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He has researched the impact and durability performance of rubber-toughened structural epoxy adhesives, and quantitatively predicted the lifetime of adhesive joints in fatigue. His current work is investigating the structure/property relationship of thermoset/inorganic hybrids, using epoxy, acrylic and cyanate ester polymers. He also has interests in using other nanomodifiers (e.g. layered silicates, carbon nanotubes and silica nanoparticles) as tougheners for thermosets. He is also investigating the microstructure and properties of epoxy adhesives modified with combinations of micro- and nanoparticles. The applications of these materials include structural adhesives, coatings and as the matrices of fibre-composite materials. He also researches degradation and conservation of cultural heritage, working with museums and heritage organisations. He researches the fracture of engineering thermoplastics, and the effects of recycling on their mechanical properties. He has held a prestigious Royal Academy of Engineering Post-doctoral Research Fellowship and a Royal Society Mercer Award for Innovation.
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COMPOSITES PART B-ENGINEERING (2024): 111153
COMPOSITES SCIENCE AND TECHNOLOGY (2024): 110536
RSC advancesno. 39 (2023): 27461-27475
Elsevier eBookspp.251-286, (2023)
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Science advancesno. 11 (2023): eadf4051-eadf4051
Jojibabu Panta,Andrew N. Rider,John Wang, C.H. Yang, R. Hugh Stone,Ambrose C. Taylor,Narelle Brack, Scott Cheevers,Y.X. Zhang
CoRR (2023)
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