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采用基于密度泛函理论的第一性原理赝势平面波方法,研究了Mg-Zn-Cu合金中金属间化合物在极端条件下(高温和高压)的结构稳定性和弹性性能.结果表明,金属间化合物Mg4Zn8、Mg8 Cu16、CuZn、Cu07Zn2和Mg8 Zn8Cu8在0℃和0 Pa下力学稳定;Mg4Zn8、Mg8Cu16、CuZn和Cu07Zn2为延性相,Mg8Zn8Cu8为脆性相;在这5种金属间化合物中CuZn塑性相对较好,Mg8Zn8Cu8塑性相对较差.

参考文献

[1] Pollock T M .Weight loss with magnesium alloys[J].Science,2010,328(5981):986-987.,2010.
[2] 李高林,文九巴,贺俊光,马景灵,杨永顺,李君峰.稀土元素Nd对AZ80镁合金组织及耐蚀性能的影响[J].材料热处理学报,2013(12):53-58.
[3] 赵秀明,章晓波,方信贤,王章忠,薛亚军.挤压速度对NZ30K镁合金组织与力学性能的影响[J].材料热处理学报,2013(11):145-149.
[4] 李加强,杨媛,刘山梁子,邢博,李元东.流变压铸AM60镁合金在固溶处理过程中的组织演变[J].金属热处理,2013(02):56-61.
[5] 徐春杰,代盼,屠涛,余玲,张忠明,王锦程.热处理对Mg-5Sn-1Si合金组织及硬度的影响[J].材料热处理学报,2013(10):83-89.
[6] 张永康,于水生,姚红兵,王飞,任爱国,裴旭.强脉冲激光在AZ31B镁合金中诱导冲击波的实验研究[J].物理学报,2010(08):5602-5605.
[7] 冯凯,黄晓锋,张亚楠,马颖,郝远.热处理工艺对ZC63镁合金组织及性能的影响[J].材料热处理学报,2012(06):51-57.
[8] 李萧,刘江文,罗承萍.铸造ZC62镁合金的时效行为[J].金属学报,2006(07):733-738.
[9] 王鹏飞,黄晓锋,冯凯,张少辉,李向平.Mg-6Zn-xCu铸造合金的显微组织及力学性能研究[J].中国铸造装备与技术,2012(01):10-13.
[10] Kresse G,Hafner J .Ab initio molecular dynamics for liquid metals[J].Physical Review B,1993,47(1):558-561.,1993.
[11] Schimmel H G,Huot J,Chapon L C,et al .Hydrogen cycling of niobium and vanadium catalyzed nanostructured magnesium[J].Journal of America Chemistry Society,2005,127(41):14348-14354.,2005.
[12] Kittel C.Introduction to Solid State Physics[M].California:Wiley,2004.,2004.
[13] Lynch R W,Drickamer H G .The effect of pressure on the resistance and lattice parameters of cadmium and zinc[J].Journal of Physics and Chemistry of Solids,1965,26(1):63-68.,1965.
[14] Sub I K,Ohta H,Waseda Y .High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction[J].Journal of Materials Science,1988,23(2):757-760.,1988.
[15] Komura Y,Tokunaga K .Structural studies of stacking variants in Mg-base Friauf-Laves phases[J].Acta Crystallographica Section B:Structural Crystallography and Crystal Chemistry,1980,36(7):1548-1554.,1980.
[16] Lenz J,Schubert K .Some vacancy and stacking variants of the beta brass structural family[J].Zeitschrift für Metallkunde,1971,62(11):810-816.,1971.
[17] S】o)ichi S,Yūichiro M,and Sukeji K .S】o)ichi S,Yūichiro M,and Sukeji K.Lattice softening and martensitic transformation in Cu-Ni-Zn β phase alloys[J].Journal of the Physical Society of Japan,1976,41(1):79-84.,1976.
[18] Ohba T,Kitano Y,Komura Y .The charge-density study of the Laves phases,MgZn2 and MgCu2[J].Acta Crystallographica Section C:Crystal Structure Communications,1984,40
[19] Miroslav E,Bruno P .Neutronenbeugungsuntemuchungen an ternaren laves-phasen vom MgCu2-Typ[J].J of Solid State Chemistry,1979,30
[20] Nye J F.Physical Properties of Crystals[M].New York:Oxford University Press,1985.,1985.
[21] Wu Z,Zhao E,Xiang H,et al .Crystal structures and elastic properties of superhard IrN2 and IrN3 from first principles[J].Physical Review B,2007,76(5):054115-054129.,2007.
[22] 周惦武,徐少华,张福全,彭平,刘金水.ZA62镁合金中AB_2型金属间化合物的结构稳定性与弹性性能的第一原理计算[J].金属学报,2010(01):97-103.
[23] Shannette G W,Smith J F .Single crystalline elastic constants of MgZn2[J].Scripta Metallurgica,1969,3(1):33-35.,1969.
[24] Nadgornyi E .Dislocation dynamics and mechanical properties of crystals[J].Progress in Materials Science,1988,31
[25] Davis L C,Whitten W B,Danielson G C .Elastic constants and calculated lattice vibration frequencies of Mg2Sn[J].Journal of Physics and Chemistry of Solids,1967,28(3):439-447.,1967.
[26] Fine M E,Brown L D,Marcus H L .Elastic constants versus melting temperature in metals[J].Scripta Metallurgica,1984,18(9):951-956.,1984.
[27] Blanco M A,Francisco E,Luana V .GIBBS:isothermal-isobaric thermodynamics of solids from energy curves using a quasi-harmonic Debye model[J].Computer Physics Communications,2004,158(1):57-72.,2004.
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