陈律. L1_0-TiAl金属间化合物3d过渡金属合金化力学性能计算[J]. 信阳师范学院学报(自然科学版), 2010, 23(1): 57-62.
引用本文: 陈律. L1_0-TiAl金属间化合物3d过渡金属合金化力学性能计算[J]. 信阳师范学院学报(自然科学版), 2010, 23(1): 57-62.
First-principles Calculation for Mechanical Property of L1_0-TiAl Intermetallic Compound Alloyed by[J]. Journal of Xinyang Normal University (Natural Science Edition), 2010, 23(1): 57-62.
Citation: First-principles Calculation for Mechanical Property of L1_0-TiAl Intermetallic Compound Alloyed by[J]. Journal of Xinyang Normal University (Natural Science Edition), 2010, 23(1): 57-62.

L1_0-TiAl金属间化合物3d过渡金属合金化力学性能计算

First-principles Calculation for Mechanical Property of L1_0-TiAl Intermetallic Compound Alloyed by

  • 摘要: 采用第一原理赝势平面波方法研究了TiAl-X(X为3d过渡金属)超胞合金体系的几何、能量与弹性常数.通过计算、比较、分析Ti7Al8X与Ti8Al7X超胞的合金形成能,得出3d过渡金属在L10-TiAl合金中的占位情况:Sc、V和Cr主要优先占据Ti原子位,Mn、Fe、Co、Ni、Cu和Zn则主要优先占据Al原子位.合金化超胞模型的晶体正方度(c/a)显示Mn、Fe和Co明显有利于改善TiAl合金的室温塑性.而比较其G/B值,V、Mn、Co和Ni具有韧化TiAl金属间化合物的作用.两者与实验结论不一致的原因可能在于合金化原子的浓度.

     

    Abstract: The energetics,geometrical structure and elastic constant of L10-TiAl intermetallic compound alloyed by 3d transition metal(TM) elements are investigated with the first-principle method based on plane-wave pseudopotential theory.The site preference of TM elements in Ti7Al8X and Ti8Al7X (X=3d transition metal) supercell model are calculated by the comparison between formation energy of Ti7Al8X and Ti8Al7X supercell.The results show that TM elements,such as Sc,V and Cr mainly substitute for the Ti site in L10-TiAl;the others,e.g.Mn,Fe,Co,Ni,Cu and Zn primarily substitute for the Al site in L10-TiAl.The equilibrium lattice constant K(K=|c/a-1|) value of Ti7(8)Al8(7)X supercell shows that the addition of Mn,Fe and Co TM elements individually is favorable to the improvement of the room temperature brittleness of L10-TiAl intermetallic compound,while other 3d TM elements addition is not helpful.The ratio value G/B of Ti7(8)Al8(7)X supercell shows that the addition of V,Mn,Co and Ni TM elemen...更多ts individually is favorable to the improvement of the room temperature brittleness of L10-TiAl intermetallic compound.The inconsistency between above theory research and the existing experiment results is possible to concentration of alloying atom.还原

     

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