纵向螺旋钢筋对钢筋混凝土梁性能的改善

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY International Journal of Structural Integrity Pub Date : 2022-10-04 DOI:10.1108/ijsi-07-2022-0094
M. Labibzadeh, Farhad Bostan Shirin, A. Khajehdezfuly
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引用次数: 0

摘要

目的研究采用圆形螺旋作为纵向钢筋对混凝土梁在四点弯曲荷载作用下性能的影响。设计/方法/方法本研究探讨了采用圆形螺旋作为纵向钢筋对混凝土梁在四点弯曲荷载作用下性能的影响。采用圆形螺旋作为主要的纵向钢筋是本文提出的一种新思路。为此,建立了螺旋纵向配筋梁的有限元模型。在模型验证的基础上,模拟了四点荷载条件下纵向螺旋加固混凝土梁的几种构型。研究结果表明,采用纵向螺旋钢筋代替传统的纵向钢筋可以提高混凝土梁的承载力,但同时也会增加其延性,这是不可接受的。换句话说,螺旋显著降低了梁的初始刚度。为了解决这一问题,作者决定在梁的常规主纵筋的基础上增加纵向螺旋筋作为辅助筋。新取得的成果令人满意。在常规配筋基础上增加纵向螺旋后,梁的承载力比常规配筋提高24% ~ 63%,梁的初始刚度和延性分别提高11% ~ 29%和3% ~ 57%。独创性/价值采用圆形螺旋作为主要的纵向钢筋是本文提出的一个新颖的想法。
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Improvement of performance of the RC beams using the longitudinal spiral reinforcements
PurposeThis study aims to investigate the effects of using circular spirals as the longitudinal reinforcing bars on the performance of the concrete beams subjected to four-point bending load.Design/methodology/approachThe effects of using circular spirals as the longitudinal reinforcing bars on the performance of the concrete beams subjected to four-point bending load are investigated in this study. Employing circular spirals as the main longitudinal reinforcement is a novel idea presented in this paper. In this regard, a finite element model of the beam with spiral longitudinal reinforcement was developed. After model verification, several configurations of concrete beams reinforced by longitudinal spirals were simulated under the four-point loading condition.FindingsObtained results showed that using the longitudinal spirals in place of the conventional longitudinal reinforcing bars can improve the bearing capacity of the concrete beam, but at the same time, increases its ductility unacceptably. In other words, the spirals reduce the initial stiffness of the beam significantly. To solve the problem, the authors decided to use the longitudinal spirals as the auxiliary bars added to the main conventional longitudinal bars in the beams. New gained results were satisfactory. By adding the longitudinal spirals to the conventional bars, not only the bearing capacity of the beam increases between 24% and 63%, but also the initial stiffness and ductility of the beam raises between 11%–29% and 3%–57%, respectively, in comparison to the corresponding beam reinforced with conventional longitudinal bars.Originality/valueEmploying circular spirals as the main longitudinal reinforcement is a novel idea presented in this paper.
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来源期刊
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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