Multiplexed FBG and etched fiber sensors for process and health monitoring of 2-&3-D RTM components

Author:

Keulen Casey J.1,Yildiz Mehmet2,Suleman Afzal3

Affiliation:

1. University of Victoria, Department of Mechanical Engineering Victoria, Canada.

2. University of Victoria, Department of Mechanical Engineering Victoria, Canada., Sabanci University, Faculty of Engineering and Natural Sciences, Advanced Composites and Polymer Processing Laboratory, Turkey.

3. University of Victoria, Department of Mechanical Engineering Victoria, Canada.,

Abstract

This paper presents research being conducted on the use of a combination of fiber optic sensors for process and health monitoring of resin transfer molded (RTM) composite structures. A laboratory scale RTM apparatus has been designed and built with the capability of visually monitoring the resin filling process and embedding fiber optic sensors into the composite. Fiber Bragg gratings (FBG) and etched fiber sensors (EFS) have been multiplexed and embedded in quasi-2-D panels and 3-D hollow semicircular structures using a novel ingress/egress technique for the purpose of both process and structural health monitoring. The objective of this work is to demonstrate the simultaneous usage of FBGs and etched fiber sensors on a single optical fiber for resin flow monitoring and strain monitoring throughout the life of the composite. Three specimens are presented: one quasi-2D panel with two FBGs and three etched fiber sensors, one semicircular tube with two etched fiber sensors and one semicircular tube with two FBGs. Etched fiber sensors have been correlated with visual inspection to detect the presence of resin. Specimens with embedded FBG sensors have been tested in a tensile test machine to characterize the FBGs for strain monitoring.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference27 articles.

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