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Design of experiments for thermo-mechanical behavior of polypropylene/high-density polyethylene/ nanokaolinite clay composites

机译:聚丙烯/高密度聚乙烯/纳米高岭土复合材料热力学行为实验设计

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This paper deals with the preparation of nanocomposites using polypropylene (PP)/high-density polyethylene (PE) blend and low-cost nanokaolinite clay by melt compounding in a Thermo Haake Rheocord mixer. The optimization of processing parameters and nanoclay content is done using Box-Behnken design of response surface methodology. Mechanical properties are modeled in terms of processing parameters and nanoclay content and results are verified using statistical analysis. Most reports suggest that kaolinite clay is difficult to disperse in polymer matrix compared to costly montmorillonite clay. This difficulty is overcome by surface modification of nanokaolinite clay by an organic group and the effect of modification is studied using melt flow index, thermal stability and dynamic mechanical behavior. Morphological characterization is done by scanning electron microscopy and X-ray diffraction. Study shows that cheap and abundantly occurring nanokaolinite clay is an efficient reinforcing agent for PP/PE blend. Design of experiments can be effectively used to model such a system, which is influenced by a number of variables. It is also observed that surface modification of the nanoclay with an organic group leads to remarkable improvement in the thermal and mechanical properties of the blend.
机译:本文涉及通过在Thermo Haake Rheocord混合机中熔融混合,使用聚丙烯(PP)/高密度聚乙烯(PE)共混物和低成本纳米高岭石粘土制备纳米复合材料。使用响应表面方法的Box-Behnken设计完成了工艺参数和纳米粘土含量的优化。根据加工参数和纳米粘土含量对机械性能进行建模,并使用统计分析验证结果。大多数报告表明,与昂贵的蒙脱石粘土相比,高岭石粘土难以分散在聚合物基质中。通过有机基团对纳米高岭土进行表面改性克服了这一困难,并利用熔体流动指数,热稳定性和动态力学行为研究了改性效果。形态表征通过扫描电子显微镜和X射线衍射进行。研究表明,廉价且大量存在的纳米高岭土是PP / PE共混物的有效增强剂。实验设计可以有效地用于对这样一个系统建模,该系统受许多变量的影响。还观察到用有机基团对纳米粘土的表面改性导致共混物的热和机械性能的显着改善。

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