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Tailoring Crystallinity of Electrospun Plla Fibres by Control of Electrospinning Parameters

机译:通过控制电纺参数来调节电纺Plla纤维的结晶度

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Poly(L-lactic acid) (PLLA) fibers were fabricated by electrospinning. The effects of various electrospinning process parameters on the thermal properties, especially the crystallinity of the electrospun fibers were investigated. Thermal analysis of the fibers revealed that they exhibited degree of crystallinity ranging from 23% to 46% while that for the as-received granules was approximately 37%, suggesting that the crystallinity of electrospun PLLA fibres can be controlled by optimizing the electrospinning process. This finding is very important because crystallinity affects polymer properties such as degradation, stiffness, yield stress, modulus and tensile strength, solubility, optical and electrical properties which will in turn affect the behavior of these materials when they are utilized in energy, environment, defense and security applications. The results presented in this paper show that the degree of crystallinity of the electrospun fibers decreased with increasing the polymer solution concentration. Furthermore, an optimum electrospinning voltage at which maximum degree of crystallinity can be obtained was observed. At voltages higher or lower than the optimum electrospinning voltage, the degree of crystallinity will decrease or increase, respectively. The effect of the needle tip to collector distance (NTCD) on the degree of crystallinity follows no predictable and consistent pattern.
机译:聚(L-乳酸)(PLLA)纤维是通过静电纺丝制造的。研究了各种电纺工艺参数对热性能的影响,特别是电纺纤维的结晶度。纤维的热分析表明,它们表现出的结晶度为23%至46%,而所接收颗粒的结晶度约为37%,这表明可以通过优化电纺工艺来控制电纺PLLA纤维的结晶度。这一发现非常重要,因为结晶度会影响聚合物的性能,例如降解,刚度,屈服应力,模量和拉伸强度,溶解度,光学和电学性能,当这些材料用于能源,环境,国防等方面时,反过来会影响这些材料的性能和安全应用程序。本文给出的结果表明,电纺纤维的结晶度随着聚合物溶液浓度的增加而降低。此外,观察到可获得最大结晶度的最佳电纺丝电压。在高于或低于最佳静电纺丝电压的电压下,结晶度将分别降低或增加。针尖到收集器距离(NTCD)对结晶度的影响遵循不可预测且一致的模式。

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