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Effect of polymer/organoclay composition on morphology and rheological properties of polylactide nanocomposites

机译:聚合物/有机粘土组合物对聚乳酸纳米复合材料形态和流变性能的影响

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In this work the relationships between system composition, polymer-organoclay interaction, morphology and rheological response, under shear, and elongational flow, of different melt compounded polylactic acid (PLA)/organoclay nanocomposites are investigated, with the aim to properly select the better organoclay for a well-specified PLA grade and processing technology. Polylactide nanocomposites are prepared using two commercial polylactide grades (PLA 4032D and PLA 2003D) and two different organomodified montmorillonites (Cloisite 30B and Nanofil SE3010). FTIR analysis evidences the occurrence of stronger polymer/organoclay interactions for the system PLA4032D+C30B, resulting in a higher clay dispersion and exfoliation levels. Moreover, rheological tests at low shear rates show that, if PLA 2003D is used as polymer matrix (differing from PLA4032D by the presence of a high molecular weight tail), a better dispersed nanomorphology can be obtained with Nanofil SE3010, characterized by a double d-spacing compared to Cloisite 30B, despite the higher polar character of this latter nanofiller. On the other hand, elongational rheological measurements evidence for NSE3010-based hybrids a marked extensional thickening, whilst the stronger polar interactions between the phases in both the polylactide grades filled with C30B, determine increments in elongational viscosity, but inhibit the strain hardening behavior. POLYM. COMPOS., 36:1135-1144, 2015. (c) 2015 Society of Plastics Engineers
机译:在这项工作中,研究了不同熔融复合聚乳酸(PLA)/有机粘土纳米复合材料的体系组成,聚合物-有机粘土相互作用,形态和流变响应(在剪切力和伸长率下)之间的关系,目的是适当选择更好的有机粘土用于特定的PLA等级和加工技术。聚乳酸纳米复合材料是使用两种商品级别的聚乳酸(PLA 4032D和PLA 2003D)和两种不同的有机改性蒙脱土(Cloisite 30B和Nanofil SE3010)制备的。 FTIR分析表明,系统PLA4032D + C30B发生了更强的聚合物/有机粘土相互作用,从而导致更高的粘土分散度和剥落水平。此外,在低剪切速率下的流变测试表明,如果将PLA 2003D用作聚合物基质(由于存在高分子量尾巴而与PLA4032D有所不同),则用Nanofil SE3010可获得更好的分散纳米形貌,其特征是双d与Cloisite 30B相比,间距更小,尽管后者的纳米填料具有更高的极性。另一方面,基于NSE3010的杂化体的延伸流变学测量结果显示出明显的延伸增稠,而在填充有C30B的两个聚丙交酯级中,相之间更强的极性相互作用决定了延伸粘度的增加,但抑制了应变硬化行为。 POLYM。 COMPOS。,36:1135-1144,2015.(c)2015年塑料工程师学会

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