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Seismic Resistant Bridge Columns with NiTi Shape Memory Alloy and Ultra-High-Performance Concrete

机译:具有NITI形状记忆合金的地震抗桥柱和超高性能混凝土

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Reinforced concrete bridge columns often endure significant damages during earthquakes due to the inherent deficiencies of conventional materials. Superior properties of the new materials such as shape memory alloy (SMA) and ultra-high-performance concrete (UHPC), compared to the reinforcing steel and the normal concrete, respectively, are needed to build a new generation of seismic resistant columns. Application of SMA or UHPC in columns has been separately studied, but this paper aims to combine the superelastic behavior of NiTi SMA and the high strength of UHPC, in order to produce a column design with minimum permanent deformation and high load tolerance subjected to strong ground motions. Additionally, the excellent corrosion resistance of NiTi SMA and the dense and impermeable microstructure of UHPC ensure the long-term durability of the proposed earthquake resistant column design. The seismic performance of four columns, defined as steel reinforced concrete (S-C), SMA reinforced concrete (SMA-C), SMA reinforced UHPC (SMA-UHPC), and reduced SMA reinforced UHPC (R-SMA-UHPC) is analyzed through a loading protocol with up to 4% drift cycles. The use of NiTi SMA bars for the SMA reinforced columns is limited to the plastic hinge region where permanent deformations happen. All the columns have 2.0% reinforcement ratio, except the R-SMA-UHPC column that has a 1.33% reinforcement ratio to optimize the use of SMA bars. Unlike the S-C column that showed up to 68% residual deformation compared to peak displacement during the last loading cycle the SMA reinforced columns did not experience permanent deformation. The SMA-C and R-SMA-UHPC columns showed similar strengths to the S-C column, but with about 5.0- and 6.5-times larger ductility, respectively. The SMA-UHPC column showed 30% higher strength and 7.5 times larger ductility compared to the S-C column.
机译:由于传统材料的固有缺陷,钢筋混凝土桥柱往往会在地震期间持续损害。与加强钢和正常混凝土相比,塑造记忆合金(SMA)和超高性能混凝土(UHPC)等新材料的优异特性是可以建立新一代地震抗柱的相比。 SMA或UHPC在柱中的应用已经分开研究,但本文旨在结合NITI SMA的超弹性行为和UHPC的高强度,以产生具有最小永久变形和高负荷耐受性的柱设计动议。另外,镍氢SMA的优异耐腐蚀性和UHPC的致密和不透水组织确保了所提出的地震抗柱设计的长期耐久性。通过A分析了四列的四柱的地震性能,定义为钢筋混凝土(SC),SMA增强UHPC(SMA-UHPC)和减少的SMA增强UHPC(R-SMA-UHPC)加载协议,漂移循环多达4%。用于SMA加强柱的NITI SMA条限制为永久变形的塑料铰链区域。所有柱具有2.0%的加固率,除了具有1.33%的加固率的R-SMA-UHPC色谱柱,可优化SMA棒的使用。与S-C色谱柱不同,在最后一次装载周期期间与峰位移相比显示出高达68%的残余变形,SMA加强柱没有经历永久变形。 SMA-C和R-SMA-UHPC柱显示出与S-C柱相似的强度,但分别具有约5.0-和6.5倍的延展性。与S-C柱相比,SMA-UHPC柱的强度提高了30%,延展性较大的7.5倍。

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