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Abang Abdullah Abang Ali
Researcher at Universiti Putra Malaysia
Publications - 69
Citations - 2579
Abang Abdullah Abang Ali is an academic researcher from Universiti Putra Malaysia. The author has contributed to research in topics: Compressive strength & Beam (structure). The author has an hindex of 23, co-authored 68 publications receiving 1976 citations.
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Properties and applications of foamed concrete; a review
TL;DR: Foamed concrete possesses characteristics such as high strength-to-weight ratio and low density as discussed by the authors, which reduces dead loads on the structure and foundation, contributes to energy conservation, and lowers the labor cost during construction.
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Flexural behaviour of pre-cast concrete sandwich composite panel – Experimental and theoretical investigations
TL;DR: In this paper, the structural behavior of precast concrete sandwich panels (PCSP) under flexure is studied both experimentally and theoretically, and the effect of steel shear connector's stiffness on the ultimate strength and the compositeness of the panels is investigated.
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Effect of halloysite nanoclay on mechanical properties, thermal behavior and microstructure of cement mortars.
Nima Farzadnia,Abang Abdullah Abang Ali,Ramazan Demirboğa,Ramazan Demirboğa,Mohammed Parvez Anwar +4 more
TL;DR: In this paper, the mechanical properties, flowability, thermal behavior and durability of mortars containing 1, 2, 3% halloysite nanoclay were studied, and the results showed that with 3% and 2% nanotubes, the compressive strength and gas permeability of these mortars were improved up to 24% and 56%, respectively.
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Characterization of high strength mortars with nano alumina at elevated temperatures
TL;DR: In this paper, the effect of elevated temperatures on chemical composition, microstructure and mechanical properties of high strength mortars with nano alumina was investigated and a brittleness index was defined.
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Response of pre-cast reinforced composite sandwich panels to axial loading
TL;DR: In this paper, the results of an experimental and numerical study of precast reinforced composite sandwich panels were presented, and a semi-empirical formula was proposed to better fit the experimental and the FEA results.