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Effect of Sc microalloying addition on microstructure and mechanical properties of as-cast Al-12Si alloy

机译:添加Sc微合金化对铸态Al-12Si合金组织和力学性能的影响

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The effect of microalloying 0.1 wt% Sc on microstructure and mechanical properties of as-cast Al-125i (wt.%) alloys was investigated. Sc refines alpha-Al grain average size from 400 mu m to 135 mu m and eutectic Si average size from 4.6 mu m to 0.7 mu m, and modifies Si from plate-like shape to fibers as well. The microaddition of Sc also leads to the formation of coherent nanosized Al3Sc precipitation and other Sc containing intermetallic phases with a length < 10 mu m. The tensile strength increases from 183 MPa of the base alloy to 254 MPa of the Sc-modified alloy, and the elongation increases from 3.5% to 8.3%, respectively. Moreover, this Sc-modified alloy has a retention of 85% strength even after thermal exposure at 350 degrees C for 160 h.
机译:研究了微合金化0.1 wt%Sc对铸态Al-125i(wt。%)合金的组织和力学性能的影响。 Sc将α-Al晶粒平均尺寸从400μm提高到135μm,将低共熔Si平均尺寸从4.6μm提高到0.7μm,并且还将Si从板状转变为纤维。 Sc的微量添加还导致形成相干的纳米Al3Sc沉淀物和其他长度小于10μm的金属间相的Sc。拉伸强度从基础合金的183 MPa增加到Sc改性合金的254 MPa,延伸率分别从3.5%增加到8.3%。此外,即使在350摄氏度下热暴露160小时,该Sc改性合金仍具有85%的强度保持率。

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