Please wait a minute...
Acta Metall Sin  1996, Vol. 32 Issue (7): 779-784    DOI:
Current Issue | Archive | Adv Search |
PHASE COMPOSITION STUDY FOR ZIRCONIUM-BASED PSEUDOBINARY ZrM_2(M=Ni,Mn,Cr,V)
L Guanglie; LIU Shunhong;CHEN Linshen; WU Hongli (Hangzhuo University;Hangzhuo 310028); LEI Yongquan; YU Jinyun; YANG Xiaoguang; WANG Qidong(Zhejiang Universiyy; Hangzhuo 310027)(Manuscript received 1995-11-27)
Cite this article: 

L Guanglie; LIU Shunhong;CHEN Linshen; WU Hongli (Hangzhuo University;Hangzhuo 310028); LEI Yongquan; YU Jinyun; YANG Xiaoguang; WANG Qidong(Zhejiang Universiyy; Hangzhuo 310027)(Manuscript received 1995-11-27). PHASE COMPOSITION STUDY FOR ZIRCONIUM-BASED PSEUDOBINARY ZrM_2(M=Ni,Mn,Cr,V). Acta Metall Sin, 1996, 32(7): 779-784.

Download:  PDF(417KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  Phase composition of pseudobinary ZrM_2 alloy (M= Ni_(1.3), Mn_(0.6), Cr_(0.25), V_(0.05)) has been revealed by means of multiphase Rietveld analysis. It is consisted of C14, C15 Laves phase, ZrN, Zr_7M_(10) and Zr_9M_(11) intermediate phase. The abundance order of phases is following. ZrM2(C15)>Zr_7M_(10)> ZrM_2(C14)>Zr_9M_(11)>ZrN. Nonstoichiometry defects existing in A sites of C15 Laves phase were also discovered. The crystal types of Zr_7M_(10) and Zr_9M_(11) are the same with that of Zr_7Ni_(10) and Zr_9Ni_(11) respectively.Correspondent: L Guanglie, Institute of Material Structure, Hangzhuo University, Hangzhuo 310028
Key words:  Laves phase hydrogen storage alloy      phase composition      multiphase Rietveld analysis     
Received:  18 July 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/I7/779

1SeriH,MoriwakiY,ShintaniA,IwakiT,EuropeanPatent,0450590A1,19912OvshihskySR,FetcenkoMA,RossJ.Science,1993;176:2603HuotJ,AkibaE,OguraT,IshidoY.DenkiKagaku,1993;12:14244HuotJ,AkibaE,OguraT,IshidoY.JAlloyscompounds,1995,218:1015RietveldHM.ActaCrystallogr,1967;22:1516YoungRA,WilesDB.JApplCrystallogr,1982;15:4307KirkpatrickME,LarsenWL.TransAmSocMet.1961;54:5808HillRJ,HowardCJ.JApplCrystallogr,1987;20:4679MoriwakiY,GamoT,SeriH,IwakiT.JLESS-CommonMet.1991;172-174:1211 10 山村康治,森肋良夫等,日本第32回电池讨论会要旨集,1991:167 11SawaH,WakaoS.MaterTrans,JIM,1990;316:48712GlimoisJL,BecleC,DeveleyG,MoreauJM.JLess-commonMet;1979;64:8713KirkpatrickME,SmithJF,LarsenWL,ActaCryst.1962;15:89414于进云.浙江大学博士论文,1994 15FujitaniS,YonezuI,SaitoT,FurukawaN.JLess-CommonMet,1991;172-174:220
[1] LI Qian, LIU Kai, ZHAO Tianliang. Rust Formation Behavior and Mechanism of Q235 Carbon Steel in 5%NaCl Salt Spray Under Elastic Tensile Stress[J]. 金属学报, 2023, 59(6): 829-840.
[2] ZHANG Jinyong, ZHAO Congcong, WU Yijin, CHEN Changjiu, CHEN Zheng, SHEN Baolong. Structural Characteristic and Crystallization Behavior of the (Fe0.33Co0.33Ni0.33)84 -x Cr8Mn8B x High-Entropy-Amorphous Alloy Ribbons[J]. 金属学报, 2022, 58(2): 215-224.
[3] YANG Rui, MA Yingjie, LEI Jiafeng, HU Qingmiao, HUANG Sensen. Toughening High Strength Titanium Alloys Through Fine Tuning Phase Composition and Refining Microstructure[J]. 金属学报, 2021, 57(11): 1455-1470.
[4] YAN Guangzong; PENG Zhifang. An Optimization Method For Estimating Phase Compositions And Amounts In Two—Phase Nickel Base Superalloys[J]. 金属学报, 2005, 41(4): 363-368 .
[5] WANG Jijie;ZONG Yaping;QIN Gaowu; HAO Shiming (School of Materials and Metallurgy; Northeastern University; Shenyang 110006). PHASE COMPOSITION AND TRANSFORMATION STRESS OF PRIMARY LAMELLAR STRUCTURE IN γ-TiAl-BASED DUPLEX ALLOY DURING ISOTHERMAL DECOMPOSITION[J]. 金属学报, 1998, 34(5): 538-544.
[6] LIU Dacheng;WANG Fuhui;CAO Chunan;LOU Hanyi Institute of Corrosion and Protection of Metals; Academia Sinica; Shenyang WANG Fuhui; Laboratory of Electrochemistry;Institute of Corrosion and Protection of Metals; Academia Sinica; 110015 Shenyang. INFLUENCE OF PHASE COMPOSITION ON PITTING CORROSION RESISTANCE OF SPUTTERED LAYER OF 1Cr18Ni9Ti STAINLESS STEEL[J]. 金属学报, 1989, 25(5): 85-88.
No Suggested Reading articles found!