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Experimental study of the residual fatigue life of reinforcement bars damaged by an earthquake

机译:地震损坏钢筋剩余疲劳寿命的实验研究

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Reinforcing bars removed from structural walls that belonged to a damaged building during the 2010 earthquake in Chile are studied under low-cycle fatigue testing. Damage of such walls was characterized by concrete crushing and boundary longitudinal reinforcement buckling. Reinforcement bars are selected from damaged areas, including reinforcement with and without visible buckling. Cyclic load tests are performed with constant strain amplitude in the plastic range (3% and 5%), using an aspect ratio of 20. Fatigue life loss is observed in specimens from reinforcement bars with visible buckling damage with up to 15 cycles less than unaltered bars (3% amplitude tests), and with a fatigue life reduction of at least 40% for bars with and without observed buckling compared to unaltered bars, which indicates a low remaining fatigue capacity. A strain amplitude model also indicates that for a given number of cycles to fatigue failure, the strain amplitude reduces to 36% when comparing bars in buckled zone to unaltered bars. The seismic displacement demand on the building is of about 5 cycles of large amplitude and considering that some longitudinal bars fractured, it indicates that they could have reached 5% strain amplitude.
机译:在低周期疲劳试验下,研究了在2010年智利地震中属于损坏建筑物的结构墙壁中除去的加强条。通过混凝土破碎和边界纵向加固弯曲,该墙壁的损坏的特征在于。钢筋选自受损区域,包括钢筋,不具有可见屈曲。使用纵横比在塑料范围(3%和5%)中具有恒定应变幅度的循环载荷试验,其纵横比为20.在来自加强杆的试样中观察到疲劳寿命,具有可见屈曲损伤的可见损伤,而不是未嵌入的次数条(3%幅度试验),疲劳寿命减少至少40%,对于未经置换的棒相比,具有和不观察到屈曲的棒,表明疲劳能力低。应变幅度模型还表明,对于给定数量的疲劳失效,当屈曲区域中的杆与未静默的条形相比,应变幅度降低到36%。建筑物上的地震位移需求大约为5个循环大幅度,并且考虑到一些纵向棒断裂,表明它们可以达到5%的应变幅度。

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