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电子结构对La,Zr双掺杂γ-TiAl基合金延性的影响
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中国民航大学理学院低维材料与技术研究所,中国民航大学理学院低维材料与技术研究所,中国民航大学理学院低维材料与技术研究所,中国民航大学中欧航空工程师学院,中国民航大学理学院低维材料与技术研究所,中国民航大学理学院低维材料与技术研究所,中国民航大学中欧航空工程师学院

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TG146.2

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国家自然科学基金资助(项目号51201181)中国民航大学中央高校基本科研业务费(3122014K001)


Theoretical Study on Electronic Structure and Ductility of La and Zr Co-doped Gamma-TiAl Based Alloys
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Institute of Low Dimension Materials and Technology,College of Science,Civil Aviation University of China,Institute of Low Dimension Material and Technology,College of Science,Civil Aviation University of China,Institute of Low Dimension Material and Technology,College of Science,Civil Aviation University of China,Sino-European Institute of Aviation Engineering,Civil Aviation University of China,Institute of Low Dimension Material and Technology,College of Science,Civil Aviation University of China,Institute of Low Dimension Material and Technology,College of Science,Civil Aviation University of China,Sino-European Institute of Aviation Engineering,Civil Aviation University of China

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    摘要:

    γ-TiAl基合金具有优良的高温性能,且低密度、高比强度,在航空航天等领域备受青睐,室温延性差则制约着此类材料的广泛应用。以密度泛函平面波赝势方法为基础,计算研究了16个La和(或)Zr替代掺杂γ-TiAl体系(S1,S2,S3,S4,S51~S55,S61~S65,S7和S8)的结构与性质。对平均形成能的计算分析表明,它们均有较好的能量稳定性;根据弹性常量和Born-Huang判据预测,除S61外,15个掺杂体系均具有力学稳定性,预报它们是可以实际制备并稳定存在的。通过对比各体系的弹性模量比,发现La和Zr双掺杂体系的延性(特别是S51,S52,S63和S64)明显改善,且双掺杂体系的延性与杂质原子的相对位置关系不大。布居数、电荷密度分布计算和分析揭示,La和Zr双掺杂γ-TiAl体系各向同性程度提高、延性改善的原因在于体系中Ti4s→3d,Al3s→3p电荷转移明显减少、自由电子数量增多,导致p-d轨道杂化作用减弱,Al(La,Zr)-Ti共价键数量减少和Ti-Ti共价键结合强度显著增强,化学键Al-Al,Ti-Ti和Al-Ti的强度明显趋同、金属性增强。

    Abstract:

    Because of the low density, high specific strength and excellent performance at high temperature, γ-TiAl based alloys have become a new generation of materials in the aeronautic field. However, its poor ductility at room temperature leads to its bad performance in the manufacture process, which has set a boundary to its wide applications. In this paper, 16 La and (or) Zr doped γ-TiAl systems (S1, S2, S3, S4, S51~S55, S61~S65, S7 and S8) are constructed and investigated by using the plane wave pseudo potentials method based on the density functional theory and other physical theories. The results of average formation energy show that they possess good energy stabilities. According to the elastic parameters and Born-Huang criteria, it is forecasted that they (except system S61) are in good mechanical stabilities. So, the 15 doped systems can be prepared in experiment and are stable in existence. The comparison of G/B shows that all La and Zr co-doped systems (especially S51, S52, S63 and S64) have better ductile properties than that of pure γ-TiAl systems. The ductility of co-doped systems is not much correlated with comparative position of doping atoms. The calculation results and discussion about population, charge densities indicate that the improvements of ductility and isotropy of co-doped systems come of the decrease of Ti4s→3d, Al3s→3p charge transfer and increase of free electrons number. This change results in the weakening of p-d orbital hybrid, the decreasing number of bonds Al (La, Zr)-Ti and the increasing strength of covalent bond Ti-Ti, and then the chemical bonds Al-Al, Ti-Ti and Al-Ti distinctly tend towards the same strength and become stronger metallic property.

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宋庆功,赵俊普,顾威风,蒋清杰,杨宝宝,郭艳蕊,胡雪兰.电子结构对La, Zr双掺杂γ-TiAl基合金延性的影响[J].稀有金属材料与工程,2018,47(4):1154~1159.[Song Qing-Gong, Zhao Junpu, Gu Weifeng, Jiang Qingjie, Yang Baobao, Guo Yanrui, Hu Xuelan. Theoretical Study on Electronic Structure and Ductility of La and Zr Co-doped Gamma-TiAl Based Alloys[J]. Rare Metal Materials and Engineering,2018,47(4):1154~1159.]
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  • 收稿日期:2016-03-30
  • 最后修改日期:2016-07-03
  • 录用日期:2016-08-17
  • 在线发布日期: 2018-05-31
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