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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >High-strength steel-fibre-reinforced concrete: potential use for ground slabs applications
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High-strength steel-fibre-reinforced concrete: potential use for ground slabs applications

机译:高强度钢纤维增强混凝土:地面平板应用的潜在用途

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摘要

Laboratory and analytical investigations were conducted to study the effect of steel fibres and concrete matrix strength on the behaviour of ground slabs. Three full-scale (3 m x 3 m x 0.1 m) slabs were precast, placed on a rubber mat, resting on a concrete floor, and centrally loaded either to failure or to the maximum loading-jack capacity. The tested load-carrying capacity of each slab was compared to theoretically estimated values using the Meyerhof model. Test results indicated that the addition of 60 kg/m(3) (0.76% by volume) of hooked-end steel fibres to concrete significantly increases the load-carrying and displacement capacities, changes the mode of failure from brittle to ductile, reduces cracking on bottom and top surfaces of the slab and allows a significant reduction in slab thickness. Increasing the concrete matrix strength of steel-fibre-reinforced concrete slab from 45 to 85 MPa had a marginal effect on the load-carrying capacity of the slab at points on the displacement response beyond the first crack point. Furthermore, the Meyerhof model was found to underestimate the load-carrying capacity of the tested ground slabs.
机译:进行了实验室和分析研究,以研究钢纤维和混凝土基体强度对楼板性能的影响。预制了三块全尺寸(3 m x 3 m x 0.1 m)平板,放置在橡胶垫上,搁在混凝土地板上,并在中心加载,以进行破坏或达到最大加载千斤顶容量。使用Meyerhof模型将每个平板的测试承载能力与理论估计值进行比较。测试结果表明,向混凝土中添加60 kg / m(3)(按体积计0.76%的体积)的钩端钢纤维显着增加了承载力和位移能力,将破坏模式从脆性转变为延性,减少了开裂在板的底部和顶部表面上,可以显着减小板的厚度。将钢纤维增强混凝土板的混凝土基体强度从45 MPa增加到85 MPa,在超过第一个裂纹点的位移响应点上对板的承载能力有边际影响。此外,发现Meyerhof模型低估了被测地面的承重能力。

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