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dc.contributor.authorYan, Baoxu
dc.contributor.authorJia, Hanwen
dc.contributor.authorYılmaz, Erol
dc.contributor.authorLai, Xingping
dc.contributor.authorShan, Pengfei
dc.contributor.authorHou, Chen
dc.date.accessioned2022-11-23T11:04:34Z
dc.date.available2022-11-23T11:04:34Z
dc.date.issued2022en_US
dc.identifier.citationYan, B.X., Jia, H.W., Yilmaz, E., Lai, X.P., Shan, P. & Hou, Chen (2022). Numerical study on microscale and macroscale strength behaviors of hardening cemented paste backfill. Construction and Building Materials, 321, 126327. https://doi.org/10.1016/j.conbuildmat.2022.126327en_US
dc.identifier.issn0950-0618
dc.identifier.issn1879-0526
dc.identifier.urihttps://doi.org/10.1016/j.conbuildmat.2022.126327
dc.identifier.urihttps://hdl.handle.net/11436/7118
dc.description.abstractComputer aided optimization of cement-based materials proportion can accurately quantify the accompanying microstructure evolution, material composition, and the mechanical properties changes. However, no relevant research exists on the effect of cement hydration on cemented paste backfill (CPB) strength using numerical simulation considering above mentioned aspects. This study builds a numerical model based on continuous damage mechanics methods considering CPB hardening process per the particle size distribution (PSD) of tailings, the known determined strength characteristics of components, and the existing cognition of cement hydration mechanism. A series of CPB mechanical properties simulation was then carried out. The relations and influencing factors between CPB's hardening process and mechanical parameters were obtained. Results have showed that numerical simulation can more intuitively show the relationship between the crack development and PSD of CPB's hardening process at different stages under external load, and can quantitatively analyze the influence of strength properties. The strength development during CPB hardening is the combined result of matric suction and hydration products. The smaller the solid content, the more prominent the matric suction during hardening. The greater the binder content, the less the effect of matric suction on strength. The binding ability of cement hydration products to tailing particles is linked with the spatial distribution of tailing particles. The tailings gradation plays a key role on CPB's strength characteristics. The heterogeneous distribution of CPB strength can be configured by analyzing the non-uniform distribution of hydration degree in CPB's hardening mechanism. Accordingly, the proposed framework can not only provide theoretical guidance for the preparation and application of CPB, but also can save the cost and interminable time of laboratory tests and reduce the uncertain factors caused by environmental conditions.en_US
dc.description.sponsorshipNational Natural Science Foundation of China (NSFC) U1906208 China Postdoctoral Science Foundation 2021MD703874 2021M702015 Scientific research start-up project of university talent introduction 2050121006en_US
dc.language.isoengen_US
dc.publisherElsevieren_US
dc.rightsinfo:eu-repo/semantics/closedAccessen_US
dc.subjectBackfillen_US
dc.subjectHydrationen_US
dc.subjectMicrostructureen_US
dc.subjectStrengthen_US
dc.subjectNumerical simulationen_US
dc.titleNumerical study on microscale and macroscale strength behaviors of hardening cemented paste backfillen_US
dc.typearticleen_US
dc.contributor.departmentRTEÜ, Mühendislik ve Mimarlık Fakültesi, İnşaat Mühendisliği Bölümüen_US
dc.contributor.institutionauthorYılmaz, Erol
dc.identifier.doi10.1016/j.conbuildmat.2022.126327en_US
dc.identifier.volume321en_US
dc.identifier.startpage126327en_US
dc.relation.journalConstruction and Building Materialsen_US
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US


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