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Study of Structure and Mechanical Properties of Fine-Grained Aluminum Alloys Al-0.6wt.Mg-Zr-Sc with Ratio Zr:Sc = 1.5 Obtained by Cold Drawing

机译:Zr:Sc = 1.5的冷拉细晶粒铝合金Al-0.6wt。%Mg-Zr-Sc的组织和力学性能研究

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摘要

The thermal stability of a fine-grained (FG) aluminum wire has been studied in Al-0.6Mg-Zr-Sc alloys with various scandium and zirconium contents. Specimens were obtained by induction casting followed by cold deformation. The FG alloys have been demonstrated to have high thermal stability of the structure and properties due to the annealing pretreatment (320 °C, 2 h, before drawing), which results in deposition of Al3(ScxZr1−x) intermetallic particles. It has been determined that following a prolonged annealing treatment (400 °C, 100 h), the alloys retain a uniform fine-grained structure with an average grain size of 2.4–2.8 μm whereas their microhardness measures 405–440 MPa.
机译:已经在具有各种scan和锆含量的Al-0.6Mg-Zr-Sc合金中研究了细粒(FG)铝线的热稳定性。通过感应铸造然后冷变形获得样品。由于退火预处理(320℃,拉拔前2 h),FG合金具有较高的结构和性能热稳定性,导致沉积了Al3(ScxZr1-x)金属间化合物颗粒。已经确定,经过长时间的退火处理(400°C,100 h),合金保留了均匀的细晶粒组织,平均晶粒尺寸为2.4-2.8μm,而显微硬度为405-440 MPa。

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