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The preparation and properties of biodegradable polyesteramide composites reinforced with nano-CaCO_3 and nano-SiO_2

机译:纳米CaCO_3和纳米SiO_2增强的可生物降解聚酯酰胺复合材料的制备与性能

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摘要

Composites were fabricated utilizing melt mixing aliphatic polyesteramide (PEA) with ordinary CaCO_3, nano-CaCO_3, and nano-SiO_2. The effect of filler on the matrix was studied by mechanical properties and hydrolysis rate measuring. The ordinary filler as well as the nano-filler had a negative effect on the stability of the polymer melt, and an improved mechanical property was obtained around a critical concentration of the filler where a percolation phenomenon appeared. When the composites underwent hydrolysis, the inert filler played a role as a mechanical obstacle in the matrix and retarded the hydrolysis; on the other hand, the interfacial area between the filler particle and the matrix resin increased with the filler, which would accelerate the hydrolysis. As a result of these two inverse effects, a minimum and a maximum value appeared in the plot of the degradation rate-filler content graph. For the ordinary filler filled polymer, the filler retarded the hydrolysis; in great contrast, the hydrolysis rate of nano-composites showed a maximum value around the critical concentration of the filler, and was much higher than the neat resin.
机译:通过将脂肪族聚酯酰胺(PEA)与普通CaCO_3,纳米CaCO_3和纳米SiO_2熔融混合制备复合材料。通过机械性能和水解速率测量研究了填料对基体的影响。普通填料以及纳米填料对聚合物熔体的稳定性具有负面影响,并且在出现渗透现象的填料的临界浓度附近获得了改善的机械性能。当复合物进行水解时,惰性填料在基质中起机械障碍的作用,并阻碍了水解。另一方面,填料颗粒和基体树脂之间的界面面积随填料的增加而增加,这将加速水解。由于这两个反作用的结果,在降解率-填料含量图的曲线图中出现了最小值和最大值。对于普通的填充填料的聚合物,填料会延迟水解;与之形成鲜明对比的是,纳米复合材料的水解速率在填料的临界浓度附近显示出最大值,并且远高于纯树脂。

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