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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Stress concentration degree affects spontaneous magnetic signals of ferromagnetic steel under dynamic tension load
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Stress concentration degree affects spontaneous magnetic signals of ferromagnetic steel under dynamic tension load

机译:应力集中程度影响动态拉力作用下铁磁钢的自发磁信号

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摘要

Under the excitation of geomagnetic field, stress can induce spontaneous magnetic signals in ferromagnetic materials, which can be potentially applied to estimate the damage degree. In this research, the normal component of magnetic field, H_p(y), was measured during dynamic tension test on the surfaces of ferromagnetic specimens having different stress concentration factors, a constant amplitude sinusoidal tensile load cycles were applied on 18CrNi4A steel plate specimens whose a were respectively 1, 3 and 5. Then correlation of H_p(y) values' changes with loading cycles reported. The results indicate that stress concentration factor, a extremely affects the magnetic signal, the absolute value of the gradient, |K|, increases with the increase of alpha. Meanwhile, |K| also goes up when loading cycle increases in the initial state. However, after a few cycles, those H_p(y) curves corresponding to different cycles become similar before cracking.
机译:在地磁场的激发下,应力会在铁磁材料中感应出自发的磁信号,可潜在地用于估计损伤程度。在这项研究中,在动态拉伸试验期间,在具有不同应力集中因子的铁磁样品表面上测量了磁场的垂直分量H_p(y),对18CrNi4A钢板样品施加了恒定振幅的正弦正弦拉伸载荷循环分别为1、3和5。然后H_p(y)值的变化与报告的加载周期相关。结果表明,应力集中系数极大地影响了磁信号,梯度的绝对值| K |随着α的增加而增加。同时| K |在初始状态下加载周期增加时,也会升高。然而,在几个循环之后,对应于不同循环的那些H_p(y)曲线在破裂之前变得相似。

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