Comprehensive evaluation of the effect of large extrusion ratio on the microstructure and performance of Al/Al bimetallic composite tubes

IF 6.7 2区 材料科学 Q1 ENGINEERING, INDUSTRIAL
Yanjun Wang , Yi Jia , Shuzhi Zhang , Shouzhen Cao , Xinlong Zhang , Wei Zhang , Changjiang Zhang , Zhaoping Hou , Jianchao Han , Tao Wang
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Abstract

Bimetallic composite tubes prepared by hot extrusion are usually assembled in parallel with the billet, which usually results in a low extrusion ratio and reduced production efficiency. In this study, Al/Al bimetallic composite tube with excellent surface quality were successfully prepared using AA6061 aluminum alloy and AA1060 aluminum alloy as the original materials and a special conical assembly form at 450°C and a large extrusion ratio of 21 by hot extrusion process. Macroscopic observation of the distribution of the two materials in the wall of the composite tube shows that the Al/Al composite tube combines well along the extrusion direction, the wall thickness of the inner and outer walls is gradient distribution along the extrusion direction, the stable extrusion stage accounts for 60 % of the total length, about 110 cm, and combines well in the circumferential direction as well. The bonding strength of the Al/Al composite tube is above 120 MPa, which is higher than the ultimate tensile strength (UTS) of the original AA1060 aluminum alloy and achieves metallurgical bonding. In addition, the UTS of the composite tube has reached the requirement of existing Al/Al composite products and has better plasticity. The microstructure near the interface of the composite tube shows no holes and inclusions on the interface, and the grains of the two materials have been refined to a certain extent, and the transmission electron microscope (TEM) results reflect that the two materials are in a coherent relationship. And the simulation of composite tube extrusion was conducted. The influence of the microstructure evolution on the mechanical properties and the bonding mechanism of the composite tube are discussed based on the microstructure evolution at the interface of the composite tube and the simulation results.
大挤压比对Al/Al双金属复合管材组织和性能影响的综合评价
热挤压制备的双金属复合管通常与坯料平行组装,这通常导致挤压比低,生产效率降低。本研究以AA6061铝合金和AA1060铝合金为原材料,采用特殊的锥形装配形式,在450℃、大挤压比为21的热挤压工艺下,成功制备了具有优异表面质量的Al/Al双金属复合管材。对两种材料在复合管壁内的分布进行宏观观察,结果表明:Al/Al复合管壁沿挤压方向结合良好,内外壁厚度沿挤压方向呈梯度分布,稳定挤压阶段占总长度的60% %,约110 cm,周向结合良好。Al/Al复合管的结合强度在120 MPa以上,高于原AA1060铝合金的极限抗拉强度(UTS),实现了冶金结合。此外,复合管的UTS达到了现有Al/Al复合产品的要求,具有更好的塑性。复合管界面附近的微观结构显示界面上没有空穴和夹杂,两种材料的晶粒得到了一定程度的细化,透射电镜(TEM)结果反映出两种材料处于相干关系。并对复合材料管材的挤压过程进行了仿真。基于复合管界面处的微观组织演变和模拟结果,探讨了微观组织演变对复合管力学性能的影响及结合机理。
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
Journal of Materials Processing Technology
Journal of Materials Processing Technology 工程技术-材料科学:综合
CiteScore
12.60
自引率
4.80%
发文量
403
审稿时长
29 days
期刊介绍: The Journal of Materials Processing Technology covers the processing techniques used in manufacturing components from metals and other materials. The journal aims to publish full research papers of original, significant and rigorous work and so to contribute to increased production efficiency and improved component performance. Areas of interest to the journal include: • Casting, forming and machining • Additive processing and joining technologies • The evolution of material properties under the specific conditions met in manufacturing processes • Surface engineering when it relates specifically to a manufacturing process • Design and behavior of equipment and tools.
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