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Low density polyethylene-montmorillonite nanocomposites for film blowing

机译:用于吹膜的低密度聚乙烯-蒙脱土纳米复合材料

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Low density polyethylene nanocomposites were prepared using differently modified montmorillonite (MMT) and different compatibilizers. The best results were obtained for MMT with largest gallery distance. The most exfoliated system was further optimized for superior mechanical properties by varying the compounding condition. The criteria were mechanical properties of nanocomposites and X-ray proofs of exfoliation. The optimized nanocomposites were used for film blowing. The effect of blow ratio on mechanical properties and oxygen permeation of films was evaluated for two best nanocomposites and two films blown from pristine polyethylene. The texture of crystalline phase of blown films was analyzed by X-ray pole figure technique, SAXS and AFM. Two components of texture were detected, the first component related to the molecular orientation of polyethylene by film blowing and take-up and the second connected with the formation of free surfaces of the film. The crystallinity degree from DSC and long period determined from SAXS of polyethylene component were nearly independent of the additives. It indicated that the compatibilizer was preferentially located around clay platelets and did not enter the amorphous layers of polyethylene. Also the orientation of clay platelets was determined by FFIR using 1080 cm(-1) band characteristic for Si-O bonds. A clear correlation of oxygen permeativity of blown films with clay platelets orientation and degree of exfoliation was evidenced. (c) 2007 Elsevier Ltd. All rights reserved.
机译:使用不同的改性蒙脱土(MMT)和不同的增容剂制备低密度聚乙烯纳米复合材料。距离画廊最大的MMT获得了最佳结果。通过改变混合条件,对剥落最厉害的系统进行了进一步优化,以实现卓越的机械性能。标准是纳米复合材料的机械性能和X射线剥落证明。优化的纳米复合材料用于吹膜。对于两种最佳的纳米复合材料和两种由原始聚乙烯吹塑而成的薄膜,评估了吹塑比对薄膜机械性能和氧气渗透的影响。通过X射线极图技术,SAXS和AFM分析了吹塑薄膜的结晶相织构。检测到两个质地成分,第一个成分与通过吹膜和卷取而引起的聚乙烯的分子取向有关,第二个成分与膜的自由表面的形成有关。聚乙烯组分的DSC结晶度和SAXS测定的长期结晶度几乎与添加剂无关。这表明增容剂优选位于粘土薄片周围,并且不进入聚乙烯的无定形层。粘土薄片的方向也由FFIR使用1080 cm(-1)的Si-O键带特征确定。吹膜的透氧性与粘土血小板的取向和剥落程度之间存在明显的相关性。 (c)2007 Elsevier Ltd.保留所有权利。

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