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Effect of Zr Microalloying on the Microstructures and Strengthening Mechanism of As-Cast Al-Fe-Zr Alloys

机译:Zr微合金化对铸造Al-Fe-Zr合金微观结构和强化机理的影响

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摘要

The microstructure and mechanical properties of Al-0.35Fe alloys with a series of different zirconium (Zr) additions from 0.1 to 0.4% are investigated by optical microscopy, scanning electron microscopy, transmission electron microscopy and tensile testing. The as-cast structure of the alloys varies with the Zr content. When the content of Zr is 0.1%, Zr dissolves into the aluminum (Al) matrix completely and iron (Fe) concentrates along the boundary in a network of eutectic Al3Fe. With the increase in Zr content to 0.2% and above, nanoscale Al3Zr particles appear in the alloy. With the Zr content increasing from 0.1 to 0.4%, the grain size of the Al matrix decreases from 73 to 23 μm. The morphology of the eutectic Al3Fe phase changes from short rod-like to an agglomerated structure consisting of finer and shorter rod-like shapes. The tensile and yield strengths increase while the total elongation decreases with increasing Zr content. The strengthening mechanism of the alloy can be attributed to the combination of fine-grain, solution and second-phase strengthening.
机译:通过光学显微镜,扫描电子显微镜,透射电子显微镜和拉伸试验研究了Al-0.35Fe合金的微观结构和机械性能从0.1-0.4%的添加0.1-0.4%。合金的铸造结构随Zr含量而变化。当Zr的含量为0.1%时,Zr溶解到铝(Al)基质中完全溶于铝(Al)基质中,铁(Fe)沿着共晶Al3Fe网络中的边界浓缩。随着Zr含量的增加至0.2%及以上,纳米级Al3Zr颗粒出现在合金中。随着Zr含量从0.1增加到0.4%,Al基质的晶粒尺寸从73〜23μm降低。共晶Al3Fe相的形态从短杆状变为凝聚结构,包括更细胞和较短的棒状形状。拉伸和屈服强度增加,而总伸长率随着Zr含量的增加而降低。合金的强化机理可归因于细粒,溶液和二相强化的组合。

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