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Shear Resistance Mechanisms of Steel Sheet Walls with Burring Holes and the Effect of Wall Widths with Vertical Slits

机译:带孔的钢板墙的抗剪机理及竖缝壁宽的影响

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Shear walls containing 2.73-m-long × 0.455-m-wide steel sheets with vertically aligned burring holes are employed in multi-story buildings in seismically active regions. A configuration with burrs on the inside enables the construction of thinner walls and simplified attachment of finishing. The machining of equipment and piping holes at the construction site can be omitted by the holes. In-line 1.82-, 2.73-, and 3.64-m-wide walls are employed in the buildings, with at least one vertical slit every 0.91-m-wide. The purpose of this study is to clarify the shear resistance mechanisms of walls with burring holes and the effects of wall widths with and without vertical slits. The wall that receives the in-plane shear force allows shear stress to concentrate in the intervals between the holes. Finite element analysis and shear experiments revealed that all intervals between the holes were simultaneously deformed and that the buckling areas in the intervals were restricted by the use of ring-shaped burring ribs of the holes. The postbuckling behavior was dependent on the shapes of the tension field on the intervals. The effect of vertical slits involved maintaining wall strength stable in the inelastic region. The formulas of the allowable design strength and the indexes of strength after shear buckling were developed.
机译:在地震活跃地区的多层建筑中,采用了长2.73米×宽0.455米宽的钢板剪力墙,这些钢板带有垂直对齐的去毛刺孔。内部带有毛刺的配置可用于建造更薄的壁并简化饰面的连接。可以在施工现场省略对设备和管道孔的机械加工。建筑物中使用了直立的1.82、2.73和3.64米宽的墙,每0.91米宽至少有一个垂直缝。这项研究的目的是弄清带有毛刺孔的壁的抗剪机理以及有和没有垂直缝的壁宽的影响。接收面内剪切力的壁使剪切应力集中在孔之间的间隔中。有限元分析和剪切实验显示,孔之间的所有间隔都同时变形,并且通过使用孔的环形去毛刺肋来限制间隔中的屈曲区域。屈曲后的行为取决于间隔上张力场的形状。垂直狭缝的影响涉及在非弹性区域中保持壁强度稳定。建立了允许设计强度和屈曲后强度指标的公式。

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