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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The effect of stacking fault energy on equilibrium grain size and tensile properties of ultrafine-grained Cu-Al-Zn alloys processed by rolling
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The effect of stacking fault energy on equilibrium grain size and tensile properties of ultrafine-grained Cu-Al-Zn alloys processed by rolling

机译:堆垛层错能对轧制超细晶粒Cu-Al-Zn合金平衡晶粒尺寸和拉伸性能的影响

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摘要

Cu-2.5 at.% Al-2.5 at.% Zn, Cu-4.5 at.% Al-22.8 at.% Zn and Cu-12.1 at.% Al-4.1 at.% Zn alloys with stacking fault energies (SFEs) of 40, 10, and 7 mj/m2, respectively, were processed by combination of room temperature rolling (RR) and liquid nitrogen temperature rolling (LNR). The effect of SFE on microstruc-ture refinement and mechanical properties of these materials were investigated. Microstructural observations indicate that a decrease in SFE leads to a decrease in crystallite size and to increase in microstrain, dislocation and twin densities for the RR and LNR samples. The results show that under the same deformation conditions, lower SFE promotes the formation of nanostructures and deformation twins. An analysis shows that the experimental results are consistent with a theoretical model which predicted the minimum grain size produced by milling.
机译:Cu-2.5 at。%Al-2.5 at。%Zn,Cu-4.5 at。%Al-22.8 at。%Zn和Cu-12.1 at。%Al-4.1 at。%Zn合金的堆垛层错能(SFE)为通过组合室温轧制(RR)和液氮温度轧制(LNR)分别处理40、10和7 mj / m2。研究了SFE对这些材料的微观结构细化和力学性能的影响。显微组织观察表明,RR和LNR样品的SFE降低导致微晶尺寸减小,微应变,位错和孪生密度增加。结果表明,在相同的变形条件下,较低的SFE会促进纳米结构的形成和变形孪晶。分析表明,实验结果与理论模型一致,该模型预测了铣削产生的最小晶粒尺寸。

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