Features of PVC/ABS compositions filling

K. Khuziakhmetova, A. Islamov, L. Abdrakhmanova, R. Nizamov
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引用次数: 1

Abstract

The work is devoted to the filling of PVC (polyvinyl chloride) compositions modified with ABS (acrylonitrile-butadiene styrene) in a wide concentration range, intended for the production of profiles and moldings of various functional purposes, with short-fiber basalt fiber. Powdered samples were made by extrusion (in the form of flat profiles) and by thermoplasticizing on rolls (in the form of films). Introduction of 10-40 phr ABS in PVC formulation makes it easier to recycle the composition. Similar situation is observed when these compositions are filled with basalt fiber, which leads to insignificant decrease of MFR (melt flow index) and thermal stability, which in general does not reflect negatively on melt flow conditions, at the same time extrudate swelling index decreases by 10-15%, which indicates possibility to provide products with more precise geometric dimensions. The change in the supramolecular structure was evaluated by thermomechanical tests and by energy dispersive analysis using electron microscopy data. Thermomechanical analysis showed that the presence of large doses of ABS has a positive effect on the technological properties, leading to an earlier development of highly elastic deformations and a decrease in the yield point of the compositions. Basalt fiber contributes to an insignificant decrease in the value of high elastic deformations and an increase in the density index of meshing knots. Energy dispersion analysis has shown that introduction of basalt fiber leads to formation of homogeneous structure of PVC at lower concentrations of ABS in the composition, influencing on increase of melt flowability and thermal stability. Improved technological properties of PVC compositions filled with short-fiber basalt fiber, modified with different concentrations of ABS, allow to recommend them for production of a wide range of profile and molded products.
PVC/ABS复合填料特点
该工作致力于用ABS(丙烯腈-丁二烯苯乙烯)在大浓度范围内改性PVC(聚氯乙烯)组合物的填充,用于生产各种功能用途的型材和模塑,使用短纤维玄武岩纤维。粉末样品是通过挤压(以平面轮廓的形式)和在卷上热塑性(以薄膜的形式)制成的。在PVC配方中引入10-40 phr ABS,使组合物更容易回收。当这些成分中填充玄武岩纤维时,其熔体流动指数(MFR)和热稳定性的降低并不明显,总体上不会对熔体流动条件产生负面影响,同时挤出物膨胀指数降低了10-15%,这表明有可能提供更精确的几何尺寸。通过热力学测试和电子显微镜数据的能量色散分析来评估超分子结构的变化。热力学分析表明,大剂量ABS的存在对工艺性能有积极影响,导致组合物的高弹性变形的早期发展和屈服点的降低。玄武岩纤维对高弹性变形值的降低作用不显著,对网格结密度指数的提高作用不显著。能量分散分析表明,玄武岩纤维的引入使PVC在较低ABS浓度下形成均匀结构,对提高熔体流动性和热稳定性有影响。用不同浓度的ABS改性短纤维玄武岩纤维填充的PVC组合物的工艺性能得到改善,可以推荐它们用于各种型材和模塑产品的生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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