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Experimental Investigation on the Effect of Graphene Oxide Additive on the Steady-State and Dynamic Shear Properties of PDMS-Based Magnetorheological Elastomer

机译:石墨烯氧化物添加剂对PDMS磁流变弹性体稳态和动态剪切特性的实验研究

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摘要

Isotropic polydimethylsiloxane (PDMS)-based magnetorheological elastomers (MREs) filled with various contents of graphene oxide (GO) additive were fabricated by the solution blending-casting method in this work. The morphologies of the produced MREs were characterized, and the results indicate that the uniform distribution of GO sheets and carbonyl iron particles (CIPs) becomes difficult with the increase of GO content. The steady-state and dynamic shear properties of the MREs under different magnetic field strengths were evaluated using parallel plate rheometer. It was found that the physical stiffness effect of GO sheets leads to the increase of the zero-field shear modulus with increasing GO content under both the steady-state and dynamic shear loads. The chemical crosslinking density of PDMS matrix decreases with the GO content due to the strong physical crosslinking between GO and the PDMS matrix. Thus, the MREs filled with higher GO content exhibit more fluid-like behavior. Under the dynamic shear load, the absolute MR effect increases with the GO content due to the increased flexibility of the PDMS matrix and the dynamic self-stiffening effect occurring in the physical crosslinking interfaces around GO sheets. The highest relative MR effect was achieved by the MREs filled with 0.1 wt.% GO sheets. Then, the relative MR effect decreases with the further increase of GO content due to the improved zero-field modulus and the increased agglomerations of GO and CIPs. This study shows that the addition of GO sheets is a possible way to prepare new MREs with high MR effect, while simultaneously possessing high zero-field stiffness and load bearing capability.
机译:通过该作品中的溶液共混铸造方法制造填充有各种石墨烯(GO)添加剂的各自含有各种含量的石墨烯(GO)添加剂的磁流变硅氧烷(PDMS)的等异脱甲基硅氧烷(PDMS)。所产生的MRE的形态表征,结果表明,随着GO含量的增加,GO纸和羰基颗粒(CIP)的均匀分布变得困难。使用平行板流变仪评估不同磁场强度下MRE的稳态和动态剪切特性。结果发现,在稳态和动态剪切载荷下,Go纸张的物理刚度效应导致零场剪切模量的增加随着稳态和动态剪切载量的增加。由于GO和PDMS矩阵之间的强物理交联,PDMS基质的化学交联密度随着GO含量而降低。因此,充满了更高的去含量的MRE表现出更流体状的行为。在动态剪切载荷下,由于PDMS矩阵的灵活性以及在GO纸周围的物理交联界面中发生的动态自加强效果增加,绝对MR效应随着GO含量而增加。最高的相对MR效应是通过填充0.1重量%的女士实现的。%Go床单。然后,由于改善的零场模量和GO和CIP的增加的扩散,相对MR效应随着GO含量的进一步增加而降低。本研究表明,添加床单是一种可能的方法来准备高MIR效应的新生,同时具有高零场刚度和承载能力。

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