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Ultimate capacity of high-strength rectangular concrete-filled steel hollow section stub columns

机译:高强度矩形钢管混凝土空心截面短柱的极限承载力

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The ultimate capacity of high-strength rectangular concrete-filled steel hollow section (CFSHS) stub columns is experimentally investigated. In the experimental programme, 22 rectangular CFSHS specimens with cross-sectional aspect ratios of 1.0, 1.5 and 2.0 were tested to failure under axial concentric loading. All the specimens were fabricated from high-strength materials. The average yield stress of the steel hollow sections was 550 MPa (N/mm~2) while the average compressive strengths of concrete were 70.8 and 82.1 MPa (N/mm~2). In the study, the ultimate loads obtained from the experiment were compared with the values calculated from design codes, namely EC4, AISC and ACI. The comparison of results shows that EC4 closely predicts with a difference of 6 percent while AISC and ACI underestimated the critical loads by 16 and 14 percent, respectively. It is noted that the strength of specimens decreases with the increase of cross-sectional aspect ratios.
机译:实验研究了高强度矩形钢管混凝土空心截面(CFSHS)短柱的极限承载力。在实验程序中,测试了22个矩形长宽比为1.0、1.5和2.0的矩形CFSHS试样,使其在轴向同心载荷下失效。所有样品均由高强度材料制成。钢空心截面的平均屈服应力为550 MPa(N / mm〜2),而混凝土的平均抗压强度为70.8和82.1 MPa(N / mm〜2)。在研究中,将实验获得的极限载荷与根据设计规范EC4,AISC和ACI计算得出的值进行了比较。结果比较表明,EC4的预测相差6%,而AISC和ACI分别低估了临界负荷16%和14%。注意,样品的强度随着横截面纵横比的增加而降低。

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