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- W2542185204 abstract "Kamanalu, Sunil Sondekere. M.S., Department of Physics, Wright State University, 2010. Proximity and Thickness Estimation of Aluminum 3003 Alloy Metal Sheets Using MultiFrequency Eddy Current Sensor. The research work is focused on conducting a feasibility study on a new “noncontact” single probe dual coil inductive sensor for sensing the proximity and thickness of Aluminum (Al) 3003 alloy metal sheets, which is a non-magnetic metal. A bulk of the research and development (R&D) work has already been done in the area of nondestructive testing (NDT) using eddy current technology targeted to various applications like corrosion detection, material thickness, material conductivity, etc. The research work presented in this thesis uses the prior R&D work completed in NDT as a platform for conducting this study to estimate proximity and thickness of Aluminum 3003 alloy metal sheets, which is not considered a flaw detection application. Some of the current technologies in the area of eddy current NDT for proximity and thickness estimation, each with its own limitations, include single probe ‘contact’ sensors for magnetic metals, single probe ‘non-contact’ sensors with separation distance of less than 1 mm and dual probe sensors that requires probes on both sides of the metal sheet. A swept multi-frequency scanning technique is used together with an automated data collection system to measure and collect output voltage and phase difference data over a wide range of frequencies. The skin effect in conductors and its associated property of skin depth is used to extract proximity and thickness information from the data collected, and then correlated with reference values to validate the results. Experimental" @default.
- W2542185204 created "2016-11-04" @default.
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- W2542185204 date "2010-01-01" @default.
- W2542185204 modified "2023-09-27" @default.
- W2542185204 title "Proximity and Thickness Estimation of Aluminum 3003 Alloy Metal Sheets Using Multi-Frequency Eddy Current Sensor" @default.
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