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Force Transfer Mechanism in Embedded Steel Column Bases

机译:嵌入式钢柱基础中的力传递机制

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摘要

This paper presents the results of an investigation on the force transfer mechanism in an embedded column base of a composite structure. In the experimental program, eighteen push-out specimens were tested. The factors influencing the mechanism of force transfer were the amount of confining reinforcement, compressive strength of concrete, and diameter of stud connectors. The results of experiment indicated that force transfer could be characterized into two stages, and the factors governing each stage were identified. The first stage was governed by the bond strength between the steel column base and the concrete. The second stage begun after chemical debonding and was governed by the shear strength of stud connectors as well as the frictional strength between the steel and the concrete. Based on the experimental results, the equations to estimate the bond strength, the friction strength, and the shear strength of stud connectors were proposed. The load carrying capacity of an embedded steel column base could be predicted by taking the sum of the shear strength of stud connectors and the friction strength. The predicted load carrying capacity was found to agree well with the experimental results over various range of concrete stress.
机译:本文介绍了对复合结构的嵌入式柱基中的力传递机理进行研究的结果。在实验程序中,测试了18个推出样本。影响力传递机理的因素包括围护钢筋的数量,混凝土的抗压强度和双头螺栓的直径。实验结果表明,力传递可以分为两个阶段,并确定了影响每个阶段的因素。第一阶段由钢柱基础和混凝土之间的粘结强度决定。第二阶段是在化学脱胶后开始的,由螺栓连接器的抗剪强度以及钢与混凝土之间的摩擦强度决定。在实验结果的基础上,提出了估计螺栓连接器的粘结强度,摩擦强度和剪切强度的方程。埋入式钢柱基础的承载能力可通过将双头螺栓连接器的抗剪强度与摩擦强度相加来预测。发现在各种混凝土应力范围内,预测的承载能力与实验结果非常吻合。

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