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Properties of rubber-toughened Polyvinyl chloride blends based on core-shell modifier with different particle morphology

机译:基于不同颗粒形态的核壳改性剂的橡胶增韧聚氯乙烯共混物的性能

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摘要

An analysis was made on the effects of particle morphology on the mechanical and optical properties of polyvinyl chloride/methyl methacrylate-butadiene-styrene (PVC/ MBS) blends. Special care was taken to make comparisons of blends with different structural MBS under same conditions. The blend with a three-layer structure MBS had a lowest brittle-ductile transition (BDT) temperature, while the blend with a two-layer structure MBS had a relatively higher BDT temperature due to its higher Tg of rubber particles enhanced by combination of St. Furthermore, the transparency of blend with two-layer structure MBS was higher than that with three-layer structure MBS. In addition, SEM investigations showed the cavitation of rubber particles took place to remove the plastic constraint and promote a large volume of deformation in the blend with three-layer structure MBS.
机译:分析了颗粒形态对聚氯乙烯/甲基丙烯酸甲酯-丁二烯-苯乙烯(PVC / MBS)共混物的机械和光学性能的影响。在相同条件下,要特别注意比较具有不同结构MBS的共混物。具有三层结构MBS的共混物具有最低的脆性-延性转变(BDT)温度,而具有两层结构MBS的共混物具有相对较高的BDT温度,这是由于St的结合提高了橡胶颗粒的较高Tg此外,具有两层结构MBS的共混物的透明度高于具有三层结构MBS的共混物的透明度。此外,SEM研究表明,在三层结构MBS的共混物中,橡胶颗粒发生了空化以消除塑性约束并促进大量变形。

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