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Ductility of corroded steel members and components

机译:锈蚀钢构件和部件的延展性

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Following recent earthquakes that have demonstrated the potential seismic vulnerability of some types of steel bridges, many transportation agencies have initiated programs to evaluate the seismic resistance of their existing bridges. However, in numerous parts of North America, in case of inadequate maintenance in aggressive corrosion environments, seismic-resistant members frequently appear to be severely corroded. To determine whether such rusted members can reliably exhibit stable ductile behavior, a number of rusted pieces taken from an old steel bridge were subjected to tension and cyclic bending tests. Specimens had up to a 60percent loss of cross-sectional area due to corrosion. Non-cyclic tension stress-capacity and ductility did not change significantly due to corrosion. However, cyclic tests showed that, while stable hysteretic behavior comparable to that of unrusted specimen is possible, premature low-cycle fatigue typically develops. Irregularities along the rusted surface apparently act as crack initiators and precipitate crack propagation throughout the section. Finally, a few rivets tested in tension or shear did not exhibit any considerable degradation of strength nor ductility.
机译:在最近的地震表明某些类型的钢桥潜在的地震脆弱性之后,许多运输机构已经启动了评估其现有桥梁抗震能力的计划。但是,在北美的许多地区,如果在腐蚀性腐蚀环境中维护不足,则抗震构件经常会受到严重腐蚀。为了确定这种生锈的构件是否能够可靠地表现出稳定的延展性,对从旧钢桥上取下的许多生锈件进行了拉伸和循环弯曲试验。由于腐蚀,样品的横截面积损失高达60%。由于腐蚀,非循环拉伸应力容量和延展性没有显着变化。但是,循环测试表明,尽管可以实现与未生锈样品相当的稳定磁滞行为,但通常会过早出现低循环疲劳。沿生锈表面的不规则表面显然是裂纹的引发剂,并促使裂纹在整个截面中传播。最后,在拉力或剪切力下测试的几个铆钉没有表现出强度或延展性的任何显着降低。

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