Influence of exposure in a corrosive environment on ultimate stress of heat-treated welded joints of Al–Mg–Si–Сu alloy

IF 2.7 4区 材料科学 Q3 ELECTROCHEMISTRY
L. Nyrkova, L. Goncharenko, S. Osadchuk, T. Labur, M. Yavorska
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Abstract

Abstract The priority task of modern aircraft construction is to ensure the reliability of the operation of structures, which depends both on the quality of execution of technological processes during manufacturing and on the corrosion-mechanical durability of welded joints. This work aims to study the influence of contact duration with a corrosive environment on the mechanical strength of the base metal and welded joints of the Al–Mg–Si–Cu alloy, heat-treated in different modes (artificial aging, quenching followed by artificial aging). Corrosion-mechanical tests were carried out under constant axial tensile stress in 3 % NaCl solution for 14 days, followed by determination of the corrosion rate, ultimate strength, and fractographic analysis of the fracture surface. The results showed that the corrosion resistance of the joints is almost equal to the corrosion resistance of the base metal. It was experimentally confirmed that the ultimate strength of the base metal and welded joints decreased after corrosion exposure in a 3 % NaCl solution. This is caused by the embrittlement of the structure and the formation of corrosion defects in the near-surface zone during contact with a corrosive environment, which led to a change like a fracture from ductile to ductile with brittleness.
腐蚀环境对Al-Mg-Si -Сu合金热处理焊接接头极限应力的影响
现代飞机制造的首要任务是保证结构运行的可靠性,这既取决于制造过程中工艺流程的执行质量,也取决于焊接接头的腐蚀-机械耐久性。本工作旨在研究Al-Mg-Si-Cu合金在不同热处理模式(人工时效、淬火后再人工时效)下,与腐蚀环境接触时间对母材和焊接接头机械强度的影响。在恒定轴向拉伸应力下,在3 % NaCl溶液中进行了14 天的腐蚀力学试验,随后测定了腐蚀速率、极限强度和断口形貌分析。结果表明,接头的耐蚀性与母材的耐蚀性基本相等。实验证实,在3 % NaCl溶液中腐蚀后,母材和焊接接头的极限强度下降。这是由于与腐蚀环境接触时,组织发生脆化,在近表面区域形成腐蚀缺陷,导致从延性断裂到带脆性的延性断裂的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Corrosion Reviews
Corrosion Reviews 工程技术-材料科学:膜
CiteScore
5.20
自引率
3.10%
发文量
44
审稿时长
4.5 months
期刊介绍: Corrosion Reviews is an international bimonthly journal devoted to critical reviews and, to a lesser extent, outstanding original articles that are key to advancing the understanding and application of corrosion science and engineering in the service of society. Papers may be of a theoretical, experimental or practical nature, provided that they make a significant contribution to knowledge in the field.
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