Effects of Oxide Fragments on Microstructure and Mechanical Properties of AA6061 Aluminum Alloy Tube Fabricated by Thermomechanical Consolidation of Machining Chips

Author:

Zhang Zhen1,Liang Jiamiao1,Xia Tian23,Xie Yuehuang1,Chan Sammy Lap Ip45,Wang Jun1,Zhang Deliang6ORCID

Affiliation:

1. Shanghai Key Laboratory of Advanced High-Temperature Materials and Precision Forming and State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China

2. Changzhou Reborn Advanced Alloy Materials Technology Co., Ltd., Changzhou 213166, China

3. Jiuhe Frontier Innovations of Science and Technology (Shanghai) Co., Ltd., Shanghai 201100, China

4. Department of Chemical and Materials Engineering, National Central University, Zhongli 320317, Taiwan

5. School of Materials Science and Engineering, University of New South Wales, Sydney, NSW 2052, Australia

6. State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, China

Abstract

An AA6061 aluminum alloy tube was fabricated by compacting machining chips via thermomechanical consolidation, including hot pressing and hot extrusion. The microstructure evolution and formation of oxide particles were investigated in correlation to tensile mechanical properties. It was found that fine Al/Mg oxide particles were formed due to the fracture of oxide layers on the chips and the reaction between Mg and Al2O3 during hot extrusion. The oxide particles inhibited the growth of recrystallized α-Al grains, leading to the formation of a microstructure consisting of coarse elongated grains with sizes of 420 μm and fine equiaxed grains with sizes of 10 μm. After T6 heat treatment, a microstructure with finer grains (grain sizes: 34 μm) formed due to further recrystallization induced by residual strain. The tensile mechanical properties testing results indicated that a good combination of strength (296 MPa) and ductility (7.6%) was achieved in the T6 heat treated samples, which were likely attributed to the high-quality inter-chip bonding, as well as the fine oxide particles which were small enough that further crack nucleation and growth around them were inhibited during tensile deformation. For the purpose of comparison, the microstructure and mechanical properties of the as-extruded and T6 heat treated samples produced by hot extrusion of the cast ingot of AA6061 aluminum alloy were also investigated. The lower tensile strength of solid-state recycled tube sample might be associated with the consumption of Mg atoms by the oxidation reaction, leading to the lower density of β″ precipitates in precipitation strengthening.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Materials Science

Reference41 articles.

1. Cleveland, C.J. (2004). Encyclopedia of Energy, Elsevier.

2. Green, J.A.S. (2007). Aluminum Recycling and Processing for Energy Conservation and Sustainability, ASM International.

3. The recycling of metals by plastic deformation: An example of recycling of aluminium and its alloys chips;Gronostajski;J. Mater. Process. Technol.,1999

4. Koch, A., Wittke, P., and Walther, F. (2019). Computed tomography-based characterization of the fatigue behavior and damage development of extruded profiles made from recycled AW6060 aluminum chips. Materials, 12.

5. Max, S. (1945). Method for Treating Aluminum or Aluminum Alloy Scrap. (2391752A), U.S. Patent.

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