首页|T8时效铝铜锂合金随预变形增加的强化机制

T8时效铝铜锂合金随预变形增加的强化机制

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研究随预变形量增加(0-15%)时T8时效态铝铜锂合金的显微组织演变和力学性能,揭示显微组织特征与强度之间的关系以及内在的强化机制.结果表明,增加预变形量可显著提高该合金的强度但会降低其塑性.预变形引入的位错有效抑制GP区的形成,并为T1相提供更多形核位点,这导致预变形量更大的样品中形成更密集且细小的T1相;同时,T1相析出增强与GP区形成受阻导致θ′析出相的数量和尺寸显著降低.对不同强化机制的贡献进行定量描述.结果表明:随着预变形量增加,T1相和θ′相的强化贡献降低.T1相直径减小是其强化效果减弱的主要原因.因此,该合金强度的提高主要归因于增加预变形量诱发应变硬化主导的强化贡献.
Strengthening mechanism of T8-aged Al-Cu-Li alloy with increased pre-deformation
The micro structure evolution and mechanical properties of a T8-aged Al-Cu-Li alloy with increased pre-deformation(0-15%)were investigated,revealing the microstructure-strength relationship and the intrinsic strengthening mechanism.The results show that increasing the pre-deformation levels remarkably improves the strength of the alloy but deteriorates its ductility.Dislocations introduced by pre-deformation effectively suppress the formation of Guinier-Preston(GP)zones and provide more nucleation sites for T1 precipitates.This leads to more intensive and finer T1 precipitates in the samples with higher pre-deformation levels.Simultaneously,the enhanced precipitation of T1 precipitates and inhibited formation of GP zones cause the decreases in number and sizes of θ'precipitates.The quantitative descriptions of the strength contributions from different strengthening mechanisms reveal that strengthening contributions from T1 and θ'precipitates decrease with increasing pre-deformation.The reduced diameters of T1 precipitates are primarily responsible for their weakened strengthening effects.Therefore,the improved strength of the T8-aged Al-Cu-Li alloy is mainly attributed to the stronger strain hardening from the increased pre-deformation levels.

Al-Cu-Li alloypre-deformationprecipitationstrengthstrengthening mechanism

邓三喜、李劲风、王理、陈月雁、向正武、马鹏程、陈永来、刘丹阳

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中南大学材料科学与工程学院,长沙 410083

西南铝业有限责任公司,重庆 401326

航天材料及工艺研究所,北京 100076

铝铜锂合金 预变形 析出 强度 强化机制

Natural Science Foundation of Hunan Province,China

2023JJ30678

2024

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCD
影响因子:1.183
ISSN:1003-6326
年,卷(期):2024.34(10)