic flux density, the loss factor of MRE shows w-shape variation trend with increasing gamma radiation dose. It is considered to be resulted from the combined action of the intrinsic damping and the interfacial friction damping of MRE.
磁流变弹性体(MRE)是一种智能材料,其力学性能可由外部磁场快速且可逆地控制。MRE的阻尼性能是设计基于MRE的器件时最受关注的性能之一。在这项工作中,研究了γ辐射对MRE阻尼性能的影响。对MRE样品施加了六种不同的γ辐射暴露。最高γ辐射剂量高达1×10 Gy(Si),这可以涵盖大多数工程应用场景。研究了γ辐射对阻尼-应变关系和阻尼-磁场关系的影响。详细讨论了可能的机制。发现γ辐射不影响MRE损耗因子随应变幅值或磁通密度增加的变化趋势。但它影响MRE应变诱导或磁场诱导损耗因子最大变化的趋势。此外,在恒定应变和恒定磁通密度下,MRE的损耗因子随γ辐射剂量增加呈w形变化趋势。这被认为是由MRE的固有阻尼和界面摩擦阻尼的共同作用导致的。