Vacuum High-Temperature Brazing of 3003 Aluminum Alloy
-
Published:2023
Issue:2
Volume:10
Page:C1-C10
-
ISSN:2414-9381
-
Container-title:Journal of Engineering Sciences
-
language:en
-
Short-container-title:JES
Author:
Maksymova Svitlana1ORCID, Voronov Vitalii1ORCID, Kovalchuk Petro1ORCID, Shapiro Alexander2ORCID
Affiliation:
1. E. O. Paton Electric Welding Institute of the National Academy of Sciences of Ukraine, Kyiv, Ukraine 2. Ohio State University, USA
Abstract
Brazing filler metals based on the Al-Si system are widely used for brazing aluminum alloys. Their melting point is 577 °С (eutectic). It is necessary to conduct comprehensive studies of the technological properties of experimental filler metals and brazed joints to create a brazing filler metal with a reduced melting temperature for vacuum brazing of thin-walled aluminum products made of alloy 3003. The paper presents the research results on high-temperature vacuum brazing of aluminum alloy 3003 with Al-Cu-(Si, Mg) filler metal. It was determined that the amount of magnesium in the filler should be limited due to the risk of porosity formation associated with magnesium vaporization. It was identified that reducing the magnesium content increases the liquidus temperature above 530–550 °C. Therefore, experimental alloys require additional alloying with depressant elements, particularly silicon, to achieve the required melting temperature level. The chemical inhomogeneity of the filler in the initial state (after rapid solidification from the liquid state) and the structure of the brazed joints were investigated using micro-X-ray spectral analysis. Through empirical means, it was determined that a magnesium content of 1.5 % by weight in the filler allows for producing high-quality brazed joints without visible defects. In this case, shear strength is in the range of 0.6–0.7 of the strength of the base material. Tests of brazed joints for three-point bending resulted in an angle close to 180°, which indicates the promising use of experimental brazing filler metal in vacuum brazing of aluminum alloy 3003.
Publisher
Sumy State University
Subject
General Materials Science
Reference32 articles.
1. Lacaze, J., Tierce, S., Lafont, M. C., Thebault, Y., Pebere, N., Mankowski, G., Blanc, C., Robidou, H., Vaumousse, D., Daloz, D. (2005). Study of the microstructure resulting from brazed aluminium materials used in heat exchangers. Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing, Vol. 413, pp. 317–321. https://doi.org/10.1016/j.msea.2005.08.187 2. Benoit, M. J., Ogunsanya, I. G., Winkler, S., Worswick, M. J., Wells, M. A., Hansson, C. M. (2021). Internal corrosion of warm formed aluminum alloy automotive heat exchangers. Journal of Materials Engineering and Performance, Vol. 30, pp. 2876–2889. https://doi.org/10.1007/s11665-021-05616-4 3. Yuan, Z. P., Tu, Y. Y., Yuan, T., Huang, Y. H., Zhang, Y. H. (2021). Gradient multilayer aluminium sheets used in automotive heat exchangers. Journal of Materials Science, Vol. 56, pp. 5215–5232. https://doi.org/10.1007/s10853-020-05584-5 4. Gao, Z., Qin, Z., Lu, Q. (2022). Controlled atmosphere brazing of 3003 aluminum alloy using low-melting-point filler metal fabricated by melt-spinning technology. Metals, Vol. 15, 6080. https://doi.org/10.3390/ma15176080 5. Olson, D. L. (1993). ASM Handbook. Vol. 6: Welding, Brazing, and Soldering. ASM International, Materials Park, OH, USA.
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|