PSI - Issue 45
Huailiang Chen et al. / Procedia Structural Integrity 45 (2023) 104–108 Huailiang Chen et al. / Structural Integrity Procedia 00 (2019) 000 – 000
108
5
References
Chen, H, Li, D, Ma, X, Zhong, Z & Abd-Elaal, E- S 2021, ‘Mesoscale analysis of rubber particle effect on young’s modulus and creep behaviour of crumb rubber concrete’, International Journal of Mechanics and Materials in Design . Chen, H, Li, D, Ma, X, Zhong, Z & Abd-Elaal, E-S 2023, Mesoscale Analysis of Rubber Particle Effect on Indirect Tensile and Flexural Tensile Strength of Crumb Rubber Mortar, Journal of Composites Science, vol. 7, no. 1. Corinaldesi, V, Mazzoli, A & Moriconi, G 2011, ‘Mechanical behaviour and thermal conductivity of mortars containing waste rubber particles’, Materials & Design , vol. 32, no. 3, pp. 1646 – 1650. D e Souza Kazmierczak, C, Dutra Schneider, S, Aguilera, O, Albert, CC & Mancio, M 2020, ‘Rendering mortars with crumb rubber: M echanical strength, thermal and fire properties and durability behaviour’, Construction and Building Materials , vol. 253, p. 119002. Di Mundo, R, Seara-Paz, S, González- Fonteboa, B & Notarnicola, M 2020, ‘Masonry and render mortars with tyre rubber as aggregate: Fresh state rheology and hardened state performances’, Construction and Building Materials , vol. 245, p. 118359. Diao, H, Wang, X, Cui, Y, Han, S & Qi, C 2020, ‘Analysis of Rubberized Self -Compacting Concrete under Uniaxial Tension by 3D Mesoscale Models’, in W Wu (ed.), Advances in Civil Engineering , vol. 2020, p. 8854730. Duarte, APC, Silva, BA, Silvestre, N, De Brito, J & Júlio, E 2015, ‘Mechanical characterization of rubberized concrete using an image processing/XFEM coupled procedure’, Composites Part B: Engineering , vol. 78, pp. 214 – 226. Duarte, APC, Silvestre, N, de Brito, J & Júlio, E 2017, ‘Numerical study of the compressive mechanical behaviour of rubberized concrete using the eXtended Finite Element Method (XFEM)’, Composite Structures , vol. 179, pp. 132 – 145. Eltayeb, E, Ma, X, Zhuge, Y, Xiao, J & Youssf, O 2022, ‘Composite walls Composed of profiled steel skin a nd foam rubberized concrete subjected to eccentric compressions’, Journal of Building Engineering , vol. 46, p. 103715. Eltayeb, E, Ma, X, Zhuge, Y, Youssf, O & Mills, JE 2020a, ‘Influence of rubber particles on the properties of foam concrete’, Journal of Building Engineering , vol. 30, p. 101217. Eltayeb, E, Ma, X, Zhuge, Y, Youssf, O, Mills, JE & Xiao, J 2020b, ‘Structural behaviour of composite panels made of profiled steel sheets and foam rubberised concrete under monotonic and cyclic shearing loads’, Thin-Walled Structures , vol. 151, p. 106726. Eltayeb, E, Ma, X, Zhuge, Y, Youssf, O, Mills, JE, Xiao, J & Singh, A 2020c, ‘Structural performance of composite panels made of profiled steel skins and foam rubberised concrete under axial compressive loads’, Engineering Structures , vol. 211, p. 110448. Huang, Y, Yang, Z, Ren, W, Liu, G & Zhang, C 2015, ‘3D meso -scale fracture modelling and validation of concrete based on in-situ X-ray Computed Tomography images using damage plasticity model’, International Journal of Solids and Structures , vol. 67 – 68, pp. 340 – 352. Li, J, Saberian, M & Nguyen, BT 2018, ‘Effect of crumb rubber on the mechanical properties of crushed recycled pavement materials’, Journal of Environmental Management , vol. 218, pp. 291 – 299. Li, X, Che n, X, Jivkov, AP & Zhang, J 2019, ‘3D mesoscale modeling and fracture property study of rubberized self -compacting concrete based on uniaxial tension test’, Theoretical and Applied Fracture Mechanics , vol. 104, p. 102363. Onuaguluchi, O & Panesar, DK 2014, ‘Hardened properties of concrete mixtures containing pre - coated crumb rubber and silica fume’, Journal of Cleaner Production , vol. 82, pp. 125 – 131. Turgut, P & Yesilata, B 2008, ‘Physico -mechanical and thermal performances of newly developed rubber-added bricks’, Energy and Buildings , vol. 40, no. 5, pp. 679 – 688. Turki, M, Bretagne, E, Rouis, MJ & Quéneudec, M 2009, ‘Microstructure, physical and mechanical properties of mortar– rubber aggregates mixtures’, Construction and Building Materials , vol. 23, no. 7, pp. 2715 – 2722. Uygunoğlu, T & Topçu, İB 2010, ‘The role of scrap rubber particles on the drying shrinkage and mechanical properties of self -consolidating mortars’, Construction and Building Materials , vol. 24, no. 7, pp. 1141 – 1150. Xiao, J, Li, W, Corr, DJ & Shah, SP 2013, ‘Effects of interfacial transition zones on the stress– strain behavior of modeled recycled aggregate concrete’, Cement and Concrete Research , vol. 52, pp. 82 – 99. Zhu, H, Thong- On, N & Zhang, X 2002, ‘Adding crumb rubber into exterior wall materials’, Waste Management & Research , vol. 20, no. 5, pp. 407 – 413.
Made with FlippingBook Annual report maker