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Nondestructive evaluation for crack corrosion and stress detection for metal assemblies and structures

机译:金属组件和结构的裂纹腐蚀和应力检测的无损评估

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Abstract: Magneto-optic imaging based upon Faraday rotation of polarized light has been successfully applied to the problem of non-destructive testing of cracks, stress fractures, corrosion, and other surface and subsurface defects in both ferromagnetic nd nonmagnetic metal structures. Some of these applications have been successfully applied to aircraft fuselage and wing structural examination, as well as to the inspection of tanks and other low-accessibility containers. There are significant needs and opportunities for improving upon the accuracy, sensitivity, portability, and automation of such non-destructive evaluation, particularly for aircraft which are by virtue of age, design, or condition subject to dangerous metal fatigue developments in between scheduled examination. There has been a need for improvement in the basic magneto-optic sensing technology as well as in the image processing of data gathered from the sensor, and in the refinement of crack and corrosion recognition algorithms and methods that can enhance automated and assisted recognition. The current research and development program in non-destructive testing applications at MODIS Corporation has developed several innovations within these areas that enable wider application of magneto-optic imaging. These include new Fe-Ga based thin-film technology resulting in (R, Bi)$-3$/(Fe, Ga)$-5$/O$-12$/ wafers that are demonstratably more sensitive to low-strength magnetic fields. These films contain (Y, Lu, Bi)$-3$/ (Fe, Ga)$- 5$/O$-12$/ composition, grown on a transparent single- crystalline substrate of Gd$-3$/ Ga$-5$/ O$-12$/ composition. Other more sensitive films and substrates have been developed as well. These films have uniaxial anisotropy due to crystallographic orientation, although with orientation films can be customized for more spatial resolution and sensitivity due to the almost uniformly planar anisotropy. The MODE sensor technology is incorporated into a modular scanning apparatus that enables the operation of several modes of inspection using replaceable video or digital still camera devices as well as variable optics for magnification. Instead of relying upon tradition eddy current technology for introducing measurable magnetic fields in the sample object being examined, the MODIS apparatus operates with a high-current, micro-burst application to the test surface. The sensitivity of the MODE Fe-Ga wafers has been demonstrated in laboratory experiments to operate with magnetic fields that are weaker than those produced by long-duration high-current eddy currents such as are presently being used in NDT applications. The coupling of higher magneto-optic sensitivity plus a reduction in the eddy current generation and heat dissipation opens a path to a number of variations and extensions of magneto-optic NDT. Algorithms and software developed by MODIS and partners for processing and analysis of the scanner output images reside on a Windows 95/NT computer and are compatible with body- wearable PC systems to enable completely hands-free, mobile inspection and data collection. The recognition algorithm are based upon standard digital image processing and neural network pattern recognition that has been successfully applied in other applications. !14
机译:摘要:基于法拉第旋转偏振光的磁光成像已成功应用于无损检测铁磁和非磁金属结构中的裂纹,应力断裂,腐蚀以及其他表面和亚表面缺陷的问题。这些应用中的某些已成功应用于飞机机身和机翼结构检查,以及对坦克和其他难以接近的集装箱的检查。有很大的需求和机会来改善这种无损评估的准确性,敏感性,便携性和自动化性,特别是对于在定期检查之间由于年龄,设计或条件而受到危险的金属疲劳发展影响的飞机。需要改进基本的磁光传感技术以及从传感器收集的数据的图像处理,以及改进裂纹和腐蚀识别算法和方法,以增强自动化和辅助识别的能力。 MODIS Corporation当前在非破坏性测试应用中的研究与开发计划已在这些领域内开发了多项创新技术,使磁光成像技术得以更广泛地应用。其中包括新的基于Fe-Ga的薄膜技术,产生的(R,Bi)$-3 $ /(Fe,Ga)$-5 $ / O $ -12 $ /晶圆对低强度磁性材料更敏感领域。这些薄膜包含(Y,Lu,Bi)$-3 $ /(Fe,Ga)$-5 $ / O $ -12 $ /组成,在Gd $ -3 $ / Ga $的透明单晶衬底上生长-5 $ / O $ -12 $ /成分。还已经开发了其他更敏感的膜和基底。这些膜由于晶体学取向而具有单轴各向异性,尽管由于几乎均匀的平面各向异性,可以为取向膜定制更大的空间分辨率和灵敏度。 MODE传感器技术被并入模块化扫描设备中,该设备可使用可更换的视频或数字静态照相机设备以及用于放大的可变光学器件来进行多种检查模式的操作。 MODIS设备不是依靠传统的涡流技术在被检查的样本对象中引入可测量的磁场,而是以高电流,微爆裂的方式运行到测试表面上。 MODE Fe-Ga晶片的灵敏度已在实验室实验中证明,其磁场作用要弱于目前长期用于无损检测应用的长期高电流涡流产生的磁场。更高的磁光灵敏度的耦合,以及涡流产生和散热的减少,为磁光NDT的多种变化和扩展开辟了道路。由MODIS及其合作伙伴开发的用于处理和分析扫描仪输出图像的算法和软件驻留在Windows 95 / NT计算机上,并且与可穿戴式PC系统兼容,以实现完全免提的移动检查和数据收集。识别算法基于已成功应用于其他应用程序的标准数字图像处理和神经网络模式识别。 !14

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