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Shear Reinforcement Requirements for High-Strength Concrete Bridge Girders

机译:高强度混凝土桥梁大梁的抗剪加固要求

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摘要

A research program was conducted on the shear strength of high-strength concrete members. The objective was to evaluate the shear behavior and strength of concrete bridge members with compressive strengths in the range of 10 000 to 15 000 psi. The goal was to determine if the current minimum amount of shear reinforcement together with maximum spacing limits in the 2004 AASHTO LRFD Specifications, and the upper limit on the nominal shear strength were applicable to concrete compressive strengths up to 15 000 psi.A total of twenty I-shaped specimens were tested monotonically to failure. Sixteen specimens were reinforced concrete beams, half of them without shear reinforcement. Four AASHTO Type I prestressed concrete beams were also tested. The main variables were the compressive strength of concrete and the amount of longitudinal and transverse reinforcement. Measured concrete compressive strengths ranged from 7 000 to 17 000 psi. Longitudinal reinforcement ratios on the basis of web width, ñw, varied from 1.32 to 7.92%. All specimens met the flexural requirements in Section 5.7.3.3.1 of the 2004 AASHTO LRFD Specifications. The amounts of shear reinforcement, ñ vfyv, provided were in the range of 0 to 1 300 psi.Main findings support the notion that the current prescribed minimum amounts of shear reinforcement in both the 2004 AAHTO LRFD Specifications and the ACI 318-05 Code provide sufficient reserve strength after first inclined cracking, and adequate crack width control at estimated service load levels for reinforced and prestressed concrete beams with concrete compressive strengths up to 15 000 psi.Based on the test results of reinforced concrete specimens, an upper limit for the nominal shear strength of 12 f\u27c in concretes with compressive strength up to 15 000 psi was shown to be adequate to prevent web crushing failures prior to the yielding of stirrups. This limit is similar to the current upper limit on the nominal shear strength in the ACI 318-05 Code.
机译:对高强度混凝土构件的抗剪强度进行了研究。目的是评估抗压强度在10,000 psi至15,000 psi范围内的混凝土桥梁构件的剪切性能和强度。目的是确定2004 AASHTO LRFD规范中当前的最小抗剪钢筋数量和最大间距限制以及标称抗剪强度的上限是否适用于最高15 000 psi的混凝土抗压强度,总共20工字形样品被单调测试到破坏。 16个标本是钢筋混凝土梁,其中一半没有抗剪钢筋。还测试了四根AASHTO I型预应力混凝土梁。主要变量是混凝土的抗压强度以及纵向和横向钢筋的数量。测得的混凝土抗压强度范围为7000至17000 psi。基于腹板宽度的纵向增强率ñw从1.32%到7.92%不等。所有样品均符合2004 AASHTO LRFD规范第5.7.3.3.1节的弯曲要求。提供的抗剪钢筋数量为vfyv在0至1300 psi之间。主要发现支持以下观点:2004 AAHTO LRFD规范和ACI 318-05规范均规定了当前规定的最小抗剪钢筋数量首次倾斜开裂后有足够的储备强度,在抗压强度高达15000 psi的钢筋混凝土和预应力混凝土梁上,在估计的使用载荷水平下,应有足够的裂缝宽度控制基于钢筋混凝土试样的测试结果,标称上限在抗压强度高达15000 psi的混凝土中,剪切强度为12 f \ u27c被证明足以防止在箍筋屈服之前幅材破碎失败。此限制类似于ACI 318-05规范中当前的名义抗剪强度上限。

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