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首页> 外文期刊>Journal of Constructional Steel Research >Shear capacity and tension capacity of arc-spot welds for multi-overlap deck panels
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Shear capacity and tension capacity of arc-spot welds for multi-overlap deck panels

机译:多搭接面板的弧点焊的剪切能力和拉伸能力

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摘要

Arc-spot welds fabricated in multi-overlap configurations are found in roof deck construction when steel sheets are stacked at a sidelap or endlap. A welding technique that maximizes the quality of arc-spot welds fabricated through several layers of thick sheets is presented. Weld specimens were fabricated through 1, 2 or 4 layers of steel sheets with thicknesses ranging from 0.76 to 1.52 mm (22 to 16 gauge). The most important factors to control during the welding are the current (high intensity), the electrode type (E4311) and the welding technique. Various sheet steel/weld configurations found in roof deck construction were included. Adequate weld quality could be achieved in all cases except that welds were undersized when the ratio of the thickness of the underlying material to total sheet thickness was less than 0.7. A total of 72 tension tests and 107 shear tests were completed. Of those, 31 shear specimens were loaded with a reversed cyclic protocol to examine the behaviour of arc-spot welds subject to seismic loading. All other specimens were loaded under monotonically increasing displacement. The results were compared with the provisions of the CSA S136 North American Specification for the Design of Cold-Formed Steel Structural Members. The CSA S136 equations for shear and tension resistance of arc-spot welds are generally conservative, even for welds fabricated through multi-overlap configurations with total sheet steel thicknesses exceeding the 3.81 mm limit. Nonetheless, modifications to the equation for the effective diameter and to Equations E2.2.1.2-2, E2.2.2-1, and E2.2.2-2 are recommended.
机译:当将钢板堆叠在侧面或端部重叠时,在屋顶甲板结构中会发现采用多重叠构型制造的弧点焊缝。提出了一种焊接技术,该技术可使通过几层厚板制造的电弧点焊的质量最大化。焊接样品是通过1、2或4层钢板制成的,厚度范围为0.76至1.52 mm(22至16号)。焊接期间要控制的最重要因素是电流(高强度),电极类型(E4311)和焊接技术。包括在屋顶甲板结构中发现的各种钢板/焊接结构。在所有情况下都可以达到足够的焊接质量,但当基础材料的厚度与总板厚之比小于0.7时,焊缝尺寸过小。共完成了72次拉伸试验和107次剪切试验。其中,对31个剪切试样加载了反向循环规程,以检查承受地震载荷的电弧点焊的性能。所有其他标本都以单调递增的位移加载。将结果与CSA S136北美冷弯型钢结构构件设计规范的规定进行了比较。 CSA S136弧点焊缝的抗剪和抗拉力方程式通常是保守的,即使是通过多层钢板总厚度超过3.81毫米极限的多重重叠构造制造的焊缝也是如此。但是,建议修改有效直径的公式以及公式E2.2.1.2-2,E2.2.2-1和E2.2.2-2。

著录项

  • 来源
    《Journal of Constructional Steel Research 》 |2010年第9期| 1018-1029| 共12页
  • 作者单位

    Department of Civil, Geological and Mining Engineering, Ecole Polytechnique, Montreal, QC, Canada;

    Department of Civil, Geological and Mining Engineering, Ecole Polytechnique, Montreal, QC, Canada;

    Department of Civil Engineering & Applied Mechanics, McGill University, Montreal QC Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    arc-spot weld; sheet steel; deck; shear; tension; resistance;

    机译:电弧点焊;钢板;甲板;剪张力;抵抗性;

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