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首页> 外文期刊>Materials & design >Microstructural characterization and mechanical performance of an AA2024 aluminium alloy - Pure copper joint obtained by linear friction welding
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Microstructural characterization and mechanical performance of an AA2024 aluminium alloy - Pure copper joint obtained by linear friction welding

机译:AA2024铝合金的显微组织表征和力学性能-线性摩擦焊接获得的纯铜接头。

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摘要

The present work deals with the microstructural and mechanical characterization of an AA2024 - pure Cu linear friction weld. A thorough study of the microstructural features in close contact with the interface led to propose a phenomenological mechanism of material flow. The interface is covered by a discontinuous layer of intermetallic compounds. Al2Cu, AlCu, Al2Cu3 and more particularly Al4C9, were detected. Two metastable phases, i.e. an Al3Cu2 compound and an out-of-equilibrium Al solid solution containing 13 at.%Cu, were also identified at the interface and on the Al side, respectively. In accordance with the applied strain state during welding, ideal shear texture components were formed on both sides of the joint Due to the formation of large intermetallic compounds, the mechanical resistance of the joint remains to be improved. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本工作涉及AA2024-纯Cu线性摩擦焊缝的显微组织和机械特性。对与界面紧密接触的微观结构特征的透彻研究提出了物质流动的现象学机制。界面被金属间化合物的不连续层覆盖。检测到Al2Cu,AlCu,Al2Cu3,尤其是Al4C9。还分别在界面和Al侧确定了两个亚稳态相,即Al3Cu2化合物和含13 at。%Cu的不平衡Al固溶体。根据焊接过程中施加的应变状态,在接头的两侧形成了理想的剪切织构成分。由于形成了较大的金属间化合物,接头的机械阻力仍有待提高。 (C)2016 Elsevier Ltd.保留所有权利。

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