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Elaboration of Metallic Materials by SPS: Processing, Microstructures, Properties, and Shaping

Jean-Philippe Monchoux, Alain Couret

2021Englishspark plasma sinteringmetalspowder metallurgymicrostructuremechanical propertiesnanostructured materials

Abstract

Language:

After a few decades of increasing interest, spark plasma sintering (SPS) has now become a mature powder metallurgy technique, which allows assessing its performances toward fabricating enhanced materials. Here, the case of metals and alloys will be presented. The main advantage of SPS lies in its rapid heating capability enabled by the application of high intensity electric currents to a metallic powder. This presents numerous advantages balanced by the specific characteristics of the resultant microstructures and properties. Furthermore, the review encompasses the various shaping techniques and potential applications of SPS in the production of metallic materials. Insights into microstructural developments and mechanical properties of SPS-fabricated metals and alloys are discussed in detail, emphasizing the impact of processing parameters on the final material characteristics. The overall findings suggest that SPS is a promising route for the fabrication of advanced metallic components with superior performance metrics. The synthesis and optimization of such materials through SPS can open new avenues in both research and industrial applications.

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Cite This Work

@article{5e8c1761-7a90-4260-994c-ded4a484090d,
  title={Elaboration of Metallic Materials by SPS: Processing, Microstructures, Properties, and Shaping},
  author={Jean-Philippe Monchoux and Alain Couret},
  year={2021},
  language={English}
}
TY  - JOUR
TI  - Elaboration of Metallic Materials by SPS: Processing, Microstructures, Properties, and Shaping
AU  - Jean-Philippe Monchoux
AU  - Alain Couret
PY  - 2021
LA  - English
ER  -

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