...
首页> 外文期刊>Shock and vibration >Strain Monitoring of Combustible Gas Implosion Test Based on Fiber Bragg Grating
【24h】

Strain Monitoring of Combustible Gas Implosion Test Based on Fiber Bragg Grating

机译:基于纤维布拉格光栅的可燃气体内爆试验的应变监测

获取原文
           

摘要

Strain measurement is an important component in model tests of combustible internal explosions. Strain gauges are used to measure strain in traditional electrical measurement methods and have some limitations, such as susceptibility to electromagnetic interference, short life, and inability to distribute. Fiber Bragg gratings (FBGs) are developing into useful sensing tools that can respond to changes in stress, strain, and temperature by changing wavelengths. FBGs have excellent sensing performance, such as long life, antielectromagnetic interference, easy networking, and good reusability. In this paper, FBG sensors are applied to strain monitoring in ethylene flammable implosion experiments. In the ethylene flammable implosion tests, an FBG was placed on the inner surface of the bottom plate of the rectangular steel test device near the detonation vent by the sticking method. The reliability and repeatability of the strain change of the FBG affected by detonation overpressure and combustion were tested at this point. Four explosion tests were carried out. The test results showed that FBG sensors could obtain stable and reliable strain data in all four tests. The strain variation reflects the development of overpressure and combustion in the whole process from ignition. For the strain amplitude formed by overpressure, the minimum was 1.449?με (the third test), and the maximum was 48.181?με (the fourth test).For the strain amplitude step change formed by the deflagration flame front passing the measurement points, the minimum was 1.673?με (the second test), and the maximum was 19.724?με (the fourth test).The strain amplitude produced by the deflagration temperature effect in the four tests ranged from 72.803?με (the first test) to 143.381?με (the fourth test).The results show that FBG sensors can provide reliable and effective strain monitoring data for the experimental study of flammable implosions.
机译:应变测量是易燃内部爆炸模型试验中的重要组成部分。应变仪用于测量传统电气测量方法中的应变,并且具有一些限制,例如对电磁干扰,短寿命和无法分配的易感性。光纤布拉格光栅(FBG)正在开发成有用的传感工具,可以通过改变波长来响应应力,应变和温度的变化。 FBGS具有出色的感应性能,例如寿命长,抗电磁干扰,易于网络,以及良好的可重用性。本文中,FBG传感器应用于乙烯易燃爆炸实验中的应变监测。在乙烯易燃爆炸试验中,通过粘附方法将FBG置于矩形钢测试装置的底板的底板内表面上。在此时测试了受爆炸过压和燃烧影响的FBG的应变变化的可靠性和可重复性。进行了四次爆炸测试。测试结果表明,FBG传感器可以在所有四个测试中获得稳定可靠的应变数据。应变变化反映了从点火的整个过程中的过压和燃烧的发展。对于通过过压形成的应变幅度,最小值为1.449≤με(第三次测试),最大值为48.181ΩΩηε(第四次测试)。对于通过净化火焰前沿通过测量点的应变幅度步骤变化,最小值为1.673?με(第二次测试),最大值为19.724Ωμε(第四次测试)。四个试验中的液氮温度效应产生的应变幅度范围为72.803ΩΩηε(第一次测试)至143.381 ?με(第四次测试)。结果表明,FBG传感器可以提供可靠且有效的应变监测数据,用于易燃爆炸的实验研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号