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Corrigendum:Dry-spinning of cellulose nanocrystal/polylactic acid composite fibers

机译:更正:纤维素纳米晶体/聚乳酸复合纤维的干纺

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In the present study, the authors explored the viability of dry-spinning to produce cellulose nanocrystal (CNC) and polylactic acid composite fibers from dimethylformamide solutions. Fiber surface morphology, crystallinity and mechanical properties were assessed for fibers with 0, 1, 3 and 5 wt% CNCs. The fiber morphology transitioned from smooth to sharkskin to severe melt fracture with increasing extrusion speed. Surface morphology appeared to be weakly dependent on CNC content and addition of CNCs did not reduce melt fracture. Addition of 1 wt% CNC resulted in the highest crystallinity, an approximately 30% increase for the dry-spun composite fibers. Fibers exhibited a mixture of ductile and brittle-like behavior during mechanical testing. The elastic modulus and strength at failure were measured for three fiber diameter ranges and for increasing CNC content. A maximum average elastic modulus of 6.5 GPa and 100 MPa increase in strength at failure are reported for dry-spun composite fibers.
机译:在本研究中,作者探索了干纺从二甲基甲酰胺溶液生产纤维素纳米晶体(CNC)和聚乳酸复合纤维的可行性。对具有0、1、3和5 wt%CNC的纤维的纤维表面形态,结晶度和机械性能进行了评估。随着挤出速度的增加,纤维的形态从光滑转变为鲨鱼皮,再到严重的熔体破裂。表面形态似乎对CNC含量的依赖性很弱,添加CNC并不能减少熔体破裂。添加1 wt%的CNC可获得最高的结晶度,对于干纺复合纤维,其结晶度提高了约30%。在机械测试过程中,纤维表现出延展性和脆性的混合状态。对于三个纤维直径范围和增加的CNC含量,测量了断裂时的弹性模量和断裂强度。据报道,干纺复合纤维的最大平均弹性模量为6.5 GPa,断裂强度增加100 MPa。

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