首页> 外文会议>Applied Superconductivity and Electromagnetic Devices, 2009. ASEMD 2009 >Research on visual detection technology using eddy current magnet excitation device
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Research on visual detection technology using eddy current magnet excitation device

机译:涡流磁铁励磁装置的视觉检测技术研究

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A visual method for detecting invisible and buried micro-flaws under fine metallic surface is described. A new magneto-optic microscope that has a laser source, a CCD camera, and an eddy current magnet excitation device is developed for this work. A pulse generator supplies an intermittent square pulse to induce the magnet excitation device, which can intensify eddy currents yet reduce the working temperature of the exciting coil and specimens. The magnetic field variation produced by the imbedded defect causes a rotation of the polarization plane of the reflected beam. Therefore the reflected beam carries an image of the defect, which is received by a CCD camera. Now the imperceptible flaws in subsurface of mental product are visually tested. Image edge processing approaches are designed to enhance the effect. Experimental tests have been done and the method presented is evaluated by the experimental results.
机译:描述了一种在精细金属表面下检测不可见和掩埋的微瑕疵的视觉方法。为此,开发了一种新的磁光显微镜,该显微镜具有激光源,CCD照相机和涡流磁体激励装置。脉冲发生器提供间歇的方波脉冲来感应磁体励磁装置,该装置可以增强涡流,但会降低励磁线圈和样本的工作温度。由嵌入缺陷产生的磁场变化导致反射光束的偏振面旋转。因此,反射光束带有缺陷的图像,该图像由CCD摄像机接收。现在,通过视觉测试了精神产品表面下难以察觉的缺陷。图像边缘处理方法旨在增强效果。已经进行了实验测试,并且通过实验结果对提出的方法进行了评估。

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