Effects of Carbon Fiber Reinforced Plastic Laminate on the Strength of Adhesive Joints

محتوى المقالة الرئيسي

N. A. Yahya

الملخص

Carbon fiber composites are being widely considered for many classes of heavily loaded components. A common feature of such components is the need to introduce local or global loads into the composite structure. The use of adhesive bonding rather than mechanical fasteners offers the potential for reduced weight and cost. The use of carbon fiber reinforced plastics (CFRP) for the repair of steel structure is also advantageous, for example to avoid welding or bolting which can weaken structure and add fire risk. This study is based on adhesive bonded double lap shear (DLS) joints where the inner adherend is steel and the outer adherend is cross plies unidirectional (UD) CFRP. Overlap lengths of 25-125 mm with CFRP thickness of 3 and 6 mm were considered and two different orientation angles [0o,90o] and [90o,0o] laminates have been considered. The overall objectives of the paper are to investigate the delamination of the CFRP laminates within the DLS joints under quasi-static loading and both experimental and numerical techniques were used. The numerical study was based on 2-D model using strength-limit method, taking into consideration the UD properties of the plies and the resin layers separating these. As a result, it was concluded that the data obtained from 2-D finite element analysis were coherent with experimental results and additional to that fiber orientation angles of the laminate markedly affected the failure load of joints, failure mode and stress distributions appeared in adhesive and composite

تفاصيل المقالة

كيفية الاقتباس
N. A. Yahya. (2024). Effects of Carbon Fiber Reinforced Plastic Laminate on the Strength of Adhesive Joints. The International Journal of Engineering & Information Technology (IJEIT), 4(1). استرجع في من https://ijeit.misuratau.edu.ly/index.php/ijeit/article/view/462
القسم
المقالات

المراجع

R.D.S.G. Campilho, M.F.S.F. de Moura, and J.J.M.S. Domingues, "Modelling single and double lap repairs on composite materials," Composites Science and Technology, vol. 65, p. 1948–1958, 2005.

G.R.Wooley, and D.R Carver, "Stress concentration factors for bonded lap joint," Journal of Aircraft , vol. 8, p. 817–820, 1971.

J.A. Harris, and R.D. Adams, "Strength prediction of bonded single lap joints by nonlinear finite element methods," International Journal Adhesion and Adhesives, vol. 4, pp. 65-78, 1984.

N.A. Yahya, and S.A. Hashim, "Stress analysis of steel/carbon composite double lap shear joints under tensile loading," Proc IMechE Part L: Journal of Materials: Design and Applications, vol. 230, no. 1, p. 88–104, 2016.

L.F.M. da Silva,R.J.C. Carbas,G.W. Critchlow,M.A.V. Figueiredo, and K. Brown, "Effect of material, geometry, surface treatment and environment on the shear strength of single lap joints," International Journal Adhesion and Adhesives, vol. 29, pp. 621-632, 2009.

S. Feih, and H.R. Shercliff, "Adhesive and composite failure prediction of single-L joint structures under tensile loading," International Journal Adhesion and Adhesives, vol. 25, pp. 47-59, 2005.

R.A. Odi and C.M. Friend, " An improved 2D model for bonded composite joints.," International Journal of Adhesion and Adhesives, vol. 24, pp. 389-405, 2004.

M.D. Aydin, A. Özel, and S. Temiz, "Non-linear stress and failure analyses of adhesively-bonded joints subjected to a bending moment," Journal of Adhesion Science and Technology, vol. 18, p. 1589–1602, 2004.

B.B. Bachir, B. Achour, M. Berrahou, D. Ouinas, and X. Feaugas, "Numerical estimation of the mass gain between double symmetric and single bonded composite repairs in aircraft structures," Material and Design, vol. 31, p. 3073–3077, 2010.

A.G. Magalhaes, M.F.S.F. de Moura, and J.P.M. Gonçalves, " Evaluation of stress concentration effects in single-lap bonded joints of laminate composite materials," Internatinal Journal of Adhesion and Adheseve, vol. 25, pp. 313-319, 2005.

S. Akpinar, "Effects of laminate carbon/epoxy composite patches on the strength of double-strap adhesive joints: Experimental and numerical analysis," Materials and Design, vol. 51, p. 501–512, 2013.

R.D. Adams, J. Comyn, and W.C. Wake, Structural adhesive joints in engineering, Dordrecht: Kluwer Academic Publishing, 1997.

ESA PSS-03-203, Structural Materials Handbook, Issue 1, Vol 1. 1994 [Chapter 21].

R.D. Adams, R.W. Atkins, J.A. Harris, and A.J. Kinloch, "Stress analysis and failure properties of carbon fiber reinforced plastic steel double lapjoints," Journal od Adhesion, vol. 20, p. 29–53, 1986.

T. Schjelderup, and C.G. Gustafson, "The wedge test approach to mode 1 interlaminar fracture toughness for CFRP," in Proceedings of the 6th European Conference on Composite Materials, September 20–24, 1993.

V. Pocius, Adhesion and Adhesive Technology, An Introduction Alphonsus, ISBN 1-56990-212-7, 1997.

S.A. Hashim et al., "Fabrication, testing and analysis of steel/composite DLS adhesive joints," Ships and Offshore Structures, vol. 6, no. 1-2, pp. 115-126, 2011.

"Huntsman Advanced Materials, “www.huntsman.com,” 2004".

N.A. Yahya, and S.A. Hashim, "Delamination of thick adherend steel/CFRP laminate connections," in The European Adhesion Conference (9th EURADH), Friedrichshafen/Germany, September 2012.

Z. Wu, "Stress concentration analyses of bi-material bonded joints without inplane stress singularities," International Journal of Mechanical Sciences, vol. 50, pp. 641-648, 2008.

S.A. Hashim, M.J. Cowling, and S. Lafferty, "The integrity of bonded joints in large composite pipes," International Journal of Adhesion and Adhesives, vol. 18, pp. 421-429, 1998