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Experimental and Numerical Study on the Shear Performance of RC Shear Walls Confined with Welded Reinforcement Grids

机译:焊接加固栅极局限性钢筋剪切墙体剪切性能的实验性和数值研究

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The prefabricated Welded Reinforcement Grids (WRG) is an alternative to the conventional hoops and cross-tie reinforcement in RC structures. Its advantages include high precision, customizability, and economization of construction time, labour and material. However, its performance as shear reinforcement of concrete shear walls has not been thoroughly studied. This paper presents an experimental investigation on the static and seismic behaviour of RC shear walls with WRG as shear reinforcement and confinement of the boundary element. For the reinforcement of long shear walls, a detailing of overlapped WRG is proposed and also tested in specimens. The stiffness, shear capacity, failure mode and the development of strain in reinforcement were instrumented and compared. The test results showed that the shear capacity of WRG confined shear walls exceeded the value predicted by the formula of Chinese code GB50010-2010, Eurocode 2 and the US code ACI 318-14. For the shear wall with overlapped WRG, no major difference was observed on its stiffness, shear capacity and failure mode. The contribution of integral WRG and overlapped WRG to the total capacity of specimens was close. The overlapped WRG was able to develop significant strain, even attain its yielding strain. The capacity of reinforcement was fully exploited and tensile force was effectively transferred. A finite element model based on MSC.Marc was established to simulate the behaviour of test specimens. The results of numerical simulation corresponded with test results with a reasonable level of accuracy.
机译:预制的焊接加强栅极(WRG)是传统箍和RC结构中交叉连接加强件的替代方案。其优点包括施工时间,劳动力和材料的高精度,定制和节能。然而,它作为混凝土剪力墙的剪切钢筋的性能尚未彻底研究。本文提出了对RC剪力墙具有WRG的静态和地震行为的实验研究,作为边界元件的剪切加固和限制。为了加强长剪切壁,提出了重叠的RWG细节并在标本中进行测试。仪器和增强件刚度,剪切容量,故障模式和菌株的发展进行了仪表。测试结果表明,WRG限制剪力墙的剪切容量超过了中国代码中公式预测的价值,欧洲代码2和美国代码ACI 318-14。对于具有重叠RW的剪力墙,在其刚度,剪切容量和故障模式下没有观察到主要差异。积分WRG的贡献和重叠的RWG与标本总容量接近。重叠的WRG能够产生显着的应变,甚至可以达到其产生的菌株。钢筋的能力完全被利用,有效转移了拉力。建立了基于MSC.MARC的有限元模型来模拟测试标本的行为。数值模拟的结果与测试结果相对应,具有合理的精度水平。

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