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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical and Thermal Properties of Eva Blended with Biodegradable Ethyl Cellulose
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Mechanical and Thermal Properties of Eva Blended with Biodegradable Ethyl Cellulose

机译:EVA与可生物降解的乙基纤维素混合的机械和热学性能

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In this study, biodegradable blend of Poly (Ethylene-co-Vinyl Acetate) (EVA) and Ethyl Cellulose (EC) were prepared. Ethylene vinyl alcohol (EVOH) copolymer was used as an interfacial compatibilizer to enhance adhesion between EVA and EC. The melt blended compatibilized biocomposites were examined for mechanical and thermal properties as per the ASTM standards. It has been found that the EC has a reinforcing effect on EVA leading to enhanced tensile strength and also impart biodegradability. Thus, a high loading of 50% EC could be added without compromising much on the mechanical properties. Analysis of the tensile data using predictive theories showed an enhanced interaction of the dispersed phase (EC) and the matrix (EVA). The compatibilizing effects of EVOH on these blends were confirmed by the significant improvement in the mechanical properties comparable with neat EVA as also observed by SEM microscopy. The TGA thermograms exhibits two-stage degradation and as EC content increases, the onset temperature for thermal degradation reduces.
机译:在这项研究中,制备了可生物降解的聚(乙烯-乙酸乙烯酯共聚物)(EVA)和乙基纤维素(EC)的混合物。乙烯-乙烯醇(EVOH)共聚物用作界面增容剂,以增强EVA和EC之间的粘合力。按照ASTM标准检查熔融共混的增容生物复合材料的机械和热性能。已经发现EC对EVA具有增强作用,导致增强的拉伸强度并且还赋予生物降解性。因此,可以添加高含量的50%EC,而不会在很大程度上损害机械性能。使用预测理论分析拉伸数据表明,分散相(EC)和基体(EVA)的相互作用增强。 EVOH对这些共混物的增容作用通过机械性能的显着改善而得到证实,这也可以通过SEM显微镜观察到,与纯EVA相当。 TGA热分析图显示两阶段降解,并且随着EC含量的增加,热降解的起始温度降低。

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