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Study of Interlayer Spacing Collapse During Polymer/Clay Nanocomposite Melt Intercalation

机译:聚合物/粘土纳米复合材料熔体插层过程中层间间距塌陷的研究

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The influence of the chemical structure of alkylammonium organo-modifying montmorillonite clays on the ability to form nanocomposites by melt blending, depending on the processing temperature and the organoclay thermal treatment, has been investigated. On one side chlorinated polyethylene/Cloisite(r)30B (nano)composite has been prepared by melt intercalation at 175℃ and its wide angle X-ray diffraction pattern revealed that the peak characteristic of the interlayer spacing of the organoclay was shifted to lower d-spacing, indicating a collapse of the organoclay structure. On the other side, (nano)composites based on ethylene-vinyl acetate copolymer/Cloisite 30B have been prepared by melt intercalation at 140℃. At this temperature, exfoliation was observed with the as-received organoclay while the same organo-modified clay, simply dried at 180℃ for 2 hours, induced again the formation of a composite with a collapsed structure. The effect of the Cloisite(r)30B thermal treatment on the morphology and mechanical properties of ethylene-vinyl acetate-based (nano)composites was investigated using wide angle X-ray diffraction and tensile tests. In order to shed some light on the origin of this clay interlayer collapse, organoclay modified with various ammonium cations bearing long alkyl chains with different amounts of unsaturations were studied using wide angle X-ray diffraction and X-ray photoelectron spectroscopy before and after thermal treatment at 180℃ for 2 hours. Isothermal thermogravimetric analysis of all organoclays was also investigated. The layers collapse effect is discussed depending upon the level of unsatured hydrocarbon present in the organic surfactant.
机译:已经研究了烷基铵有机改性蒙脱土粘土的化学结构对通过熔融共混形成纳米复合材料的能力的影响,具体取决于工艺温度和有机粘土热处理。一方面,通过在175℃熔融插层制备了氯化聚乙烯/ Cloisite(r)30B(纳米)复合材料,其广角X射线衍射图表明有机粘土的层间间距的峰特征向较低的方向移动-间距,表明有机粘土结构塌陷。另一方面,通过在140℃熔融插层制备了基于乙烯-乙酸乙烯酯共聚物/氯乙烯30B的(纳米)复合材料。在此温度下,观察到的是原样的有机粘土的剥落现象,而相同的有机改性的粘土在180℃简单干燥2小时后,又再次诱导了结构塌陷的复合材料的形成。使用广角X射线衍射和拉伸试验研究了Cloisite(r)30B热处理对乙烯-醋酸乙烯酯基(纳米)复合材料的形态和力学性能的影响。为了弄清这种粘土夹层塌陷的起源,研究了热处理前后使用广角X射线衍射和X射线光电子能谱研究了用各种带有长烷基链且具有不同不饱和度的铵阳离子改性的有机粘土。在180℃下2小时。还研究了所有有机粘土的等温热重分析。根据有机表面活性剂中存在的不饱和烃的含量来讨论层塌陷效应。

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