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Structural Identification of Polymer Nanocomposites

机译:聚合物纳米复合材料的结构鉴定

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Composites and nanocomposites as commercially used engineering materials with continuous development, are important for rising market and industry needs. Significant role is played by polymers, whose consumption increases every year, thanks to low cost of production, economical processing and broad scope of material composition possibilities, including nanomaterials and basing on them nanocomposites. Nanocomposites, using power of nanotechnology, may improve physical, chemical and mechanical properties, comparing to composites. Investigation of structure and properties of such materials is necessary to obtain knowledge about phenomena at micro and nanoscale and gives opportunity to design and control structure, because the properties of any material depend on its matter. Polymer matrix nanocomposites are interesting and very promising class of polymer composites. Investigation of structure development due to different heat treatment and under different processing condition of injection molded specimens of polypropylene and montmorillonite composition has been performed. Dispersion of nanoreiriforcement, in the shape of 2:1 layer silicates, was observed under transmission and scanning electron microscope. Application of advanced technology of multiplication of oriented layer mostly reinforcing and orienting micro and nanoparticles along polymeric specimen, allowed to obtain several layers and significantly reinforced material. Light microscope has been used for observation layered zone, visible just in polarization mode.
机译:复合材料和纳米复合材料作为商业用途工程材料,具有持续发育,对市场和行业需求的不断增长至关重要。由于低成本,经济加工和材料成分的广泛范围,包括纳米材料和纳米复合材料,纳米复合材料和纳米复合材料等低成本,每年的消费量,每年的消费增加,每年的消费都会增加。使用纳米技术功率的纳米复合材料可以改善与复合材料相比的物理,化学和机械性能。对这些材料的结构和性质的调查是必要的,以获得关于微型和纳米级的现象的知识,并提供设计和控制结构的机会,因为任何材料的性质取决于其问题。聚合物基质纳米复合材料是有趣的,非常有前途的聚合物复合材料。已经进行了由于不同的热处理和在聚丙烯和蒙脱石组合物的注射成型标本的不同加工条件下进行结构开发的研究。在透射和扫描电子显微镜下观察到纳米针的分散,含有2:1层硅酸盐的形状。聚合物样品掺量大多数增强和定向微型和纳米粒子的倍增技术的应用,使其获得几层和显着增强材料。光显微镜已被用于观察分层区域,可见于极化模式。

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