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Hybrid fiber reinforced concrete-filled square stub columns under axial compression

机译:混合纤维增强混凝土方桩在轴向压缩

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The main aim of this study is to compare the axial load, ductility, and toughness capacities of square concrete-filled carbon steel (CFCST), stainless steel (CFSST) and aluminum tube (CFAT) columns filled with plain concrete, single (steel) and hybrid (steel + synthetic) fiber-reinforced concrete under axial compression. To this end, the enhancement in axial load, ductility and toughness capacities of steel and hybrid fiber-reinforced CFCST, CFSST, and CFAT columns were obtained with regard to fiber volume ratio (0.5 and 1.5%), compressive strength of concrete (30 and 70 MPa) and the steel tube thickness (2, 3 and 4 mm). A total of 99 hollow, steel and hybrid fiber-reinforced CFCST, CFSST, and CFAT columns were tested under axial compression. The results showed that although the use of steel and synthetic fibers in single and hybrid form is very limited for enhancement of the axial load capacities of CFAT, CFCST and CFSST columns, the enhancement in ductility and post-peak toughness capacities are notable especially for CFCST and CFSST columns. However, the effects of steel and synthetic fibers on post-cracking behavior of the CFAT columns are not significant due to early rupture of AL tubes that cause highly brittle behavior after first peak load. In addition to this, the use of steel and synthetic fibers in hybrid form is slightly better at improving the ductility and toughness capacities of most of the CFAT, CFCST and CFSST columns than the use of steel fibers in single form.
机译:这项研究的主要目的是比较填充有普通混凝土,单根(钢)的方钢管混凝土(CFCST),不锈钢(CFSST)和铝管(CFAT)的轴向载荷,延性和韧性。混合(钢+合成)纤维增强混凝土在轴向压缩下。为此,在纤维体积比(0.5和1.5%),混凝土的抗压强度(30和30%)方面,钢和混合纤维增强的CFCST,CFSST和CFAT柱的轴向载荷,延展性和韧性得到了提高。 70 MPa)和钢管厚度(2、3和4 mm)。在轴向压缩下总共测试了99根空心,钢和混合纤维增强的CFCST,CFSST和CFAT色谱柱。结果表明,尽管单一和混合形式的钢和合成纤维的使用对提高CFAT,CFCST和CFSST柱的轴向载荷能力非常有限,但延展性和峰后韧性的增强尤其是对于CFCST和CFSST列。但是,由于AL管的早期破裂会导致钢和合成纤维对CFAT色谱柱开裂后行为的影响不显着,AL管会在第一个峰值载荷后引起高度脆性。除此之外,以混合形式使用钢和合成纤维比以单一形式使用钢纤维在改善大多数CFAT,CFCST和CFSST色谱柱的延展性和韧性方面要稍好一些。

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