Cr和Ag添加量对Al-Zn-Mg-Cu-Zr 7xxx合金晶界微观化学、氢渗透性和环境辅助开裂机制的影响

IF 7.4 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Corrosion Science Pub Date : 2025-04-15 Epub Date: 2025-01-31 DOI:10.1016/j.corsci.2025.112759
Chijioke Kenneth Akuata , Oliver Beyß , Lisa.T. Belkacemi , Kerstin Hantzsche , Matthew E. Curd , Daniela Zander
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引用次数: 0

摘要

本研究探讨了微量Cr和Ag添加对新一代Al-8Zn-2Mg-2Cu-0.1Zr合金在潮湿空气中抗氢环境辅助开裂(HEAC)的影响。结果表明,在Al-8Zn-2Mg-2Cu-0.1Zr合金中添加0.1 wt%的Cr可以抑制HEAC,这是由于E-Al18Mg3Cr2分散体具有较高的H结合能和较低的电化学晶界(GB)微化学活性。在Al- 8zn - 2mg - 2cu -0.1 zr合金中加入~ 0.3 wt%的Ag对HEAC敏感性没有影响,尽管在GB η-Mg(Zn,Cu,Al)2中有1 at%的Ag分配,并且PFZ宽度略有减小。
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On the impact of Cr and Ag additions on the grain boundary microchemistry, hydrogen permeability and environmentally assisted cracking mechanism of an Al-Zn-Mg-Cu-Zr 7xxx alloy
This study explored the impact of minor Cr and Ag additions on the resistance of a new generation Al-8Zn-2Mg-2Cu-0.1Zr alloy to hydrogen environmentally assisted cracking (HEAC) in humid air. The results show that HEAC in Al-8Zn-2Mg-2Cu-0.1Zr alloy can be suppressed by 0.1 wt% Cr addition, due to the formation of E-Al18Mg3Cr2 dispersoids with a high H binding energy and possibly a less electrochemically active grain boundary (GB) microchemistry. ∼ 0.3 wt% Ag addition in Al-8Zn-2Mg-2Cu-0.1Zr alloy had no influence on the HEAC susceptibility, despite 1 at% Ag partitioning in the GB η-Mg(Zn,Cu,Al)2 and a minor decrease in the PFZ width.
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来源期刊
Corrosion Science
Corrosion Science 工程技术-材料科学:综合
CiteScore
13.60
自引率
18.10%
发文量
763
审稿时长
46 days
期刊介绍: Corrosion occurrence and its practical control encompass a vast array of scientific knowledge. Corrosion Science endeavors to serve as the conduit for the exchange of ideas, developments, and research across all facets of this field, encompassing both metallic and non-metallic corrosion. The scope of this international journal is broad and inclusive. Published papers span from highly theoretical inquiries to essentially practical applications, covering diverse areas such as high-temperature oxidation, passivity, anodic oxidation, biochemical corrosion, stress corrosion cracking, and corrosion control mechanisms and methodologies. This journal publishes original papers and critical reviews across the spectrum of pure and applied corrosion, material degradation, and surface science and engineering. It serves as a crucial link connecting metallurgists, materials scientists, and researchers investigating corrosion and degradation phenomena. Join us in advancing knowledge and understanding in the vital field of corrosion science.
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