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Effect of thermal induced flexural strain cycles on the low cycle fatigue performance of integral bridge steel H-piles

机译:热致弯曲应变循环对整体式桥梁钢H桩低周疲劳性能的影响

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Close examination of the field measurement data for integral bridges revealed that the measured cyclic flexural strains in steel H-piles at the abutments due to thermal fluctuations consist of large amplitude, primary small amplitude and secondary small amplitude cycles. The effect of the small amplitude strain cycles on the low cycle fatigue life of these steel H-piles has not been extensively studied yet. Accordingly, to investigate the effect of the small amplitude strain cycles on the low cycle fatigue life of steel H piles at the abutments, first a new cycle counting method is developed specifically to facilitate the counting of thermal induced strain cycles in the steel H-piles. Then, using the field measurement data of several integral bridges in North America, and the developed cycle counting method, an equation is formulated to estimate the fatigue life of integral bridge steel H-piles. It is observed that secondary small amplitude flexural strain cycles do not have a significant effect on the low cycle fatigue life of steel H-piles. Experimental studies on full scale compact steel H-pile specimens are conducted to verify the analytical results and a close match between the experimental and analytical results is observed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对整体桥的现场测量数据进行仔细检查后发现,由于热波动,桥台处钢制H形桩中测得的循环挠曲应变包括大振幅,初级小振幅和次级小振幅循环。小振幅应变循环对这些H型钢低循环疲劳寿命的影响尚未得到广泛研究。因此,为了研究小振幅应变循环对基台钢H桩低周疲劳寿命的影响,首先专门开发了一种新的周期计数方法,以方便计算H形钢中热诱发应变的周期。 。然后,利用北美几座整体式桥梁的现场测量数据,以及发达的循环计数方法,建立了一个方程式来估算整体式桥梁钢H桩的疲劳寿命。可以看出,次级小振幅弯曲应变循环对H型钢的低循环疲劳寿命没有显着影响。对全尺寸H型钢试件进行了实验研究,以验证分析结果,并观察到实验结果与分析结果之间的紧密匹配。 (C)2016 Elsevier Ltd.保留所有权利。

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