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首页> 外文期刊>Journal of Constructional Steel Research >Experimental study on shear performance of composite cold-formed ultra-thin-walled steel shear wall
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Experimental study on shear performance of composite cold-formed ultra-thin-walled steel shear wall

机译:复合冷成型超薄壁钢剪力墙剪切性能的实验研究

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摘要

Cold-formed ultra-thin-walled steel shear wall shows excellent performance. The house constructed using the cold-formed ultra-steel shear wall is composed of continuous single-layer walls, including the floor joints between wall segments. The wall is coordinated to deform through floor joints and the weak part is located at the floor joints. In this paper the test results of nine TCS walls (upper and lower adjacent composite cold formed ultra-thin-walled steel shear interior wall including floor joints) are reported. The effects of different factors, including axial compression, section height of stud, type of anchor bolt, under cyclic loading on the shear performance of TCS walls are discussed. The results show that, the existence of the axial compression accelerates the screw failure, resulting in reduced bearing capacity. The section height of the wall stud and axial compression of the wall have greater effect on the bearing capacity of TCS wall. Engineers should pay more attention to the influence of wall axial compression. TCS wall experiences progressive damage of multiple components. The degradation of the bearing capacity and stiffness are relatively slow. Cumulative damage is the reason why the TCS wall could not continue to carry loading. For TCS wall with the two nuts on one anchor bolt, screws bear tension shear action after anchor bolt tilts, and thus the screws and the anchor bolt fail rapidly. After the addition of spatial steel bar truss at the floor joints, the screws only bear the shear force, which improves the wall resistance to damage. (c) 2020 Published by Elsevier Ltd.
机译:冷形成的超薄钢剪切墙显示出优异的性能。使用冷形成的超钢剪切壁构造的房屋由连续单层壁组成,包括壁段之间的地板接头。墙壁配位以使地板接头变形,弱部件位于地板接头处。在本文中,报道了九个TCS壁的测试结果(上下相邻的复合冷形成的超薄壁钢剪切内壁包括地板接头)。讨论了不同因素的影响,包括轴向压缩,螺柱截面型螺栓型螺栓型,在循环负载下进行TCS壁的剪切性能。结果表明,轴向压缩的存在加速了螺杆故障,导致承载能力降低。墙壁螺柱和墙壁轴压的部分高度对TCS壁的承载力产生了更大的影响。工程师应更加关注墙轴压缩的影响。 TCS Wall体验多个组件的渐进损坏。轴承能力和刚度的劣化相对较慢。累积损害是TCS墙无法继续携带加载的原因。对于一个锚固螺栓上的两个螺母的TCS壁,锚杆螺栓倾斜后螺钉承受张力剪切动作,因此螺钉和锚螺栓迅速失效。在地板接头处加入空间钢条桁架之后,螺钉仅承受剪切力,从而提高了墙壁抵抗损坏。 (c)2020由elestvier有限公司发布

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