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Original Articles

Mode-l Fracture Behaviour of Adhesive Joints. Part I. Relationship Between Fracture Energy and Bond Thickness

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Pages 149-162 | Received 04 Jul 1994, Accepted 16 Feb 1995, Published online: 24 Sep 2006

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Read on this site (11)

Lorena M. Fernández-Cañadas, Ines Ivañez, Sonia Sanchez-Saez & Ever J. Barbero. (2021) Effect of adhesive thickness and overlap on the behavior of composite single-lap joints. Mechanics of Advanced Materials and Structures 28:11, pages 1111-1120.
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M.Z. Sadeghi, J. Zimmermann, A. Gabener & K.U. Schröder. (2021) On the bondline thickness effect in mixed-mode fracture characterisation of an epoxy adhesive. The Journal of Adhesion 97:3, pages 282-304.
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Xiao Han, Yong Jin, Lucas F. M. da Silva, Marcelo Costa & Chengwei Wu. (2020) On the effect of adhesive thickness on mode I fracture energy - an experimental and modelling study using a trapezoidal cohesive zone model. The Journal of Adhesion 96:5, pages 490-514.
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S. Azari, A. Ameli, M. Papini & J.K. Spelt. (2013) Analysis and design of adhesively bonded joints for fatigue and fracture loading: a fracture-mechanics approach. Journal of Adhesion Science and Technology 27:15, pages 1681-1711.
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LucasF. M. da Silva, F. A. C. R. G. de Magalhães, F. J. P. Chaves & M. F. S. F. de Moura. (2010) Mode II Fracture Toughness of a Brittle and a Ductile Adhesive as a Function of the Adhesive Thickness. The Journal of Adhesion 86:9, pages 891-905.
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Song-Jeng Huang & Yue-Chung Lin. (2004) Fracture analysis of an adhesively bonded sandwich beam under Mode-I loading. Journal of Adhesion Science and Technology 18:7, pages 833-847.
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Kai Duan, Xiaozhi Hu & Yiu-Wing Mai. (2004) Substrate constraint and adhesive thickness effects on fracture toughness of adhesive joints . Journal of Adhesion Science and Technology 18:1, pages 39-53.
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Makoto Imanaka, Tatuyuki Hamano, Akira Morimoto, Ryuichi Ashino & Masaki Kimoto. (2003) Fatigue damage evaluation of adhesively bonded butt joints with a rubber-modified epoxy adhesive . Journal of Adhesion Science and Technology 17:7, pages 981-994.
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Makoto Imanaka & Yasuaki Suzuki. (2002) Yield behavior of rubber-modified epoxy adhesives under multiaxial stress conditions . Journal of Adhesion Science and Technology 16:12, pages 1687-1700.
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Cheng Yan, Yiu-Wing Mai & Lin Ye. (2001) Effect of Bond Thickness on Fracture Behaviour in Adhesive Joints. The Journal of Adhesion 75:1, pages 27-44.
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Hamid Reza Daghyani, Lin Ye & Yiu-Wing Mai. (1996) Evaluation of Mode-II Fracture Energy of Adhesive Joints with Different Bond Thickness. The Journal of Adhesion 56:1-4, pages 171-186.
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Articles from other publishers (34)

