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Numerical study of ultra-high-performance steel fibre-reinforced concrete columns under monotonic push loading

机译:单调推力作用下超高性能钢纤维混凝土柱的数值研究

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摘要

A finite element model is developed to investigate the behaviour of ultra-high-performance steel fibre–reinforced concrete columns under combined axial compression and horizontal monotonic push loading. The effects of steel fibre content, axial compression ratio, reinforcement ratio (or rebar ratio), stirrup ratio and shear span ratio on the structural behaviour of ultra-high-performance steel fibre–reinforced concrete columns are investigated in detail. The numerical model shows good agreement in bond–slip behaviour of specimens based on CEB model results and numerical results, and such behaviour should be taken into consideration in engineering practice. The results indicate that the developed finite element model could predict the structural behaviour and failure mode of ultra-high-performance steel fibre–reinforced concrete columns effectively. It is found that the reinforcement ratio, axial compression ratio, shear span ratio and volume fraction of steel fibre have a great influence on both the structural behaviour and failure modes of specimens.
机译:建立了有限元模型,以研究超高性能钢纤维增强混凝土柱在轴向压缩和水平单调推压荷载作用下的性能。详细研究了钢纤维含量,轴向压缩比,增强比(或钢筋比),箍筋比和剪切跨度比对超高性能钢纤维混凝土柱结构性能的影响。基于CEB模型结果和数值结果,数值模型在试样的粘结-滑移行为中显示出良好的一致性,在工程实践中应考虑这种行为。结果表明,所建立的有限元模型可以有效预测超高性能钢纤维混凝土柱的结构性能和破坏模式。研究发现,钢纤维的增强比,轴向压缩比,剪切跨度比和体积分数对试件的结构行为和破坏模式都有很大影响。

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