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Eddy Current Testing: Profiled eddy current probes for complex shape inspection

机译:涡流测试:复杂形状检测的分布式涡流探头

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The Eddy Current Testing (ECT) method forms part of the Electromagnetic Testing methods (ET) and is used to detect surface and subsurface discontinuities in conductive materials. Testing of conductive samples is also possible through limited thickness non-conductive coatings or non-reinforced rubber lining. Complex shapes and hard to reach surfaces are difficult to inspect, since the orientation of the probe relative to the surface constantly varies. Probe shoes and other alternatives are available that can limit the probe lift off or probe 'wobble', however with various degrees of success. This paper discuss the use of profiled eddy current probes to inspect complex shapes such as turbine blade steeples, generator rotor bodies, gear teeth (girth and pinion gears), etc. The probes are designed according to the component profile and thus aim to improve the detection and characterization of indications, while limiting the effect of lift-off, probe wobble or other factors related to the probe manipulation or magnetic coupling with the test sample. Even the depth of indications can be determined under certain conditions viz. if suitable calibration blocks and representative reference samples are available.
机译:涡流测试(ECT)方法形成电磁试验方法(ET)的一部分,用于检测导电材料中的表面和地下不连续性。通过有限厚度的非导电涂层或非增强橡胶衬里,也可以测试导电样品。复杂的形状和难以达到表面难以检查,因为探头相对于表面的取向不断变化。探头鞋和其他替代方案可用于限制探头升降机或探针'摆动',但是具有各种成功。本文讨论了异形涡流探头的使用来检查复杂的形状,如涡轮机叶片陡峭,发电机转子体,齿轮齿(周长和小齿轮)等。探头根据部件剖面设计,从而旨在改善指示的检测和表征,同时限制升空,探针摆动或与探针操纵或磁耦合有关的其他因素与试验样品的效果。即使是指示深度也可以在某些条件下确定。如果有合适的校准块和代表性的参考样本。

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