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钢板或形状记忆合金丝制成的外部套箍产生的围压对混凝土与钢筋粘结性能的影响。

Effect of confining pressure due to external jacket of steel plate or shape memory alloy wire on bond behavior between concrete and steel reinforcing bars.

作者信息

Choi Eunsoo, Kim Dongkyun, Park Kyoungsoo

出版信息

J Nanosci Nanotechnol. 2014 Dec;14(12):9657-61. doi: 10.1166/jnn.2014.10186.

Abstract

For external jackets of reinforced concrete columns, shape memory alloy (SMA) wires are easy to install, and they provide active and passive confining pressure; steel plates, on the other hand, only provide passive confining pressure, and their installation on concrete is not convenient because of the requirement of a special device. To investigate how SMA wires distinctly impact bond behavior compared with steel plates, this study conducted push-out bond tests of steel reinforcing bars embedded in concrete confined by SMA wires or steel plates. For this purpose, concrete cylinders were prepared with dimensions of 100 mm x 200 mm, and D-22 reinforcing bars were embedded at the center of the concrete cylinders. External jackets of 1.0 mm and 1.5 mm thickness steel plates were used to wrap the concrete cylinders. Additionally, NiTiNb SMA wire with a diameter of 1.0 mm was wound around the concrete cylinders. Slip of the reinforcing bars due to pushing force was measured by using a displacement transducer, while the circumferential deformation of specimens was obtained by using an extensometer. The circumferential deformation was used to calculate the circumferential strains of the specimens. This study assessed the radial confining pressure due to the external jackets on the reinforcing bars at bond strength from bond stress-slip curves and bond stress-circumferential strain curves. Then, the effects of the radial confining pressure on the bond behavior of concrete are investigated, and an equation is suggested to estimate bond strength using the radial confining pressure. Finally, this study focused on how active confining pressure due to recovery stress of the SMA wires influences bond behavior.

摘要

对于钢筋混凝土柱的外部套箍,形状记忆合金(SMA)丝易于安装,并能提供主动和被动约束压力;另一方面,钢板仅提供被动约束压力,且由于需要特殊装置,其在混凝土上的安装并不方便。为研究SMA丝与钢板相比如何显著影响粘结性能,本研究对嵌入由SMA丝或钢板约束的混凝土中的钢筋进行了推出粘结试验。为此,制备了尺寸为100 mm×200 mm的混凝土圆柱体,并将D - 22钢筋嵌入混凝土圆柱体的中心。使用厚度为1.0 mm和1.5 mm的钢板外部套箍包裹混凝土圆柱体。此外,将直径为1.0 mm的NiTiNb SMA丝缠绕在混凝土圆柱体上。通过使用位移传感器测量由于推力导致的钢筋滑移,同时使用引伸计获得试件的周向变形。周向变形用于计算试件的周向应变。本研究从粘结应力 - 滑移曲线和粘结应力 - 周向应变曲线评估了在粘结强度时外部套箍对钢筋的径向约束压力。然后,研究了径向约束压力对混凝土粘结性能的影响,并提出了一个使用径向约束压力估算粘结强度的方程。最后,本研究关注SMA丝的恢复应力产生的主动约束压力如何影响粘结性能。

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