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Probing polymer chain constraint and synergistic effects in nylon 6-clay nanocomposites and nylon 6-silica flake sub-micro composites with nanomechanics

机译:探索具有纳米力学的尼龙6粘土纳米复合材料和尼龙6二氧化硅片状亚微复合物中的聚合物链约束和协同效应

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摘要

In this study, we report that a synergistic effect exists in the surface mechanical properties of nylon 6–clay nanocomposites (NC) that can be shown by nanomechanical testing. The hardness, elastic modulus, and nanoindentation creep behavior of nylon 6 and its nanocomposites with different filler loading produced by melt compounding were contrasted to those of model nylon 6 sub-microcomposites (SMC) reinforced by sub-micro-thick silica flakes in which constraint cannot occur due to the difference in filler geometry. Polymer chain constraint was assessed by the analysis of nanoindentation creep data. Time-dependent creep decreased with increasing the filler loading in the NC consistent with the clay platelets exerting a constraint effect on the polymer chains which increases with filler loading. In contrast, there was no evidence of any reduced time-dependent creep for the SMC samples, consistent with a lack of constraint expected due to much lower aspect ratio of the silica flakes
机译:在这项研究中,我们报告说,尼龙6粘土纳米复合材料(NC)的表面力学性能中存在协同作用,这可以通过纳米力学测试证明。通过熔融复合制备的尼龙6及其具有不同填料填充量的纳米复合材料的硬度,弹性模量和纳米压痕蠕变行为与受约束的亚微厚硅片增强的模型尼龙6亚微复合材料(SMC)的硬度,弹性模量和纳米压痕蠕变行为进行了对比由于填料几何形状的差异,不会发生这种情况。通过对纳米压痕蠕变数据的分析来评估聚合物链的约束。随时间变化的蠕变随着NC中填料含量的增加而降低,这与粘土薄片对聚合物链施加约束效应有关,该效应随填料含量的增加而增加。相比之下,没有证据表明SMC样品的时间依赖性蠕变降低,这与由于二氧化硅鳞片的长径比低得多而缺乏预期的限制相一致。

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