Heat treatment and granule medium internal high-pressure forming of AA6061 tube

The new forming process of AA6061 alloy tube, including solution treatment, granule medium internal high-pressure forming and aging treatment, was developed. The AA6061 alloy tube via heat treatment satisfied the forming requirement, and the granule medium internal high pressure forming method for A...

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Published inJournal of Central South University Vol. 24; no. 5; pp. 1040 - 1049
Main Authors Bi, Jiang, Zhao, Chang-cai, Bi, Meng-meng, Du, Bing, Chen, Xiao-hua, Dong, Guo-jiang
Format Journal Article
LanguageEnglish
Published Changsha Central South University 01.05.2017
Springer Nature B.V
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ISSN2095-2899
2227-5223
DOI10.1007/s11771-017-3507-8

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Summary:The new forming process of AA6061 alloy tube, including solution treatment, granule medium internal high-pressure forming and aging treatment, was developed. The AA6061 alloy tube via heat treatment satisfied the forming requirement, and the granule medium internal high pressure forming method for AA6061 alloy tube was also realized by using convenient implementation with low requirement of equipment and flexible design of product. At a solution temperature of 560°C and time of 120 min, the elongation of the AA6061 extruded tube increases by 300% and the strength and the hardness dramatically decrease too. Therefore, the AA6061 alloy tube meets the requirement of internal high-pressure forming because of the improvement of formability. The experiments shows that the strength and hardness of AA6061 alloy workpiece recover to that of the as-received alloy at an aging temperature of 180°C and time of 360 min, and the strength of AA6061 alloy workpiece is equal to the base alloy. The typical parts of convex ring tube, stepped shaft tube and hexagonal tube were successfully produced in lab by using the present forming method. The forming tests show that the maximum expansion ratio (MER) of the AA6061 extruded tube increases by 25.5% and the material properties of formed AA6061 alloy tube reached the performance of as-received alloy.
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ISSN:2095-2899
2227-5223
DOI:10.1007/s11771-017-3507-8