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Articles

Mechanical behaviour of thick structural adhesives in wind turbine blades under multi-axial loading

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Pages 1413-1429 | Received 28 May 2015, Accepted 21 Jan 2016, Published online: 29 Feb 2016

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M Rosemeier, T Holst & A Antoniou. (2023) Quantification of process-induced effects on fatigue life of short-glass-fiber-filled adhesive used in wind turbine rotor blades. IOP Conference Series: Materials Science and Engineering 1293:1, pages 012042.
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Leon MishnaevskyJr.Jr. & Kenneth Thomsen. (2020) Costs of repair of wind turbine blades: Influence of technology aspects. Wind Energy 23:12, pages 2247-2255.
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Xiao Chen & Martin A. Eder. (2020) A Critical Review of Damage and Failure of Composite Wind Turbine Blade Structures. IOP Conference Series: Materials Science and Engineering 942:1, pages 012001.
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Andrea I. M. Foletti, José Sena Cruz & Anastasios P. Vassilopoulos. (2020) Fabrication and curing conditions effects on the fatigue behavior of a structural adhesive. International Journal of Fatigue 139, pages 105743.
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A. Spaggiari, D. Castagnetti & E. Dragoni. (2019) A design oriented multiaxial stress-based criterion for the strength assessment of adhesive layers. Composites Part B: Engineering 157, pages 66-75.
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R.A. Hunter-Alarcon, J. Leyrer, E. Leal, A. Vizan, J. Perez & L.F.M. da Silva. (2018) Influence of dissimilar composite adherends on the mechanical adhesion of bonded joints for small blade wind turbine applications. International Journal of Adhesion and Adhesives 83, pages 178-183.
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Maria Savvilotidou, Thomas Keller & Anastasios P. Vassilopoulos. (2017) Fatigue performance of a cold-curing structural epoxy adhesive subjected to moist environments. International Journal of Fatigue 103, pages 405-414.
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