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A New Method for the Microfocus X-ray Computed Tomography Visualization and Quantitative Exploration of Reinforcement Particles in Additively Manufactured Superalloy IN718

  • 01-09-2025
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Abstract

This study introduces a groundbreaking method for visualizing and quantifying reinforcement particles in additively manufactured superalloy IN718 using microfocus X-ray computed tomography (XCT). The research focuses on four key areas: the optimization of the 3D Alpha Wrapping algorithm parameters, the comparison of particle size and distribution between CeO2 and TiB2 particles, the validation of XCT results with traditional metallographic techniques, and the advantages of the VESPA Alpha Wrapping algorithm over conventional methods. The study demonstrates that the optimized parameters of the 3D Alpha Wrapping algorithm enable accurate quantification of particle dimensions, supported by SEM analysis. It also reveals that CeO2 particles exhibit larger sizes, irregular shapes, and a higher volume fraction compared to TiB2 particles. The comparison with traditional metallographic techniques validates the accuracy of the XCT visualization. Furthermore, the VESPA Alpha Wrapping algorithm is shown to provide more precise and reliable surface construction and volumetric estimation compared to the Marching Cubes algorithm. This methodology enhances the interpretability of micro-XCT for additively manufactured components, offering a robust tool for improving the fine, columnar-grained structure of superalloys.

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Title
A New Method for the Microfocus X-ray Computed Tomography Visualization and Quantitative Exploration of Reinforcement Particles in Additively Manufactured Superalloy IN718
Authors
I-Ting Ho
Devin Bayly
Pascal Thome
Sammy Tin
Publication date
01-09-2025
Publisher
Springer US
Published in
Journal of Nondestructive Evaluation / Issue 3/2025
Print ISSN: 0195-9298
Electronic ISSN: 1573-4862
DOI
https://doi.org/10.1007/s10921-025-01243-4
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Image Credits
Nordson Logo/© Nordson Deutschland GmbH, Ecoclean Logo/© SBS Ecoclean Group, Akzo Nobel Power Coatings GmbH/© Akzo Nobel Power Coatings GmbH, Sames GmbH/© Sames GmbH, Karl Bubenhofer AG/© Karl Bubenhofer AG, IST - International Surface Technology, Chemetall und ZF optimieren den Vorbehandlungsprozess/© Chemetall