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Layered Nanocomposites of Platelet Particles and Polymers

机译:血小板颗粒和聚合物的层状纳米复合材料

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摘要

Clay-polymer nanocomposites with a low addition of clay (<5 wt.%) in a polymer matrix results in significant improvement in material properties. Natural materials, such as nacre, show that a combination of a high platelet content in a polymer matrix with a layered packing of the platelets is strong and tough, even if the reinforcing component is itself brittle. This achievement of nature has inspired the synthesis of materials to mimic the nacre structure using smectite clay which has high aspect ratio and elastic modulus. This structure was reproduced by layer-by-layer assembly methods and improved the strength of such materials. A more rapid mass-production pathway has been found to produce sufficient order. We assembled a range of platelet-like particles such as clays, layered double hydroxides and graphene by similar methods and explored layered nanocomposites with polymers. We judge that these approaches will lead to a new generation of high stiffness to weight ratio materials based on biomimetic structures.
机译:在聚合物基质中添加少量粘土(<5 wt。%)的粘土聚合物纳米复合材料可显着改善材料性能。天然材料(如珍珠母)显示出,即使增强成分本身是脆性的,聚合物基质中高血小板含量与血小板的分层堆积的结合也是强而有力的。大自然的成就启发了使用具有高长宽比和弹性模量的蒙脱石粘土合成材料来模仿珍珠母结构的想法。这种结构是通过逐层组装的方法重现的,并提高了这种材料的强度。已经发现更快速的批量生产途径可以产生足够的订单。我们通过相似的方法组装了一系列片状颗粒,例如粘土,层状双氢氧化物和石墨烯,并探索了具有聚合物的层状纳米复合材料。我们认为这些方法将导致基于仿生结构的新一代高刚度重量比材料。

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