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Reprocessability of high impact polystyrene/clay nanocomposites in extrusion

机译:高抗冲聚苯乙烯/粘土纳米复合材料在挤出过程中的可再加工性

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摘要

Plastics' recycling contributes to society with economic, social and environmental benefits. Therefore, recyclability of a material is an important environmental factor to be considered in the development of new materials, such as nanocomposites. In this study, high impact polystyrene (HIPS) and its nanocomposites with 3 and 5 wt% of Cloisite 20A were processed within four extrusion cycles in a single screw extruder having Maddock mixing section. Changes in nanostructure, in thermal, flow and mechanical properties, and in morphology of neat HIPS and its nanocomposites with reprocessing cycles were investigated. X-Ray diffractograms showed that the basal interplanar distance of clay layers increased at the first extrusion cycle, indicating the formation of nanocomposites with intercalated structure, but remained almost constant along extrusion cycles. The MEV micrographs presented improved distribution and dispersion of clay agglomerates with extrusion cycles. The melt flow index and mechanical properties showed a tendency to increase and reduce or vice-versa along extrusion cycles due to competition between crosslinking and chain scission reactions. Since the degradation mechanisms of neat HIPS and its nanocomposites were similar, the observed differences between them were related to reinforcing and barrier effect of clay, content of agglomerates, and their distribution and dispersion along extrusion cycles. A distinct mechanical behavior was observed only for 5wt% clay nanocomposite due to the high proportion of agglomerates present in this composition.
机译:塑料的回收利用为社会带来了经济,社会和环境效益。因此,材料的可回收性是开发新材料(例如纳米复合材料)时要考虑的重要环境因素。在这项研究中,在具有Maddock混合段的单螺杆挤出机中,在四个挤出周期内加工了高抗冲聚苯乙烯(HIPS)及其具有3%和5 wt%Cloisite 20A的纳米复合材料。研究了纯HIPS及其纳米复合材料的纳米结构,热,流动和机械性能以及后处理循环的变化。 X射线衍射图显示,在第一个挤出循环中,粘土层的基面间距离增加,表明形成了具有插层结构的纳米复合材料,但在挤出循环中几乎保持恒定。 MEV显微照片显示,随着挤出周期的增加,粘土团聚体的分布和分散性得到了改善。由于交联和断链反应之间的竞争,熔体流动指数和机械性能显示出在挤出循环中增加和减少的趋势,反之亦然。由于纯HIPS及其纳米复合材料的降解机理相似,因此它们之间观察到的差异与粘土的增强和阻隔作用,附聚物的含量以及它们在挤出循环中的分布和分散有关。由于存在于该组合物中的附聚物的比例很高,因此仅对于5wt%的粘土纳米复合物观察到了明显的机械行为。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2016年第3期|87-96|共10页
  • 作者单位

    Department of Materials Engineering - DEMAT, Federal University of Paraiba - UFPB, Cidade Universitaria, s, Castelo Branco, 58051 -900, Joao Pessoa, PB, Brazil;

    Laboratory of Chemical Analysis, Chemical and Manufactured Center, Institute for Technological Research, Av. Almeida Prado, 532, predio 48, Cid. Universitaria, Butanta, 05508-901, Sao Paulo, SP, Brazil;

    Department of Materials Engineering - DEMAT, Federal University of Paraiba - UFPB, Cidade Universitaria, s, Castelo Branco, 58051 -900, Joao Pessoa, PB, Brazil;

    Department of Materials Engineering - DEMat, Federal University of Rio Grande do Norte - UFRN, CP: 1524, 59072-970, Natal, RN, Brazil;

    Department of Materials Engineering - DEMat, Federal University of Rio Grande do Norte - UFRN, CP: 1524, 59072-970, Natal, RN, Brazil;

    Department of Materials Engineering - DEMAT, Federal University of Paraiba - UFPB, Cidade Universitaria, s, Castelo Branco, 58051 -900, Joao Pessoa, PB, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanocomposite; Recycling; HIPS; Clay; Extrusion;

    机译:纳米复合材料回收;HIPS;粘土;挤压;

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