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Poly (vinyl chloride)/poly (α-methylstyrene-acrylonitrile)/acrylic resin ternary blends with enhanced toughness and heat resistance

机译:具有增强的韧性和耐热性的聚氯乙烯/聚α-甲基苯乙烯-丙烯腈/丙烯酸树脂三元共混物

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摘要

In this study, tough and high heat-resistant poly (vinyl chloride) (PVC)/poly (α-methylstyrene-acrylonitrile) (α-MSAN) blends (70/30) containing acrylic resin (ACR) as a toughening modifier was prepared. With the addition of ACR, heat distortion temperature increased slightly, which corresponded with the increase in glass transition temperature measured by differential scanning calorimetry and dynamic mechanical thermal analysis. Thermogravimetric analysis showed that addition of ACR improved the thermal stability. With regard to mechanical properties, tough behavior was observed combined with the decrease in tensile strength and flexural strength. A brittle-ductile transition (BDT) in impact strength was found when ACR content increased from 8 to 10 phr. The impact strength was increased by 34.8 times with the addition of 15 phr ACR. The morphology correlated well with BDT in impact strength. It was also suggested from the morphology that microvoids and shear yielding were the major toughening mechanisms for the ternary blends. Our present study offers insight on the modification of PVC, since combination of α-MSAN and ACR improves the toughness and heat resistance of pure PVC simultaneously.
机译:在这项研究中,制备了包含丙烯酸树脂(ACR)作为增韧改性剂的坚韧且高耐热性的聚氯乙烯(PVC)/聚(α-甲基苯乙烯-丙烯腈)(α-MSAN)共混物(70/30) 。加入ACR后,热变形温度略有升高,这与通过差示扫描量热法和动态机械热分析测得的玻璃化转变温度升高相对应。热重分析表明,添加ACR可改善热稳定性。关于机械性能,观察到坚韧的行为以及抗拉强度和抗弯强度的降低。当ACR含量从8 phr增加到10 phr时,发现冲击强度发生脆性-延性转变(BDT)。加入15 phr ACR,冲击强度提高了34.8倍。形态与BDT的冲击强度相关性很好。从形态上还表明,微孔和剪切屈服是三元共混物的主要增韧机理。由于α-MSAN和ACR的组合可同时提高纯PVC的韧性和耐热性,因此本研究为PVC的改性提供了见识。

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