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High-efficiency impact modifier prepared by coagulation emulsion polymerization through internal voiding toughening mechanism

机译:通过内部空洞增韧机理凝结乳液聚合制备的高效抗冲改性剂

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This paper was an application of our previous study on particle coagulation mechanism (Colloid Polym Sci 291: 2385-2398, 2013), and the effect of coagulation particle of acrylic impact modifiers (ACR) on polymer blend properties was investigated. The compatibility was relevant with the properties of shell phase rather than the structure of core phase. The rubber content was found to be the main influencing factor for toughening when rubber content less than 5%. However, when it reached to 7%, the dispersion of rubber became the primary parameter to dominate the toughness. The highest impact strength of poly(vinyl chloride) (PVC) toughened by coagulation particles was 1656J/m, nearly 56 times than pure PVC, whereas only 45 times was reached when toughening by traditional ACR prepared by seeded emulsion polymerization; moreover, the brittle-ductile transition happened in advanced of 2phr at ACR content. Scanning electron microscopy results showed that the shear yielding of the matrix and rubber cavitation were the major toughening mechanisms. Furthermore, the high performance of blend responsible for coagulation particles was discussed. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:本文是我们先前在颗粒凝结机理研究中的应用(Colloid Polym Sci 291:2385-2398,2013),并研究了丙烯酸抗冲改性剂(ACR)的凝结颗粒对聚合物共混物性能的影响。相容性与壳相的性质有关,而不与核相的结构有关。当橡胶含量小于5%时,发现橡胶含量是增韧的主要因素。但是,当达到7%时,橡胶的分散性成为支配韧性的主要参数。凝结颗粒增韧的聚氯乙烯(PVC)的最高冲击强度为1656J / m,是纯PVC的近56倍,而用种子乳液聚合制备的传统ACR增韧时的冲击强度仅为45倍。此外,在ACR含量下,脆性-韧性转变发生在2phr级。扫描电子显微镜结果表明,基体的剪切屈服和橡胶的空化是主要的增韧机理。此外,讨论了负责凝结颗粒的共混物的高性能。版权所有(c)2014 John Wiley&Sons,Ltd.

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