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Effect of loading fraction of three-dimensional graphene foam (3D-C) on thermal, mechanical, and shape memory properties of 3D-C/SMP composite

机译:三维石墨烯泡沫(3D-C)对3D-C / SMP复合材料热,机械和形状记忆性能的影响

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Here, we have studied the effect of loading fraction of 3D-graphene (3D-C) on the properties of epoxy-based shape memory polymer (SMP). 3D-C has already been proven to be an effective filler to improve the thermal conductivity, resulting in increased shape transformation efficiency of the SMP. We prepared a series of 3D-C/ SMP composite with different volume fractions of 3D-C and compared their thermal, mechanical, and shape memory properties. We observed that as the 3D-C content increases, the thermal conductivity of the composite increases along with shape transformation performances. However, interestingly, in conflict with typical nanofillers, we observed that the mechanical strength decreases at higher loading fraction due to the obstruction of polymer chains by interconnected branches. Hence, to leverage the extraordinary improvement of thermal conductivity by 3D-C, a careful design based on the amount of loading is essential to obtain a balance between thermal conductivity, mechanical strength and shape memory performance.
机译:这里,我们研究了在环氧基形状记忆聚合物(SMP)的基于环氧树脂的性质上的载荷分数的影响。 3D-C已被证明是有效的填充物,以提高导热率,导致SMP的形状变换效率提高。我们制备了一系列3D-C / SMP复合材料,具有不同的3D-C体积分数,并比较了它们的热,机械和形状记忆性能。我们观察到,随着3D-C含量的增加,复合材料的导热率随着形状变换性能而增加。然而,有趣的是,在与典型的纳米填充物的冲突中,我们观察到由于互连的分支阻塞由于聚合物链的阻塞,因此机械强度降低。因此,为了利用3D-C的热导率的非凡改善,基于负载量的仔细设计对于获得导热性,机械强度和形状记忆性能之间的平衡是必不可少的。

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