Makoto Imanaka, Masaki Omiya, Keisuke Hara & Hayato Nakatani. (2022) Effect of rubber modification on fracture toughness of epoxy adhesives under mode I and mode II loading. Theoretical and Applied Fracture Mechanics 122, pages 103604.
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Sina Askarinejad, Emilio Martínez-Pañeda, I. Ivan Cuesta & Norman Fleck. (2021) Mode II fracture of an MMA adhesive layer: Theory versus experiment. European Journal of Mechanics - A/Solids 86, pages 104133.
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Romina Lopes Fernandes, Sofia Teixeira de Freitas, Michal K. Budzik, Johannes A. Poulis & Rinze Benedictus. (2020) Role of adherend material on the fracture of bi-material composite bonded joints. Composite Structures 252, pages 112643.
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Panta Jojibabu, Y.X. Zhang & B. Gangadhara Prusty. (2020) A review of research advances in epoxy-based nanocomposites as adhesive materials. International Journal of Adhesion and Adhesives 96, pages 102454.
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Romina Lopes Fernandes, Sofia Teixeira de Freitas, Michal K. Budzik, Johannes A. Poulis & Rinze Benedictus. (2019) From thin to extra-thick adhesive layer thicknesses: Fracture of bonded joints under mode I loading conditions. Engineering Fracture Mechanics 218, pages 106607.
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Yangjian Xu, Yuanqi Guo, Lihua Liang, Yong Liu & Xiaogui Wang. (2017) A unified cohesive zone model for simulating adhesive failure of composite structures and its parameter identification. Composite Structures 182, pages 555-565.
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Makoto Imanaka & Hiroshi Asano. (2017) Effect of Rubber Content on Fatigue Crack Growth Rate under Mode I Loading. Polymers and Polymer Composites 25:4, pages 285-288.
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Yasmina Boutar, Sami Naïmi, Salah Mezlini, Lucas F.M. da Silva & Moez Ben Sik Ali. (2017) Characterization of aluminium one-component polyurethane adhesive joints as a function of bond thickness for the automotive industry: Fracture analysis and behavior. Engineering Fracture Mechanics 177, pages 45-60.
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Carlos Sarrado, Albert Turon, Josep Costa & Jordi Renart. (2016) An experimental analysis of the fracture behavior of composite bonded joints in terms of cohesive laws. Composites Part A: Applied Science and Manufacturing 90, pages 234-242.
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Makoto Imanaka & Takuya Sogawa. (2016) Fracture Behaviour of Adhesives Modified with various Rubber Content under Combined Stress Conditions. Polymers and Polymer Composites 24:3, pages 191-193.
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Carlos Sarrado, Albert Turon, Josep Costa & Jordi Renart. (2016) On the validity of linear elastic fracture mechanics methods to measure the fracture toughness of adhesive joints. International Journal of Solids and Structures 81, pages 110-116.
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Yongtao Sun, Nicola Pugno, Baoming Gong & Qian Ding. (2015) A simplified hardening cohesive zone model for bondline thickness dependence on adhesive joints. International Journal of Fracture 194:1, pages 37-44.
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Makoto IMANAKA. (2014) Fracture Toughness of Adhesively Bonded Joint. Journal of The Adhesion Society of Japan 50:5, pages 148-155.
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Wei Xu & Yueguang Wei. (2013) Influence of adhesive thickness on local interface fracture and overall strength of metallic adhesive bonding structures. International Journal of Adhesion and Adhesives 40, pages 158-167.
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S. Azari, A. Ameli, N.V. Datla, M. Papini & J.K. Spelt. (2012) Effect of substrate modulus on the fatigue behavior of adhesively bonded joints. Materials Science and Engineering: A 534, pages 594-602.
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S. Azari, M. Papini & J.K. Spelt. (2011) Effect of adhesive thickness on fatigue and fracture of toughened epoxy joints – Part I: Experiments. Engineering Fracture Mechanics 78:1, pages 153-162.
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M. Imanaka, M. Takagishi, N. Nakamura & M. Kimoto. (2010) R-curve characteristics of adhesives modified with high rubber content under mode I loading. International Journal of Adhesion and Adhesives 30:6, pages 478-484.
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C. T. Sun & Haiyang Qian. (2009) Brittle fracture beyond the stress intensity factor. Journal of Mechanics of Materials and Structures 4:4, pages 743-753.
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Adnan Çolak, Turgay Çoşgun & Ahmet E. Bakırcı. (2009) Effects of environmental factors on the adhesion and durability characteristics of epoxy-bonded concrete prisms. Construction and Building Materials 23:2, pages 758-767.
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Makoto Imanaka, Satoshi Motohashi, Kazuaki Nishi, Yoshinobu Nakamura & Masaki Kimoto. (2009) Crack-growth behavior of epoxy adhesives modified with liquid rubber and cross-linked rubber particles under mode I loading. International Journal of Adhesion and Adhesives 29:1, pages 45-55.
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Makoto Imanaka, Ryousuke Orita, Yosinobu Nakamura & Masaki Kimoto. (2008) Comparison of failure mechanisms between rubber-modified and unmodified epoxy adhesives under mode II loading condition. Journal of Materials Science 43:9, pages 3223-3233.
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Kai Duan, Xiaozhi Hu & Folker H. Wittmann. (2006) Scaling of quasi-brittle fracture: Boundary and size effect. Mechanics of Materials 38:1-2, pages 128-141.
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Makoto Imanaka, Makoto Taniguchi, Tatuyuki Hamano & Masaki Kimoto. (2005) Fatigue Life Estimation of Adhesively Bonded Scarf Joints Based on a Continuum Damage Mechanics Model. Polymers and Polymer Composites 13:4, pages 359-370.
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Deok-Bo Lee, Toru Ikeda, Noriyuki Miyazaki & Nak-Sam Choi. (2004) Effect of Bond Thickness on the Fracture Toughness of Adhesive Joints. Journal of Engineering Materials and Technology 126:1, pages 14-18.
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H R Daghyani, A Sayadi & H Toudeshky Hosseini. (2016) Fatigue crack propagation of aluminium panels repaired with adhesively bonded composite laminates. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 217:4, pages 291-293.
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F. Simon & G. Valentin. 2003. 305 316 .
Cheng Yan, Yiu-Wing Mai, Qiang Yuan, Lin Ye & Jun Sun. (2001) Effects of substrate materials on fracture toughness measurement in adhesive joints. International Journal of Mechanical Sciences 43:9, pages 2091-2102.
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Toru Ikeda, Akira Yamashita, Deokbo Lee & Noriyuki Miyazaki. (2000) Failure of a Ductile Adhesive Layer Constrained by Hard Adherends. Journal of Engineering Materials and Technology 122:1, pages 80-85.
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C. Yan, Y.W. Mai & L. Ye. 2000. Fracture of Polymers, Composites and Adhesives, Second ESIS TC4 Conference on Fracture of Polymers, Composites and Adhesives. Fracture of Polymers, Composites and Adhesives, Second ESIS TC4 Conference on Fracture of Polymers, Composites and Adhesives 307 316 .
Jang-Kyo Kim, Yiu-Wing Mai & Yiu-Wing Mai. 1998. Engineered Interfaces in Fiber Reinforced Composites. Engineered Interfaces in Fiber Reinforced Composites 329 365 .
C. H. Wang. 1998. Recent Advances in Fracture Mechanics. Recent Advances in Fracture Mechanics 227 246 .
Jaroslav Mackerle. (1997) Finite element analysis and simulation of adhesive bonding, soldering and brazing: A bibliography (1976 - 1996). Modelling and Simulation in Materials Science and Engineering 5:2, pages 159-185.
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Hamid Reza Daghyani, Lin Ye & Yiu-Wing Mai. (2016) Mixed-Mode Fracture of Adhesively Bonded CF/Epoxy Composite Joints. Journal of Composite Materials 30:11, pages 1248-1265.
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H. R. Daghyani, L. Ye & Y. -W. Mai. (1996) Effect of thermal residual stress on the crack path in adhesively bonded joints. Journal of Materials Science 31:10, pages 2523-2529.
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