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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructure Evolution and Mechanical Properties of Al-1080 Processed by a Combination of Equal Channel Angular Pressing and High Pressure Torsion
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Microstructure Evolution and Mechanical Properties of Al-1080 Processed by a Combination of Equal Channel Angular Pressing and High Pressure Torsion

机译:等通道角挤压与高压扭转相结合处理Al-1080的组织演变与力学性能

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摘要

Equal channel angular pressing (ECAP) and high pressure torsion (HPT) are the most promising severe plastic deformation (SPD) methods. Both methods impose very high strains, leading to extreme work hardening and microstructural refinement. In this paper, billets of Al-1080 were successfully processed by ECAP conducted for up to 10 passes, HPT at an applied pressure of 8 GPa for 5 revolutions, and a combination of ECAP and HPT (ECAP + HPT) at room temperature. The effects of the different SPD processes (ECAP, HPT, and ECAP + HPT) on the evolution of the microstructure and mechanical properties of Al-1080 were investigated. The HPT and ECAP + HPT processes were observed to produce finer grain sizes with greater fractions of high angle grain boundaries (HAGBs) than the ECAP alone. Although the grain sizes after HPT and ECAP + HPT were similar, the ECAP + HPT sample had more dislocations than the HPT sample. HPT after ECAP enhanced the mechanical properties (hardness, tensile strength, and ductility) of the ECAP-processed Al-1080, showing larger dimple size in the tensile fracture surfaces.
机译:等通道角挤压(ECAP)和高压扭转(HPT)是最有前途的严重塑性变形(SPD)方法。两种方法都施加非常高的应变,从而导致极端的加工硬化和微结构细化。在本文中,成功通过ECAP进行了多达10道次的Al-1080钢坯加工,在8 GPa的施加压力下进行了5圈HPT加工,并在室温下成功地加工了ECAP和HPT(ECAP + HPT)的组合。研究了不同SPD工艺(ECAP,HPT和ECAP + HPT)对Al-1080显微组织和力学性能的影响。观察到与单独的ECAP相比,HPT和ECAP + HPT工艺可产生更细的晶粒,并具有更大比例的高角度晶界(HAGB)。尽管HPT之后的晶粒尺寸与ECAP + HPT相似,但是ECAP + HPT样品比HPT样品具有更多的位错。 ECAP后的HPT增强了ECAP处理的Al-1080的机械性能(硬度,拉伸强度和延展性),在拉伸断裂表面显示出较大的凹坑尺寸。

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