Please wait a minute...
Acta Metall Sin  2004, Vol. 40 Issue (6): 643-    DOI:
Research Articles Current Issue | Archive | Adv Search |
Density Measurement of Liquid Indium Using r--Ray Attenuation Method
WANG Lianwen; XIAN Aiping;SHAO Hanru
Shenyang National Laboratory for Materials Science; Institute of Metal Research; The Chinese Academy of Sciences; Shenyang 110016
Cite this article: 

WANG Lianwen; XIAN Aiping; SHAO Hanru. Density Measurement of Liquid Indium Using r--Ray Attenuation Method. Acta Metall Sin, 2004, 40(6): 643-.

Download:  PDF(7287KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  By means of r--ray attenuation method, the density of pure In and its relationship with temperature were measured in both solid and liquid states. The results show that the density data of pure In obtained by this method have a good repeatability within heating run and cooling run each other.
Key words:  liquid indium      density      thermal expansion      
Received:  26 May 2003     
ZTFLH:  TG113.22  

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y2004/V40/I6/643

[1] Iida T, Guthrie R I L. The Physical Properties of Liquid Metals. New York: Clarendon Press, 1988: 47
[2] Bian S M, Ma L M, Wang J T. Acta Metall Sin, 1986;22(2) : B90(边茂恕,马禄铭,王景唐.金属学报,1986;22(2) :B90)
[3] Zhou G Z, Cai W J, Hu J H. J Univ Sci Technol Beijing,1991; 13(4. I): 380(周国治,蔡文娟,胡建虹、北京科技大学学报,1991;13(4. I):380)
[4] Chen X M, Wang Q, Lu K Q. J Phys: Cond Matt, 1999;11: 10335
[5] Han X J, Wang N, Wei B. Philos Mag Lett, 2002; 82(8) :451
[6] Wang W M, Bian X F, Wang H R, Wang Z, Zhang L, Liu Z G. J Mater Res, 2001; 16: 3592
[7] Doge G. Z Naturforschg, 1966; 21a: 266
[8] Dillon I G, Levert F E, Loretan P A, Menon G U, Siddiqi F M, Tarng H J. Nucl Technol, 1973; 12: 307
[9] Basin A S, Kolotov Y L, Stankus S V. High Temp High Press, 1979; 11: 465
[10] Peggs I A. Thermal Expansion 6. New York: Plenum Press, 1978: 83
[11] Drotning W D. High Temp High Press, 1981; 13: 441
[12] Nasch P M, Steinemann S G. Phys Chem Liq, 1995; 29:43
[13] Smith P M, Elmer J W, Gallegos G F. Scr Mater, 1999;40(8) : 937
[14] Fudan University Tsinghua University Peking Universityed. Experimental Technique in Nuclear Physics (2nd ed).Beijing: Nuclear Energy Press, 1985: 81(复旦大学,清华大学,北京大学合编.原子核物理实验方法(第二版).北京:原子能出版社,1985:81)
[15] Lide D R. CRC Handbook of Chemistry and Physics (78th ed). Chemical Rubber Company Press, 1998
[16] Williams D D, Miller R R. J Am Chem Soc, 1950; 72:3821
[17] Schneider A, Heymer G. Z Anorg Allg Chem, 1956; 286:97
[18] McGonigal P J, Cahill J A, Kirshenbaum A D. J Inorg Nucl Chem, 1962; 24: 1012
[19] Berthou P E, Tougas R. Metall Trans, 1970; 1: 2978
[20] Crawley A F. Trans AIME, 1968; 242: 2237
[21] McClelland M A, Sze J S. Surf Sci, 1995; 330(3) : 313
[22] Wang L W, Wang Q, Xian A P, Lu K Q. J Phys Cond Matt, 2003; 15: 777
[1] REN Ping, CHEN Xingpin, WANG Cunyu, YU Feng, CAO Wenquan. Effects of Pre-Strain and Two-Step Aging on Microstructure and Mechanical Properties of Fe-30Mn-11Al-1.2C Austenitic Low-Density Steel[J]. 金属学报, 2022, 58(6): 771-780.
[2] 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.
[3] MA Jiankai, LI Junjie, WANG Zhijun, WANG Yujian, WANG Jincheng. Bonding Zone Microstructure and Mechanical Properties of Forging-Additive Hybrid Manufactured Ti-6Al-4V Alloy[J]. 金属学报, 2021, 57(10): 1246-1257.
[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] Xingpin CHEN,Wenjia LI,Ping REN,Wenquan CAO,Qing LIU. Effects of C Content on Microstructure and Properties ofFe-Mn-Al-C Low-Density Steels[J]. 金属学报, 2019, 55(8): 951-957.
[6] Qingdong XU, Kejian LI, Zhipeng CAI, Yao WU. Effect of Pulsed Magnetic Field on the Microstructure of TC4 Titanium Alloy and Its Mechanism[J]. 金属学报, 2019, 55(4): 489-495.
[7] Yubi GAO, Yutian DING, Jianjun CHEN, Jiayu XU, Yuanjun MA, Dong ZHANG. Evolution of Microstructure and Texture During Cold Deformation of Hot-Extruded GH3625 Alloy[J]. 金属学报, 2019, 55(4): 547-554.
[8] Zixing WANG,Shuo HUANG,Beijiang ZHANG,Lei WANG,Guangpu ZHAO. Study on Freckle of a High-Alloyed GH4065 Nickel Base Wrought Superalloy[J]. 金属学报, 2019, 55(3): 417-426.
[9] Rongyao MA, Lin ZHAO, Changgang WANG, Xin MU, Xin WEI, Junhua DONG, Wei KE. Influence of Hydrostatic Pressure on the Thermodynamics and Kinetics of Metal Corrosion[J]. 金属学报, 2019, 55(2): 281-290.
[10] Ming HE, Xianliang LI, Qingwei WANG, Lianyu WANG, Qiang WANG. Influence of Magnetic Shielding on the Power Loss of Induction Heating Power Supply in the Electro-magnetic Induction Controlled Automated Steel Teeming System[J]. 金属学报, 2019, 55(2): 249-257.
[11] XIONG Jian,WEI Dean,LU Songjiang,KAN Qianhua,KANG Guozheng,ZHANG Xu. A Three-Dimensional Discrete Dislocation Dynamics Simulation on Micropillar Compression of Single Crystal Copper with Dislocation Density Gradient[J]. 金属学报, 2019, 55(11): 1477-1486.
[12] Runzhi QIN, Yanxia DU, Minxu LU, Li OU, Haiming SUN. Study of Interference Parameters Variation Regularity and Corrosion Behavior of X80 Steel in Guangdong Soil Under High Voltage Direct Current Interference[J]. 金属学报, 2018, 54(6): 886-894.
[13] Huiying SHI, Chao YANG, Bailing JIANG, Bei HUANG, Di WANG. Influences of Target Peak Current Density on the Microstructure and Mechanical Properties of TiN Films Deposited by Dual Pulsed Power Magnetron Sputtering[J]. 金属学报, 2018, 54(6): 927-934.
[14] Jin WANG, Liming YU, Yuan HUANG, Huijun LI, Yongchang LIU. Effect of Crystal Orientation and He Density on Crack Propagation Behavior of bcc-Fe[J]. 金属学报, 2018, 54(1): 47-54.
[15] Yao WANG,Chunfu LI,Yuanhua LIN. Electronic Theoretical Study of the Influence of Cr on Corrosion Resistance of Fe-Cr Alloy[J]. 金属学报, 2017, 53(5): 622-630.
No Suggested Reading articles found!