2003AIP conference proceedingsRequires access

Evaluation of Standard Configurations for Nondestructive Eddy-Current Testing

R. Sikora

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Abstract

This paper discusses some practical configurations for finding flaws in well‐conducting materials using the eddy‐current non‐destructive method (NDT). In order to increase the sensitivity of impedance changes the optimisation of all properties of these systems e.g. design and dimensions of the coils, their positions, frequency and measuring system has been carried out. Based on these results some requests are formulated for the developer of NDT‐sensors. This project has been carried out as the World Federation Second Eddy Current Benchmark Problem.

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What this paper is about

This paper discusses some practical configurations for finding flaws in well‐conducting materials using the eddy‐current non‐destructive method (NDT). In order to increase the sensitivity of impedance changes the optimisation of all properties of these systems e.g. design and dimensions of the coils, their positions, frequency and measuring system has been carried out. Based on these results some requests are formulated for the developer of NDT‐sensors. This project has been carried out as the World Federation Second Eddy Current Benchmark Problem.

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Available abstract

This paper discusses some practical configurations for finding flaws in well‐conducting materials using the eddy‐current non‐destructive method (NDT). In order to increase the sensitivity of impedance changes the optimisation of all properties of these systems e.g. design and dimensions of the coils, their positions, frequency and measuring system has been carried out. Based on these results some requests are formulated for the developer of NDT‐sensors. This project has been carried out as the World Federation Second Eddy Current Benchmark Problem.

Key concepts: Nondestructive testing, Eddy current, Eddy-current testing, Benchmark (surveying), Electrical impedance, Sensitivity (control systems), Current (fluid), Computer science

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