Study on the Melt Electrospinning Method with Internal Electrode and Fiber Refinement

IF 2.2 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES
Qi Xia, Chunming Wang, Bowen Yang, Minghang Li, Wenwen Han, Hongbo Chen
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引用次数: 0

Abstract

Melt electrospinning technology, as a green and efficient fiber manufacturing method, has shown great potential in various fields. However, the viscosity characteristics of the melt make fiber refinement challenging, which has become a major bottleneck for melt electrospinning technology. To further reduce fiber diameter and improve fiber efficiency, this study thoroughly analyzes the effects of melt temperature, auxiliary airflow, and nozzle structure on fiber properties. Additionally, a new melt differential electrospinning technology with an internal electrode structure is proposed. By introducing point electrodes, the electric field strength is enhanced, thus achieving both efficiency improvement and fiber refinement. Experimental results show that appropriately increasing the melt temperature can enhance both efficiency and fiber refinement. The fiber diameter significantly decreases with the increase of auxiliary airflow, although this method does not improve fiber efficiency. The internal electrode structure can increase the amount of fiber while refining the fiber diameter. The internal/external conical nozzle structures are suitable for efficiency improvement and fiber refinement, respectively.

Abstract Image

内电极熔体静电纺丝法及纤维细化研究
熔融静电纺丝技术作为一种绿色高效的纤维制造方法,在各个领域都显示出巨大的潜力。然而,熔体的粘度特性使纤维的细化具有挑战性,这已成为熔体静电纺丝技术的主要瓶颈。为了进一步减小纤维直径,提高纤维效率,本研究深入分析了熔体温度、辅助气流、喷嘴结构对纤维性能的影响。此外,提出了一种内电极结构的熔体差动静电纺丝新技术。通过引入点电极,增强了电场强度,从而实现了效率的提高和纤维的细化。实验结果表明,适当提高熔体温度既能提高效率,又能提高纤维的精密度。随着辅助气流的增加,纤维直径明显减小,但不能提高纤维效率。内部电极结构可以在细化纤维直径的同时增加纤维量。内/外锥形喷嘴结构分别适用于提高效率和细化纤维。
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来源期刊
Fibers and Polymers
Fibers and Polymers 工程技术-材料科学:纺织
CiteScore
3.90
自引率
8.00%
发文量
267
审稿时长
3.9 months
期刊介绍: -Chemistry of Fiber Materials, Polymer Reactions and Synthesis- Physical Properties of Fibers, Polymer Blends and Composites- Fiber Spinning and Textile Processing, Polymer Physics, Morphology- Colorants and Dyeing, Polymer Analysis and Characterization- Chemical Aftertreatment of Textiles, Polymer Processing and Rheology- Textile and Apparel Science, Functional Polymers
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