Banea MD, da Silva LFM. Adhesively bonded joints in composite materials: an overview. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications. 2009 Jan 1;223(1):1-18.
Higgins A. Adhesive bonding of aircraft structures. International Journal of Adhesion and Adhesives. 2000;20(5):367-76.
Abdel Wahab MM. Fatigue in Adhesively Bonded Joints: A Review. ISRN Materials Science. 2012;2012:1-25.
Li F, Murayama H, Kageyama K, Meng G, Ohsawa I, Shirai T. Debonding detection using a selfcalibration sensor network. Smart Materials and Structures. 2010 Jun 1;19(6):065007.
Habib F, Martinez M, Artemev A, Brothers M. Structural health monitoring of bonded composite repairs - A critical comparison between ultrasonic Lamb wave approach and surface mounted crack sensor approach. Composites Part B: Engineering. 2013 Apr;47:26-34.
Vijaya Kumar RL, Bhat MR, Murthy CRL. Evaluation of kissing bond in composite adhesive lap joints using digital image correlation: Preliminary studies. International Journal of Adhesion and Adhesives. 2013 Apr;42:60-8.
Berghmans F. and Geernaert T., "Optical fiber point sensors" in Advanced Fiber Optics: Concepts and Technology, L. Thévenaz, Ed., EPFL Press, Lausanne, 308-344, 2011.
Murayama H, Kageyama K, Uzawa K, Ohara K, Ohsawa I, Igawa H. Strain Monitoring Technique For Bonded Joints By Fibre-Optic Distributed Sensors.
McKenzie RJ. Optical fibre sensors for health monitoring of bonded repair systems. Composite Structures. 2000;(4):405-16.
Palaniappan J, Ogin SL, Thorne AM, Reed GT, Crocombe AD, Capell TF, et al. Disbond growth detection in composite-composite single-lap joints using chirped FBG sensors. Composites Science and Technology. 2008 Sep;68(12):2410-7.
Takeda S, Yamamoto T, Okabe Y, Takeda N. Debonding monitoring of composite repair patches using embedded small-diameter FBG sensors. Smart Materials and Structures. 2007 Jun 1;16(3):763-70.
Schulz W. L., Udd E., Morrell M., Seim J. M., Perez I. M., and Trego A., "Health monitoring of an adhesive joint using a multiaxis fiber grating strain sensor system," in Proc. SPIE 3586, Nondestructive Evaluation of Aging Aircraft, Airports, and Aerospace Hardware III, pp. 41-52, (1999).
Martynkien T, Statkiewicz-Barabach G, Olszewski J, Wojcik J, Mergo P, Geernaert T, et al. Highly birefringent microstructured fibers with enhanced sensitivity to hydrostatic pressure. Opt Express. 2010;18(14):15113-21.
Sonnenfeld C, Sulejmani S, Geernaert T, Eve S, Lammens N, Luyckx G, et al. Microstructured Optical Fiber Sensors Embedded in a Laminate Composite for Smart Material Applications. Sensors. 2011 Feb 28;11(12):2566-79.
Sulejmani S, Sonnenfeld C, Geernaert T, Luyckx G, Van Hemelrijck D, Mergo P, et al. Shear stress sensing with Bragg grating-based sensors in microstructured optical fibers. Optics Express. 2013 Aug 22;21(17):20404.
www.fbgs.com
Goland M. and E. Reissner E., J. Appl. Mech. Trans. Am. Soc. Eng., 66, A17, 1944.