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首页> 外文期刊>Journal of intelligent material systems and structures >Magneto-mechanical characterization of magnetorheological elastomers
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Magneto-mechanical characterization of magnetorheological elastomers

机译:磁流变弹性体的磁机械特性

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This work analyses the properties and the magneto-mechanical characteristics of magnetorheological elastomers, a class of smart materials not yet broadly investigated. First, set of several samples of this material was manufactured, each one characterized by a different percentage of ferromagnetic material inside the viscoelastic matrix. The specimens were manufactured in order to create isotropic and anisotropic configurations, respectively, with randomly dispersed ferromagnetic particles or with an aligned distribution, obtained through and external magnetic field. Then, the mechanical behaviour of each sample was analysed by conducting a compression test, both with and without an external magnetic field. Moreover, a three-point bending test was also performed on the same specimens. Stiffness, deformation at maximum stress and specific energy dissipated were calculated based on the experimental data. The results were analysed considering the mechanical responses, and an analysis of variance was carried out in order to assess the statistical influence of each variable. The experimental results highlighted a strong correlation between the percentage of ferromagnetic material in each sample and its mechanical behaviour. The anisotropicity of the material, aligned in columnar structures, also affects the stiffness measured in the compression test, while the external magnetic field's main contribution is to reduce the samples' maximum deformation. Using analysis of variance results as guidelines, we built a simple phenomenological model which produces quite reliable predictions regarding the mechanical response of the magnetorheological elastomers under compressive stress.
机译:这项工作分析了磁流变弹性体的性质和磁机械特性,磁流变弹性体是一类尚未广泛研究的智能材料。首先,制造一组这种材料的样品,每个样品的特征是粘弹性基质内部铁磁性材料的百分比不同。制造样本的目的是分别创建各向同性和各向异性的构型,这些构型分别具有通过外部磁场获得的随机分散的铁磁颗粒或排列均匀的分布。然后,通过进行压缩试验,在有或没有外部磁场的情况下,分析每个样品的机械性能。此外,还对相同的样品进行了三点弯曲测试。根据实验数据计算出刚度,最大应力下的变形和耗散的比能。考虑到机械响应,对结果进行了分析,并进行了方差分析,以评估每个变量的统计影响。实验结果突显了每个样品中铁磁材料的百分比与其机械性能之间的密切关系。排列成柱状结构的材料的各向异性也影响压缩试验中测得的刚度,而外部磁场的主要作用是减少样品的最大变形。使用方差分析结果作为指导,我们建立了一个简单的现象学模型,该模型对磁流变弹性体在压缩应力下的机械响应产生了非常可靠的预测。

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