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Characterization of recycled thermoplastics-based nanocomposites: Polymer-clay compatibility, blending procedure, processing condition, and clay content effects

机译:再生热塑性基纳米复合材料的特性:聚合物-粘土相容性,共混程序,加工条件和粘土含量影响

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摘要

Nanocomposites were prepared from recycled polyolefin and clay via melt-blending. The absence/presence of compatibilizer, the blending procedure, and the processing conditions were varied to study their independent effects. First, the compatibilizers ethylene-glycidyl methacrylate (E-GMA) and/or maleic anhydride polyethylene (MAPE) were incorporated with the clay. Second, the initial one-step blending procedure was replaced with a two-step blending procedure in the preparation of the rHDPE/rPET/clay/E-GMA nanocomposite. Third, the extrusion temperature profile and screw rotation speed (30, 60, 90, 120 and 150 rpm) were altered. The overall results from XRD analysis and flexural testing showed that a combination involving the E-GMA compatibilizer, the two-step blending procedure, a high extrusion temperature and a screw rotation speed of 90 rpm was the most effective for obtaining improved clay dispersion and increasing the flexural properties. In the final investigation, various nanoclay contents (1, 3, 5, 7 and 9 wt.%) were introduced. The results showed that the flexural properties, the dispersion of the clay, the thermal stability and the flammability resistance increased with the nanoclay content. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由再循环的聚烯烃和粘土通过熔融共混制备纳米复合材料。增容剂的存在与否,共混程序和加工条件均经过变化以研究其独立作用。首先,将相容剂乙烯-甲基丙烯酸缩水甘油酯(E-GMA)和/或马来酸酐聚乙烯(MAPE)与粘土混合。其次,在制备rHDPE / rPET /粘土/ E-GMA纳米复合材料时,将最初的一步混合程序替换为两步混合程序。第三,改变挤出温度曲线和螺杆转速(30、60、90、120和150rpm)。 XRD分析和挠曲测试的总体结果表明,结合使用E-GMA增容剂,两步共混程序,高挤出温度和90 rpm的螺杆转速是获得改善的粘土分散性和提高粘度的最有效方法。弯曲特性。在最终研究中,引入了各种纳米粘土含量(1、3、5、7和9 wt。%)。结果表明,随着纳米粘土含量的增加,其挠曲性能,粘土的分散性,热稳定性和可燃性提高。 (C)2017 Elsevier Ltd.保留所有权利。

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