Abstract:The research progress of rhenium and its alloy in the domestic and abroad was reviewed. The properties of rhenium and its alloys were introduced in detail. The application in the high-tech field and manufacturing processes of rhenium and its alloys were also reviewed, at the same time, compared with characterizations of different manufacturing processes. Furthermore, the advantages of electrochemical deposition technology as alternative process of rhenium alloy and structure of rhenium-nickel alloys produced by electrochemical deposition were highlighted.
吴王平,江鹏,华同曙. 难熔金属铼及其合金的研究进展[J]. , 2015, 22(2): 48-55.
WU Wang-ping, Jiang Peng, HUA Tong-shu. Research progress of refractory metal rhenium and its alloy. , 2015, 22(2): 48-55.
J. Kacher, A. M. Minor. Twin boundary interactions with grain boundaries investigated in pure rhenium [J]. Acta Mater., 2014, 81: 1–8.
[7]
J. Andrew, M. S.Sherman, H. Robert, Ph.D. Tuffias, B. Richard and M.S.Kaplan. The properties and applications of rhenium produced by CVD [J]. JOM, 1991, 43(7): 20-23.
[8]
N. Eliaz, E. Gileadi. Induced codeposition of alloys of tungsten, molybdenum and rhenium with transition metals [M], in: C.G. Vayenas, R.E. White, M.E. Gamboa-Aldeco (Eds.), Modern Aspects of Electrochemistry, vol. 42, Springer, New York, 2008, p. 191 (Chapter 4).
A. Naor, N Eliaz, E Gileadi, S.R. Taylor. Properties and applications of Re and its alloys[J]. The AMMTIAC Quarterly, 2010, 5(1), 11-15.
[14]
H.-Y. Chung, M. B. Weinberger, J. B. Levine, A. Kavner, J.-M. Yang, S. H. Tolbert, R. B. Kaner. Synthesis of ultra-incompressible superhard rhenium diboride at ambient pressure[J]. Science, 2007, 316(5823): 436-439.
Y.G. Tong, S.X. Bai, H. Zhang, Y.C. Ye. Rhenium coating prepared on carbon substrate by chemical vapor deposition[J]. Appl. Surf. Sci., 2012, 261: 390–395.
C.G. Michel, W.E. Bambrick, R.H. Ebel, G. Larsen, G.L. Haller. Reducibility of rhenium in Pt-Re/Al2O3 reforming catalysts: a temperature programmed reduction-X-ray absorption near-edge structure study[J]. J. Cataly., 154(2) 1995, 222-229.
[26]
K.G. Azzam, I.V. Babich, K. Seshan, L. Lefferts. Role of Re in Pt–Re/TiO2 catalyst for water gas shift reaction: A mechanistic and kinetic study[J]. Applied Catalysis B: Environmental, 2008, 80(1–2): 129–140.
[27]
T.S. Tang, K.Y. Cheah, F. Mizukami, S. Niwa, M. Toba, Y.M. Choo, Hydrogenation of Oleic Acid to 9-Octadecen-l-ol with Rhenium-Tin Catalyst[J]. Journal of the American Oil Chemists’ Society, 1993, 70(6): 601-605.
[28]
G.Y. McDaniel. Electron stimulated oxidation and rhenium electrical contacts on 6H-SiC[D], Florida: University of Florida, 2002.
[29]
Y.N. Sadana, Z.Z. Wang. Electrodeposition of Alloys. XX: Electrodeposition of gold rhenium alloys from acidic citrate solutions and their X ray structure[J]. Surf. Coat. Technol., 1989, 37(4): 419-434.
[30]
T. Jones, Electrodeposition of the Lesser-Known Precious Metals: Osmium, Iridium, Rhodium, Rhenium, Ruthenium[M]. Revised Edition, Finishing Publications Ltd, 2005.
H. Zhang, U.O. Hafeli. Experimentation and modeling of electrodeposition of rhenium-188 (188Re) on medical 316L stainless steel wires[J]. Plat. Surf. Finish., 2005, 92(3): 40-44.
[34]
B.D. Reed, R. Dickerson. Testing of electroformed deposited iridium/powder metallurgy rhenium rocket[R]. NASA Technical Memorandum, 107172, 1995.
