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Effects of surface modification and ultrasonic agitation on the properties of PHBV/ZnO nanocomposites

机译:表面改性和超声搅拌对PHBV / ZnO纳米复合材料性能的影响

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摘要

Zinc oxide (ZnO) particles were synthesized from aqueous solution by chemical precipitation method. Self-aggregated rod-shaped particles were obtained. Silane modification and ultrasonic dispersion were compared in terms of effectiveness on particle deagglomeration. Complete deagglomeration was achieved with ultrasonic dispersion for untreated particles. Surface-treated and/or ultrasound-applied ZnO particles were incorporated into PHBV matrix by melt-extrusion. Good particle dispersion was achieved in the composites regardless of the agglomeration observed in particles prior to polymer matrix inclusion. Number of regular, rod-shaped particles observed was higher in the composites produced with ultrasound-dispersed particles. ZnO crystals did not affect the melting and crystallization temperatures of PHBV composites, but the degree of crystallinity was decreased. Thermal degradation temperature of PHBV was slightly decreased with ZnO addition. Tensile strength, elongation at break, and toughness of PHBV were affected positively when ultrasound-dispersed (treated or untreated) particles were incorporated into PHBV matrix; whereas application of both ultrasound and silane treatment produced better results.
机译:采用化学沉淀法从水溶液中合成了氧化锌(ZnO)颗粒。获得自聚集的棒状颗粒。比较了硅烷改性和超声分散对颗粒解聚的有效性。通过超声分散处理未处理的颗粒,可以实现完全解聚。通过熔融挤出将经过表面处理和/或超声施加的ZnO颗粒掺入PHBV基质中。不管在包含聚合物基质之前在颗粒中观察到的团聚,在复合物中都实现了良好的颗粒分散。用超声分散的颗粒生产的复合材料中观察到的规则杆状颗粒的数量更高。 ZnO晶体不影响PHBV复合材料的熔融和结晶温度,但结晶度降低。添加ZnO后PHBV的热降解温度略有下降。当将超声分散(处理或未处理)的颗粒掺入PHBV基质中时,PHBV的拉伸强度,断裂伸长率和韧性受到积极影响。而超声和硅烷处理的应用产生了更好的结果。

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