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1.
Sensors (Basel) ; 15(5): 10852-71, 2015 May 07.
Artículo en Inglés | MEDLINE | ID: mdl-25961383

RESUMEN

Quality of embedment of optical fibre sensors in carbon fibre-reinforced polymers plays an important role in the resultant properties of the composite, as well as for the correct monitoring of the structure. Therefore, availability of a tool able to check the optical fibre sensor-composite interaction becomes essential. High-resolution 3D X-ray Micro-Computed Tomography, or Micro-CT, is a relatively new non-destructive inspection technique which enables investigations of the internal structure of a sample without actually compromising its integrity. In this work the feasibility of inspecting the position, the orientation and, more generally, the quality of the embedment of an optical fibre sensor in a carbon fibre reinforced laminate at unit cell level have been proven.

2.
Opt Express ; 21(17): 20404-16, 2013 Aug 26.
Artículo en Inglés | MEDLINE | ID: mdl-24105585

RESUMEN

We demonstrate shear stress sensing with a Bragg grating-based microstructured optical fiber sensor embedded in a single lap adhesive joint. We achieved an unprecedented shear stress sensitivity of 59.8 pm/MPa when the joint is loaded in tension. This corresponds to a shear strain sensitivity of 0.01 pm/µÎµ. We verified these results with 2D and 3D finite element modeling. A comparative FEM study with conventional highly birefringent side-hole and bow-tie fibers shows that our dedicated fiber design yields a fourfold sensitivity improvement.

3.
Sensors (Basel) ; 11(3): 2566-79, 2011.
Artículo en Inglés | MEDLINE | ID: mdl-22163755

RESUMEN

Fiber Bragg gratings written in highly birefringent microstructured optical fiber with a dedicated design are embedded in a composite fiber-reinforced polymer. The Bragg peak wavelength shifts are measured under controlled axial and transversal strain and during thermal cycling of the composite sample. We obtain a sensitivity to transversal strain that exceeds values reported earlier in literature by one order of magnitude. Our results evidence the relevance of using microstructured optical fibers for structural integrity monitoring of composite material structures.


Asunto(s)
Tecnología de Fibra Óptica/instrumentación , Ensayo de Materiales/instrumentación , Ensayo de Materiales/métodos , Fibras Ópticas , Simulación por Computador , Microscopía Electrónica de Rastreo , Fenómenos Ópticos
4.
Opt Express ; 18(14): 15113-21, 2010 Jul 05.
Artículo en Inglés | MEDLINE | ID: mdl-20639996

RESUMEN

We designed, manufactured and characterized two birefringent microstructured fibers that feature a 5-fold increase in polarimetric sensitivity to hydrostatic pressure compared to the earlier reported values for microstructured fibers. We demonstrate a good agreement between the finite element simulations and the experimental values for the polarimetric sensitivity to pressure and to temperature. The sensitivity to hydrostatic pressure has a negative sign and exceeds -43 rad/MPa x m at 1.55 microm for both fibers. In combination with the very low sensitivity to temperature, this makes our fibers the candidates of choice for the development of microstructured fiber based hydrostatic pressure measurement systems.

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