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An experimental study of welded splices of reinforcing bars

机译:钢筋焊接接头的试验研究

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Manufacturing, fabrication, and transportation limitations make it impossible to provide full length continuous bars in some reinforced concrete structures. In general, reinforcing bars are stocked by suppliers in lengths of 12-18 m. For that reason, and because it is often more convenient to work with shorter bar lengths, it is frequently necessary to splice bars in the field. Proper splicing of reinforcing bars is crucial to the integrity of reinforced concrete. ACI Code states: "splices of reinforcement shall be made only as required or permitted on the design drawings, in the specifications, or as authorized by the engineer." Great responsibility for design, specification, and performance of splices rests with the engineer who is familiar with the structural analysis and design stresses, probable construction conditions and final conditions of service can properly evaluate the variables to select the most efficient and economical splice method. Lap splicing, which requires the overlapping of two parallel bars, has long been accepted as an effective, economical splicing method. In projects with smaller bar sizes such as φ 19 mm and smaller, lap splices have performed well over the long run. Continuing research, more demanding designs in concrete, new materials and the development of hybrid concrete/structural steel design have forced designers to consider alternatives to lap splicing such as welded splices. In this study, welding is explored as an alternative to the traditional splicing methods.
机译:制造,制造和运输方面的限制使得无法在某些钢筋混凝土结构中提供全长连续钢筋。通常,供应商库存的钢筋长度为12-18 m。因此,由于使用较短的钢筋长度通常更方便,因此通常需要在现场拼接钢筋。钢筋的正确拼接对于钢筋混凝土的完整性至关重要。 ACI规范指出:“只能根据设计图纸上的要求或规格,规范或工程师的授权来制作钢筋接头。”工程师对接头的设计,规格和性能负有重大责任,因为工程师应熟悉结构分析和设计应力,可能的施工条件和最终使用条件才能正确评估变量,从而选择最有效,最经济的接头方法。搭接拼接需要两个平行杆的重叠,长期以来一直被认为是一种有效,经济的拼接方法。在较小的钢筋尺寸(例如φ19 mm或更小)的项目中,搭接接头从长期来看表现良好。持续的研究,对混凝土,新材料的更高要求的设计以及混凝土/结构钢混合设计的发展迫使设计师考虑搭接拼接的替代方案,例如焊接接头。在这项研究中,探索了焊接作为传统拼接方法的替代方法。

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