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Residual strain measurements during the curing cycle of composite materials using polarization properties of in-fibre bragg gratings

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Abstract
Due to the anisotropic and non-homogeneous nature of their components, the manufacturing process of composite materials may cause the appearance of significant residual strains and stresses during the curing cycle. We propose to follow the evolution of the polarization dependent loss peaks (amplitude and wavelength) of fibre Bragg gratings during the manufacturing of the composite material to highlight the residual strains appearance and also the shrinkage of the resin during polymerisation.
Keywords
SENSORS, STRESSES

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Citation

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MLA
Kinet, Damien, et al. “Residual Strain Measurements during the Curing Cycle of Composite Materials Using Polarization Properties of In-Fibre Bragg Gratings.” OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012), edited by Joris Dirckx and Jan Buytaert, Shaker Publishing BV, 2012, pp. 185–93.
APA
Kinet, D., Lammens, N., Chah, K., Luyckx, G., Caucheteur, C., Degrieck, J., & Mégret, P. (2012). Residual strain measurements during the curing cycle of composite materials using polarization properties of in-fibre bragg gratings. In J. Dirckx & J. Buytaert (Eds.), OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012) (pp. 185–193). Antwerp, Belgium: Shaker Publishing BV.
Chicago author-date
Kinet, Damien, Nicolas Lammens, Karima Chah, Geert Luyckx, Christophe Caucheteur, Joris Degrieck, and Patrice Mégret. 2012. “Residual Strain Measurements during the Curing Cycle of Composite Materials Using Polarization Properties of In-Fibre Bragg Gratings.” In OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012), edited by Joris Dirckx and Jan Buytaert, 185–93. Antwerp, Belgium: Shaker Publishing BV.
Chicago author-date (all authors)
Kinet, Damien, Nicolas Lammens, Karima Chah, Geert Luyckx, Christophe Caucheteur, Joris Degrieck, and Patrice Mégret. 2012. “Residual Strain Measurements during the Curing Cycle of Composite Materials Using Polarization Properties of In-Fibre Bragg Gratings.” In OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012), ed by. Joris Dirckx and Jan Buytaert, 185–193. Antwerp, Belgium: Shaker Publishing BV.
Vancouver
1.
Kinet D, Lammens N, Chah K, Luyckx G, Caucheteur C, Degrieck J, et al. Residual strain measurements during the curing cycle of composite materials using polarization properties of in-fibre bragg gratings. In: Dirckx J, Buytaert J, editors. OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012). Antwerp, Belgium: Shaker Publishing BV; 2012. p. 185–93.
IEEE
[1]
D. Kinet et al., “Residual strain measurements during the curing cycle of composite materials using polarization properties of in-fibre bragg gratings,” in OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012), Antwerp, Belgium, 2012, pp. 185–193.
@inproceedings{3127135,
  abstract     = {{Due to the anisotropic and non-homogeneous nature of their components, the manufacturing process of composite materials may cause the appearance of significant residual strains and stresses during the curing cycle. We propose to follow the evolution of the polarization dependent loss peaks (amplitude and wavelength) of fibre Bragg gratings during the manufacturing of the composite material to highlight the residual strains appearance and also the shrinkage of the resin during polymerisation.}},
  author       = {{Kinet, Damien and Lammens, Nicolas and Chah, Karima and Luyckx, Geert and Caucheteur, Christophe and Degrieck, Joris and Mégret, Patrice}},
  booktitle    = {{OPTICAL MEASUREMENT TECHNIQUES FOR STRUCTURES & SYSTEMS2 (OPTIMESS2012)}},
  editor       = {{Dirckx, Joris and Buytaert, Jan}},
  isbn         = {{9789042304192}},
  keywords     = {{SENSORS,STRESSES}},
  language     = {{eng}},
  location     = {{Antwerp, Belgium}},
  pages        = {{185--193}},
  publisher    = {{Shaker Publishing BV}},
  title        = {{Residual strain measurements during the curing cycle of composite materials using polarization properties of in-fibre bragg gratings}},
  year         = {{2012}},
}

Web of Science
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