采用原子分辨率成像和第一性原理计算,研究S析出相颗粒在高强Al-Cu-Mg合金晶粒内部的生长行为.结果表明,S相的形核和生长具有很强的各向异性特征和受温度影响的特征,同时伴随低维相转变.事实上,在较高的时效温度下(高于180℃),存在两种特征的GP区,它们决定S相晶体的生长机制.一种是S相本身的前驱体相,另一种是Guinier-Preston-Bagaryatsky (GPB)区的结构单元或其前驱体相.在较高温度下,GPB区的结构单元会在S相周围形成,并阻碍S相沿宽度方向的生长,导致S相长成柱状晶体;而在低温下,S相的生长不受GPB区的干扰,形成板条状形貌.
参考文献
[1] | Blanca M. Rosales;Mariano Iannuzzi.Aluminium AA2024 T351 aeronautical alloy Part 1. Microbial influenced corrosion analysis[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,20081/2(1/2):15-25. |
[2] | S.B. Wang;J.H. Chen;M.J. Yin.Double-atomic-wall-based dynamic precipitates of the early-stage S-phase in AlCuMg alloys[J].Acta materialia,201219(19):6573-6580. |
[3] | Z.R. Liu;J.H. Chen;S.B. Wang.The structure and the properties of S-phase in AlCuMg alloys[J].Acta materialia,201119(19):7396-7405. |
[4] | S. P. RINGER;K. HONO;I. J. POLMEAR.NUCLEATION OF PRECIPITATES IN AGED Al-Cu-Mg-(Ag) ALLOYS WITH HIGH Cu:Mg RATIOS[J].Acta materialia,19965(5):1883-1898. |
[5] | S.P. Ringer;B.T. Sofyan;K.S. Prasad.Precipitation reactions in Al-4.0Cu-0.3Mg (wt. percent) alloy[J].Acta materialia,20089(9):2147-2160. |
[6] | G. Sha;R.K.W. Marceau;X. Gao.Nanostructure of aluminium alloy 2024: Segregation, clustering and precipitation processes[J].Acta materialia,20114(4):1659-1670. |
[7] | L. Kovarik;S.A. Court;H.L. Fraser.GPB zones and composite GPB/GPBII zones in Al-Cu-Mg alloys[J].Acta materialia,200817(17):4804-4815. |
[8] | L. Kovarik;M.J. Mills.Structural relationship between one-dimensional crystals of Guinier-Preston-Bagaryatsky zones in Al-Cu-Mg alloys[J].Scripta materialia,201111(11):999-1002. |
[9] | P. Ratchev.Precipitation hardening of an Al-4.2 wt% Mg-0.6 wt% Cu alloy[J].Acta materialia,199810(10):3523-3533. |
[10] | K.D. Ralston;N. Birbilis;M. Weyland;C.R. Hutchinson.The effect of precipitate size on the yield strength-pitting corrosion correlation in Al–Cu–Mg alloys[J].Acta materialia,201018(18):5941-5948. |
[11] | A. Charai;T. Walther.COEXISTENCE OF CLUSTERS, GPB ZONES, S"-, S'- AND S-PHASES IN AN AL0.9 percent Cu-1.4 percent Mg ALLOY[J].Acta materialia,200010(10):2751-2764. |
[12] | HAN-CHENG SHIH;NEW-JIN HO;J.C. HUANG.Precipitation Behaviors in Al-Cu-Mg and 2024 Aluminum Alloys[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,19969(9):2479-2494. |
[13] | V. RADMILOVIC;R. KILAAS;U. DAHMEN.STRUCTURE AND MORPHOLOGY OF S-PHASE PRECIPITATES IN ALUMINUM[J].Acta materialia,199915/16(15/16):3987-3997. |
[14] | Kovarik L;Miller MK;Court SA;Mills MJ.Origin of the modified orientation relationship for S(S '')-phase in Al-Mg-Cu alloys[J].Acta materialia,20067(7):1731-1740. |
[15] | S.C. Wang;M.J. Starink.Two types of S phase precipitates in Al-Cu-Mg alloys[J].Acta materialia,20073(3):933-941. |
