物理实验2024,Vol.44Issue(1) :47-51,58.DOI:10.19655/j.cnki.1005-4642.2024.01.007

拉伸法制备微纳光纤的设计与研究

Design and research on preparation of micro-nano fiber by stretching method

陈思雨 陈宗强 孔勇发
物理实验2024,Vol.44Issue(1) :47-51,58.DOI:10.19655/j.cnki.1005-4642.2024.01.007

拉伸法制备微纳光纤的设计与研究

Design and research on preparation of micro-nano fiber by stretching method

陈思雨 1陈宗强 1孔勇发1
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作者信息

  • 1. 南开大学 物理科学学院,天津 300071
  • 折叠

摘要

微纳光纤通常采用光纤拉锥法制备.对原有装置进行改进,增加电机和控制器搭建火焰加热电机拉伸法制备微纳光纤的实验平台,实现了微纳光纤的自动化制备.探究了光纤直径与拉伸距离、拉伸速度、火焰高度等的关系.理论推导出单侧拉伸过程中锥区直径与拉伸长度的关系,通过对不同速度下锥区形状的测量,解释了拉伸速度影响光纤直径的原因.

Abstract

An experimental platform for the preparation of micro-nano fibers was set up using flame heated motor stretching method by introducing improved devices such as motors and control-lers,achieving automated preparation of micro-nano fibers.The relationship between fiber diameter and stretching distance,stretching speed,flame height was explored,etc.The relationship between the diameter of the cone region and the stretching length during the unilateral stretching process was theoretically derived.The shapes of the cone region at different speeds were measured,and the de-pendence of the diameter of the optical fiber on the stretching speed was explained as well.

关键词

微纳光纤/拉伸法/锥区形貌

Key words

micro-nano fiber/stretching method/shape of the cone region

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基金项目

教育部高等学校大学物理课程教指委教学研究项目(DWJZW202209hb)

教育部产学研合作协同育人项目(230802116122225)

天津市科技计划项目(22KPXMRC00230)

南开大学教学改革项目()

出版年

2024
物理实验
东北师范大学

物理实验

影响因子:0.573
ISSN:1005-4642
参考文献量1
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