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Excellent impact strength of ethylene-methyl acrylate copolymer toughened polycarbonate\ud

机译:乙烯 - 丙烯酸甲酯共​​聚物增韧聚碳酸酯的优异冲击强度\ ud

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摘要

The intrinsic notch sensitivity of polycarbonate (PC) demands improvement in the notched impact strength for a variety of applications. Blends of PC/ethylene-methyl acrylate (EMA) copolymer of different compositions were prepared by melt blending using a co-rotating twin-screw extruder. The notched izod impact strength of PC/EMA blends showed a positive blending effect and increased 381% with incorporation of a very little amount of EMA (5%) with a marginal decrease in the tensile strength of PC. Tensile data was also analyzed by using predictive theories. Incorporation of EMA decreases the glass transition temperature of PC and facilitates its processing. Scanning electron micrographs of cryogenically fractured samples after etching were used to study the phase structure. A two phase morphology was seen with a fine dispersion of rubber granules in the PC matrix. On the other hand, the impact fractured surface of PC/EMA blends indicated debonding of EMA particles, leaving hemispherical bumps, indicating inadequate interfacial adhesion between PC and EMA.\ud
机译:聚碳酸酯(PC)的固有缺口敏感性要求在多种应用中改善缺口冲击强度。通过使用同向旋转双螺杆挤出机进行熔融共混来制备不同组成的PC /乙烯-丙烯酸甲酯(EMA)共聚物的共混物。 PC / EMA共混物的缺口伊佐德冲击强度显示出积极的共混效果,并通过掺入极少量的EMA(5%)而增加了381%,而PC的拉伸强度却有所下降。还使用预测理论分析了拉伸数据。 EMA的结合降低了PC的玻璃化转变温度并促进了其加工。蚀刻后的低温断裂样品的扫描电子显微照片用于研究相结构。观察到两相形态,橡胶颗粒在PC基质中分散良好。另一方面,PC / EMA共混物的冲击断裂表面表明EMA颗粒脱粘,留下了半球形的凸起,表明PC和EMA之间的界面粘合不足。

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