Factors controlling crack development in two formulations of heavily filled epoxy anti-corrosion coatings have been studied as free films and on steel substrates. Both coatings were nominally 300 mu m thick. Tensile strength, Young's modulus, strain to failure and fracture toughness of coating free films were measured at 23 degrees C. Tensile tests of both coatings on steel substrates were performed at 23 degrees C and strains to development of first coating crack and crack development with increasing strain were measured using extensometry and Digital Image Correlation (DIC). Finite element models of free film and substrated samples, incorporating non-linear stress-strain curves, were used to calculate residual stresses in substrated samples and J values of coating cracks. It was found that strain to first crack in coatings on substrates could be predicted using fracture mechanics models of coating cracks together with data on defect size, residual stress and toughness. Channelling crack development and factors influencing the relative ductility of free film and substrated coatings are discussed. (C) 2016 Elsevier Ltd. All rights reserved.
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Department of Metallurgical and Material Engineering, National Institute of Technology Karnataka Surathkal, MangaluruDepartment of Metallurgical and Material Engineering, National Institute of Technology Karnataka Surathkal, Mangaluru
Shetty P.
Arya S.B.
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Department of Metallurgical and Material Engineering, National Institute of Technology Karnataka Surathkal, MangaluruDepartment of Metallurgical and Material Engineering, National Institute of Technology Karnataka Surathkal, Mangaluru
Arya S.B.
Kodialbail V.S.
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Department Chemical Engineering, National Institute of Technology Karnataka Surathkal, MangaluruDepartment of Metallurgical and Material Engineering, National Institute of Technology Karnataka Surathkal, Mangaluru
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Univ La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, FranceUniv La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, France
Fredj, N.
Cohendoz, S.
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Univ La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, FranceUniv La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, France
Cohendoz, S.
Feaugas, X.
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Univ La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, FranceUniv La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, France
Feaugas, X.
Touzain, S.
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Univ La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, FranceUniv La Rochelle, Lab Etud Mat Milieux Agressifs, F-17042 La Rochelle, France
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Shawcor Ltd., 25 Bethridge Road, Toronto,ON,M9W 1M7, CanadaThe University of British Columbia, Department of Materials Engineering, Department of Materials Engineering, 309-6350 Stores Road, Vancouver,BC,V6T 1Z4, Canada
Wong, Dennis
Lam, C.N. Catherine
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Shawcor Ltd., 25 Bethridge Road, Toronto,ON,M9W 1M7, CanadaThe University of British Columbia, Department of Materials Engineering, Department of Materials Engineering, 309-6350 Stores Road, Vancouver,BC,V6T 1Z4, Canada