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Influence of Surface Treatment and Molding Temperature on Mechanical Properties of Jute/PLA-Based Green Composites

机译:表面处理和模塑温度对黄麻/ PLA基绿色复合材料力学性能的影响

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In the present study, the main focus is to increase the interfacial bonding between jute fiber with polylactic acid (PLA) with the help of surface modifications of jute fiber using alkali, potassium permanganate, and potassium dichromate treatments. FTIR spectroscopy result confirms the removal of hemicellulose layer which results in an increase in adhesion of jute fiber with polylactic acid. Jute/PLA composites are prepared using hot compression molding process using treated jute fibers and PLA matrix. This study also exposes the effect on the mechanical properties of developed composites of molding temperatures ranging from 160 to 180°C. Alkali treatments resulted in an increase of 56.1% and 51%, respectively, in the tensile and flexural strength of jute/PLA composites It is so observed that for alkali-treated jute/PLA composite with 170°C molding temperature, maximum tensile and flexural strength were recorded.
机译:在本研究中,主要焦点是通过使用碱,高锰酸钾和二甲酸钾处理的黄麻纤维的表面改性,增加黄麻纤维与聚乳酸(PLA)之间的界面键合。 FTIR光谱结果证实了半纤维素层的去除,导致黄芩纤维与聚乳酸的粘附性增加。 使用经处理的黄麻纤维和PLA基质使用热压缩成型方法制备黄麻/ PLA复合材料。 该研究还暴露了对从160-180℃的成型温度的开发复合材料的机械性能的影响。 碱性处理产生56.1%和51%,分别在黄麻/ PLA复合材料的拉伸和弯曲强度中,如此观察到,对于具有170℃的碱处理的黄麻/ PLA复合材料,具有170°C模塑温度,最大拉伸和弯曲 记录力量。

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