Effect of Sc on microstructure and properties of A357 alloy under different casting conditions

The effect of Sc on microstructure and mechanical properties of A357 alloy was investigated using sand molds and metal molds. The results showed that the eutectic Si in A357-0.5Sc alloy showed finer fibrous structure and smaller secondary dendrite spacing than that of A357 alloy in metal mold castin...

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Main Authors: Qi Wei, Hong Xu, Xiaoyu Bai, Peng Lian, Yu Wang, Hongkui Mao, Cong Wang
Format: Article
Language:English
Published: Elsevier 2022-09-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785422012078
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author Qi Wei
Hong Xu
Xiaoyu Bai
Peng Lian
Yu Wang
Hongkui Mao
Cong Wang
author_facet Qi Wei
Hong Xu
Xiaoyu Bai
Peng Lian
Yu Wang
Hongkui Mao
Cong Wang
author_sort Qi Wei
collection DOAJ
description The effect of Sc on microstructure and mechanical properties of A357 alloy was investigated using sand molds and metal molds. The results showed that the eutectic Si in A357-0.5Sc alloy showed finer fibrous structure and smaller secondary dendrite spacing than that of A357 alloy in metal mold casting; a significant degeneration of secondary and tertiary dendrites has happened during solidification in A357-0.5Sc alloy using sand molds. UTS and YS of A357-0.5Sc alloy were higher than those of A357 Alloy in both metal molds and sand molds. In metal mold casting, the elongation of A357-0.5Sc alloy was higher than that of A357 alloy. In sand casting, the elongation of A357 and A357-0.5Sc alloys is almost equal. The YS of A357-0.5Sc alloy in sand mold is 7.5% higher than that of A357 alloy in metal mold, and the UTS and EI are almost equal. Taken together, the mechanical properties of A357-0.5Sc using in sand molds shows better than that of A357 using metal molds, which can improve mechanical properties in sand molds to meet the requirements of casting of complex parts in sand molds.The secondary dendrite of A357 and A357-0.5Sc alloys was obvious in metal mold casting. The main factor affecting the mechanical properties of the metal mold alloy was the secondary dendrite spacing. The addition of Sc would degrade the secondary and tertiary dendrites of A357 alloy in sand-casting. Moreover, the main factor affecting the mechanical properties of the sand-casting alloy was grain size.
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spelling doaj.art-eb7bc33d86e5414b9862fde874480f512022-12-22T02:01:50ZengElsevierJournal of Materials Research and Technology2238-78542022-09-012020512059Effect of Sc on microstructure and properties of A357 alloy under different casting conditionsQi Wei0Hong Xu1Xiaoyu Bai2Peng Lian3Yu Wang4Hongkui Mao5Cong Wang6School of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaCorresponding author.; School of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaSchool of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaSchool of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaCorresponding author.; School of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaSchool of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaSchool of Materials Science and Engineering, North University of China, Tai Yuan 030051, ChinaThe effect of Sc on microstructure and mechanical properties of A357 alloy was investigated using sand molds and metal molds. The results showed that the eutectic Si in A357-0.5Sc alloy showed finer fibrous structure and smaller secondary dendrite spacing than that of A357 alloy in metal mold casting; a significant degeneration of secondary and tertiary dendrites has happened during solidification in A357-0.5Sc alloy using sand molds. UTS and YS of A357-0.5Sc alloy were higher than those of A357 Alloy in both metal molds and sand molds. In metal mold casting, the elongation of A357-0.5Sc alloy was higher than that of A357 alloy. In sand casting, the elongation of A357 and A357-0.5Sc alloys is almost equal. The YS of A357-0.5Sc alloy in sand mold is 7.5% higher than that of A357 alloy in metal mold, and the UTS and EI are almost equal. Taken together, the mechanical properties of A357-0.5Sc using in sand molds shows better than that of A357 using metal molds, which can improve mechanical properties in sand molds to meet the requirements of casting of complex parts in sand molds.The secondary dendrite of A357 and A357-0.5Sc alloys was obvious in metal mold casting. The main factor affecting the mechanical properties of the metal mold alloy was the secondary dendrite spacing. The addition of Sc would degrade the secondary and tertiary dendrites of A357 alloy in sand-casting. Moreover, the main factor affecting the mechanical properties of the sand-casting alloy was grain size.http://www.sciencedirect.com/science/article/pii/S2238785422012078Al–Si–Mg casting AlloySand moldMetal moldMechanical propertyT6 heat treatment
spellingShingle Qi Wei
Hong Xu
Xiaoyu Bai
Peng Lian
Yu Wang
Hongkui Mao
Cong Wang
Effect of Sc on microstructure and properties of A357 alloy under different casting conditions
Journal of Materials Research and Technology
Al–Si–Mg casting Alloy
Sand mold
Metal mold
Mechanical property
T6 heat treatment
title Effect of Sc on microstructure and properties of A357 alloy under different casting conditions
title_full Effect of Sc on microstructure and properties of A357 alloy under different casting conditions
title_fullStr Effect of Sc on microstructure and properties of A357 alloy under different casting conditions
title_full_unstemmed Effect of Sc on microstructure and properties of A357 alloy under different casting conditions
title_short Effect of Sc on microstructure and properties of A357 alloy under different casting conditions
title_sort effect of sc on microstructure and properties of a357 alloy under different casting conditions
topic Al–Si–Mg casting Alloy
Sand mold
Metal mold
Mechanical property
T6 heat treatment
url http://www.sciencedirect.com/science/article/pii/S2238785422012078
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