Cracking and Fatigue of Heavy Loaded Prestressed Concrete Bridge in Sweden

Angélica Agredo Chávez, J. Gonzalez-Libreros, Kasper Andersson, Jon Leidzen, Erik Andersson, Mats Petersson, G. Sas, L. Elfgren, J. Häggström
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Abstract

A prestressed concrete bridge was built in 1963 with BBRV cables. It has three spans and a total length of 134.8 m. Due to mining activities the bridge was loaded with trucks with a total weight of 90 ton during 2012-2014 and from 2019. Crack development has been monitored manually and from 2020 with strain gauges and LVDTs. Cracks normally vary between 0.1 to 0.3 mm in width and grow in length with time. In November 2020 some of the strain gauges on the concrete showed alarming growth and the bridge was closed for traffic. Additional strain gauges were installed on vertical reinforcement bars and an assessment was carried out of the fatigue capacity of the bridge. It was found that the new strain gauges did not indicate any growth in strain and that the fatigue capacity was sufficient. The bridge could be opened again for traffic after being closed for five weeks. Monitoring drift in the strain gauges and fatigue are discussed.
瑞典重载预应力混凝土桥梁的开裂与疲劳
1963年,用BBRV电缆建造了一座预应力混凝土桥。它有三个跨度,全长134.8米。由于采矿活动,该桥在2012-2014年和2019年期间装载了总重量为90吨的卡车。从2020年起,将使用应变片和lvdt对裂缝的发展进行人工监测。裂缝的宽度通常在0.1到0.3毫米之间,长度随时间增长。2020年11月,混凝土上的一些应变计显示出惊人的增长,桥梁被迫关闭。在垂直钢筋上加装应变片,并对桥梁的疲劳能力进行了评估。结果发现,新的应变片没有显示应变的任何增长,疲劳能力是足够的。这座桥在关闭了五周后可能会重新通车。讨论了应变片漂移监测和疲劳监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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