Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting

Selective laser melting (SLM) offers obvious advantages in the production of complex parts. However, the traditional 7xxx series aluminum alloy has a serious cracking tendency in the SLM process. Therefore, in order to analyze the microstructure and cracking mechanism, and obtain crack-free aluminum...

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Main Authors: Wei Pan, Ziyu Zhai, Yantao Liu, Bo Liang, Zhuoheng Liang, Yongzhong Zhang
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Series:Crystals
Subjects:
Online Access:https://www.mdpi.com/2073-4352/12/10/1500
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author Wei Pan
Ziyu Zhai
Yantao Liu
Bo Liang
Zhuoheng Liang
Yongzhong Zhang
author_facet Wei Pan
Ziyu Zhai
Yantao Liu
Bo Liang
Zhuoheng Liang
Yongzhong Zhang
author_sort Wei Pan
collection DOAJ
description Selective laser melting (SLM) offers obvious advantages in the production of complex parts. However, the traditional 7xxx series aluminum alloy has a serious cracking tendency in the SLM process. Therefore, in order to analyze the microstructure and cracking mechanism, and obtain crack-free aluminum alloy fabricated by SLM, this paper studied the microstructure characteristics of as-deposited Al-6.2Zn-2Mg-xSc-xZr alloy with different Sc, Zr content, as well as the influence mechanism of Sc, Zr on cracking. The results show that with the increase of Sc and Zr content, the crack tendency and grain size decrease. When Sc and Zr content reach 0.6% and 0.36% respectively, cracks can no longer be observed in the as deposited alloy. The microstructure of the as deposited Al-6.2Zn-2Mg-0.6Sc-0.36Zr alloy consists of fine equiaxed and columnar crystals, in which Sc and Zr mainly exist in the aluminum matrix as solid solutions, and some exist in the form of Al<sub>3</sub>(Sc, Zr). The immediate reason for the absence of cracks is that the microstructure changes from coarse columnar grains to fine equiaxed-columnar grains when the content of Sc and Zr increases. The refined grain size may have the following beneficial effects: It helps with reducing the thickness of the liquid films. This will increase the tear sensitivity of the liquid film and the cracking tendency and therefore lowers the hot cracking tendency; And a refined grain size improves fracture roughness, leading to an enhanced cracking resistance. At the same time, the refinement of the grains will make the feeding channel of the grain boundary shorter and easy to feed, and the fine equiaxed grains can coordinate stress-strain during solidification more effectively than coarse columnar grains, which will decrease the cracking tendency.
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spelling doaj.art-3a4f0edfc3c549fbb63b4f9c2a6985832023-11-23T23:39:32ZengMDPI AGCrystals2073-43522022-10-011210150010.3390/cryst12101500Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser MeltingWei Pan0Ziyu Zhai1Yantao Liu2Bo Liang3Zhuoheng Liang4Yongzhong Zhang5National Engineering & Technology Research Center for Non-Ferrous Metal Matrix Composites, GRINM Group Co., Ltd., No. 11, Xingke East Street, Yanqi Economic Development Zone, Huairou District, Beijing 101407, ChinaNational Engineering & Technology Research Center for Non-Ferrous Metal Matrix Composites, GRINM Group Co., Ltd., No. 11, Xingke East Street, Yanqi Economic Development Zone, Huairou District, Beijing 101407, ChinaNational Engineering & Technology Research Center for Non-Ferrous Metal Matrix Composites, GRINM Group Co., Ltd., No. 11, Xingke East Street, Yanqi Economic Development Zone, Huairou District, Beijing 101407, ChinaNational Engineering & Technology Research Center for Non-Ferrous Metal Matrix Composites, GRINM Group Co., Ltd., No. 11, Xingke East Street, Yanqi Economic Development Zone, Huairou District, Beijing 101407, ChinaNational Engineering & Technology Research Center for Non-Ferrous Metal Matrix Composites, GRINM Group Co., Ltd., No. 11, Xingke East Street, Yanqi Economic Development Zone, Huairou District, Beijing 101407, ChinaNational Engineering & Technology Research Center for Non-Ferrous Metal Matrix Composites, GRINM Group Co., Ltd., No. 11, Xingke East Street, Yanqi Economic Development Zone, Huairou District, Beijing 101407, ChinaSelective laser melting (SLM) offers obvious advantages in the production of complex parts. However, the traditional 7xxx series aluminum alloy has a serious cracking tendency in the SLM process. Therefore, in order to analyze the microstructure and cracking mechanism, and obtain crack-free aluminum alloy fabricated by SLM, this paper studied the microstructure characteristics of as-deposited Al-6.2Zn-2Mg-xSc-xZr alloy with different Sc, Zr content, as well as the influence mechanism of Sc, Zr on cracking. The results show that with the increase of Sc and Zr content, the crack tendency and grain size decrease. When Sc and Zr content reach 0.6% and 0.36% respectively, cracks can no longer be observed in the as deposited alloy. The microstructure of the as deposited Al-6.2Zn-2Mg-0.6Sc-0.36Zr alloy consists of fine equiaxed and columnar crystals, in which Sc and Zr mainly exist in the aluminum matrix as solid solutions, and some exist in the form of Al<sub>3</sub>(Sc, Zr). The immediate reason for the absence of cracks is that the microstructure changes from coarse columnar grains to fine equiaxed-columnar grains when the content of Sc and Zr increases. The refined grain size may have the following beneficial effects: It helps with reducing the thickness of the liquid films. This will increase the tear sensitivity of the liquid film and the cracking tendency and therefore lowers the hot cracking tendency; And a refined grain size improves fracture roughness, leading to an enhanced cracking resistance. At the same time, the refinement of the grains will make the feeding channel of the grain boundary shorter and easy to feed, and the fine equiaxed grains can coordinate stress-strain during solidification more effectively than coarse columnar grains, which will decrease the cracking tendency.https://www.mdpi.com/2073-4352/12/10/1500selective laser meltingAl-Zn-Mg alloymicrostructurecracking behavior
spellingShingle Wei Pan
Ziyu Zhai
Yantao Liu
Bo Liang
Zhuoheng Liang
Yongzhong Zhang
Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting
Crystals
selective laser melting
Al-Zn-Mg alloy
microstructure
cracking behavior
title Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting
title_full Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting
title_fullStr Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting
title_full_unstemmed Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting
title_short Research on Microstructure and Cracking Behavior of Al-6.2Zn-2Mg-xSc-xZr Alloy Fabricated by Selective Laser Melting
title_sort research on microstructure and cracking behavior of al 6 2zn 2mg xsc xzr alloy fabricated by selective laser melting
topic selective laser melting
Al-Zn-Mg alloy
microstructure
cracking behavior
url https://www.mdpi.com/2073-4352/12/10/1500
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