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首页> 外文期刊>Polymer Composites >Mechanical and degradation properties of natural fiber-reinforced PLA composites: Jute, sisal, and elephant grass
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Mechanical and degradation properties of natural fiber-reinforced PLA composites: Jute, sisal, and elephant grass

机译:天然纤维增强PLA复合材料的机械和降解性能:黄麻,剑麻和大象草

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摘要

An experimental study has been carried out to investigate and characterize the properties of elephant grass fiber reinforced fully biodegradable poly lactic acid (PLA) composites. The composites were prepared with various weight fractions of untreated and treated fibers in PLA matrix using injection moulding technique. The tensile strength of PLA composite with treated elephant grass at 20% fiber loading was 18.14% and 24% higher than that of treated jute/PLA composite and plain PLA, respectively. While the flexural strength of treated elephant grass/PLA composite at same fiber loading was 4% and 22% higher than that of treated sisal composite and plain PLA, respectively. The impact strength of composites with untreated elephant grass, sisal and jute fibers were 129.5%, 111.5% and 22.3%, respectively higher when compared with plain PLA. The water absorption rate increased in all the composites as the fiber content increased and the absorption rate reduced with successive alkali treatment on the fibers. The thermal stability of the composite had been reduced with successive alkali treatments as evident from the TGA analysis. The percentage weight loss in all the composites was linearly increasing with number of days of soil burial. The degradation was high in composite with untreated fibers at highest weight fraction. Using enzymatic environment, the degradation was much faster compared to soil burial. Significant effect of surface modification was evident during observing surface morphology of tensile fractured and soil degraded surfaces of the composites using SEM. POLYM. COMPOS., 39:1125-1136, 2018. (c) 2016 Society of Plastics Engineers
机译:已经进行了实验研究以研究和表征大象草纤维增强全生物降解的聚乳酸(PLA)复合材料的性质。使用注射成型技术在PLA矩阵中用各种重量分数和处理的纤维制备复合材料。 PLA复合材料的拉伸强度分别为20%纤维负荷的大象草为18.14%和24%,分别高于经过处理的黄麻/ PLA复合材料和平原PLA。虽然相同纤维负载的经处理的大象草/ PLA复合材料的抗弯强度分别比处理过的Sisal复合材料和平原PLA高出4%和22%。与Plap PLA相比,未经处理的大象草,Sisal和黄麻纤维的复合材料的冲击强度分别为129.5%,111.5%和22.3%。随着纤维含量的增加,所有复合材料中的吸水率增加,并且在纤维上的连续碱处理减少了吸收率。随着TGA分析的明显,复合材料的热稳定性已经减少。所有复合材料中的重量损失百分比随着土壤墓穴的天数线性增加。在最高重量级分的复合材料中,降解在复合材料中高。使用酶活性,与土壤埋葬相比,降解得多。在使用SEM观察复合材料的拉伸裂缝和土壤降解表面的角度形态期间,表面改性的显着效果是显而易见的。聚合物。 Compos。,39:1125-1136,39:1125-1136,2018。(c)2016年塑料工程师协会

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