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Combined Strengthening Techniques to Improve the Out-of-Plane Performance of Masonry Walls

机译:结合加固技术来改善砌体墙的平面外性能

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The purpose of this study is to improve the performance of walls under out-of-plane loads especially when subjected to the hammering action of the floors. The idea behind the paper is to provide the masonry walls with a device that behaves like a buttress, without having to build a traditional buttress. The solution presented in this paper consists of a mechanical coupling between the three-dimensional net of steel ribbons of the CAM (Active Confinement of Masonry) system and the CFRP (Carbon Fiber Reinforced Polymer) strips. Since the steel ribbons of the CAM system have a pre-tension, the mechanical coupling allows the steel ribbons to establish a semi-rigid transverse link between the CFRP strips bonded on the two opposite sides of a wall. Therefore, two vertical CFRP strips tied by the steel ribbons behave like the flanges of an I-beam and the flexural strength of the ideal I-beam counteracts the out-of-plane displacements of the wall. The experimental results showed that the combined technique inherits the strong points of both constituent techniques. In fact, the delamination load is comparable to that of the specimens reinforced with the CFRP strips and the overall behavior is as ductile as for the specimens reinforced with the CAM system. They also inspired a more performing combined technique.
机译:这项研究的目的是提高墙面在平面外载荷下的性能,尤其是在受到地板的锤击作用时。本文背后的想法是为砌筑墙提供一种性能类似于支柱的设备,而无需建造传统的支柱。本文提出的解决方案包括CAM(主动约束砌体)系统的钢带三维网与CFRP(碳纤维增强聚合物)带的机械耦合。由于CAM系统的钢带具有预张力,因此机械联接使钢带可以在粘结在墙的两个相对侧的CFRP条之间建立半刚性的横向连接。因此,两条由钢带绑扎的垂直CFRP板的行为就像工字钢的法兰一样,理想的工字钢的抗弯强度抵消了墙的平面外位移。实验结果表明,组合技术继承了两种构成技术的强项。实际上,分层载荷与用CFRP条增强的样品的分层载荷相当,并且整体性能与CAM系统增强的样品一样具有延展性。他们还启发了一种性能更高的组合技术。

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