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  5. Research of different needle length on properties of PVDF nanofiber membrane based on long-needle electrospinning technology

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Article
English
2023

Research of different needle length on properties of PVDF nanofiber membrane based on long-needle electrospinning technology

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English
2023
Journal of Engineered Fibers and Fabrics
Vol 18
DOI: 10.1177/15589250231194622

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Ji-huan He
Ji-huan He

Soochow University

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Lei Zhao
Ting Zhu
Wei Li
+7 more

Abstract

In this paper, we combine electrospinning with laminar flow theory to verify the influence of the spinning needle length on the internal structure of PVDF (polyvinylidene fluoride) nanofibers. The long spinning needle is referred as a reference like long ducts in the body of spiders. We also discussed the effect of different needle length on the micro-morphology, mechanical properties, electrical properties, porosity, and hydrophobic properties of PVDF nanofiber membranes. The results showed that when the needle length increased, more PVDF macromolecular chains will have sufficient time to be straightened and aligned, resulting in an increasingly ordered internal structure of the prepared PVDF nanofibers. The different length of the long needle has a certain influence on the morphology, mechanical properties, electrical properties, porosity, and hydrophobic properties of PVDF nanofiber membrane obtained by electrospinning. The more ordered the internal structure of nanofibers, the worse the membrane’s mechanical properties, but the lower its electrical resistivity.

How to cite this publication

Lei Zhao, Ting Zhu, Wei Li, Jumei Zhao, Ji-huan He, Shixiong Yi, Jun Wang, Tianchi Zhou, Lu Cai, Chenghui Zheng (2023). Research of different needle length on properties of PVDF nanofiber membrane based on long-needle electrospinning technology. Journal of Engineered Fibers and Fabrics, 18, DOI: 10.1177/15589250231194622.

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Publication Details

Type

Article

Year

2023

Authors

10

Datasets

0

Total Files

0

Language

English

Journal

Journal of Engineered Fibers and Fabrics

DOI

10.1177/15589250231194622

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