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His research interests include the fracture mechanics of structural adhesive joints and polymeric fibre-reinforced composite materials, including effects of mode-mix, test rate, service environment and structure-property relationships. His research includes the study of adhesion related phenomena including surface pre-treatment prior to adhesive bonding, the quantification of surface modification, and the long-term durability of joints. His research includes the combination of mechanical and adhesive joining techniques in hybrid systems where, for example, sculpted metals surfaces are designed to join efficiently to polymer-based fibre composites. In this research, fracture and damage mechanics are routinely applied to understand performance and predict surface life. He has managed via the relevant BSI and ISO committees the development of several standards for the measurement of fracture toughness of adhesively bonded and fibre-composite materials, e.g. ISO 25217 (2009) and ISO 15114 (2014).
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Composites Science and Technologypp.110611, (2024)
COMPOSITES SCIENCE AND TECHNOLOGY (2023): 109917
Journal of Materials Processing Technology (2023): 117904
H. Liu,R. A. Brooks,Z. E. C. Hall,J. Liu, J. W. M. Crocker,A. M. Joesbury,L. T. Harper,B. R. K. Blackman,A. J. Kinloch,J. P. Dear
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