Please wait a minute...
Acta Metall Sin  1996, Vol. 32 Issue (8): 862-866    DOI:
Current Issue | Archive | Adv Search |
CRYSTALLIZATION OF AMORPHOUS ALLOY Fe_(78)B_(13)Si_9 INDUCED BY SHOCK WAVE
LIU Zuoquan; ZHAO Heyun; LU Yusong; LI Dexiu; LI Hin; ZHANG Shubo (Yunnan Univereity; Kunming 650091)(Manuscript received 1995-11-13; in revised form 1996-04-04)
Cite this article: 

LIU Zuoquan; ZHAO Heyun; LU Yusong; LI Dexiu; LI Hin; ZHANG Shubo (Yunnan Univereity; Kunming 650091)(Manuscript received 1995-11-13; in revised form 1996-04-04). CRYSTALLIZATION OF AMORPHOUS ALLOY Fe_(78)B_(13)Si_9 INDUCED BY SHOCK WAVE. Acta Metall Sin, 1996, 32(8): 862-866.

Download:  PDF(274KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The effect of shock wave on the structure of amorphous alloy Fe78B13Si9 has been studied by means of XRD and DTA. It has been found that under the effect of some strong shock wave, this amorphous alloy has been transformed into a crystailine phase with nanometer sized grains. Corresponaent:(LIU Zuoquan, professor, Department of Physics, Yunnan University , Kunming 650091)
Key words:  shock wave      non-crystalline alloy      nanocrystalline material      Fe-B-Si alloy     
Received:  18 August 1996     
Service
E-mail this article
Add to citation manager
E-mail Alert
RSS
Articles by authors

