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热机械时效硬化对铜-AA6063双金属线强度和电导率的影响。

Effect of thermo-mechanical age hardening on the strength and electrical conductivity of Copper-AA6063 bimetallic wire.

作者信息

Amiri Farnousheh Sharifian, Hosseinipour Seyed Jamal, Aval Hamed Jamshidi, Jamaati Roohollah

机构信息

Department of Materials Engineering, Babol Noshirvani University of Technology, Shariati Avenue, Post Code: 47148-71167, Babol, Iran.

出版信息

Heliyon. 2024 Dec 31;11(1):e41578. doi: 10.1016/j.heliyon.2024.e41578. eCollection 2025 Jan 15.

Abstract

This research explored the impact of age-hardening treatment on the mechanical response and electrical resistivity of copper-clad AA6063 alloy bimetallic wire, with a focus on microstructural analysis and interface characterization. In this study, AA6063 alloy wire was inserted into an oxygen-free high conductivity copper tube, and a bimetallic wire was fabricated through a wire drawing process that reduced the cross-sectional area in 13 stages. The bimetallic wire underwent a series of thermo-mechanical treatments, including various combinations of wire drawing, solution heat treatment, and artificial aging. The findings revealed that applying solution heat treatment prior to wire drawing, followed by artificial aging after drawing, produced a clean interface free of intermetallic compounds. This processing approach resulted in a Cu-Al bimetallic wire with a strength of 286 MPa and an electrical conductivity of 80 % IACS. Furthermore, the electrical conductivity-to-density ratio reached 13 % IACS/(g·cm⁻³), representing a 16 % improvement over oxygen-free high conductivity copper.

摘要

本研究探讨了时效硬化处理对包覆铜的AA6063合金双金属线力学响应和电阻率的影响,重点是微观结构分析和界面表征。在本研究中,将AA6063合金线插入无氧高导电率铜管中,并通过拉丝工艺制造双金属线,该工艺分13个阶段减小横截面积。双金属线经历了一系列热机械处理,包括拉丝、固溶热处理和人工时效的各种组合。研究结果表明,在拉丝前进行固溶热处理,然后在拉丝后进行人工时效,可产生无金属间化合物的洁净界面。这种加工方法得到了一种强度为286MPa、电导率为80%IACS的铜铝双金属线。此外,电导率与密度之比达到13%IACS/(g·cm⁻³),比无氧高导电率铜提高了16%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d844/11758115/796b3d84d1c3/gr1.jpg

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