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Study of the Microstructure and Crack Evolution Behavior of Al-5Fe-1.5Er Alloy

机译:Al-5Fe-1.5Er合金的组织与裂纹扩展行为研究

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摘要

In this work, the microstructure of Al-5Fe-1.5Er alloy was characterized and analyzed using X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and energy-dispersive X-ray spectroscopy (EDS) techniques. The effect of microstructure on the behavior of crack initiation and propagation was investigated using in situ tensile testing. The results showed that when 1.5 wt.% Er was added in the Al-5Fe alloy, the microstructure consisted of α-Al matrix, Al3Fe, Al4Er, and Al3Fe + Al4Er eutectic phases. The twin structure of Al3Fe phase was observed, and the twin plane was {001}. Moreover, a continuous concave and convex interface structure of Al4Er was observed. Furthermore, Al3Fe was in the form of a sheet with a clear gap inside. In situ tensile tests of the alloy at room temperature showed that the crack initiation mainly occurred in the Al3Fe phase, and that the crack propagation modes included intergranular and trans-granular expansions. The crack trans-granular expansion was due to the strong binding between Al4Er phases and surrounding organization, whereas the continuous concave and convex interface structure of Al4Er provided a significant meshing effect on the matrix and the eutectic structure.
机译:在这项工作中,使用X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM)和能量色散X射线光谱(EDS)对Al-5Fe-1.5Er合金的显微组织进行了表征和分析)技术。使用原位拉伸试验研究了微观结构对裂纹萌生和扩展行为的影响。结果表明,当在Al-5Fe合金中添加1.5 wt。%的Er时,显微组织由α-Al基体,Al3Fe,Al4Er和Al3Fe + Al4Er共晶相组成。观察到Al 3 Fe相的孪晶结构,孪晶面为{001}。此外,观察到Al4Er的连续凹凸界面结构。此外,Al 3 Fe为片状,内部具有明显的间隙。合金在室温下的原位拉伸试验表明,裂纹萌生主要发生在Al3Fe相中,裂纹扩展模式包括晶间和跨晶扩展。裂纹的跨晶膨胀是由于Al4Er相与周围组织之间的牢固结合而引起的,而Al4Er连续的凹凸界面结构对基体和共晶结构提供了显着的啮合作用。

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