Podrobno

Mitigating defects in directed energy deposited aluminium 5356 alloy through in-situ workpiece vibration
ID Imširović, Mirza (Avtor), ID Trdan, Uroš (Avtor), ID Klobčar, Damjan (Avtor), ID Bračun, Drago (Avtor), ID Nagode, Aleš (Avtor), ID Berthe, Laurent (Avtor)

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Izvleček
This study introduces an innovative approach of incorporating in-situ vibrations into Directed Energy Deposition (DED) process, utilizing aluminium 5356 wire, a welding arc heat source, and an electromagnetic vibration system. The findings underscore the method’s efficacy in mitigating defects of aluminium 5356 alloy fabricated part. Specifically, the anisotropic distribution of residual stress was reduced by 60%, leading to improved structural integrity. Moreover, the application of in-situ vibrations resulted in a marked reduction in surface waviness, thereby enhancing surface quality and increasing the building efficiency factor by 14% (from 78.5% to 92.25%). Gas porosity was substantially decreased, with a reduction from 1.5 ± 0.04% in as-built parts (AB) to 0.34 ± 0.07% in vibration-assisted (VA) parts. A notable 25% reduction in grain size was observed. The synergistic effect of vibrations and lower interpass temperatures effectively influenced the solidification kinetics, reducing microstructural anisotropy by eliminating characteristic columnar growth and promoting the formation of equiaxed grains. Tensile tests confirmed elimination of anisotropy in strength, with the ultimate tensile strength deviation between the x and z directions of less than 0.4% for VA samples, compared to 7.9% for AB samples. Analysis of secondary phases confirmed a homogenisation effect, evidenced by a lower segregation rate and more finely dispersed peaks of magnesium and iron-enriched precipitates in the VA samples compared to the AB ones (3.57 ± 3.42 μm$^2$ vs. 11.28 ± 12.49 μm$^2$). These results highlight the substantial potential of vibration-assisted DED in improving the properties of manufactured parts.

Jezik:Angleški jezik
Ključne besede:directed energy deposition, DED, in situ vibrations, residual stress reduction, surface quality improvement, gas porosity reduction, grain refinement, wire arc additive manufacturing, residual stresses, microstructure, homogenisation
Vrsta gradiva:Članek v reviji
Tipologija:1.01 - Izvirni znanstveni članek
Organizacija:FS - Fakulteta za strojništvo
NTF - Naravoslovnotehniška fakulteta
Status publikacije:Objavljeno
Različica publikacije:Objavljena publikacija
Leto izida:2024
Št. strani:Str. 1581–1599
Številčenje:Vol. 33
PID:20.500.12556/RUL-162718 Povezava se odpre v novem oknu
UDK:620.1:669.715
ISSN pri članku:2238-7854
DOI:10.1016/j.jmrt.2024.09.179 Povezava se odpre v novem oknu
COBISS.SI-ID:209073667 Povezava se odpre v novem oknu
Datum objave v RUL:26.09.2024
Število ogledov:740
Število prenosov:187
Metapodatki:XML DC-XML DC-RDF
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Gradivo je del revije

Naslov:Journal of materials research and technology
Skrajšan naslov:J. mater. res. technol.
Založnik:Elsevier
ISSN:2238-7854
COBISS.SI-ID:519699737 Povezava se odpre v novem oknu

Licence

Licenca:CC BY-NC-ND 4.0, Creative Commons Priznanje avtorstva-Nekomercialno-Brez predelav 4.0 Mednarodna
Povezava:http://creativecommons.org/licenses/by-nc-nd/4.0/deed.sl
Opis:Najbolj omejujoča licenca Creative Commons. Uporabniki lahko prenesejo in delijo delo v nekomercialne namene in ga ne smejo uporabiti za nobene druge namene.

Sekundarni jezik

Jezik:Slovenski jezik
Ključne besede:usmerjeno nanašanje energije, in ​​situ vibracije, zmanjšanje zaostalih napetosti, izboljšanje kakovosti površine, zmanjšanje poroznosti plina, rafiniranje zrn, oblikovno navarjanje, zaostale napetosti, mikrostruktura, homogenizacija

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