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Experimental Research on the Shear Performance of the Two-Storey Composite Cold-Formed Thin-Walled Steel Wall

机译:两层复合冷弯薄壁钢墙抗剪性能的试验研究

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The composite wall made of the cold-formed thin-walled steel has good shear performance. When it is used in buildings, its weak part is located at the joint of floors and becomes the first broken part under the action of the earthquake. The shear test of five Two-storey Composite Cold-formed Thin-walled Steel Walls (TCS) under cyclic loading has been carried out. The influences of axial pressures, types of anti-pulling bolts and panel materials on shear performances are examined. The results show that under the same working condition, the energy dissipation capacity of calcium silicate panel specimens is significantly lager than that of the gypsum panel specimens, and the ultimate bearing capacity is also greater. The axial pressure has a great influence on the ultimate bearing capacity and energy dissipation capacity of the specimens. Compared with the specimens designed according to the Ref. (JGJ227-2011, 2011), the energy dissipation capacity of all specimens is increased by 3.25 times. The extrusion between the self-tapping screw and the wall panel causes the screw to fall off, resulting in a sharp decrease in the rigidity of the specimens at the initial loading stage. After the failure of the wall panel, the bottom and top beam are restricted by double nuts of the anti-pulling bolt at the joint of floors, so the bearing capacity of specimens decreases slowly at the later loading stage. The tilt angle of anti-pulling bolt increases when the TCS wall is loaded to the later stage. The force state of the self-tapping screw on the hold-down is changed from bearing shear force to bearing tension and shear force, resulting in fast failure of the anti-pulling bolt suit. The load borne by the anti-pulling bolt suit is transferred to floor beams and their supporting stiffeners, causing them to collapse rapidly.
机译:由冷弯薄壁钢制成的复合墙具有良好的剪切性能。在建筑物中使用时,其薄弱部分位于地板的接合处,并在地震作用下成为第一个断裂的部分。进行了五层两层复合冷弯薄壁钢墙(TCS)在循环荷载作用下的剪切试验。研究了轴向压力,抗拉螺栓的类型和面板材料对剪切性能的影响。结果表明,在相同的工作条件下,硅酸钙板试样的耗能能力明显大于石膏板试样,其极限承载力也更大。轴向压力对试样的极限承载力和能量耗散能力有很大影响。与根据参考设计的标本相比。 (JGJ227-2011,2011),所有样品的耗能能力提高了3.25倍。自攻螺钉和墙板之间的挤压会导致螺钉脱落,从而导致在初始加载阶段样品的刚度急剧下降。墙板破裂后,底部和顶部梁在地板的连接处受防拉螺栓的双螺母限制,因此在后期加载阶段,试样的承载力会缓慢降低。当TCS壁被加载到后期时,防拉螺栓的倾斜角度会增加。自攻螺钉在压紧装置上的受力状态从轴承剪切力变为轴承张力和剪切力,从而导致防拉螺栓套装快速失效。防拉螺栓套装所承受的载荷被传递到楼板梁及其支撑加劲肋,导致楼板迅速塌陷。

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