Please wait a minute...
Acta Metall Sin  1998, Vol. 34 Issue (5): 473-482    DOI:
Current Issue | Archive | Adv Search |
STRUCTURAL CHARACTERIZATION OF THE Y_3(Fe, Mo)_(29) INTERMETALLIC COMPOUND
PAN Hongge; DU Honglin; CHEN Changpin; HAN Xiufeng; YANG Fuming (Department of Materials Science and Engineering; Zhejiang University; Hangzhou 310027)(State Key Laboratory for Magnetism; Institute of Physics; The Chinese Academy of Sciences; Beijing 100080)(Institute of Chinese Atomic Energy; Beijing 102413)
Cite this article: 

PAN Hongge; DU Honglin; CHEN Changpin; HAN Xiufeng; YANG Fuming (Department of Materials Science and Engineering; Zhejiang University; Hangzhou 310027)(State Key Laboratory for Magnetism; Institute of Physics; The Chinese Academy of Sciences; Beijing 100080)(Institute of Chinese Atomic Energy; Beijing 102413). STRUCTURAL CHARACTERIZATION OF THE Y_3(Fe, Mo)_(29) INTERMETALLIC COMPOUND. Acta Metall Sin, 1998, 34(5): 473-482.

Download:  PDF(612KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The X-ray diffraction and neutron diffraction patterns of Y3(Fe, Mo)29 compound have been analysed by Rietveld method. The structural relationship of the 3:29 phase with 2:17 and 1:12 phases has been studied by coordinate transformation. The results show that the 3:29 compound belongs to A2/m space group and the 3:29 compound is a kind of mixed structure of 2:17 and 1:12 structures.
Key words:  Y_3(Fe      Mo)_(29)      crystal structure      X-ray diffraction      neutron diffraction     
Received:  18 May 1998     
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/Y1998/V34/I5/473

