一种新型超高强铝锂合金薄板的时效行为与微观组织
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(1.中南大学材料科学与工程学院, 长沙 410083;2.航天材料及工艺研究所, 北京 100076)

作者简介:

李劲风,1971 年出生,博士,教授,主要从事铝锂合金及金属腐蚀与防护研究。E-mail:lijinfeng@csu.edu.cn

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TG 146.2

基金项目:

863项目(No.2013AA032401),中南大学教师基金(No.2013JSJJ 001)


Aging Behavior and Microstructure of a New Super-High Strength Al-Li Alloy Sheet
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(1.School of Materials Science and Engineering, Central South University, Changsha 410083;2.Aerospace Research Institute of Materials & Processing Technology,Beijing 100076)

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    摘要:

    为优化一种新型超高强Al-Cu-Li-X合金2 mm厚度薄板的热处理工艺,本文研究了其不同时效条件下的力学性能和微观组织。结果表明:预变形为6%时,T8态长时间 (20~120 h) 时效时可保持600 MPa以上的抗拉强度。T8态时效时合金强化相为大量T1相(Al2CuLi)和部分θ′相(Al2Cu),T6态时效时还可析出极少量S′相(Al2CuMg)。预变形可促进T1相细小弥散析出,但抑制θ′相及S′相的析出。6%以下预变形可有效提高合金T8态时效的强度。6%以上预变形量的T8态时效合金中T1相密度明显增加,尺寸显著降低,θ′相减少,但相应合金抗拉强度的增量很小,而延伸率急剧下降;过大预变形(15%)则导致θ′相消失。

    Abstract:

    To optimize the heat treatment processing of a new super-high strength Al-Cu-Li-X alloy sheet with 2 mm thickness, the mechanical properties and microstructures of the alloy with different aging treatment were investigated. Its tensile strength kept higher than 600 MPa after a long time (20~120 h) of T8 aging with 6% pre-deformation. The strengthening phases in T8 temper were a large number of T1 (Al2CuLi) precipitates and some (Al2Cu) precipitates. A very small amount of S′ (Al2CuMg) precipitates also formed in T6 aging. Pre-deformation accelerated dispersive and fine precipitation of T1 phases, but inhibited the precipitation of θ′ and S′ phases. At pre-deformation lower than 6%, the tensile strength of the T8-aged alloy was effectively increased with pre-deformation. At pre-deformation higher than 6%, with pre-deformation increasing, T1 number density was obviously increased and its size decreased, θ′ fraction reduced, and the strength enhancement caused by pre-deformation was decreased and elongation was much lowered. Excessively high pre-deformation (15%) made θ′ precipitates disappear.

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引用本文

李劲风,陈永来,张绪虎,张健,郑子樵.一种新型超高强铝锂合金薄板的时效行为与微观组织[J].宇航材料工艺,2016,46(5):62-67.

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  • 收稿日期:2015-12-21
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  • 在线发布日期: 2017-01-11
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