Items where Author is "Sotayo, Adeayo"
Amaechi, Chiemela Victor and Agbomerie, Charles Odijie and Sotayo, Adeayo and Wang, Facheng and Hou, Xiaonan and Ye, Jianqiao (2019) Recycling of Renewable Composite Materials in the Offshore Industry. In: Reference Module in Materials Science and Materials Engineering :. Elsevier.
Sotayo, Adeayo and Green, Sarah Margaret and Turvey, Geoffrey John (2019) Experimental investigation and Finite Element (FE) analysis of the load-deformation response of PVC fencing structures. structures, 19. pp. 424-435. ISSN 2352-0124
Sotayo, Adeayo and Green, Sarah and Turvey, Geoffrey (2018) Development, Characterisation and Finite Element Modelling of Novel Waste Carpet Composites for Structural Applications. Journal of Cleaner Production, 183. pp. 686-697. ISSN 0959-6526
Sotayo, Adeayo and Green, Sarah Margaret and Turvey, Geoffrey John (2016) Experimental and Finite Element (FE) modelling of timber fencing for benchmarking novel composite fencing. Composite Structures, 158. pp. 44-55. ISSN 0263-8223
Sotayo, Adeayo and Green, Sarah Margaret and Turvey, Geoffrey John (2016) Benchmark testing and Finite Element (FE) analysis of timber fencing for replacement by novel composite materials. In: Mechcomp2 2nd International Conference on Mechanics of Composites :. Editrice Esculapio, Bologna. ISBN 9788874889631
Sotayo, Adeayo and Green, Sarah Margaret and Turvey, Geoffrey John (2016) Experimental investigation of recycled carpet composites for barrier structures. In: Institute of Structural Engineers' 18th Young Researchers’ Conference, 2016-04-06.
Sotayo, Adeayo and Green, Sarah and Turvey, Geoffrey (2016) Development and characterisation of novel structural composites from recycled materials. PhD thesis, Lancaster University.
Sotayo, Adeayo and Green, Sarah and Turvey, Geoffrey (2015) Carpet recycling : a review of recycled carpets for structural composites. Environmental Technology and Innovation, 3. pp. 97-107. ISSN 2352-1864
Sotayo, Adeayo and Green, Sarah and Turvey, Geoffrey (2014) Developing novel structural composites from recycled materials. In: UNSPECIFIED.