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Preparation and properties of successive alkali treated completely biodegradable short jute fiber reinforced PLA composites

机译:连续碱处理的可生物降解的短麻黄纤维增强PLA复合材料的制备与性能

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The natural fiber reinforced biodegradable polymer composites were prepared with short jute fiber as reinforcement in PLA (Poly lactic acid) matrix. The short jute fiber is successively treated with NaOH at various concentrations (5%, 10%, and 15%) and H2O2. The composites were prepared with untreated and treated short jute fibers at different weight proportions (up to 25%) in PLA and investigated for mechanical properties. The results showed that the composite with successive alkali treated jute fiber at 10% NaOH and H2O2 with 20% fiber loading has shown 18% higher flexural strength than neat PLA and untreated jute/PLA composite. The flexural modulus of the composite at 25% fiber loading was 125% and 110% higher than that of composites with untreated fibers and neat PLA, respectively. The impact strength of composite with untreated fibers at higher fiber weight fraction was 23% high as compared to neat PLA and 26% high compared to composite with treated fibers. The water absorption was more for untreated jute/PLA composite at 25% fiber loading than all other composites. The composite with untreated fibers has high thermal degradation compared with treated fibers but lower than that of pure PLA matrix. The enzymatic environment has increased the rate of degradation of composites as compared to soil burial. Surface morphology of biodegraded surfaces of the composites were studied using SEM method. POLYM. COMPOS., 37:2160-2170, 2016. (c) 2015 Society of Plastics Engineers
机译:以短黄麻纤维为增强剂,在PLA(聚乳酸)基体中制备了天然纤维增强的生物可降解聚合物复合材料。黄麻短纤维依次用各种浓度(5%,10%和15%)的NaOH和H2O2处理。用未经处理和处理过的短黄麻纤维(在PLA中具有不同的重量比例(最高25%))制备复合材料,并研究其机械性能。结果表明,在10%NaOH和20%纤维负载下连续用碱处理过的黄麻纤维复合材料的复合材料的抗弯强度比纯PLA和未处理的黄麻/ PLA复合材料高18%。纤维含量为25%时,复合材料的弯曲模量分别比未经处理的纤维和纯PLA的复合材料高125%和110%。与未处理的纤维相比,未处理纤维的复合材料的冲击强度与纯PLA相比高23%,而与经处理的纤维的复合材料相比则高26%。未经处理的黄麻/ PLA复合材料在纤维含量为25%时的吸水率高于所有其他复合材料。与未处理纤维相比,具有未处理纤维的复合材料具有较高的热降解率,但低于纯PLA基质。与土壤掩埋相比,酶促环境提高了复合材料的降解速率。采用SEM方法研究了复合材料生物降解表面的表面形貌。 POLYM。 COMPOS。,37:2160-2170,2016.(c)2015年塑料工程师学会

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