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Experimental tests for improving buildability of construction methods for high‐strength concrete columns in high‐rise buildings

机译:改善高层建筑高强度混凝土柱施工方法可建性的试验测试

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High-strength concrete columns have the advantage of increasing the amount of usable area in the building because the cross-section of the columns takes up less space compared with columns using normal strength concrete. However, it is difficult to weld the steel reinforcement and steel members because of the narrow column width due to a decrease in the cross-section of the column, thereby causing construction delay in many cases. In this paper, five construction methods with different details for high-strength reinforced concrete columns are tested to improve the buildability of the columns. Five specimens with different construction details were tested and analyzed based on four aspects: (a) the relationship between load and displacements, (b) strain distributions, (c) axial stiffness, and (d) crack patterns. Specimens were constructed using concrete with a compressive strength of 55 MPa, and the design strength of all five specimens were set to about 10,740 kN. From results of the experiment, the specimen with a reduced number of vertical reinforcements from 24 of HD22 (SD400, Fy = 400 MPa) to 16 of UD22 (SD600, Fy = 600 MPa) was the most effective specimen to improve the buildability of the column without deteriorating the structural performance of the reference specimen.
机译:高强度混凝土柱具有增加建筑物可用面积的优点,因为与使用普通强度混凝土的柱相比,柱的横截面占用更少的空间。然而,由于由于柱的横截面减小而导致的狭窄的柱宽度,因此难以焊接钢筋和钢构件,从而在许多情况下导致施工延迟。本文对高强度钢筋混凝土柱的五种不同细节的施工方法进行了测试,以提高其可建造性。根据四个方面对五个具有不同结构细节的试件进行了测试和分析:(a)载荷与位移之间的关系;(b)应变分布;(c)轴向刚度;(d)裂纹模式。使用抗压强度为55 MPa的混凝土建造标本,并将所有五个标本的设计强度设定为约10,740 kN。从实验结果来看,垂直加强筋数量从HD22的24个(SD400,Fy = 400 MPa)减少到UD22的16个(SD600,Fy = 600 MPa)减少的标本是最有效的提高标本建造性的标本。色谱柱不会降低参考样品的结构性能。

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