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Experimental and numerical investigation on the axial behavior of solid and hollow SIFCON columns

机译:实心和空心SIFCON柱轴向性能的实验和数值研究

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This paper looks at the effect of fibers shape, hollow ratio and cross sectional shape on the behavior of solid and hollow slurry infiltrated fiber concrete (SIFCON) columns. Two shape of steel fiber were used in the present study, straight micro fiber and hooked end fiber. Therefore, this study comprised of casting and testing two groups of SIFCON column specimens; columns group reinforced by hybrid fibers (3% straight micro fiber + 3% hooked end fiber) and columns group reinforced by 6% hooked end fibers. Each group comprises of six column specimens, 3 of them are circular and the others are square. Each circular column has an equivalent square column with the same cross-sectional area. These six columns have different hollow ratios (β = 0, 25% and 50%). Non-linear finite element analysis of axially loaded SIFCON columns has been done by using ABAQUS computer program. Analytical predictions of load carrying capacity, axial displacement, ductility and energy absorption capacity are compared with experimentally observed results of SIFCON columns, and the results shown a good agreement between them. The results illustrated that despite the small cross-sectional area and presence of longitudinal hole in columns, SIFCON columns were shown dazzling performance in terms of load carrying capacity, ductility and energy absorption capacity especially for columns reinforced by hybrid fiber. On the other hand, column performance deteriorates with increased hollow ratio. The results also demonstrated that the performance of circular columns exceeded that of square columns for the same cross-sectional area.
机译:本文研究了纤维形状,中空比和横截面形状对实心和中空浆料渗透纤维混凝土(SIFCON)柱性能的影响。在本研究中,使用了两种形状的钢纤维,直形超细纤维和钩形端部纤维。因此,这项研究包括浇铸和测试两组SIFCON柱标本。混合纤维(3%的直型超细纤维+ 3%的钩形端纤维)增强的圆柱组和6%的钩形端纤维增强的圆柱组。每组由六个圆柱试样组成,其中三个为圆形,其他为正方形。每个圆柱都有一个具有相同横截面积的等效方柱。这六个塔具有不同的空心率(β= 0、25%和50%)。使用ABAQUS计算机程序已经完成了轴向加载SIFCON柱的非线性有限元分析。将SIFCON柱的承载能力,轴向位移,延性和能量吸收能力的分析预测结果与实验观察到的结果进行了比较,结果表明它们之间具有良好的一致性。结果表明,尽管柱子的横截面积小且存在纵向孔,但SIFCON柱子在承载能力,延展性和能量吸收能力方面表现出令人眼花performance乱的性能,特别是对于混合纤维增强的柱子而言。另一方面,随着空心率的增加,色谱柱性能下降。结果还表明,在相同的横截面积下,圆形柱的性能超过方形柱。

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