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Original Articles

Effect of Surface Roughness on the Performance of Adhesive Joints Under Static and Cyclic Loading

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Pages 742-764 | Received 23 Oct 2009, Accepted 04 Feb 2010, Published online: 10 Aug 2010

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

Read on this site (7)

Nidhal Naat, Yasmina Boutar, Sami Naïmi, Salah Mezlini & Lucas Filipe Martins Da Silva. (2023) Effect of surface texture on the mechanical performance of bonded joints: a review. The Journal of Adhesion 99:2, pages 166-258.
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Luca Sorrentino, Gianluca Parodo & Sandro Turchetta. (2021) CFRP laser texturing to increase the adhesive bonding: morphological analysis of treated surfaces. The Journal of Adhesion 97:14, pages 1322-1335.
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Xiaochun Wu, Kai He, Zhihong Gong, Zhijie Liu & Jun Jiang. (2020) The shear strength of composite secondary bonded single-lap joints with different fabrication methods. Journal of Adhesion Science and Technology 34:9, pages 936-948.
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K. V. Machalická, M. Vokáč, M. Kostelecká & M. Eliášová. (2019) Durability of structural adhesive joints for facade applications exposed to the extended cataplasm test. The Journal of Adhesion 95:5-7, pages 632-652.
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S. de Barros, P. P. Kenedi, S. M. Ferreira, S. Budhe, A. J. Bernardino & L. F. G. Souza. (2017) Influence of mechanical surface treatment on fatigue life of bonded joints. The Journal of Adhesion 93:8, pages 599-612.
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Hadi Noori, Mukesh Jain, Kent Nielsen & Frank Brandys. (2015) Influence of metallic substrate surface engineering on peel resistance of adhesively bonded polymer film. Journal of Adhesion Science and Technology 29:13, pages 1403-1413.
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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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Manjima Bhattacharya & Stephanie C. TerMaath. (2024) Surface Roughness Effects on the Fracture Behavior of Adhesively Bonded Joints. Surface Roughness Effects on the Fracture Behavior of Adhesively Bonded Joints.
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Irana Darvishi & Amir Nourani. (2022) Obtaining strain-rate dependent traction-separation law parameters of epoxy adhesive joints and predicting fracture for dissimilar bonding adherends. International Journal of Adhesion and Adhesives 118, pages 103190.
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Idris Bello, Yasir Alowayed, Jafar Albinmousa, Gilles Lubineau & Nesar Merah. (2021) Fatigue crack growth in laser-treated adhesively bonded composite joints: An experimental examination. International Journal of Adhesion and Adhesives 105, pages 102784.
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Hamed Zarei, Maria Rosaria Marulli, Marco Paggi, Riccardo Pietrogrande, Christoph Üffing & Philipp Weißgraeber. (2020) Adherend surface roughness effect on the mechanical response of silicone-based adhesive joints. Engineering Fracture Mechanics 240, pages 107353.
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Seong-Min Park, Rene Roy, Jin-Hwe Kweon & Youngwoo Nam. (2020) Strength and failure modes of surface treated CFRP secondary bonded single-lap joints in static and fatigue tensile loading regimes. Composites Part A: Applied Science and Manufacturing 134, pages 105897.
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Ziwei Feng, Hongyun Zhao, Caiwang Tan, Bo Chen, Xiaoguo Song & Jicai Feng. (2020) Influence of laser process parameters on the characteristic of 30CrMnSiA steel substrate and adhesively bonded joints. Optics & Laser Technology 123, pages 105920.
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F. Moroni, F. Musiari & C. Favi. (2020) Effect of the surface morphology over the fatigue performance of metallic single lap-shear joints. International Journal of Adhesion and Adhesives 97, pages 102484.
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F. Musiari, F. Moroni, C. Favi & A. Pirondi. (2019) Durability assessment of laser treated aluminium bonded joints. International Journal of Adhesion and Adhesives 93, pages 102323.
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Yiding Liu, Xiang Zhang, Stuart Lemanski, Hamed Yazdani Nezhad & David Ayre. (2019) Experimental and numerical study of process-induced defects and their effect on fatigue debonding in composite joints. International Journal of Fatigue 125, pages 47-57.
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F. C. Amorim, J. M. L. Reis, J. F. B. Souza & H. S. da Costa Mattos. (2018) Investigation of UV exposure in adhesively bonded single lap joints. Applied Adhesion Science 6:1.
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Safa Polat, Ahmet Avcı & Mürsel Ekrem. (2018) Fatigue behavior of composite to aluminum single lap joints reinforced with graphene doped nylon 66 nanofibers. Composite Structures 194, pages 624-632.
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S. Budhe, M.D. Banea, S. de Barros & L.F.M. da Silva. (2017) An updated review of adhesively bonded joints in composite materials. International Journal of Adhesion and Adhesives 72, pages 30-42.
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A. Ghumatkar, S. Budhe, R. Sekhar, M.D. Banea & S. de Barros. (2016) Influence of Adherend Surface Roughness on the Adhesive Bond Strength. Latin American Journal of Solids and Structures 13:13, pages 2356-2370.
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S. Azari, G. Jhin, M. Papini & J.K. Spelt. (2014) Fatigue threshold and crack growth rate of adhesively bonded joints as a function of load/displacement ratio. Composites Part A: Applied Science and Manufacturing 57, pages 59-66.
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Olaf van der Sluis, Joris J.C. Remmers, M.A.C. Thurlings, B.J. Welling & Sander P.M. Noijen. (2013) The Competition between Adhesive and Cohesive Fracture at Amicro-Patterned Polymer-Metal Interface. Key Engineering Materials 577-578, pages 225-228.
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S. Azari, A. Ameli, M. Papini & J.K. Spelt. (2013) Adherend thickness influence on fatigue behavior and fatigue failure prediction of adhesively bonded joints. Composites Part A: Applied Science and Manufacturing 48, pages 181-191.
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M. M. Abdel Wahab. (2012) Fatigue in Adhesively Bonded Joints: A Review. ISRN Materials Science 2012, pages 1-25.
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S.P.M. Noijen, O. van der Sluis, P.H.M. Timmermans & G.Q. Zhang. (2012) A semi-analytic method for crack kinking analysis at isotropic bi-material interfaces. Engineering Fracture Mechanics 83, pages 8-25.
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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 II: Analysis and finite element modeling. Engineering Fracture Mechanics 78:1, pages 138-152.
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