首页> 外文OA文献 >Multi-response analysis in the material characterisation of electrospun poly (lactic acid)/halloysite nanotube composite fibres based on Taguchi design of experiments : fibre diameter, non-intercalation and nucleation effects
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Multi-response analysis in the material characterisation of electrospun poly (lactic acid)/halloysite nanotube composite fibres based on Taguchi design of experiments : fibre diameter, non-intercalation and nucleation effects

机译:基于Taguchi实验设计的电纺聚(乳酸)/卤化物纳米管复合纤维材料表征中的多响应分析:纤维直径,无嵌入和成核效应

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摘要

Poly (lactic acid) (PLA)/halloysite nanotube (HNT) composite fibres were prepared by using a simple and versatile electrospinning technique. The systematic approach via Taguchi design of experiments (DoE) was implemented to investigate factorial effects of applied voltage, feed rate of solution, collector distance and HNT concentration on the fibre diameter, HNT non-intercalation and nucleation effects. The HNT intercalation level, composite fibre morphology, their associated fibre diameter and thermal properties were evaluated by means of X-ray diffraction (XRD) analysis, scanning electron microscopy (SEM), imaging analysis and differential scanning calorimetry (DSC), respectively. HNT non-intercalation phenomenon appears to be manifested as reflected by the minimal shift of XRD peaks for all electrospun PLA/HNT composite fibres. The smaller-fibre-diameter characteristic was found to be sequentially associated with the feed rate of solution, collector distance and applied voltage. The glass transition temperature (T g) and melting temperature (T m) are not highly affected by varying the material and electrospinning parameters. However, as the indicator of the nucleation effect, the crystallisation temperature (T c) of PLA/HNT composite fibres is predominantly impacted by HNT concentration and applied voltage. It is evident that HNT's nucleating agent role is confirmed when embedded with HNTs to accelerate the cold crystallisation of composite fibres. Taguchi DoE method has been found to be an effective approach to statistically optimise critical parameters used in electrospinning in order to effectively tailor the resulting physical features and thermal properties of PLA/HNT composite fibres.
机译:聚乳酸(PLA)/硅藻土纳米管(HNT)复合纤维是通过使用简单通用的静电纺丝技术制备的。通过Taguchi实验设计(DoE)的系统方法用于研究施加电压,溶液的进料速率,收集器距离和HNT浓度对纤维直径,HNT非嵌入和成核作用的阶乘影响。分别通过X射线衍射(XRD)分析,扫描电子显微镜(SEM),成像分析和差示扫描量热法(DSC)评估了HNT的嵌入水平,复合纤维的形态,相关的纤维直径和热性能。对于所有电纺PLA / HNT复合纤维,XNT峰的最小位移似乎反映了HNT的非嵌入现象。发现较小的纤维直径特性与溶液的进料速度,集电极距离和施加电压顺序相关。玻璃化转变温度(T g)和熔融温度(T m)不受改变材料和电纺丝参数的影响很大。但是,作为成核效果的指标,PLA / HNT复合纤维的结晶温度(T c)主要受HNT浓度和施加电压的影响。显然,当嵌入HNT以加速复合纤维的冷结晶时,HNT的成核剂作用得到了证实。 Taguchi DoE方法已被发现是统计上优化静电纺丝中使用的关键参数的有效方法,以便有效地调整所得的PLA / HNT复合纤维的物理特性和热性能。

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