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Enhanced ductility and tensile properties of hybrid montmorillonite/cellulose nanowhiskers reinforced polylactic acid nanocomposites

机译:混合的蒙脱土/纤维素纳米晶须增强的聚乳酸纳米复合材料的延展性和拉伸性能提高

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摘要

Montmorillonite (MMT)/cellulose nanowhiskers (CNW) reinforced polylactic acid (PLA) hybrid nanocomposites were prepared by solution casting. CNW were isolated from microcrystalline cellulose using a chemical swelling method. An initial study showed that the optimum MMT content, for mechanical properties, in a PLA/MMT nanocomposite is five parts per hundred parts of polymer (phr). Various amounts of CNW were added to the optimum formulation of PLA/MMT to produce PLA/ MMT/CNW hybrid nanocomposites. FT-IR analysis indicated the formation of some polar interactions, resulting in enhanced tensile properties of the hybrid nanocomposites. The highest tensile strength for the hybrid nanocomposites was obtained for a 1 phr CNW content. Young’s modulus was also found to increase with an increasing CNW content. Interestingly, the strain to failure (or ductility) of the hybrid nanocomposites increased significantly from ~10 to ~90% with the addition of 1 phr CNW. This increase in ductility was proposed to be due to the nucleation of crazes and the formation of shear bands in the PLA.
机译:通过溶液流延制备蒙脱土(MMT)/纤维素纳米晶须(CNW)增强的聚乳酸(PLA)杂化纳米复合材料。使用化学溶胀法从微晶纤维素中分离出CNW。初步研究表明,就机械性能而言,PLA / MMT纳米复合材料的最佳MMT含量为每100份聚合物中五份(phr)。将各种数量的CNW添加到PLA / MMT的最佳配方中,以生产PLA / MMT / CNW杂化纳米复合材料。 FT-IR分析表明一些极性相互作用的形成,导致杂化纳米复合材料的拉伸性能增强。对于1phr的CNW含量,获得了杂化纳米复合材料的最高拉伸强度。还发现杨氏模量随CNW含量的增加而增加。有趣的是,添加1 phr CNW后,杂化纳米复合材料的破坏应变(或延展性)从〜10%显着增加到〜90%。延展性的增加被认为是由于在CLA中出现了疯狂的形核和剪切带的形成。

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