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The evaluation and implementation of magnetic fields for large strain uniaxial and biaxial cyclic testing of Magnetorheological Elastomers

机译:磁流变弹性体大应变单轴和双轴循环试验的磁场评估和实现

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摘要

Magnetorheological Elastomers (MREs) are "smart" materials whose physical properties are altered by the application of magnetic fields. In previous studies the properties of MREs have been evaluated under a variety of conditions, however little attention has been paid to the recording and reporting of the magnetic fields used in these tests [1]. Currently there is no standard accepted method for specifying the magnetic field applied during MRE testing. This study presents a detailed map of a magnetic field applied during MRE tests as well as providing the first comparative results for uniaxial and biaxial testing under high strain fatigue test conditions. Both uniaxial tension tests and equi-biaxial bubble inflation tests were performed on isotropic natural rubber MREs using the same magnetic fields having magnetic flux densities up to 206 mT. The samples were cycled between pre-set strain limits. The magnetic field was switched on for a number of consecutive cycles and off for the same number of following cycles. The resultant change in stress due to the application and removal of the magnetic field was recorded and results are presented. (C) 2016 Elsevier Ltd. All rights reserved.
机译:磁流变弹性体(MRE)是“智能”材料,其物理特性会因施加磁场而改变。在以前的研究中,已经在多种条件下评估了MRE的特性,但是很少关注这些测试中使用的磁场的记录和报告[1]。当前,尚无标准的可接受的方法来指定在MRE测试期间施加的磁场。这项研究提供了在MRE测试期间施加的磁场的详细图,并提供了在高应变疲劳测试条件下进行单轴和双轴测试的第一个比较结果。使用具有高达206 mT的磁通密度的相同磁场,对各向同性天然橡胶MRE进行了单轴拉伸试验和等双轴气泡膨胀试验。样品在预设的应变极限之间循环。磁场在多个连续的周期中打开,在相同数量的后续周期中关闭。记录由于施加和去除磁场导致的应力变化,并给出结果。 (C)2016 Elsevier Ltd.保留所有权利。

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