Article ID Journal Published Year Pages File Type
256008 Construction and Building Materials 2016 11 Pages PDF
Abstract

•The water absorption ratio of LWAC is proportional to that of the corresponding LWA.•The frost resistance capacity of LWAC depends on the types of LWA.•The chloride ion penetration resistance of LWAC depends on silica fume contents.

In this study, the mechanical property and durability performance of high strength lightweight aggregate concrete (LWAC) with silica fume for 91 days were presented. LWACs were designed to have the design compressive strength of 60 MPa at 28 days and the oven-dry density below 1900 kg/m3. Nine mixtures with three aggregate types and silica fume replacement ratio of 0%, 3.5% and 7.0% by cement weight were prepared. The splitting tensile strength, the compressive strength and the modulus of elasticity tests were conducted at 7 days, 28 days, 56 days and 91 days. The chloride penetration resistance tests were done at 28 days, 56 days and 91 days. The chloride diffusion coefficient based on the measurement of chloride penetration depth was also measured at 7 days, 14 days, 28 days, 56 days and 91 days. The rapid freeze-thaw cycling tests were conducted and the relative dynamic modulus was evaluated up to 300 cycles. The results indicate that the durability against chemical deterioration for LWAC incorporated to silica fume depends on the compositions of hardened cement pastes in concretes, while the durability against physical attack depends on the types of aggregates.

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Physical Sciences and Engineering Engineering Civil and Structural Engineering
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