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Polymer/layered silicate nanocomposites as high performance ablative materials

机译:聚合物/层状硅酸盐纳米复合材料作为高性能烧蚀材料

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摘要

The ablative performance of poly(caprolactam) (nylon 6) nanocomposites is examined. A relatively tough, inorganic char forms during the ablation of these nanocomposites resulting in at least an order--of magnitude decrease in the mass loss (erosion) rate relative to the neat polymer. This occurs for as little as 2 wt./100 (~ 0.8 vol./100) exfoliated mica-type layered silicate. The presence of the layers does not alter the first--order decomposition kinetics of the polymer matrix. Instead, the nanoscopic distribution of silicate layers leads to a uniform char layer that enhances the ablative performance. The formation of this char is only minutely influenced by the type of organic modification on the silicate surface or specific interactions between the polymer and the aluminosilicate surface, such as end-tethering of a fraction of the polymer chains through ionic interaction to the layer surface. Thus, the enhancement in ablative performance should be general for the class of exfoliated layered silicate/polymer nanocomposites.
机译:检查了聚己内酰胺(尼龙6)纳米复合材料的烧蚀性能。在这些纳米复合材料的烧蚀过程中,形成了一种相对坚韧的无机碳,导致相对于纯净聚合物质量损失(侵蚀)速率至少降低了一个数量级。这种现象只发生在2 wt./100(〜0.8 vol./100)脱落的云母型层状硅酸盐中。层的存在不会改变聚合物基体的一级分解动力学。取而代之的是,硅酸盐层的纳米级分布导致形成均匀的炭层,从而增强了烧蚀性能。这种炭的形成仅受到硅酸盐表面上有机改性类型或聚合物与铝硅酸盐表面之间特定相互作用(例如,部分聚合物链通过离子相互作用与层表面的末端束缚)的微小影响。因此,对于剥落的层状硅酸盐/聚合物纳米复合材料,消融性能的提高应该是普遍的。

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