P-V-M组合单调荷载作用下矩形钢筋混凝土柱的抗剪强度

Aysha M Zaneeb, Rupen Goswami, C. Murty
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引用次数: 1

摘要

提出了矩形截面钢筋混凝土悬臂柱在轴力、剪力和弯矩联合作用下的侧向抗剪强度估算(以及可能的破坏模式和破坏位置识别)的解析方法。混凝土抗剪能力随截面受弯需求的变化被明确捕获,并估计混凝土提供的抗剪能力;这与横向和纵向钢筋提供的抗剪能力相结合,以估计RC柱的整体抗剪能力。钢筋混凝土柱的剪切-弯矩(V-M)相互作用能力图,与需求图一起查看,确定了钢筋混凝土柱的侧向抗剪强度和破坏模式。这些分析估计与文献中发表的107根钢筋混凝土柱的试验数据比较好;试验数据对应不同轴向荷载、横向配筋率、纵向配筋率、剪切跨深比和加载条件。此外,还将分析估计与文献中报道的其他分析方法获得的估计进行了比较;在所有情况下,所提出的方法在估算RC柱抗剪承载力时具有合理的精度。此外,该方法提供了在P-V-M共同作用下RC柱抗剪机理的见解,并且使用简单。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lateral shear strength of rectangular RC columns subjected to combined P-V-M monotonic loading
An analytical method is presented to estimate lateral shear strength (and identify likely mode and location of failure) in reinforced concrete (RC) cantilever columns of rectangular cross-section under combined axial force, shear force and bending moment. Change in shear capacity of concrete with flexural demand at a section is captured explicitly and the shear resistance offered by concrete estimated; this is combined with shear resistance offered by transverse and longitudinal reinforcement bars to estimate the overall shear capacity of RC columns. Shear–moment (V-M) interaction capacity diagram of an RC column, viewed alongside the demand diagram, identifies the lateral shear strength and failure mode. These analytical estimates compare well with test data of 107 RC columns published in literature; the test data corresponds to different axial loads, transverse reinforcement ratios, longitudinal reinforcement ratios, shear span to depth ratios, and loading conditions. Also, the analytical estimates are compared with those obtained using other analytical methods reported in literature; in all cases, the proposed method gives reasonable accuracy when estimating shear capacity of RC columns.  In addition, the method provides insights into the shear resistance mechanism in RC columns under the combined action of P-V-M, and it is simple to use.
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