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Shear resistance of steel fiber-reinforced concrete beams without conventional shear reinforcement on the basis of the critical shear band concept

机译:在临界剪切带概念的基础上,不进行常规抗剪加固的钢纤维增强混凝土梁的抗剪强度

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摘要

Recently, a concept to estimate the shear capacity of slender reinforced concrete beams without stirrups by examining the principal tensile stress within the shear span was introduced. Considering the existence of both the concrete normal stress and the shear stress in the tension zone, the calculated principal tensile stress is in excess of the concrete tensile strength in a narrow band in this concept. In this band, damage in form of micro cracking is assumed. The critical shear crack is formed by coalescence of micro-cracks when the damaged band reaches a critical size. By limiting the tensile cracking in the shear band, steel fibers can postpone the critical shear crack development and, thus, enhance the shear resistance in this concept. This paper presents an extension of this method to estimate the shear capacity of slender steel fiber-reinforced concrete beams without conventional shear reinforcement. The proposed method is shown to properly estimate the shear resistance of a large set of available test data, being able to account for most influencing parameters.
机译:最近,提出了一种概念,通过检查剪切跨度内的主拉应力来估算无箍筋的细长钢筋混凝土梁的抗剪承载力。考虑到在拉伸区中混凝土法向应力和剪切应力的同时存在,在此概念中,计算出的主拉伸应力超过了窄带中的混凝土拉伸强度。在该带中,假定为微裂纹形式的损坏。当损伤带达到临界尺寸时,通过微裂纹的聚结形成临界剪切裂纹。通过限制剪切带中的拉伸裂纹,钢纤维可以推迟临界剪切裂纹的发展,从而增强该概念的抗剪切性。本文介绍了这种方法的扩展,用于估算在没有常规抗剪加固的情况下细长钢纤维增强混凝土梁的抗剪承载力。所提出的方法显示出可以正确估计大量可用测试数据的抗剪强度,并且能够考虑大多数影响参数。

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