J
Jianhe Xie
Researcher at Guangdong University of Technology
Publications - 66
Citations - 2584
Jianhe Xie is an academic researcher from Guangdong University of Technology. The author has contributed to research in topics: Compressive strength & Aggregate (composite). The author has an hindex of 21, co-authored 47 publications receiving 1184 citations.
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Effects of combined usage of GGBS and fly ash on workability and mechanical properties of alkali activated geopolymer concrete with recycled aggregate
TL;DR: In this paper, the combined effects of ground granulated blast furnace slag (GGBS) and fly ash considering water-binder (W/B) ratio on the fresh and hardened properties of alkali activated GRAC were investigated.
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Compressive and flexural behaviours of a new steel-fibre-reinforced recycled aggregate concrete with crumb rubber
TL;DR: In this article, the effect of the rubber content on the compressive and flexural strength, failure mode, modulus of elasticity and toughness of RSRAC was analyzed, and the results indicate that rubber with an optimal rubber content displays good compressive behaviour compared with normal NCA concrete.
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Effects of the addition of silica fume and rubber particles on the compressive behaviour of recycled aggregate concrete with steel fibres
TL;DR: In this article, the coupling effects of incorporating silica fume (SF) and rubber particles on the compressive performance of rubberized steel-fibre recycled aggregate concrete (RSRAC) were investigated.
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Experimental study on the compressive and flexural behaviour of recycled aggregate concrete modified with silica fume and fibres
TL;DR: In this article, the compressive and flexural properties of steel-fibre reinforced RAC and normal concrete were evaluated using axial compression and three-point bending tests.
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Behavior of partially and fully FRP-confined circularized square columns under axial compression
TL;DR: In this paper, the compressive behavior of circularized square columns (CSCs) was investigated under axial compression and the results indicated that the section circularization of square columns can significantly improve the effectiveness of FRP confinement.