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首页> 外文期刊>American journal of engineering and applied sciences >Investigating the Behavior of Steel Composite Shear Wall with Corrugated Plate under Lateral Load
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Investigating the Behavior of Steel Composite Shear Wall with Corrugated Plate under Lateral Load

机译:在横向载荷下研究瓦楞板钢复合剪力墙的行为

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摘要

The steel shear wall system has been considered as a structural system over the past few decades. This issue deals with wind and earthquake lateral forces due to its hardness, loading capacity and plasticity. This type of the system, with the use of external hardness resulting from the geometric shape of the waves, has better buckling strength than a hardened and smooth mood. In this paper, at first, the experimental test is validated with ABAQUS software which simple rectangular steel plate was used in the shear wall so that both cyclic and monotonic loading conditions have been compared Since then the concrete shear wall behavior has been evaluated using sinusoidal steel plates with different variables such as concrete compressive strength 25 and 35 MPa thickness of corrugated plate including 0.8 and 1 mm and wave height 25 and 50 mm are considered as variables. The interaction between concrete and steel is applied using Tie and the base of the wall is fixed. Moreover, the sample is loaded in accordance with the ATC24 instruction with a displacement of 85 mm using displacement/rotation by activating U1 direction as lateral load. Generally, eight different models have been evaluated and the pushover graphs are compared based on thickness and concrete strength. The results show that increasing the thickness, the wave height and the compressive strength of the concrete leads to increased resistance and ductility.
机译:钢剪切墙系统在过去几十年中被认为是一个结构系统。由于其硬度,装载能力和可塑性,该问题涉及风和地震横向力。这种类型的系统,通过使用外部硬度,由波浪的几何形状产生,具有比硬化和光滑的心情更好的屈曲强度。本文首先,使用简单的矩形钢板在剪切壁中使用了实验测试,使得已经使用循环和单调负载条件进行了循环和单调的负载条件,因此使用正弦钢评估了混凝土剪切墙行为具有不同变量的平板,例如包括0.8和1mm和波高25和50mm的波纹板的混凝土压缩强度25和35 MPa厚度被认为是变量。使用系带施加混凝土和钢之间的相互作用,墙壁的底部固定。此外,通过通过激活U1方向作为横向负载,根据ATC24指令根据ATC24指令加载85mm的位移。通常,已经评估了八种不同的模型,并且基于厚度和混凝土强度进行比较推进图。结果表明,增加混凝土的厚度,波浪高度和抗压强度导致增加的阻力和延展性。

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