1 Collocott S J, Day R K; Dunlop J B, Davis R L Camberra, 1992: 7: 137
2 Saito H, Takahashi M, Wakiyama T J Appl Phys. 1988 64: 5965
3 Katter M, Weeker J, Schultz L J Appl Phys, 1991; 70: 3188
4 Cadogan J M, Li H S, Davis R L, Margarian A, Dunlop J B, Gwan P B J Appl Phys, 1994 75: 7120
5 Ivanova G V, Shcherbakova Y V, Belozerov Y V, Yermolenko A S, Teytel Y I Phys Met Metallogr, 1990; 70:63
6 Fuerst C D, Pinkerton; Herbst J F J Magn Magn Mater, 1994; 129: L115
7 Hu Z, Yelon W B Sokid State Commun,1994; 91(3): 223
8 Kalogirou O, Psycharis V Saettas L, Niarchos D J Magn Magn Mater. 1995; 146: 235
9 Margarian A, Dunolp J B, Collocatt S J, Li H S, Cadogan J M, Davis R L to be published
10 Pan H G, Yang G M, Chen C P, Han X F; Tang N; Wang Q D J Magn Magn Mater, 1996: 163: 221
11 Young R A, Makile P E, von Dreele P B J Appl Cryst; 1977: 10: 262
12 梁敬魁.相图与相结构(下册)北京:科学出版社,1993:769 (Liang Jingkui. Phase Diagram and Phase Structre Beijing: Science Press. 1993: 769)
13 Cadogen J M, Li H S, Margarian A, Dunlop J B. Ryan D H, Collocott S J Davis S L J Appl Phus,1994 76:6138
14 Hu B P.Intrinsic Magnetic Properties of the ThMn12 structure Compounds RE(Fe11 Ti) (RE=Rare Earth),PhD Dissertation, Dublin University, 1990
[1] LI Shilei, LI Yang, WANG Youkang, WANG Shengjie, HE Lunhua, SUN Guang'ai, XIAO Tiqiao, WANG Yandong. Multiscale Residual Stress Evaluation of Engineering Materials/Components Based on Neutron and Synchrotron Radiation Technology[J]. 金属学报, 2023, 59(8): 1001-1014.
[2] GAO Yubi, DING Yutian, LI Haifeng, DONG Hongbiao, ZHANG Ruiyao, LI Jun, LUO Quanshun. Effect of Deformation Rate on the Elastic-Plastic Deformation Behavior of GH3625 Alloy[J]. 金属学报, 2022, 58(5): 695-708.
[3] SHI Zengmin, LIANG Jingyu, LI Jian, WANG Maoqiu, FANG Zifan. In Situ Analysis of Plastic Deformation of Lath Martensite During Tensile Process[J]. 金属学报, 2021, 57(5): 595-604.
[4] LI Yizhuang,HUANG Mingxin. A Method to Calculate the Dislocation Density of a TWIP Steel Based on Neutron Diffraction and Synchrotron X-Ray Diffraction[J]. 金属学报, 2020, 56(4): 487-493.
[5] LI Changji,ZOU Minjie,ZHANG Lei,WANG Yuanming,WANG Sucheng. High-Resolution X-Ray Diffraction Analysis of Epitaxial Films[J]. 金属学报, 2020, 56(1): 99-111.
[6] BI Zhongnan,QIN Hailong,DONG Zhiguo,WANG Xiangping,WANG Ming,LIU Yongquan,DU Jinhui,ZHANG Ji. Residual Stress Evolution and Its Mechanism During the Manufacture of Superalloy Disk Forgings[J]. 金属学报, 2019, 55(9): 1160-1174.
[7] Hailong QIN,Ruiyao ZHANG,Zhongnan BI,Lee Tung Lik,Hongbiao DONG,Jinhui DU,Ji ZHANG. Study on the Evolution of Residual Stress During Ageing Treatment in a GH4169 Alloy Disk[J]. 金属学报, 2019, 55(8): 997-1007.
[8] Ying LI,Chao SUN,Jun GONG. Performance Research of Magnesium Base Lanthanum Hexaaluminate Prepared by Co-Precipitation[J]. 金属学报, 2019, 55(5): 657-663.
[9] YAO Meiyi, LIN Yuchen, HOU Keke, LIANG Xue, HU Pengfei, ZHANG Jinlong, ZHOU Bangxin. Effect of Sn on Initial Corrosion Behavior of Zirconium Alloy in 280 LiOH Aqueous Solution[J]. 金属学报, 2019, 55(12): 1551-1560.
[10] Zukun YANG, Changsheng ZHANG, Beibei PANG, Yanyan HONG, Fangjie MO, Zhao LIU, Guang'ai SUN. Effect of Initial Microstructures on the Macroscopic Mechanical Properties of Polycrystalline Beryllium[J]. 金属学报, 2018, 54(8): 1150-1156.
[11] Weifeng HE, Xiang LI, Xiangfan NIE, Yinghong LI, Sihai LUO. Study on Stability of Residual Stress Induced by Laser Shock Processing in Titanium Alloy Thin-Components[J]. 金属学报, 2018, 54(3): 411-418.
[12] Meijuan LI,Xiaolong LIU,Yuntao LIU,Mingyi ZHENG,Chen WANG,Dongfeng CHEN. TEXTURE EVOLUTION AND MECHANICAL PROPER-TIES OF Mg/Al MULTILAYERED COMPOSITE SHEETSPROCESSED BY ACCUMULATIVE ROLL BONDING[J]. 金属学报, 2016, 52(4): 463-472.
[13] Yutuo ZHANG,Cong LI,Pei WANG,Dianzhong LI. IN SITU SYNCHROTRON X-RAY DIFFRACTION INVESTIGATION ON TENSILE PROPERTIES OF 9Ni STEEL[J]. 金属学报, 2016, 52(4): 403-409.
[14] Zhen WANG,Bangxin ZHOU,Boyang WANG,Jiao HUANG,Meiyi YAO,Jinlong ZHANG. SECOND PHASE PARTICLES AND THEIR CORROSION BEHAVIOR OF Zr-0.72Sn-0.32Fe-0.15Cr-0.97Nb ALLOY[J]. 金属学报, 2016, 52(1): 78-84.
[15] Pingguang XU,Jiang YIN,Shuyan ZHANG. TENSILE DEFORMATION BEHAVIOR OF HYDROGEN CHARGED ULTRAHIGH STRENGTH STEEL STUDIED BY IN SITU NEUTRON DIFFRACTION[J]. 金属学报, 2015, 51(11): 1297-1305.
No Suggested Reading articles found!