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Development of Geometry Normalized Electromagnetic System (GNES) instrument for metal defect detection

机译:用于金属缺陷检测的几何归一化电磁系统(GNES)仪器的开发

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It has been already made, calibrated and tested a geometry normalized electromagnetic system (GNES) for metal defect examination. The GNES has an automatic data acquisition system which supporting the efficiency and accuracy of the measurement. The data will be displayed on the computer monitor as a graphic display then saved automatically in the Microsoft Excel format. The transmitter will transmit the frequency pair (FP) signals i.e. 112.5 Hz and 337.5 Hz; 112.5 Hz and 1012.5 Hz; 112.5 Hz and 3037.5 Hz; 337.5 Hz and 1012.5 Hz; 337.5 Hz and 3037.5 Hz. Simultaneous transmissions of two electromagnetic waves without distortions by the transmitter will induce an eddy current in the metal. This current, in turn, will produce secondary electromagnetic fields which are measured by the receiver together with the primary fields. Measurement of percent change of a vertical component of the fields will give the percent response caused by the metal or the defect. The response examinations were performed by the models with various type of defect for the master curves. The materials of samples as a plate were using Aluminum, Brass, and Copper. The more of the defects is the more reduction of the eddy current response. The defect contrasts were tended to decrease when the more depth of the defect position. The magnitude and phase of the eddy currents will affect the loading on the coil thus its impedance. The defect must interrupt the surface eddy current flow to be detected. Defect lying parallel to the current path will not cause any significant interruption and may not be detected. The main factors which affect the eddy current response are metal conductivity, permeability, frequency, and geometry.
机译:它已经制造,校准和测试了用于金属缺陷检查的几何归一化电磁系统(GNES)。 GNES具有自动数据采集系统,可支持测量的效率和准确性。数据将以图形显示的形式显示在计算机监视器上,然后自动以Microsoft Excel格式保存。发射机将发送频率对(FP)信号,即112.5 Hz和337.5 Hz; 112.5 Hz和1012.5 Hz; 112.5 Hz和3037.5 Hz; 337.5 Hz和1012.5 Hz; 337.5 Hz和3037.5 Hz。发射器同时发射两个电磁波而不会产生畸变,会在金属中感应出涡流。反过来,此电流将产生次级电磁场,该电磁场由接收器与初级场一起测量。测量场的垂直分量的变化百分比将给出由金属或缺陷引起的响应百分比。由具有各种缺陷的主曲线模型执行响应检查。作为板的样品材料使用铝,黄铜和铜。缺陷越多,涡流响应的减小越多。当缺陷位置越深时,缺陷对比度趋于降低。涡电流的大小和相位将影响线圈的负载,从而影响其阻抗。缺陷必须中断要检测的表面涡流。与电流路径平行的缺陷不会引起任何重大中断,也可能不会被检测到。影响涡流响应的主要因素是金属的电导率,磁导率,频率和几何形状。

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