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Microstructure Evolution and Properties Tailoring of Rheo-Extruded Al-Sc-Zr-Fe Conductor via Thermo-Mechanical Treatment

机译:流变挤压Al-Sc-Zr-Fe导体的热机械处理及其组织演变

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摘要

Low-cost heat-resistant Al-Sc-Zr-Fe conductor wires were successfully manufactured by continuous rheo-extrusion process, and the mechanical and conductive properties of the materials were analyzed and compared after three different thermo-mechanical treatment methods. The coarse plate-shape Al Fe phase transformed to small sized rod-like phase after solid solution treatment at 630 °C for 21 h. Direct aging treatment at 300 °C for 24 h led to the refinement and spheroidization of Al Fe phase with a diameter of 200 nm. After the subsequent aging treatment at 300 °C for 24 h, the tensile strength and conductivity of the alloy wire significantly increased due to the homogeneous precipitation of the coherent spherical Al (Sc, Zr) phase with an average size of 15 nm. The tensile strength, elongation, and conductivity of the alloy conductor wire after optimized thermo-mechanical treatment reached 165.7 MPa, 7.3%, and 60.26% International Annealed Copper Standard (IACS), respectively. The thermal resistance of the present alloy wire was superior to that of standard AT1 type alloy conductor according to IEC international standard.
机译:通过连续流变挤压工艺成功制造了低成本的耐热Al-Sc-Zr-Fe导线,并通过三种不同的热机械处理方法对材料的机械和导电性能进行了分析和比较。 630°C固溶处理21 h后,粗大的板状Al Fe相转变为细小的棒状相。在300°C下直接时效处理24 h导致直径为200 nm的Al Fe相细化和球化。在300°C下进行了24 h的时效处理后,由于平均尺寸为15 nm的相干球形Al(Sc,Zr)相的均匀沉淀,合金线材的拉伸强度和导电率显着提高。经过优化的热机械处理后,合金导线的拉伸强度,伸长率和电导率分别达到国际退火铜标准(IACS)的165.7 MPa,7.3%和60.26%。根据IEC国际标准,本合金线的热阻优于标准AT1型合金导体的热阻。

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