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Achievement of High Strength and Ductility in Al–Si–Cu–Mg Alloys by Intermediate Phase Optimization in As-Cast and Heat Treatment Conditions

机译:在铸造和热处理条件下通过中间相优化实现Al-Si-Cu-Mg合金的高强度和延展性

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摘要

In order to obtain high-strength and high-ductility Al–Si–Cu–Mg alloys, the present research is focused on optimizing the composition of soluble phases, the structure and morphology of insoluble phases, and artificial ageing processes. The results show that the best matches, 0.4 wt% Mg and 1.2 wt% Cu in the Al–9Si alloy, avoided the toxic effect of the blocky Al Cu on the mechanical properties of the alloy. The addition of 0.6 wt% Zn modified the morphology of eutectic Si from coarse particles to fine fibrous particles and the texture of Fe-rich phases from acicular β-Fe to blocky π-Fe in the Al–9Si–1.2Cu–0.4Mg-based alloy. With the optimization of the heat treatment parameters, the spherical eutectic Si and the fully fused β-Fe dramatically improved the ultimate tensile strength and elongation to fracture. Compared with the Al–9Si–1.2Cu–0.4Mg-based alloy, the 0.6 wt% Zn modified alloy not only increased the ultimate tensile strength and elongation to fracture of peak ageing but also reduced the time of peak ageing. The following improved combination of higher tensile strength and higher elongation was achieved for 0.6 wt% Zn modified alloy by double-stage ageing: 100 °C × 3 h + 180 °C × 7 h, with mechanical properties of ultimate tensile strength (UTS) of ~371 MPa, yield strength (YS) of ~291 MPa, and elongation to fracture (E%) of ~5.6%.
机译:为了获得高强度和高延展性的Al-Si-Cu-Mg合金,本研究致力于优化可溶相的组成,不溶相的结构和形态以及人工时效工艺。结果表明,在Al–9Si合金中,最佳匹配(0.4 wt%的Mg和1.2 wt%的Cu)避免了块状Al Cu对合金机械性能的毒性作用。在Al–9Si–1.2Cu–0.4Mg-中,添加0.6 wt%的Zn可以改变从粗颗粒到细纤维颗粒的共晶Si的形态,以及从针状β-Fe到块状π-Fe的富铁相的织构。基合金。通过优化热处理参数,球形共晶Si和完全熔融的β-Fe可以显着提高极限抗拉强度和断裂伸长率。与Al–9Si–1.2Cu–0.4Mg基合金相比,0.6 wt%的Zn改性合金不仅增加了峰值时效的极限抗拉强度和断裂伸长率,而且缩短了峰值时效时间。对于0.6 wt%的Zn改性合金,通过双时效进行以下改进,以获得更高的拉伸强度和更高的伸长率:100°C×3 h + 180°C×7 h,具有极限拉伸强度(UTS)的机械性能约371 MPa,屈服强度(YS)约291 MPa,断裂伸长率(E%)约5.6%。

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