Materials Sciences and Applications

Volume 2, Issue 9 (September 2011)

ISSN Print: 2153-117X   ISSN Online: 2153-1188

Google-based Impact Factor: 0.97  Citations  

Characterization of Porosity in a Laser Sintered MMCp Using X-Ray Synchrotron Phase Contrast Microtomography

HTML  Download Download as PDF (Size: 3709KB)  PP. 1322-1330  
DOI: 10.4236/msa.2011.29180    5,890 Downloads   10,436 Views  Citations

Affiliation(s)

.

ABSTRACT

Direct Laser Sintering (DSL), a technology enabling the production of dense metal components directly from 3D CAD data, was used for the first time to produce a Metal Matrix Composite (MMCp) based on Al-Si-Cu alloy in view of its application in different fields, in particular for aeronautics. The porosity of the material obtained so was investigated by using optical and electron microscopy and, in particular, X-ray computed microtomography techniques. DSL is a unique technique to produce complex components in an economical way while computed microtomography is a unique technique to evaluate the porosity and pore and cracks distribution in a not destructive way. A near homogeneous distribution of the porosity and pore sizes was observed both comparing different regions of the same specimen and also by comparing different samples obtained by using the same DLS production method. A quantitative analysis of the damage in the composite is also reported.

Share and Cite:

E. Girardin, C. Renghini, J. Dyson, V. Calbucci, F. Moroncini and G. Albertini, "Characterization of Porosity in a Laser Sintered MMCp Using X-Ray Synchrotron Phase Contrast Microtomography," Materials Sciences and Applications, Vol. 2 No. 9, 2011, pp. 1322-1330. doi: 10.4236/msa.2011.29180.

Cited by

[1] Synchrotron radiation micro-CT with phase contrast for high-temperature in-situ microstructural characterization of AlSn composite phase change materials
Materials Characterization, 2022
[2] Capability of active thermography to detect and localize pores in Metal Additive Manufacturing materials
2021
[3] Statistical analysis of spatial distribution of pores in metal additive manufacturing
Additive Manufacturing, 2021
[4] レーザ積層造形により作製した Al-10% Si-0.4% Mg 合金における熱間等方加圧処理の影響
2019
[5] Very high-cycle fatigue properties and microstructural damage mechanisms of selective laser melted AlSi10Mg alloy
2019
[6] A Methodology to Evaluate the Reliability Impact of the Replacement of Welded Components by Additive Manufacturing Spare Parts
2019
[7] Considerations for Application of Additive Manufacturing to Nuclear Reactor Core Components
2019
[8] Additive Manufacturing for Nuclear Power Plant Applications
2019
[9] Accepted by IISE Transactions (Special Issue on Additive Manufacturing) on 5/10/2018
2018
[10] Layer-wise spatial modeling of porosity in additive manufacturing
IISE Transactions, 2018
[11] The three-dimensional structure of flexible resorcinol-formaldehyde aerogels investigated by means of holotomography
Journal of Sol-Gel Science and Technology, 2017
[12] Investigation of pore structure in cobalt chrome additively manufactured parts using X-ray computed tomography and three-dimensional image analysis
Additive Manufacturing, 2017
[13] Heterogeneous Sensor Data based Online Quality Assurance for Advanced Manufacturing using Spatiotemporal Modeling
2017
[14] Additive manufacturing of metallic components–process, structure and properties
Progress in Materials Science, 2017
[15] Additive Manufacturing
2017
[16] Pore size studies of high temperature microwave assisted powder sintered Ti6AL4V components using X–ray Micro-Computed Tomography (CT)
2017
[17] Usage of Industrial Computed Tomography for Evaluation of Custom-Made Implants
Applications of Computational Intelligence in Biomedical Technology, 2016
[18] Potential for Synchrotron radiation based NDE in Aerospace Industry
2016
[19] Critical appraisal of studies on dentinal radicular microcracks in endodontics: methodological issues, contemporary concepts, and future perspectives
Endodontic Topics, 2015
[20] Efficacy of various cleaning solutions on saliva-contaminated zirconia for improved resin bonding
The journal of advanced prosthodontics, 2015
[21] Characterization of nanoreinforcement dispersion in inorganic nanocomposites: A Review
Materials, 2014
[22] Porosity measurements and analysis for metal additive manufacturing process control
Journal of research of the National Institute of Standards and Technology, 2014
[23] DIMENSIONAL VERIFICATION AND QUALITY CONTROL OF IMPLANTS PRODUCED BY ADDITIVE MANUFACTURING
Quality Innovation Prosperity, 2014
[24] 金属粉末レーザ積層造形法により作製した Al–10% Si–0.4% Mg 合金の組織と機械的性質
粉体および粉末冶金, 2014
[25] Annealing of Co-Cr dental alloy: effects on nanostructure and Rockwell hardness
The journal of advanced prosthodontics, 2013
[26] Alternative impression technique for multiple abutments in difficult case to control
The Journal of Advanced Prosthodontics, 2012

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.