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Identification of the ferromagnetic hysteresis simulation parameters using classic non-destructive testing equipment

机译:使用经典无损检测设备识别铁磁磁滞仿真参数

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摘要

Electromagnetic non-destructive controls are performed daily by steel manufacturers and steel user companies. Many methods exist, including Eddy Current Testing (ECT), Magnetic Particle Inspection (MPI), Magnetic Incremental Permeability (MIP), Magnetic Barkhausen noise (MBN) ... In this domain, progresses are constant, however there are limitations and accurate simulation tools able to improve the methods efficiency are still expected. Most of steels are ferromagnetic and characterized by a strong nonlinear hysteretic magnetic behavior. A precise taken into account of hysteresis is mandatory in the development of useful simulation tools. The hysteresis standard of characterization imposes restrictive conditions (geometrical, electrical ...) and most of Non-Destructive Testing (NDT) industrial end-users face difficulties to obtain these inevitable experimental results. In this manuscript, we describe an alternative method to adjust the hysteresis simulation parameters based on experimental results coming from classic NDT industrial equipment The acquisition of a flat coil impedance in an ECT configuration and under the superimposition of a quasi-static magnetic excitation (MPI equipment) is performed to plot the tested specimen MIP signature. The Dodd & Deeds (D&D) analytical solution for an ECT flat coil is used to return the corresponding permeability. An optimization process based on a modified Jiles-Atherton (J-A) model is run to extract a suitable combination of hysteresis parameters. Finally, the good comparison with an experimental B(H) characterization is worth as a validation of the method.
机译:电磁无损控制由钢铁制造商和钢铁企业用户的日常执行。许多方法存在,包括涡流检测(ECT),磁粉探伤(MPI),磁增量磁(MIP),磁巴克豪森噪声(MBN)......在这个领域,进展是不变的,但也有局限性和精确的仿真能提高效率的方法工具仍然预期。大多数钢是铁和特点是强非线性迟滞磁性行为。考虑到滞后的准确是有用的模拟工具的开发是强制性的。表征的滞后标准规定的限制条件(几何,电...)和大多数非破坏性检测(NDT)工业最终用户的面临困难获得这些不可避免的实验结果。在该手稿中,我们描述的另一种方法基于从经典NDT工业设备来的扁平线圈阻抗的获取在ECT配置和准静态磁激励的叠加下(MPI设备的实验结果来调节滞后的模拟参数)被执行来绘制所测试的样本MIP签名。杜德&契约(d&d)用于ECT扁平线圈解析解用于返回对应的渗透性。基于修改的Jiles-阿瑟顿(J-A)模型的优化过程运行以提取的滞后参数的适当组合。最后,实验B(H)表征良好比较是值得作为该方法的一个验证。

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