Research on the metal magnetic memory effect of a steel box girder under four-point bending

Ruize Deng, S. Su, Wen Wang, F. Zuo
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Abstract

It is valuable to conduct non-destructive testing of steel box girders in order to evaluate their working status. The metal magnetic memory inspection method can effectively identify early damage and the stress state of ferromagnetic materials. However, applying this technique in the inspection of steel components is difficult due to insufficient research on magnetic memory signals under complex stress states. This study analyses the magnetic memory effect for a steel box girder under four-point bending. It is shown that the normal component Hp(y) of the magnetic signal can effectively locate the stress concentration area. The average absolute value Hm of Hp(y) can identify the yielding state and predict the occurrence of failure. Hm changes roughly quadratically with the average strain ɛm in the elastic stage of the specimen, which is consistent with the theoretical result. The ratio D of Hm to the equivalent stress σeqv changes continuously with the applied load, which can be used to estimate the stress state of the steel box girder.
四点弯曲下钢箱梁金属磁记忆效应研究
对钢箱梁进行无损检测,对钢箱梁的工作状态进行评估具有重要的意义。金属磁记忆检测方法可以有效地识别铁磁材料的早期损伤和应力状态。然而,由于对复杂应力状态下磁记忆信号的研究不足,将该技术应用于钢构件的检测存在一定的困难。分析了钢箱梁在四点弯曲作用下的磁记忆效应。结果表明,磁信号法向分量Hp(y)能有效定位应力集中区。Hp(y)的平均绝对值Hm可以识别屈服状态,预测失效的发生。试件弹性阶段Hm随平均应变[m]大致呈二次曲线变化,与理论结果一致。Hm与等效应力σeqv之比D随荷载的变化而连续变化,可用于估计钢箱梁的受力状态。
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