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Eliminating Yield Asymmetry and Enhancing Ductility in Mg Alloys by Shear Assisted Processing and Extrusion

机译:通过剪切辅助加工和挤出消除产率不对称性和增强镁合金的延展性

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摘要

Solid phase processing techniques such as friction stir welding, Shear assisted processing and extrusion (ShAPE)/friction extrusion and cold spray have been successfully demonstrated as promising thermomechani-cal methods to produce metallic materials with enhanced performance. In this study, AZ series with and without silicon, ZK60 Mg alloys in as-received forms (as-cast or as-extruded) were processed using Shear Assisted Processing and Extrusion (ShAPE). Microstructural characterization was performed using EBSD and TEM and revealed that as compared to the feedstock materials/billets, friction extruded Mg alloys had more uniform microstructure, equiaxed grains, finer and homogeneously distributed precipitates and chemical homogeneity. It was also observed that basal planes were not oriented parallel to extrusion axis. As a result, rod products exhibited significantly reduced (in some cases eliminated) yield asymmetry and achieved enhanced ductility, which were uncommon or difficult to attain using conventional processing techniques. In addition, modified texture likely suppressed deformation twinning under compressive deformation.
机译:已成功显示固相处理技术,例如摩擦搅拌焊接,剪切辅助加工和挤出(形状)/摩擦挤出和冷喷雾作为具有增强性能的金属材料的热能机械测量方法。在本研究中,使用剪切辅助加工和挤出(形状)处理具有和不含硅的AZ系列,具有硅,ZK60mg合金(以铸造或挤出或挤出)。使用EBSD和TEM进行微观结构表征,并揭示与原料材料/坯料相比,摩擦挤出的Mg合金具有更均匀的微观结构,平衡晶粒,细粒,均匀分布沉淀物和化学均匀性。还观察到基底平面不平行于挤出轴线定向。结果,棒状产品显着降低(在一些情况下消除)屈服不对称性并实现增强的延展性,这罕见或难以使用常规加工技术获得。此外,改进的纹理可能抑制压缩变形下的变形孪晶。

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