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Cited by 9 publications
(1 citation statement)
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References 17 publications
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“…In order to further improve the mechanical properties of aluminum alloys, researchers make microstructure modifications by means of various additive elements such as Co, Ni, V, Sc, Ti, B and / or use new generation production techniques [7][8][9]. Methods such as precipitation hardening [10][11][12], deformation hardening [13,14], semi-solid casting [15,16] and/or various rapid solidification [2,5,[17][18][19] are applied to aluminum alloys whose strength cannot be increased by quenching. Many alloying elements are added to the aluminum alloy to refine the grain size by operating the heterogeneous nucleation mechanism.…”
Section: Introductionmentioning
confidence: 99%
“…In order to further improve the mechanical properties of aluminum alloys, researchers make microstructure modifications by means of various additive elements such as Co, Ni, V, Sc, Ti, B and / or use new generation production techniques [7][8][9]. Methods such as precipitation hardening [10][11][12], deformation hardening [13,14], semi-solid casting [15,16] and/or various rapid solidification [2,5,[17][18][19] are applied to aluminum alloys whose strength cannot be increased by quenching. Many alloying elements are added to the aluminum alloy to refine the grain size by operating the heterogeneous nucleation mechanism.…”
Section: Introductionmentioning
confidence: 99%