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Experimental study on column underpinning joints with inclined steel bars

机译:斜钢筋柱托脚节点的试验研究

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摘要

Column underpinning joints play an important role in monolithic moving, jacking up and renovation or reinforcing of buildings. However, existing methods of improving the bearing capacity of joints usually cause damage to columns and the constructions are complex. A new column underpinning method with inclined rectangular ribbed steel bars was thus developed. Six specimens were tested experimentally under vertical static load. The inclination angle and the number of inclined steel bars were considered as the main parameters. Tests were carried out to study the mechanical performance of the column underpinning joints, especially bearing capacity. The results indicate that, compared with a specimen without inclined bars, the addition of inclined bars in joints improves the bearing capacity by a maximum of 143.7%.Analysis revealed that the bearing capacity of joints with inclined bars is mainly composed of three parts - the vertical component of force in inclined bars, partial cohesion strength and the shear strength resulting from friction at the interface between new and old concrete. The failure of all specimens was sliding failure at the interface, except for one specimen that failed due to crushing of the columns.
机译:柱支撑关节在整体移动,顶升和翻新或加固建筑物中起重要作用。但是,现有的提高接头承载力的方法通常会损坏立柱,并且结构复杂。因此,开发了一种新的采用倾斜矩形肋筋的立柱支撑方法。垂直静载荷下对六个样品进行了实验测试。倾斜角和倾斜钢筋的数量被认为是主要参数。进行测试以研究支撑柱支撑的机械性能,特别是承载能力。结果表明,与不带斜杆的试样相比,在接头中增加斜杆的最大承载能力提高了143.7%。分析表明,带斜杆的接头的承载力主要由三部分组成-倾斜钢筋中的垂直力分量,部分内聚强度和在新旧混凝土之间的界面处的摩擦产生的剪切强度。所有试样的破坏都是在界面处的滑动破坏,除了一个试样由于柱子破碎而破裂。

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