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Cr、V在Ti-Al系合金中合金化效应的理论研究
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国家自然科学基金(50874079);山西省教育厅项目 (20080010);山西省自然科学基金(2009021026);太原市科技项目(100115105)


Theoretical Study on the Alloying Effect of Cr, V in Ti-Al Alloys
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    摘要:

    采用第一性原理赝势平面波方法研究了合金元素Cr、V对Ti-Al系合金电子结构的影响,计算了含Cr、V的Ti-Al系合金的总能量、结合能、力学性能、电荷密度、态密度,从理论上解释了在Ti-Al系合金中固溶合金元素Cr、V后其性能得到改善的原因。计算结果表明,随着合金元素Cr(0~25at%)、V(0~25at%)含量的增加,合金的结合能绝对值逐渐增大,结构稳定性逐渐增强;切变模量G和杨氏模量E都逐渐增大,但提高的幅度逐渐减小。原因主要是固溶的Cr使合金中Cr 3d、Al 3p和Ti 3d电子相互杂化,V使合金中V 3d、Ti 3d和Al 3p电子相互杂化,合金的结合能力增强。

    Abstract:

    The electronic structures of Ti-Al alloys with Cr, V addition were studied using the first-principle pseudopotential plane-wave method. The total energy, cohesive energy, mechanical property, the charge density and density of states of the alloys were calculated, and the reason that the mechanical property was improved after Cr, V infiltration in Ti-Al alloys in terms of theory was explained. The results show that with the alloying elements Cr (0-25at%), V (0-25at%) content increasing, the absolute value of cohesive energy of the alloys becomes larger and the structure is more stable; the values of shear modulus G and Young’s modulus E increase, but the increment gradually decrease. The main reason is that the addition of Cr in the alloys enhances reciprocal hybridization of Cr 3d, Al 3p and Ti 3d, while V in the alloys enhances reciprocal hybridization of V 3d, Ti 3d and Al 3p, and the alloys’ binding capacity is increased.

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古向阳,韩培德,张彩丽,贺志勇,董明慧,薛金祥,刘燕萍. Cr、V在Ti-Al系合金中合金化效应的理论研究[J].稀有金属材料与工程,2012,41(3):437~441.[Gu Xiangyang, Han Peide, Zhang Caili, He Zhiyong, Dong Minghui, Xue Jinxiang, Liu Yanping. Theoretical Study on the Alloying Effect of Cr, V in Ti-Al Alloys[J]. Rare Metal Materials and Engineering,2012,41(3):437~441.]
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  • 收稿日期:2011-03-28
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