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PAN/rGO温敏导电包芯纱的制备及其性能

刘霞 吴改红 张菂 李诗雨 王彩柳

棉纺织技术2024,Vol.52Issue(5):23-28,6.
棉纺织技术2024,Vol.52Issue(5):23-28,6.

PAN/rGO温敏导电包芯纱的制备及其性能

Preparation and property of PAN/rGO temperature sensitive conductive core-spun yarn

刘霞 1吴改红 1张菂 1李诗雨 1王彩柳1

作者信息

  • 1. 太原理工大学,山西晋中,030600
  • 折叠

摘要

Abstract

In order to develop a highly sensitive flexible temperature sensor,a temperature sensitive conductive core-spun yarn constructed by conductive polymer and carbon nanomaterials was prepared by electrospinning.The morphology structure,electrical property,temperature sensitivity,reusability,humidity resistance and bending deformation interference resistance of the prepared temperature sensitive conductive core-spun yarn were tested.The results showed that the conductivity of the temperature sensitive conductive core-spun yarn was the highest and reaching 1 099.53 S/m when the mass fraction of PAN was 12%and the mass fraction of rGO was 1.5%.It showed better electrical property.The temperature sensitive conductive core-spun yarn prepared in the experiment had a high sensitivity response of 1.6 s compared with water of a difference of 1℃at room temperature.The temperature sensitive conductive core-spun yarn prepared in the experiment had better humidity resistance and better bending deformation resistance.It is considered that the temperature sensitive conductive core-spun yarn prepared in the experiment is expected to replace the traditional metal conductive yarn.It has wide application prospect in wearable intelligent device,intelligent garment,temperature inspection and so on.

关键词

静电纺丝/碳纳米纤维/包芯纱/温敏性/柔性传感器

Key words

electrospinning/carbon nanofiber/core-spun yarn/temperature sensitivity/flexible sensor

分类

轻工纺织

引用本文复制引用

刘霞,吴改红,张菂,李诗雨,王彩柳..PAN/rGO温敏导电包芯纱的制备及其性能[J].棉纺织技术,2024,52(5):23-28,6.

基金项目

山西省科技成果转化引导专项项目(202104021301053) (202104021301053)

山西省基础研究计划项目(20210302123114,202203021211146) (20210302123114,202203021211146)

山西省艺术科学规划课题(22BG082) (22BG082)

山西省高等学校大学生创新创业训练计划项目(20220125) (20220125)

山西省研究生实践创新项目(2023SJ084) (2023SJ084)

棉纺织技术

OACSTPCD

1000-7415

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