Temperature and strain registration by fibre-optic strain sensor in the polymer composite materials manufacturing
Abstract
The presence of process-induced strains induced by various manufacturing and operational factors is one of the characteristics of polymer composite materials (PCM). Conventional methods of registration and evaluation of process-induced strains can be laborious, time-consuming and demanding in terms of technical applications. The employment of embedded fibre-optic strain sensors (FOSS) offers a real prospect of measuring residual strains. This paper demonstrates the potential for using embedded FOSS for recording technological strains in a PCM plate. The PCM plate is manufactured from prepreg, using the direct compression-moulding method. In this method, the prepared reinforcing package is placed inside a mould, heated, and then exposed to compaction pressure. The examined technology can be used for positioning FOSS between the layers of the composite material. Fibre-optic sensors, interacting with the material of the examined object, make it possible to register the evolution of the strain process during all stages of polymer-composite formation. FOSS data were recorded with interrogator ASTRO X 327. The obtained data were processed using specially developed algorithms.
- Publication:
-
International Journal of Smart and Nano Materials
- Pub Date:
- April 2018
- DOI:
- 10.1080/19475411.2018.1450791
- Bibcode:
- 2018IJSNM...9...99M
- Keywords:
-
- Polymer composite materials;
- fibre-optic strain sensors;
- process-induced strains;
- smart-materials