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Ultimate capacity od rectangular concrete-filled steel tubular columns under unequal load eccentricities

机译:不等荷载偏心下矩形钢管混凝土柱的极限承载力

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摘要

The paper describes 36 experimental tests conducted on rectangular and square tubular columns filled with normal and high strength concrete and subjected to a non-constant bending moment distribution with respect to the weak axis. The test parameters were the nominal strength of concrete (30 and 90 MPa), the cross-section aspect ratio (square or rectangular), the thickness (4 or 5 mm) and the ratio of the top and bottom first order eccentricities etop/ebottom (1, 0.5, 0 and − 0.5). The ultimate load of each test was compared with the design loads from Eurocode 4, presenting unsafe results inside a 10% safety margin. The tests show that the use of high strength concrete is more useful for the cases of non-constant bending moment, whereas if the aim is to obtain a more ductile behavior the use of concrete-filled columns is more appealing in the cases of normal strength concrete with non-constant bending moments because, although they resist less axial force than the members with HSC, they obtain a softened post-peak behavior.
机译:本文描述了在填充了普通和高强度混凝土并且在弱轴上具有非恒定弯矩分布的矩形和方形管状柱上进行的36个实验测试。测试参数为混凝土的标称强度(30 MPa和90 MPa),横截面纵横比(正方形或矩形),厚度(4或5 mm)以及顶部和底部一阶偏心率的比值etop / bottom (1、0.5、0和− 0.5)。将每个测试的最终载荷与Eurocode 4的设计载荷进行了比较,得出不安全的结果在10%的安全范围内。测试表明,在非恒定弯矩的情况下,使用高强度混凝土更为有用,而如果要获得更大的延展性,则在正常强度的情况下使用混凝土填充柱更为有吸引力具有不恒定弯矩的混凝土,因为尽管它们承受的轴向力比带有HSC的构件要小,但它们获得了较软的峰后性能。

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