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Crystallization behavior of organo-nanoclay treated and untreated kraft fiber-HDPE composites

机译:有机纳米粘土处理和未处理的牛皮纸-HDPE复合材料的结晶行为

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摘要

Both non-isothermal and isothermal crystallization behaviors of neat HDPE and organo-nanoclay treated and untreated kraft fiber-high density polyethylene (HDPE) or HDPE-maleic anhydride polyethylene (MAPE) composites were analyzed using differential scanning calorimetry (DSC). The isothermal crystallization process was studied by the Avrami model. The crystallization patterns and organo-nanoclay distribution was characterized by X-ray diffraction (XRD). It was found that both organo-nanoclay treated and untreated kraft fibers could act as nucleating agent for the HDPE polymer when the fiber length was comparatively small. All composites crystallized much faster than the neat HDPE, while their crys-tallinity levels were lower. The organo-nanoclay treatment of kraft fibers made the crystallinity level lower, but the nucleation rate increased in the composites compared to the untreated kraft fiber-HDPE composites. But both the crystallinity level and the nucleation rate of the composites were increased by adding MAPE compatibilizer to the composites. MAPE increased the d-spacing of the organo-nanoclay layers in the composites and resulted in exfoliated clay platelets when the fiber loading was as high as 40 wt%.
机译:使用差示扫描量热法(DSC)分析了纯HDPE以及有机纳米粘土处理和未处理的牛皮纸-高密度聚乙烯(HDPE)或HDPE-马来酸酐聚乙烯(MAPE)复合材料的非等温和等温结晶行为。通过Avrami模型研究了等温结晶过程。通过X射线衍射(XRD)表征了结晶模式和有机纳米粘土分布。发现当纤维长度相对较小时,有机纳米粘土处理的和未处理的牛皮纸纤维均可以充当HDPE聚合物的成核剂。所有复合材料的结晶速度都比纯HDPE快得多,而其哭泣度则更低。牛皮纸纤维的有机纳米粘土处理降低了结晶度,但与未处理的牛皮纸纤维-HDPE复合材料相比,复合材料的成核速率增加。但是,通过在复合材料中添加MAPE增容剂,可以提高复合材料的结晶度和成核速率。当纤维负载量高达40 wt%时,MAPE增加了复合材料中有机纳米粘土层的d间距,并导致了片状粘土薄片的剥落。

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