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首页> 外文期刊>Journal of Applied Polymer Science >Effects of microcompounding process parameters on the properties of ABS/polyamide-6 blends based nanocomposites
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Effects of microcompounding process parameters on the properties of ABS/polyamide-6 blends based nanocomposites

机译:微复合工艺参数对基于ABS /聚酰胺6共混物的纳米复合材料性能的影响

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Melt intercalation method was applied to produce acrylonitrile-butadiene-styrene/polyamide-6 (ABS/ PA6) blends based organoclay nanocomposites using a conical twin-screw microcompounder. The blend was compatibilized using a maleated olefinic copolymer. The effects of microcompounding conditions such as screw speed, screw rotation-mode (co- or counter-), and material parameters such as blend composition and clay loading level on the morphology of the blends, dispersibility of nanoparticles, and mechanical properties were investigated. Furthermore, corotating screws were modified to achieve elongational flow which is efficient for obtaining dispersive mixing. The morphology was examined by SEM analysis after preferential extraction of the minor phase. Subsequently, the SEM micrographs were quantitatively analyzed using image analyzer software. The morphology of the blends indicated that processing with counter-rotation at a given screw speed yielded coarser morphology than that of processed with corotation. X-ray diffraction analysis showed that highest level of exfoliation is observed with increasing PA6 content, at 200 rpm of screw speed and in corotation mode. Also, the effects of screw speed, screw rotation mode, and screw modification were discussed in terms of XRD responses of the nanocomposites. The aspect ratio of the clay particles which were measured by performing image analysis on TEM micrographs exhibited a variation with processing conditions and they are in accordance with the modulus of the nanocomposites. (c) 2007 Wiley Periodicals, Inc.
机译:采用锥形双螺杆微粉碎机,采用熔融插层法制备基于丙烯腈-丁二烯-苯乙烯/聚酰胺-6(ABS / PA6)共混物的有机粘土纳米复合材料。使用马来化烯烃共聚物使共混物相容。研究了微混合条件(例如螺杆速度,螺杆旋转模式(共向或反向)和材料参数(如共混物组成和粘土含量)对共混物形态,纳米颗粒的分散性和机械性能的影响。此外,对同向旋转螺杆进行了改造,以实现有效地获得分散混合的伸长流动。优先提取次要相后,通过SEM分析检查形态。随后,使用图像分析仪软件对SEM显微照片进行定量分析。共混物的形态表明,在给定的螺杆转速下进行反向旋转加工所产生的形态要比同向旋转进行加工时更粗糙。 X射线衍射分析表明,随着PA6含量的增加,在200 rpm的螺杆转速和同向旋转模式下,剥落水平最高。此外,根据纳米复合材料的XRD响应讨论了螺杆速度,螺杆旋转模式和螺杆改性的影响。通过在TEM显微照片上进行图像分析而测量的粘土颗粒的长径比随加工条件而变化,并且它们与纳米复合材料的模量一致。 (c)2007年Wiley Periodicals,Inc.

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