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Microstructure and mechanical behavior of Al 92Fe 3Cr 2X 3 (X=Ce, Mn, Ti, and V) alloys processed by centrifugal force casting

机译:Al 92 Fe 3 Cr 2 X 3 (X = Ce,Mn,Ti和V)合金通过离心力铸造加工

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Microstructural and mechanical characterization of Al92Fe3Cr2X3(X=Ce, Mn, Ti, and V) alloys were performed. The alloys were processed by a method that uses centrifugal force to cast the samples into a rotating copper mold. Microstructural characterization was carried out by means of x-ray diffraction, scanning electron microscopy, and differential scanning calorimetry. Compressive tests at room and at 300°C were performed in selected samples to evaluate their mechanical properties. Microstructural characterization showed the formation of quasicrystalline phases as well as other intermetallic phases embedded within an Al-FCC matrix. The Ce-containing alloy exhibited promising results regarding quasicrystalline phase formation and stability as well as with respect to its mechanical properties at high temperatures. The quasicrystalline phase of this alloy appears to be stable up to 545°C when the DSC reveals an exothermic transformation. In addition, the presence of a eutectic structure surrounding the Al-FCC grains enhanced the mechanical strength of this alloy. At 300°C, the Ce-containing alloy showed yield strength and ultimate tensile strength of 180MPa and 360MPa, respectively. If compared to a commercial aluminum alloy 2024 at the T6 condition, close to 300°C, the alloy studied here showed an increase of more than 4 times in the yield strength, and almost 7 times in the ultimate tensile strength. The high thermal stability and mechanical properties at high temperatures of this alloy open interesting possibilities for further studies and future applications of this Al-Fe-Cr-Ce alloy.
机译:对Al92Fe3Cr2X3(X = Ce,Mn,Ti和V)合金进行了显微组织和力学表征。通过使用离心力将样品浇铸到旋转的铜模具中的方法对合金进行处理。通过X射线衍射,扫描电子显微镜和差示扫描量热法进行微观结构表征。在选定的样品中进行了室温和300°C的压缩试验,以评估其机械性能。显微组织表征显示准晶相以及嵌入在Al-FCC基质中的其他金属间相的形成。含铈合金在准晶相的形成和稳定性以及在高温下的机械性能方面显示出令人鼓舞的结果。当DSC显示出放热转变时,该合金的准晶相在高达545°C的温度下似乎是稳定的。另外,围绕Al-FCC晶粒的共晶结构的存在增强了该合金的机械强度。在300℃下,含Ce合金的屈服强度和极限拉伸强度分别为180MPa和360MPa。如果将其与接近300°C的T6条件下的商用铝合金2024进行比较,则本文研究的合金显示出屈服强度提高了4倍以上,极限拉伸强度几乎提高了7倍。该合金在高温下的高热稳定性和机械性能为该Al-Fe-Cr-Ce合金的进一步研究和未来应用打开了有趣的可能性。

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