X-Ray—Radiography and Computed Tomography in Additive Manufacturing

Author:

Plessis Anton du1,MacDonald Eric2

Affiliation:

1. Stellenbosch University and Object Research Systems

2. University of Texas at El Paso and Oak Ridge National Laboratory

Abstract

Abstract X-ray radiography and computed tomography (CT) are nondestructive testing (NDT) tools particularly well suited to additive manufacturing (AM). A brief overview of NDT for AM is presented in this article, including other NDT methods, followed by identifying the key advantages and requirements for x-ray radiography and CT in AM. Less widely known applications of CT are also presented, including powder characterization, the evaluation of lattice structures, surface roughness measurements, and four-dimensional CT involving interrupted (before-after) CT scans of the same parts, or even in situ scans of the same part subjected to some processing or loading conditions. The article concludes with a discussion on the limits and some guidelines for the use of x-ray and CT for various AM materials.

Publisher

ASM International

Reference36 articles.

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2. WallerJ.M., ParkerB.H., HodgesK.L., BurkeE.R., WalkerJ.L., and GenerazioE.R., “Nondestructive Evaluation of Additive Manufacturing State-of-the-Discipline Report,” NASA Scientific and Technical Information Program, 2014, http://www.sti.nasa.gov, accessed July 30, 2020

3. Recent Progress on Global Standardization, Fundamentals of Laser Powder Bed Fusion of Metals;Gumpinger;Elsevier,2021

4. “Additive Manufacturing—General Principles—Terminology,” ISO/ASTM 52900-2015, International Organization for Standardization/ASTM International, 2015, https://www.iso.org/obp/ui/#iso:std:iso-astm:52900:ed-1:v1:en, accessed April 18, 2020

5. Applications of Non-Destructive Testing Techniques for Post-Process Control of Additively Manufactured Parts;Lu;Virtual Phys. Prototyp.,2017

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