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Seismic performance of high strength steel frames with variable eccentric braces based on PBSD method

机译:基于PBSD法的可变偏心支架的高强度钢框架的地震性能

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In traditional eccentrically braced steel frames, damages and plastic deformations are limited to the links and the main structure members are required tremendous sizes to ensure elasticity with no damage based on the force-based seismic design method, this limits the practical application of the structure. The high strength steel frames with eccentric braces refer to Q345 (the nominal yield strength is 345 MPa) steel used for links, and Q460 steel utilized for columns and beams in the eccentrically brace steel frames, the application of high strength steels not only brings out better economy and higher strength, but also wider application prospects in seismic fortification zone. Here, the structures with four type eccentric braces are chosen, including K-type, Y-type, D-type and V-type. These four types EBFs have various performances, such as stiffness, bearing capacity, ductility and failure mode. To evaluate the seismic behavior of the high strength steel frames with variable eccentric braces within the similar performance objectives, four types EBFs with 4-storey, 8-storey, 12-storey and 16-storey were designed by performance-based seismic design method. The nonlinear static behavior by pushover analysis and dynamic performance by time history analysis in the SAP2000 software was applied. A total of 11 ground motion records are adopted in the time history analysis. Ground motions representing three seismic hazards: first, elastic behavior in low earthquake hazard level for immediate occupancy, second, inelastic behavior of links in moderate earthquake hazard level for rapid repair, and third, inelastic behavior of the whole structure in very high earthquake hazard level for collapse prevention. The analyses results indicated that all structures have similar failure mode and seismic performance.
机译:在传统的偏心支撑钢架中,损坏和塑料变形仅限于链路,主要结构构件是必需的巨大尺寸,以确保弹性没有基于力的地震设计方法的损坏,这限制了结构的实际应用。具有偏心支架的高强度钢框架参考Q345(标称屈服强度为345MPa)钢,用于偏心钢框架中的柱和梁的Q460钢,高强度钢的应用不仅带来了更好的经济性和更高的力量,也更广泛的地震设防区的应用前景。这里,选择具有四种偏心括号的结构,包括K型,Y型,D型和V型。这四种类型的EBF具有各种性能,例如刚度,承载力,延展性和失效模式。为了评估高强度钢框架的可变偏心胶带在类似的性能目标中,采用基于性能的地震设计方法设计了四种类型的EBF,具有4层楼,8层高,12层楼和16层的eBF。应用了SAP2000软件中的推送分析和动态性能的非线性静态行为。在时间历史分析中共采用11个地面运动记录。代表三种地震危害的地面运动:第一,抗震性能在低地震危险水平,即时占用,第二,中等地震危害水平的链接的梭形行为,迅速修复,第三,整体结构的非弹性行为在非常高的地震危险水平中崩溃预防。分析结果表明,所有结构都具有类似的故障模式和地震性能。

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