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Impact properties of acrylate rubber-modified PVC:udInfluence of temperature

机译:丙烯酸酯橡胶改性PVC的冲击性能温度的影响

摘要

The enhancement of the impact resistance of plastics through the introduction of a rubbery dispersed phase is one of the means to develop high impact strength polymers and has been exploited commercially on a large scale. Rubber-toughened PVC-U or high impact PVC-U is one such important class of rubber-toughened plastics material which has been developed and has a wide application in the building and furniture industries. The type of impact modifiers most commonly used for window frame applications are chlorinated polyethylene, ethylene-vinyl acetate and acrylate modifiers. The current trend shows the importance and popularity of high impact-acrylate-modified PVC. The objective of this research is to extend the existing understanding of toughness enhancement in rubber-toughened polymer materials to acrylate rubber-modified PVC. This paper reports on the effect of temperature on the impact strength of acrylate rubber-modified PVC-U using the instrumented falling weight impact test (IFWI) method. Toughening and fracture mechanism in acrylate-modified PVC were also investigated. The results show that all the acrylate rubber-toughened PVC blends have successfully shifted the ductile–brittle transition points to a lower temperature. However, the impact modifiers were found to differ in their efficiency to shift the ductile to brittle transition. The findings from the SEM study shows that the fibrous yielding phenomenon observed is an indication of the transition of the brittle stage to ductile stage and correlates well with the large increases of the impact strength.ud
机译:通过引入橡胶状分散相来增强塑料的抗冲击性是开发高抗冲强度聚合物的手段之一,并且已经在商业上得到了大规模开发。橡胶增韧的PVC-U或高抗冲PVC-U是这类重要的橡胶增韧塑料材料之一,已被开发并广泛应用于建筑和家具行业。最常用于窗框应用的抗冲改性剂的类型是氯化聚乙烯,乙烯-乙酸乙烯酯和丙烯酸酯改性剂。目前的趋势表明,高抗冲丙烯酸酯改性的聚氯乙烯的重要性和普及性。这项研究的目的是将现有的橡胶增韧聚合物材料对韧性增强的理解扩展到丙烯酸酯橡胶改性的PVC。本文使用仪器落锤冲击试验(IFWI)方法报告了温度对丙烯酸酯橡胶改性PVC-U冲击强度的影响。还研究了丙烯酸酯改性PVC的增韧和断裂机理。结果表明,所有丙烯酸酯橡胶增韧的PVC共混物均已成功地将延性脆性转变点转移至较低的温度。然而,发现抗冲改性剂将延性转变为脆性转变的效率不同。 SEM研究的结果表明,观察到的纤维屈服现象表明了脆性阶段向延性阶段的转变,并且与冲击强度的大幅度增加有很好的关联。

著录项

  • 作者

    Azman Hassan; Haworth Barry;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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