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Line-patterned hybrid magnetorheological elastomer developed by 3D printing

机译:通过3D打印开发的线型混合磁流变弹性体

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This article presents the development of line-patterned magnetorheological elastomers via 3D printing and their magnetorheological characterization. Herein, we consider five different patterns of magnetorheological fluid filaments that are printed and encapsulated within the elastomer matrix. The 3D-printed magnetorheological elastomers could represent the conventional isotropic and anisotropic magnetorheological elastomers. First, the effect of patterning the magnetorheological fluid filaments and the effect of change in the direction of the magnetic field is studied for all five patterns. Thereafter, the dynamic properties of 3D-printed magnetorheological elastomers under uniaxial deformation are presented. Magnetorheological effect shown by 3D-printed magnetorheological elastomers was found to be depended on the printed patterns as well as the direction of the applied magnetic field. This result showed that the 3D printing method has the potential to produce anisotropic magnetorheological elastomers or unique configuration of magnetic particles within the elastomer matrix. The dynamic testing showed that the storage modulus of 3D-printed magnetorheological elastomers is increased with increasing frequency and decreased with increasing strain amplitude, which signifies that the 3D-printed hybrid magnetorheological elastomers are also viscoelastic materials and the properties are magnetic field dependent as that of current magnetorheological elastomers.
机译:本文介绍了通过3D打印的线型磁流变弹性体的开发及其磁流变特性。在此,我们考虑了磁流变液丝的五种不同图案,它们被印刷并封装在弹性体基质中。 3D打印的磁流变弹性体可以代表常规的各向同性和各向异性磁流变弹性体。首先,对所有五个模式研究了磁流变流体细丝的图案化效果以及磁场方向变化的效果。此后,提出了3D打印的磁流变弹性体在单轴变形下的动力学特性。发现由3D打印的磁流变弹性体显示的磁流变效应取决于打印的图案以及所施加磁场的方向。该结果表明3D打印方法具有产生各向异性磁流变弹性体或弹性体基质内磁性颗粒独特构造的潜力。动态测试表明,3D打印的磁流变弹性体的储能模量随频率增加而增加,而随应变幅度的增加而减小,这表明3D打印的磁流变弹性体也是粘弹性材料,其性能与磁场强度有关。目前的磁流变弹性体。

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