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首页> 外文期刊>Intermetallics >Microstructures and room temperature tensile properties of as-cast and directionally solidified AlCoCrFeNi2.1 eutectic high-entropy alloy
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Microstructures and room temperature tensile properties of as-cast and directionally solidified AlCoCrFeNi2.1 eutectic high-entropy alloy

机译:浇铸和定向凝固的AlcoCrfeni2.1共晶高熵合金的微观结构和室温拉伸性能

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The microstructures and room temperature tensile properties of as-cast and directionally solidified AlCoCrFeNizi eutectic high-entropy alloy were investigated using OM, SEM, EDS, TEM and tensile tests. The microstructure of as-cast alloy, including the well-aligned lamellar structures, the radial emanating lamellar structure and meshlike structure, consists of NiAl-rich (B2) and CoCrFeNi-rich (L1(2)) phases. From the longitudinal section of directionally solidified alloy, when the withdrawal rate is 6 mu m/s, the solid-liquid interface morphology is planar, and the well -aligned lamellar structure is observed. The three-dimensional morphologies of well-aligned lamellar structures are well characterized by deep etching. With increasing the withdrawal rate to 15 mu m/s, the solidliquid interface morphology change from planar to cellular, and the microstructure changes from planar eutectic to cellular eutectic, even the dendritic eutectic at local region occurs at 60 and 120 mu m/s. From the transverse section, the well-aligned lamellar structures occur in the cell interior, and the interlamellar spacing decreases gradually with increasing the withdrawal rates. The TEM result indicates that NiAl-rich phase has an orientation relationship with CoCrFeNi-rich phase of [(1) over bar 11](NiAl.rich)//(1) over bar 22](CoCrseNi-rict,) and (211)(NiAl-rich)// (022)(cocrFeNi.rich). The nano-precipitates occur in NiAl-rich (B2) and CoCrFeNi-rich (L12) phases. The directionally solidified alloy possesses a good combination of strength and ductility at 60 mu m/s. In particular, using the directional solidification technology is a good way to improve the ductility of the alloy (-37%). The strengthening and plasticizing mechanisms are discussed by analyzing the fracture and side surfaces.
机译:使用OM,SEM,EDS,TEM和拉伸试验研究了浇铸和定向凝固的Alcocrocenizi共晶高熵合金的微观结构和室温拉伸性能。铸造合金的微观结构,包括良好的对齐的层状结构,径向发射层状结构和网状结构,包括富含Nial的(B2)和富含Cocrfeni的(L1(2))相。从方向凝固合金的纵向截面,当取出率为6μm/ s时,固体液体界面形态是平面的,并且观察到良好的层状板结构。通过深度蚀刻,良好对齐的层状结构的三维形态很好地表征。随着提取率为15μm/ s的增加,从平面到细胞的固体型界面形态变化,并且从平坦的共晶对细胞共晶变化,即使在局部区域的树突浓度在60和120μm/ s中发生。从横截面,在细胞内部发生良好的对齐的层状结构,并且随着提取速率的增加而逐渐降低。 TEM结果表明,富含Nial的相位与富杆11](Nial.rich)//(1)上的CoCrfeni的相位与酒吧22的富克(1))(Cocreni-Rict)和(211 )(Nial-Rich)//(022)(cocrfeni.rich)。纳米沉淀物发生在富含耐氮(B2)和富含Cocrfeni的(L12)阶段。定向凝固的合金具有60μm/ s的强度和延展性的良好组合。特别地,使用定向凝固技术是改善合金延展性的好方法(-37%)。通过分析骨折和侧表面来讨论强化和增塑机制。

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