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往复镦挤2A66铝锂合金室温拉伸性能及韧化机制
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Room Temperature Tensile Mechanical Property and Toughening Mechanism of 2A66 Al-Li Alloy Processed by Repetitive Upsetting and Extrusion
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    利用电子衍射背散射、透射电子显微观察、扫描电镜观察和室温拉伸试验对往复镦挤不同变形道次的2A66合金的组织和力学性能进行了检测和分析.结果表明,往复镦挤可以有效细化2A66铝锂合金组织,使组织更加均匀.随着往复镦挤变形道次增加,2A66铝锂合金中高密度位错逐渐向位错墙和亚晶界转变,粗大的第二相分布更均匀,弥散的β′相有部分回溶到2A66铝锂合金基体中.往复镦挤变形后2A66铝锂合金的塑性大幅提高,强度略有下降,其韧化主要是位错组态的变化、粗大的θ′ 相的均匀和细化以及弥散的β′相部分回溶的结果.

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    Repetitive upsetting and extrusion (RUE) was firstly carried out on 2A66 Al-Li alloy. Electron back-scatter diffraction (EBSD), transmission electron microscopy (TEM), scan electron microscopy (SEM), and room temperature tensile testing were then performed to investigate the microstructure characteristics and mechanical properties of 2A66 Al-Li alloy. The results showed that RUE was effective in refining the microstructure of 2A66 Al-Li alloy. With the increase of RUE pass numbers, high density dislocations in 2A66 Al-Li alloy gradually transformed to dislocation walls and subgrain boundaries, distribution of large second phase (θ′) became more homogenous, and a part of β′ dispersion dissolved into the aluminum-lithium alloy matrix. After RUE processing, the ductility improved greatly with a modest reduction in strengthening, as the toughening of the alloy was mainly attributed to the change of dislocation, the homogeneity and fragment of θ′ phase, and the dissolution of β′ dispersion.

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滕杰,许娟,高文理,陆政.往复镦挤2A66铝锂合金室温拉伸性能及韧化机制[J].湖南大学学报:自然科学版,2016,43(12):17~23

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  • 在线发布日期: 2016-12-27
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