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加工参数对聚偏氟乙烯/氮化硼纳米纤维纱线结构和力学性能的影响

Effects of Processing Parameters on the Structure and Mechanical Property of PVDF/BN Nanofiber Yarns.

作者信息

Gui Jincheng, Liu Xu, Dou Hao

机构信息

School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an 710048, China.

Key Laboratory of Textile Industry for Silk Products in Medical and Health Use, Soochow University, Suzhou 215123, China.

出版信息

Polymers (Basel). 2025 Jul 13;17(14):1931. doi: 10.3390/polym17141931.

Abstract

The increasing demand for light and comfort smart wearable devices has promoted the cross-integration of textile technology with nanomaterials and nanotechnology. As a potential candidate with excellent piezoelectricity, PVDF has been processed into different forms used for flexible sensors but shows limited practicality due to their discomfort and stiffness from non-yarn level. In this study, PVDF/BN nanofiber yarns (NFYs) were successfully fabricated via conjugated electrospinning. The effects of BN concentration, stretching temperature, and stretching ratio on the structural morphology and mechanical performance of the NFYs were systematically investigated. The results show that under the stretching temperature of 140 °C and stretching ratios of 3.5, smooth 1% PVDF/BN NFYs with highly oriented inner nanofibers can be successfully fabricated, and the breaking strength and elongation of composite NFYs reached 129.5 ± 8.1 MPa and 22.4 ± 3.8%, respectively, 667% higher than the breaking strength of pure PVDF nanoyarns. Hence, with the selection of appropriate nanofiller amounts and optimized post-treatment process, the structure and mechanical property of PVDF NFYs can be significantly improved, and this study provides an effective strategy to fabricate high-performance nanoyarns, which is favorable to potential applications in wearable electronic devices and flexible piezoelectric sensors.

摘要

对轻便舒适的智能可穿戴设备日益增长的需求推动了纺织技术与纳米材料及纳米技术的交叉融合。作为具有优异压电性的潜在候选材料,聚偏氟乙烯(PVDF)已被加工成用于柔性传感器的不同形式,但由于其非纱线层面带来的不适感和僵硬感,其实用性有限。在本研究中,通过共轭静电纺丝成功制备了PVDF/氮化硼纳米纤维纱(NFYs)。系统研究了氮化硼浓度、拉伸温度和拉伸比对纳米纤维纱结构形态和力学性能的影响。结果表明,在140℃的拉伸温度和3.5的拉伸比下,能够成功制备出内部纳米纤维高度取向的光滑1% PVDF/BN纳米纤维纱,复合纳米纤维纱的断裂强度和伸长率分别达到129.5±8.1MPa和22.4±3.8%,比纯PVDF纳米纱的断裂强度高667%。因此,通过选择合适的纳米填料用量和优化后处理工艺,PVDF纳米纤维纱的结构和力学性能可以得到显著改善,本研究为制备高性能纳米纱提供了一种有效策略,有利于在可穿戴电子设备和柔性压电传感器中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/902d/12300858/c0912d8a4fae/polymers-17-01931-g001.jpg

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