Additive manufacturing of metals: a brief review of the characteristic microstructures and properties of steels, Ti-6Al-4V and high-entropy alloys
Stéphane Gorsse, Christopher Hutchinson, Mohamed Gouné, Rajarshi Banerjee
Centre National de la Recherche Scientifique Université de Bordeaux Institut de Chimie de la Matière Condensée de Bordeaux École Nationale Supérieure de Chimie, de Biologie et de Physique
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摘要与影响
We present a brief review of the microstructures and mechanical properties of selected metallic alloys processed by additive manufacturing (AM). Three different alloys, covering a large range of technology readiness levels, are selected to illustrate particular microstructural features developed by AM and clarify the engineering paradigm relating process-microstructure-property. With Ti-6Al-4V the emphasis is placed on the formation of metallurgical defects and microstructures induced by AM and their role on mechanical properties. The effects of the large in-built dislocation density, surface roughness and build atmosphere on mechanical and damage properties are discussed using steels. The impact of rapid solidification inherent to AM on phase selection is highlighted for high-entropy alloys. Using property maps, published mechanical properties of additive manufactured alloys are graphically summarized and compared to conventionally processed counterparts.
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工程Additive Manufacturing Materials and Processes
High Entropy Alloys Studies · Additive Manufacturing and 3D Printing Technologies
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