[16] | S. C. Wang;M. J. Starink.Precipitates and intermetallic phases in precipitation hardening Al-Cu-Mg-(Li) based alloys[J].International Materials Reviews,20054(4):193-215. |
[17] | G.B. Winkelman;K. Raviprasad;B.C. Muddle.Orientation relationships and lattice matching for the S phase in Al-Cu-Mg alloys[J].Acta materialia,20079(9):3213-3228. |
[18] | Z.Q. Feng;Y.Q. Yang;B. Huang.Variant selection and the strengthening effect of S precipitates at dislocations in Al-Cu-Mg alloy[J].Acta materialia,20116(6):2412-2422. |
[19] | A. K. Shukla;W. A. Baeslack III.Orientation relationships and morphology of S phase in friction stir welded Al-Cu-Mg alloy[J].Journal of Materials Science,20092(2):676-679. |
[20] | M.J. Styles;C.R. Hutchinson;Y. Chen.The coexistence of two S (Al_2CuMg) phases in Al-Cu-Mg alloys[J].Acta materialia,201220(20):6940-6951. |
[21] | J. H. Chen;H. W. Zandbergen;D. Van Dyck.Atomic imaging in aberration-corrected high-resolution transmission electron microscopy[J].Ultramicroscopy,20042/4(2/4):81-97. |
[22] | P.D. Nellist;S.J. Pennycook.Incoherent imaging using dynamically scattered coherent electrons[J].Ultramicroscopy,19991/4(1/4):111-124. |
[23] | G. Kresse;J. Furthmuller.Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set[J].Computational Materials Science,19961(1):15-50. |
[24] | Kresse G.;Furthmuller J..EFFICIENT ITERATIVE SCHEMES FOR AB INITIO TOTAL-ENERGY CALCULATIONS USING A PLANE-WAVE BASIS SET[J].Physical Review.B.Condensed Matter,199616(16):11169-11186. |
[25] | M.A. van Huis;J.H. Chen;H.W. Zandbergen.Phase stability and structural relations of nanometer-sized, matrix-embedded precipitate phases in Al-Mg-Si alloys in the late stages of evolution[J].Acta materialia,200611(11):2945-2955. |
[26] | Y. Wang;Z. -K. Liu;L. -Q. Chen.Thermodynamic properties of Al, Ni, NiAl, and Ni_3Al from first-principles calculations[J].Acta materialia,20049(9):2665-2671. |
[27] | Shang, S.L.;Wang, J.;Wang, Y.;Du, Y.;Liu, Z.K..Phonon and thermodynamic properties of Al-Mn compounds: A first-principles study[J].Computational Materials Science,20117(7):2096-2103. |
[28] | Baroni S.;Dal Corso A.;Giannozzi P.;de Gironcoli S..Phonons and related crystal properties from density-functional perturbation theory [Review][J].Reviews of Modern Physics,20012(2):515-562. |
[29] | Ahmad FALAHATI;Jun WU;Peter LANG;Mohammad Reza AHMADI;Erwin POVODEN-KARADENIZ;Ernst KOZESCHNIK.利用差示扫描量热法评价可热处理强化铝合金的析出模拟参数[J].中国有色金属学报(英文版),2014(07):2157-2167. |
[30] | B GHEBOULI;M A GHEBOULI;M FATMI;L LOUAIL;T CHIHI;A BOUHEMADOU.M2SiC(MAX)相(M=Ti,V,Cr,Zr,Nb,Mo,Hf,Ta,W)结构、电子特性、弹性和热性能的第一性原理计算[J].中国有色金属学报(英文版),2015(3):915-925. |
[31] | 王新洪;张敏;阮立群;邹增大.多组元碳化物TixV1-xC弹性性能与稳定性的第一性原理研究[J].中国有色金属学报(英文版),2011(6):1373-1377. |
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