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Thermal and mechanical properties of biodegradable composites of polypropylene carbonate) and starch-poly(methyl acrylate) graft copolymer

机译:聚丙烯酸酯和淀粉-丙烯酸甲酯接枝共聚物的生物可降解复合材料的热力学性能

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Starch-g-poly(methyl acrylate) (S-g-PMA) copolymer was prepared by eerie ammonium nitrate-initiated polymerization of methyl acrylate onto corn starch (CS). Our analyses, including FTIR, DSC and TGA measurements confirmed the successful grafting of PMA onto starch and the grafting percentage of the copolymer was calculated. The S-g-PMA was subsequently mixed with biodegradable poly(propylene carbonate) (PPC) at various proportions in a batch mixer. The morphology, mechanical properties, as well as thermal properties of PPC/S-g-PMA composites were investigated. Tensile tests showed that the S-g-PMA incorporation improved the stiffness and tensile strength of composites significantly. Experimental results indicated that the S-g-PMA addition led to an improvement in the thermal stability of resulting composites. Moreover, the PPC/S-g-PMA composites showed greater elongation and better phase adhesion between PPC matrix and reinforcements than PPC/CS composite without S-g-PMA.
机译:淀粉-g-聚(丙烯酸甲酯)(S-g-PMA)共聚物是通过硝酸铵引发的丙烯酸丙烯酯在玉米淀粉(CS)上的聚合反应制备的。我们的分析(包括FTIR,DSC和TGA测量)证实了PMA成功接枝到淀粉上,并计算出共聚物的接枝率。随后在间歇混合器中将S-g-PMA与生物可降解的聚碳酸亚丙酯(PPC)以各种比例混合。研究了PPC / S-g-PMA复合材料的形貌,力学性能以及热性能。拉伸试验表明,S-g-PMA的加入显着提高了复合材料的刚度和拉伸强度。实验结果表明,添加S-g-PMA可以提高所得复合材料的热稳定性。而且,与没有S-g-PMA的PPC / CS复合材料相比,PPC / S-g-PMA复合材料在PPC基体和增​​强材料之间显示出更大的伸长率和更好的相粘附性。

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