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首页> 外文期刊>Polymer Degradation and Stability >An assessment of the role of morphology in thermal/thermo-oxidative degradation mechanism of PP/EVA/clay nanocomposites
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An assessment of the role of morphology in thermal/thermo-oxidative degradation mechanism of PP/EVA/clay nanocomposites

机译:形态在PP / EVA /粘土纳米复合材料热/热氧化降解机理中的作用评估

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In this study, morphological properties of polypropylene (PP)/ethylene vinyl acetate copolymer (EVA) (75/25 wt/wt) blend-based nanocomposites containing various amounts of organically modified mont-morillonite (OMMT) were primarily investigated. The incorporation of compatibilizer into nanocomposites decreased EVA droplet size in PP matrix while increasing compatibilizer/OMMT ratio showed a dual behavior with respect to the variations of OMMT interlayer spacing. By a rough estimation it was found that at EVA droplet size of D_n = 0.43 μm, the highest OMMT interlayer spacing would be acheived. Increasing D_n had a negative effect on the OMMT interlayer spacing. Activation energy of thermal/ thermo-oxidative degradation based on Flynn model was obtained. Isothermal degradation test was also performed and desired temperature range for predicting degradation behavior was obtained by means of a free prediction model. An attempt was made to establish a correlation between morphological and thermal/thermo-oxidative parameters and also charred residue morphology. A mechanism for degradation process was proposed according to the changes of chemical bonds during the degradation process probed by FTIR analysis.
机译:在这项研究中,主要研究了聚丙烯(PP)/乙烯乙酸乙烯酯共聚物(EVA)(75/25 wt / wt)共混物包含多种有机改性蒙脱石(OMMT)的纳米复合材料的形态学性能。增容剂掺入纳米复合材料可降低PP基体中的EVA液滴尺寸,同时增加增容剂/ OMMT的比例对OMMT层间距的变化表现出双重行为。通过粗略估计,发现在D_n = 0.43μm的EVA液滴尺寸下,可以实现最高的OMMT层间间距。 D_n的增加对OMMT层间间距有负面影响。根据Flynn模型获得了热/热氧化降解的活化能。还进行了等温降解测试,并通过自由预测模型获得了用于预测降解行为的所需温度范围。试图建立形态学参数和热/热氧化参数之间以及烧焦的残留物形态之间的相关性。根据FTIR分析探讨了降解过程中化学键的变化,提出了降解机理。

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