首页> 外文期刊>Frattura e Integrita Strutturale >Numerical analysis of the strain values obtained by FBG embedded in a composite material using assumptions about uniaxial stress state of the optical fiber and capillary on the Bragg grating
【24h】

Numerical analysis of the strain values obtained by FBG embedded in a composite material using assumptions about uniaxial stress state of the optical fiber and capillary on the Bragg grating

机译:FBG嵌入复合材料中获得的应变值的数值分析,是基于关于布拉格光栅上的光纤和毛细管的单轴应力状态的假设

获取原文
获取外文期刊封面目录资料

摘要

One of the issues in the strain measurement with the help of fiber-optic sensors based on Bragg gratings is the calculation of the strain based on the information from the sensor and its correspondence to the material strain. Relationships between the data measured by the sensor and the strain in the Bragg grating have a unique solution under the condition of uniaxial stress state of the fiber, which are not fulfilled when the fiber is embedded in the material. The paper presents the results of numerical experiments with an example of a model problem for a polymer composite material with an embedded optical fiber, which can be surrounded by a resin pocket. The presented results allow to estimate the error of the strain values calculated on the basis of uniaxial stress state assumption of the optical fiber. Based on numerical calculations, parameters of a capillary on an optical fiber in the Bragg grating zone are estimated, ensuring uniaxial stress state of the fiber in the Bragg grating zone. To ensure these conditions, the cross section of the capillary in an isotropic material is a circle, and in an anisotropic material, good results can be obtained with an elliptical cross section.
机译:在基于布拉格光栅的光纤传感器的帮助下进行应变测量的问题之一是,基于传感器的信息及其与材料应变的对应关系来计算应变。在光纤的单轴应力状态下,传感器测量的数据与布拉格光栅中的应变之间的关系具有独特的解决方案,而当光纤嵌入材料中时,这是无法实现的。本文介绍了数值实验的结果,并举例说明了具有嵌入光纤的聚合物复合材料的模型问题,该复合材料可以被树脂袋包围。呈现的结果允许估计基于光纤的单轴应力状态假设而计算出的应变值的误差。基于数值计算,估计布拉格光栅区域中光纤上的毛细管参数,以确保布拉格光栅区域中光纤的单轴应力状态。为了确保这些条件,各向同性材料中的毛细管的横截面为圆形,而各向异性材料中的毛细管的横截面为椭圆形,则可以获得良好的结果。

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