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Original Articles

Cohesive zone models and the plastically deforming peel test

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Pages 239-265 | Published online: 08 Sep 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (17)

Ilker Kazaz, Salih Akpinar & Adnan Ozel. (2020) The effects of thermal cycle and nanostructure reinforcement on the shear load in adhesively bonded joints. Mechanics of Advanced Materials and Structures 27:19, pages 1627-1638.
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Hadi Noori, Mukesh Jain, Kent Nielsen & Frank Brandys. (2016) Effect of Deformation-induced Residual Stress on Peel Strength of Polymer Laminated Sheet Metal. The Journal of Adhesion 92:10, pages 862-876.
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Hadi Noori, Mukesh Jain, Kent Nielsen & Frank Brandys. (2016) Significance of Peel Test Speed on Interface Strength in Cohesive Zone Modeling. The Journal of Adhesion 92:1, pages 39-51.
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Y.-Y. Su & X.-L. Gao. (2013) An Analytical Study on Peeling of an Adhesively Bonded Joint Based on the Timoshenko Beam Theory. Mechanics of Advanced Materials and Structures 20:6, pages 454-463.
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Ming Zhou, Yu Tian, Noshir Pesika, Hongbo Zeng, Jin Wan, Yonggang Meng & Shizhu Wen. (2011) The Extended Peel Zone Model: Effect of Peeling Velocity. The Journal of Adhesion 87:11, pages 1045-1058.
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NicholasJ. Glassmaker, R. Scott McLean, MichaelH. Reilly, KeithR. Warrington & Lei Zhang. (2011) Alumina Tie Layer Promotes Environmental Durability of FEP Adhesion to EVA. The Journal of Adhesion 87:6, pages 558-578.
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Nasir Mahmood, AsadU. Khan & Joerg Kressler. (2010) Diffusion Aided Joint Healing in Polymers at Interfaces. The Journal of Adhesion 86:3, pages 290-305.
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Alain Molinari & Guruswami Ravichandran. (2008) Peeling of Elastic Tapes: Effects of Large Deformations, Pre-Straining, and of a Peel-Zone Model. The Journal of Adhesion 84:12, pages 961-995.
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S. Giannis, R. D. Adams, L. J. Clark & M. A. TAYLOR. (2008) Peel Behaviour of Aircraft Fuel Tank Sealants: the Effect of Peel Angle, Sealant Layer Thickness and Peel Rate. Journal of Adhesion Science and Technology 22:13, pages 1495-1522.
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L. F. Kawashita, D. R. Moore & J. G. Williams. (2006) Protocols for the Measurement of Adhesive Fracture Toughness by Peel Tests. The Journal of Adhesion 82:10, pages 973-995.
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R. X. Wang, A. Shayganpur, S. Sareskani & J. K. Spelt. (2006) Analytical Peel Load Prediction as a Function of Adhesive Stress Concentration. The Journal of Adhesion 82:1, pages 39-61.
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L. F. Kawashita, D. R. Moore & J. G. Williams. (2005) Comparison of Peel Tests for Metal–Polymer Laminates for Aerospace Applications. The Journal of Adhesion 81:6, pages 561-586.
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L. F. Kawashita, D. R. Moore & J. G. Williams. (2005) The measurement of cohesive and interfacial toughness for bonded metal joints with epoxy adhesives. Composite Interfaces 12:8-9, pages 837-852.
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JohnA. Williams & JamesJ. Kauzlarich. (2004) PEELING SHEAR AND CLEAVAGE FAILURE DUE TO TAPE PRESTRAIN. The Journal of Adhesion 80:5, pages 433-458.
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RaymondH. Plaut & JenniferL. Ritchie. (2004) ANALYTICAL SOLUTIONS FOR PEELING USING BEAM-ON-FOUNDATION MODEL AND COHESIVE ZONE. The Journal of Adhesion 80:4, pages 313-331.
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Youngjin Woo, RaymondH. Plaut, DavidA. Dillard & StacyL. Coulthard. (2004) EXPERIMENTS AND INELASTIC ANALYSIS OF THE LOOP TACK TEST FOR PRESSURE-SENSITIVE ADHESIVES. The Journal of Adhesion 80:3, pages 203-221.
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L. F. Kawashita, D. R. Moore & J. G. Williams. (2004) THE DEVELOPMENT OF A MANDREL PEEL TEST FOR THE MEASUREMENT OF ADHESIVE FRACTURE TOUGHNESS OF EPOXY–METAL LAMINATES. The Journal of Adhesion 80:3, pages 147-167.
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