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Self-Consolidating Lightweight Concrete Incorporating Limestone Powder and Fly Ash as Supplementary Cementing Material

机译:掺石灰石粉和粉煤灰作为辅助胶凝材料的自固结轻质混凝土

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This paper assesses the mechanical and structural behavior of self-consolidating lightweight concrete (SCLWC) incorporating bloated shale aggregate (BSA). BSA was manufactured by expanding shale pellets of varying sizes by heating them up to a temperature of 1200 °C using natural gas as fuel in the rotary kiln. Fly ash (FA) and limestone powder (LSP) were used as supplementary cementing materials (10% replacement of cement, each for LSP and FA) for improved properties of the resulting concrete. The main parameters studied in this experimental study were compressive strength, elastic modulus, and microstructure. The fresh-state properties (Slump flow, V-funnel, J-Ring, and L-box) showed adequate rheological behavior of SCLWC in comparison with self-consolidating normal weight concrete (SCNWC). There was meager (2–4%) compressive strength reduction of SCLWC. Lightweight aggregate tended to shift concrete behavior from ductile to brittle, causing reduced strain capacity and flexural toughness. FA and LSP addition significantly improved the strength and microstructure at all ages. The study is encouraging for the structural use of lightweight concrete, which could reduce the overall construction cost.
机译:本文评估了掺入膨胀页岩骨料(BSA)的自固结轻质混凝土(SCLWC)的力学和结构性能。 BSA是通过在旋转窑中使用天然气作为燃料将不同尺寸的页岩粒料加热到1200°C的温度来膨胀制成的。粉煤灰(FA)和石灰石粉(LSP)被用作辅助胶凝材料(10%的水泥替代,分别用于LSP和FA),以改善所得混凝土的性能。在本实验研究中研究的主要参数是抗压强度,弹性模量和微观结构。与自结实的普通重量混凝土(SCNWC)相比,新鲜状态特性(坍落流动,V形漏斗,J型环和L型箱)显示出SCLWC足够的流变行为。 SCLWC的抗压强度降低幅度很小(2-4%)。轻骨料倾向于使混凝土的性能从韧性转变为脆性,从而导致应变能力和挠曲韧性降低。在所有年龄段,添加FA和LSP均可显着提高强度和微观结构。这项研究对于轻质混凝土的结构使用是令人鼓舞的,这可以降低总体建筑成本。

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