赵 晨 刘玉擎. 开孔板连接件抗剪承载力试验研究[J]. 工程力学, 2012, 29(12): 349-354. DOI: 10.6052/j.issn.1000-4750.2011.09.0604
引用本文: 赵 晨 刘玉擎. 开孔板连接件抗剪承载力试验研究[J]. 工程力学, 2012, 29(12): 349-354. DOI: 10.6052/j.issn.1000-4750.2011.09.0604
ZHAO Chen. EXPERIMENTAL STUDY OF SHEAR CAPACITY OF PERFOBOND CONNECTOR[J]. Engineering Mechanics, 2012, 29(12): 349-354. DOI: 10.6052/j.issn.1000-4750.2011.09.0604
Citation: ZHAO Chen. EXPERIMENTAL STUDY OF SHEAR CAPACITY OF PERFOBOND CONNECTOR[J]. Engineering Mechanics, 2012, 29(12): 349-354. DOI: 10.6052/j.issn.1000-4750.2011.09.0604

开孔板连接件抗剪承载力试验研究

EXPERIMENTAL STUDY OF SHEAR CAPACITY OF PERFOBOND CONNECTOR

  • 摘要: 为建立组合结构桥梁使用的开孔板连接件抗剪承载力计算方法,对连接件的推出式和插入式两种抗剪试验方式进行比较;并以开孔孔径、混凝土抗压强度、孔中有无钢筋、孔中钢筋直径及屈服强度、开孔板厚度及高度、混凝土块厚度等为变化参数,进行了66个开孔板连接件模型试件的抗剪承载性能试验;基于国内外168个模型试验提出了开孔板连接件抗剪承载力的计算式。研究结果表明:该计算式包含孔中混凝土作用和孔中钢筋及其对混凝土约束的作用,物理意义明确;可适用于孔中钢筋有无、孔径35mm~90mm、混凝土强度等级C20~C70、孔中钢筋直径10mm~25mm及屈服强度295MPa~480MPa的开孔板连接件,适用范围较广。

     

    Abstract: To derive the calculation method of the shear capacity of perfobond connectors in a composite bridge, 66 model tests were carried out. The push-out experiment and the insert experiment were compared, and the effects of different parameters on the shear capacity were studied. The parameters were the diameter of a hole, the compressive strength of concrete, whether to have rebars through the hole, the diameter and yield strength of a rebar, the thickness and height of a plate, the thickness of a concrete slab and so on. An expression for computing the shear capacity of a perfobond connector is proposed based on 168 test results collected worldwide. The results show that this expression has definite physical meaning, considering the contributions of the concrete in the hole, and the rebar through the hole and its constraint on the concrete. It is widely adapted for calculating the shear capacity of a perfobond connector whether to have rebars through the hole, with the diameter of the hole varied from 35mm to 90mm, the cube compressive strength of the concrete varied from 20MPa to 70MPa, and the diameter and yield strength of the rebar through the hole varied from 10mm to 25mm, and from 295MPa to 480MPa, respectively.

     

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