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y1996/V32/I8/862

1ChaoECT.Science.1967:156:1922BancroftD,PetersonEL,MinshallFS.JApplPhys,1956;27:2913ZukasEG.MetEngQ,1966;6:164MahajanS.PhysStatusSolid,1970;2a:1865LeslieWC.In:RohdeRW,ButcherBM,HollandJR,KarnesCHeds.,MetallurgicalEffectsatHighStrainRates,NewYork:Plenum1973:5716MurrLE.In:MeyerMA,MuirLEeds.,ShockWavesandHikhStrainRatePhenomenainMetals,NewYork:Plenum,1981:6077MurrLE.In:BlaznskiTZed.,MaterialsatHighStrainRates,London:AppliedScience,1987:18StandhammerKP.In:ChiemCY,KunzeHD,MeyerLWeds.,IMPACT1987,Oberursel,WestGermany:DuetscheGesellkundefurMetallkunde,1988:839DonnevalR,PerraudJ,RemiotC.In:SawaokaABed.,ShockWavesinMaterialScience,Heidelberg,Germany:Springer-Verlag,1993:99710NesterenkoVF.In:MeyerMA,MurrLEeds.,ShockWavesandHighStrainRatePhenomenainMetals,Chap75,NewYork:Plenum,1981:80911KippME,GradyDE,WiseJL.In:MeyerMA,MurrLEeds.,ShockWavesandHighStrainRatePhenomenainMetals,Chap103,NewYork:Plenum1981:108312DreminAN,BreusovON.In:SawaokaABed.,ShockWavesinMaterialScience.Heidelberg,Germany:Springer-
[1] NI Song, LIAO Xiaozhou, ZHU Yuntian. EFFECT OF SEVERE PLASTIC DEFORMATION ON THE STRUCTURE AND MECHANICAL PROPERTIES OF BULK NANOCRYSTALLINE METALS[J]. 金属学报, 2014, 50(2): 156-168.
[2] LIU Li, LI Ying, WANG Fuhui. ELECTROCHEMICAL CORROSION BEHAVIOR OF NANOCRYSTALLIZED MATERIALS: GROWTH OF PASSIVE FILM AND LOCAL PITTING CORROSION[J]. 金属学报, 2014, 50(2): 212-218.
[3] FENG Aixin NIE Guifeng XUE Wei CAO Yupeng XU Xiaoxiang LI Bin SHI Fen . EXPERIMENTAL RESEARCH ON LASER SHOCK WAVE LOADING MECHANISM OF 2024 ALUMINUM ALLOY SHEET[J]. 金属学报, 2012, 48(2): 205-210.
[4] Xiaoyan SONG. CELLULAR AUTOMATON SIMULATION STUDY ON NANOGRAIN GROWTH BASED ON THERMODYNAMIC FUNCTIONS OF NANOCRYSTALLINE[J]. 金属学报, 2008, 44(4): 495-500 .
[5] SUI Manling(Department of Materials Science and Engineering; Northeastern University; Shenyang 110006)Coerespondent: SUI Manling; Fax:(024)3890488; Tel: (024)3893000-7740; E-mail: misui mail.neu.edu.cn. AN INVESTIGATUIB ON THE RECOVERY BEHMIORS OF THE LATTICE DISTORTIONS IN AN Ni_3P/Ni NANOPHASE MATERIAL[J]. 金属学报, 1998, 34(6): 650-654.
[6] LI Bolin;ZHU Min; LI Long; LUO Kanchang;LI Zuxin (South China University of Technology; Guangzhou 510641)(Manuscript received 1996-03-19; in revised form 1996-07-15). HARDENNING AND SOFTENNING EFFECTS OF Fe-Cu NANOCRYSTALLINE SUPERSATURATED SOLID SOLUTION FORMED BY MECHANICAL ALLOYING[J]. 金属学报, 1997, 33(4): 420-426.
[7] LU Ke; ZHOU Fei (State Key Laboratory for RSA; Institute of Metal Research;Chinese Academy of Sciences; Shenyang 110015). RECENT RESEARCH PROGRESS ON NANOCRYSTALLINE MATERIALS[J]. 金属学报, 1997, 33(1): 99-106.
[8] CHEN Da(Shanghai Jiaotong University; Shanghai;200030). A DIFFUSION MODEL IN NANOCRYSTALLINE MATERIALS[J]. 金属学报, 1995, 31(8): 340-345.
[9] PING Dehai; LI Douxing; YE Hengqiang(Laboratory of Atomic Imaging of Solids;Institute of Metal Research; Chinese Academy of Sciences; Shenyang 110015). WU Xijun(Zhejiang University; Hangzhou 310014) (Manuscript received 94-06-30). ^MICROSTRUCTURE OF NANOCRYSTALLINE MATERIALS[J]. 金属学报, 1995, 31(2): 79-84.
[10] LU Ke; LIU Xuedong;ZHANG Haoyue; HU Zhuangqi(State Key Laboratory forRSA; Institute of Metal Research; Chinese Academy of Sciences; Shenyang 110015)(Manuscript received 94-05-10). LATTICE EXPANSION IN NANOCRYSTALLINE PURE Ni[J]. 金属学报, 1995, 31(2): 74-78.
[11] ZHANG Haoyue; LU ke; HU Zhuangqi (State Key Laboratory for RSA; Institute of Metal Research; Chinese Academy of Sciences; Shenyang 110015). MICROSTRUCTURAL FEATURE OF NANOCRYSTALLINE Se[J]. 金属学报, 1995, 31(15): 123-128.
[12] CHE Hiaozhou; HU Gengxiang(Shanghai Jiaotong University); CAO Hingguo(Luoyang Institute of Technology); DAI Lizhi(Central Iron and Steel Research Institute; Ministry of Metallurgical Industry; Beijing). ANNEALING EMBRITTLEMENT OF AMORPHOUS Fe-B-Si ALLOYS[J]. 金属学报, 1994, 30(24): 532-536.
[13] CHEN Liangshan; ZHAO Tiemin ;SI Zhongyao (Institute of Metal Research;Chinese Academy of Sciences; Shenyang)(Manuscript received 18 November;1993; in revised form 21 January;1994). EFFECT OF REFLECTED TENSION SHOCK WAVE ON MICROSTRUCTURE AND FATIGUE PROPERTY OF 16Mn STEEL WELD[J]. 金属学报, 1994, 30(23): 519-523.
[14] SUI Manling (Northeastern University;Internattonal Centre for Materials Physics.Chinese Academy of Sciences; Shenyang);LU Ke (National Laboratoryfor RSA Insti tute of Metal Research; Chinese Academy of Sciences;Shenyang). MICROSTRUCTURES OF CRYSTALLITES IN NANOCRYSTALLINE Ni-P ALLOYS[J]. 金属学报, 1994, 30(21): 413-419.
[15] ZHAO Tiemin;CHEN Liangshan;SI Zhongyao(Institute of Metal Research;Chinese Academy of Scicnces; Shenyang);TAN Shengyu;CUI Guangyuan (ShenyangInstitute of Artillery). EFFECT OF EXPLOSION SHOCK WAVE INTENSITY ON DISLOCATION STRUCTURE IN FERRITE OF STEEL 16Mn WELD[J]. 金属学报, 1994, 30(15): 130-135.
No Suggested Reading articles found!