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Experimental and Theoretical Studies on Elastoplastic of Reinforced Concrete Short Columns Doubly Confined in Square Steel Tube and Hoops

机译:钢筋混凝土短柱双约束在方钢管和箍中的弹塑性试验和理论研究

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摘要

The structural members which satisfy the following mechanical properties are desirable ones for buildings from the viewpoint of preventing the earthquake damages and improving the serviceability of buildings.1) The large load-carrying capacity can be developed within strain levelas lower as possible.2) The ductility is high.3) The energy absorption capacity is large.4) The stiffness is large.R/C short hooped columns were hardly prevented from brittle failure such as shear failure. The transversally reinforcing method by using a steel tube is quite effective to make strong and ductile short columns. Especially, if the R/C circular columns were confined in circular steel tubes, it was experimentally proved that excellent mechanical characteristics could be expected even for the short columns with large flexural capacity. However, for the R/C short square columns confined in the square steel tube, as the width to wall thickness ratio of square steel tube or the amount of total longitudinal bars became gradually larger, a pinching effect and degradation of the lateral load capacity were observed. Consequently, R/C short columns confined in bellows square steel tube were proposed by Tomii in order to increase the flexural stiffness and strength of the steel plates. As another method, R/C short columns doubly confined in square steel tube and hoops are proposed in this paper. The objectives of this paper are as follows.1) To examine the effects of double confinement.2) To investigate experimentally the possibility of arrangements for longitudinal bars with large diameter at the corner in square section in order to improve the efficiency of flexural strength and stiffness of R/C columns.3) To discuss mechanical characteristics of the R/C short columns doubly confined in square steel tube and hoops by comparing the experimental results with the theoretical results taking into account of bond strength between longitudinal bars and concrete. In order to study the strength and behavior of R/C short columns doubly confined in steel tube and hoops, a total of nine specimens were tested. Four specimens were loaded axially and concentrically in a 500-ton capacity testing machine. The other five specimens were tested under a constant axial load and alternately repeated lateral loads. The paper presents test results and discusses the strength and the ductility of R/C short columns doubly confined in steel tube and hoops by comparing the test results with the theoretical results considering bond strength between longitudinal bars and concrete. The following conclusions are reached on the basis of these experimental and theoretical studies.1) The compressive and the flexural strength of reinforced concrete square sections doubly confined in steel tube and hoops are larger than those of the sections singly confined in steel tube or hoops.2) The ultimate moments of all the tubed columns are smaller than theoretical predictions ignoring bond strength. However, taking into account of bond strength between longitudinal bars and concrete, experimental values on flexural strength agree well with the theoretical results. One of the reasons for this is the effects of bond deterioration due to large amount of longitudinal bars and their large diameters.3) The maximum bending moments at the flexural strength of reinforced confined concrete sections arc reached beyond $arepsilon _callingdotseq 0.01$ at the extreme compression fiber.
机译:从防止地震破坏和提高建筑物的可使用性的观点来看,满足以下机械性能的结构构件是建筑物的理想构件。1)可以在尽可能低的应变水平下发展大的承载能力。2) 3)能量吸收能力大。4)刚度大。很难防止R / C短箍圈发生诸如剪切破坏的脆性破坏。使用钢管的横向加固方法对于制造坚固且易延展的短柱非常有效。尤其是,如果将R / C圆柱限制在圆形钢管中,则实验证明,即使对于具有大挠曲能力的短柱,也可以期待优异的机械性能。但是,对于限制在方钢管中的R / C短方柱,随着方钢管的宽度与壁厚之比或纵向钢筋的总量逐渐变大,夹紧效果和侧向承载能力降低。观测到的。因此,Tomii提出了限制在波纹管方形钢管中的R / C短柱,以提高钢板的抗弯刚度和强度。作为另一种方法,本文提出了将R / C短柱双重约束在方钢管和箍中的方法。本文的目的如下:1)研究双重约束的影响。2)实验研究在方形截面拐角处大直径纵筋布置的可能性,以提高抗弯强度和抗弯强度。 3)通过将试验结果与考虑了纵向钢筋和混凝土之间粘结强度的理论结果进行比较,讨论了双重约束在方形钢管和箍中的钢筋混凝土短柱的力学特性。为了研究双重限制在钢管和箍中的R / C短柱的强度和性能,共测试了9个样品。在500吨容量的测试机中,将四个样本轴向和同心地加载。其他五个样本在恒定的轴向载荷和交替重复的横向载荷下进行测试。通过将测试结果与考虑了纵向钢筋和混凝土之间的粘结强度的理论结果进行比较,本文给出了测试结果并讨论了双重约束在钢管和箍中的R / C短柱的强度和延性。在这些实验和理论研究的基础上,得出以下结论:1)双重约束在钢管和箍中的钢筋混凝土方形截面的抗压强度和抗弯强度要比单独约束在钢管或箍中的矩形截面的抗压强度和抗弯强度要大。 2)所有管形柱的极限弯矩都小于忽略粘结强度的理论预测。然而,考虑到纵向钢筋与混凝土之间的粘结强度,抗弯强度的实验值与理论结果吻合良好。原因之一是由于大量的纵向钢筋及其较大的直径引起的粘结变质的影响。3)钢筋密闭混凝土截面抗弯强度的最大弯矩超过$ varepsilon _c fallingdotseq 0.01 $。在极端压缩的光纤上。

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