Effects of different cyclic loading on lightweight self-compacting concrete
Self-compacting concrete (SCC) use is increasing and understanding its behaviour under cyclic loading is therefore important. This research study investigated the behaviour of lightweight SCC under eight different types of compressive cyclic loading. Three loadings were applied to examine pre-peak lightweight SCC behaviour, two loadings were used to ...
Hamoon Fathi +2 more
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Recent development and perspective of lightweight aggregates based self-compacting concrete [PDF]
© 2019 Elsevier Ltd The utilization of natural and artificial lightweight aggregates in lightweight self-compacting concrete (LWSCC) is gaining popularity in research field. Extensive research has been carried out in the past decade all over the world to
Ting, T.Z.H. +6 more
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Self-compacting lightweight aggregate concrete and its properties: A review
Construction and Building Materials, 2023Dinakar Pasla
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Effect of pre‐coating lightweight aggregates on the self‐compacting concrete
Structural Concrete, 2021AbstractThe porous lightweight aggregates adversely affect fresh properties of concrete, including slump and disruption of pumping concrete. Besides, this type of concrete is very susceptible to shrinkage cracking. In this study, two types of lightweight aggregates were used with a combination of two types of coating, including hydrophobic polymers ...
Mir Yashar Vahabi +3 more
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Evaluating the settlement of lightweight coarse aggregate in self-compacting lightweight concrete
Computers and Concrete, 2017The purpose of this paper is to evaluate the settlement of lightweight coarse aggregate of self-compacting lightweight concrete (SCLC) after placement of concrete on its final position. To investigate this issue, sixteen samples of concrete mixes were made. The water to cementitious materials ratios of the mixes were 0.35 and 0.4.
Moosa Mazloom, Farzan Mahboubi
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Rheological Properties of Self-Compacting Lightweight Concrete with Metakaolin
2020To escalate the structural efficiency of concrete is one of the best practices to achieve sustainability of concrete. Development of high strength lightweight aggregate self-compacting concrete has significant importance in this circumstance. Due to lower strength of the porous lightweight aggregate, it is very much necessary to improve the strength of
C. D. Wagh, S. N. Manu, P. Dinakar
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Corrosion Properties of Self-Compacting Lightweight Concrete Using Metakaolin
2020Combining the advantages of both lightweight concrete and self-compacting concrete in a single entity will be highly beneficial in offshore structures. Due to the addition of porous lightweight aggregate durability of these structures in adverse environment will be a matter of great concern.
Santosh K. Patro, S. N. Manu, P. Dinakar
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An Experimental Study on the High Strength Lightweight Self-Compacting Concrete
Journal of the Korea Concrete Institute, 2005This paper was to evaluate the high strength lightweight self-compacting concrete(HLSCC) manufactured by Nan-Su, which main factor, Packing Factor(PF) for mixing design, has been modified and improved. We have examined HLSCC performance at its fresh condition as well as its mechanical properties at the hardened condition.
Yun-Wang Choi +2 more
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Use of synthetic fibers in self-compacting lightweight aggregate concretes
Journal of Building Engineering, 2015Abstract In this work, fiber reinforced SCLWAC (self-compacting lightweight aggregate concrete) mixtures were studied, in which synthetic fibers were used. Eight different SCLWACs were prepared, in which, as aggregates, different combinations of fine and coarse expanded clay were tried, also partially replaced by either quartz sand or aggregate ...
V. Corinaldesi, G. Moriconi
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Fresh and Mechanical Properties of Self-Compacting Lightweight Concrete Containing Ponza Aggregates
2019 12th International Conference on Developments in eSystems Engineering (DeSE), 2019The main aim of this study is to investigate the fresh and mechanical properties of self-compacting lightweight concrete SCLC in which natural aggregates replaced by natural lightweight coarse aggregate (Ponza) at different levels of 0%, 40%, 60%, 80% and 100%.
Sara Ali Almawla +2 more
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