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Behaviours of steel-fibre-reinforced ULCC slabs subject to concentrated loading

机译:钢 - 纤维增强ULCC板坯的行为受浓缩负荷

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摘要

Novel steel fibre reinforced ultra-lightweight cement composite (ULCC) with compressive strength of 87.3MPa and density of 1649kg/m(3) was developed for the flat slabs in civil buildings. This paper investigated structural behaviours of ULCC flat slabs according to a 4-specimen test program under concentrated loading and some reported test results. The investigated governing parameters on the structural behaviours of the ULCC slabs include volume fraction of the steel fibre and the patch loading area. The test results revealed that ULCC flat slabs with and without flexure reinforcement failed in different failure mode, and an increase in volume fraction of the steel fibre and loading area led to an increase in flexural resistance for the ULCC slabs without flexural reinforcement. Based on the experiment results, the analytical models were developed and also validated. The validations showed that the analytical models developed in this paper could predict the ultimate strength of the ULCC flat slabs with and without flexure reinforcement reasonably well.
机译:新型钢纤维增强超轻型水泥复合材料(ULCC)具有87.3MPa的抗压强度和1649kg / m(3)的密度为民用建筑的平板开发。本文根据浓缩载荷和一些报告的测试结果,研究了根据4样品测试程序的ULCC平板的结构行为。对ULCC板坯结构行为的研究指导参数包括钢纤维的体积分数和贴片装载区域。测试结果显示,在不同的故障模式下具有和没有弯曲增强器的ULCC平板,并且钢纤维和装载区域的体积分数的增加导致ULCC板坯的抗弯性增加而没有弯曲加强。基于实验结果,开发了分析模型并验证。验证表明,本文开发的分析模型可以预测ULCC平板的最终强度,而无需相当良好的弯曲增强。

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