Heterodyne Eddy Current Testing Using Magnetoresistive Sensors for Additive Manufacturing Purposes

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Abstract

In recent years additive manufacturing technologies have become widely popular. For complex functional components or low volume production of workpieces, laser powder bed fusion can be used. High safety requirements, e.g. in the aerospace sector, demand extensive quality control. Therefore, offline non-destructive testing methods like computed tomography are used after manufacturing. Recently, for enhanced profitability and practicality online non-destructive testing methods, like optical tomography have been developed. This paper discusses the applicability of eddy current testing with magnetoresistive sensors for laser powder bed fusion parts. For this purpose, high spatial resolution giant magnetoresistance arrays are utilized for testing in combination with a single wire excitation coil. A heterodyne principle minimizes metrology efforts. This principle is compared to conventional signal processing in an eddy current testing setup using an aluminum test sample with artificial surface defects. To evaluate the influence of the powder used in the manufacturing process on eddy current testing and vice versa, a laser powder bed fusion mock-up made from stainless steel powder (316L) is used with artificial surface defects down to 100~mu text{m}. This laser powder bed fusion specimen was then examined using eddy current testing and the underlying principles.

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Ehlers, H., Pelkner, M., & Thewes, R. (2020). Heterodyne Eddy Current Testing Using Magnetoresistive Sensors for Additive Manufacturing Purposes. IEEE Sensors Journal, 20(11), 5793–5800. https://doi.org/10.1109/JSEN.2020.2973547

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