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Effects of On-Line Vortex Cooling on the Microstructure and Mechanical Properties of Wire Arc Additively Manufactured Al-Mg Alloy
- Source :
- Metals, Vol 10, Iss 1004, p 1004 (2020), Metals, Volume 10, Issue 8
- Publication Year :
- 2020
- Publisher :
- MDPI AG, 2020.
-
Abstract
- A novel on-line vortex cooling powered by low-cost compressed air was proposed to reduce common defects such as low forming precision, coarse grains, and pores caused by heat accumulation in the Wire Arc Additive Manufacturing (WAAM) of aluminum alloy. The impacts of interlayer cooling (IC), substrate cooling (SC), on-line cooling (OL), and natural cooling (NC) processes were compared on the morphology, microstructure, and mechanical properties of as-deposited walls, revealing that the OL process significantly lowers the interlayer temperature and improves forming precision. The high cooling rate produced by the OL process reduced the absorption of hydrogen in the molten pool, lowering porosity. Furthermore, the grains are refined due to the developed undercooling. However, the high cooling rate enhanced the segregation potential of Mg element and raised the content of the &beta<br />phase. Conclusively, the maximum tensile strength, elongation, and microhardness of the as-deposited wall are achieved via the OL process, and the fine-grain strengthening mechanism plays an important role in improving mechanical properties. The OL process is cheaper and poses a significant effect<br />it is highly suitable for the additive manufacturing of complex components compared with other forced cooling processes.
- Subjects :
- lcsh:TN1-997
0209 industrial biotechnology
Materials science
Hydrogen
microstructure and mechanical properties
Alloy
chemistry.chemical_element
02 engineering and technology
engineering.material
Indentation hardness
020901 industrial engineering & automation
Aluminium
wire arc additive manufacturing (WAAM)
Ultimate tensile strength
General Materials Science
Composite material
Supercooling
Porosity
lcsh:Mining engineering. Metallurgy
on-line vortex cooling
Metals and Alloys
021001 nanoscience & nanotechnology
Microstructure
chemistry
engineering
0210 nano-technology
Subjects
Details
- ISSN :
- 20754701
- Volume :
- 10
- Database :
- OpenAIRE
- Journal :
- Metals
- Accession number :
- edsair.doi.dedup.....ac383fb8d051cb771c7a76a57edf62cf
- Full Text :
- https://doi.org/10.3390/met10081004