[35]
T. Leonhardt, M. Hamister, J.C. Carlen, J. Biaglow, B. Reed. Near-net shape powder metallurgy rhenium thruster[R]. NASA/TM 2001-210373, AIAA-2000-3132.
[36]
A. Wrona, M. Staszewski, M. Czepelak, M. Woch, M. Kami?ska, M. Osadnik, D. Koacz. Properties of rhenium-based master alloys prepared by powder metallurgy techniques[J]. Archives Mater. Sci. Eng., 2010, 45(2): 95-101.
[37]
N. V. Gelfond, N. B. Morozova, E. S. Filatov, S. A. Gromilov, and I. K. Igumenov. Structure of rhenium coatings obtained by CVD [J]. J. Struct. Chem., 2009, 50(6): 1126-1133.
[38]
J.F. Wang, S.X. Bai, H. Zhang, Y.C. Ye. Effects of preform structures on rhenium coating prepared on C/C composites by chemical vapor deposition[M]. High Temperature Ceramic Matrix Composites 8: Ceramic Transactions. Edited by Litong Zhang and Dongliang Jiang. 2014, 453-459.
[39]
Y.L. Huang, S.X. Bai, H. Zhang, Y.C. Ye. Sealing of cracks in the rhenium coating on C/C composites by alloying with cobalt[J]. Surf. Coat. Technol., DOI: 10.1016/j.surfcoat.2014.10.032.
[40]
L.A. Zhu, S.X. Bai, H. Zhang, Y.C. Ye, W. Gao. Rhenium used as an interlayer between carbon–carbon composites and iridium coating: Adhesion and wettability [J]. Surf. Coat. Technol., 2013, 235: 68–74.
[41]
H.C. King, M. C. Renier, K.E. Ellzey, W.J. Lackey. Chemical vapor infiltration of rhenium[J]. Chem. Vap. Deposition, 2003, 9(2): 59-63.
[42]
K.T. Kim, J.J. Wang, G. Welsch. Chemical vapor deposition (CVD) of rhenium [J]. Mater. Lett., 1991, 12: 43-46.
M. Bai, Z.-H. Liu, L.-J. Zhou, Z.-Y. Liu, C.-F. Zhang. Preparation of ultrafine rhenium powders by CVD hydrogen reduction of volatile rhenium oxides[J]. Transact. Nonfer. Metal Soc. China, 2013, 23(2): 538–542.
[45]
马捷. 化学气相沉积钨铼合金工艺及组织性能研究[D]. 北京: 北京工业大学, 2006
[46]
J. Singh, D. E. Wolfe. Nanostructured component fabrication by electron beam-physical vapor deposition[J]. JMEPEG, 2005, 14: 448-459.
[47]
J. Singh, D. E. Wolfe. Nano-grained Net-Shaped Fabrication of Re Components by EB-PVD[J]. Mater. Manufact. Process., 2003, 18(6): 915–927.
[48]
V. V. Prabhu, I.V. Fuke, S. Cho, J. Singh. Rapid manufacturing of rhenium components using EB‐PVD[J]. Rapid Prototyping Journal, 2005, 11(2): 66 – 73.
[49]
吴水清. 铼及其合金的电镀方法[J]. 电镀与精饰, 1991, 13(4): 22-25.
[50]
L.E. Netherton, M.L. Holt. Electrodeposition of rhenium-nickel alloys[J]. J. Electrochem. Soc., 1951, 98(3): 106-109.
[51]
A. V. Uscategui, E. Mosquera. L. Cifuentesa. Transmission electron microscopy study of electrodeposited rhenium and rhenium oxides[J]. Mater. Lett., 2013, 94: 44 – 46.
[52]
A. Naor-Pomerantza, N. Eliaz, E. Gileadi. Electrodeposition of rhenium–tin nanowires [J]. Electrochim. Acta, 2011, 56: 6361– 6370
[53]
A. Naor, N. Eliaz, E. Gileadi. Electrodeposition of rhenium–nickel alloys from aqueous solutions[J]. Electrochim. Acta, 2009, 54: 6028-6035.
[54]
A. Naor, N. Eliaz, E. Gileadi. Electrodeposition of alloys of rhenium with iron-group metals from aqueous Solutions[J]. Electrochem. Soc. Trans., 2010, 25(29): 137-149.
[55]
A. Naor-Pomeranz, L. Burstein, N. Eliaz, E. Gileadi. Direct experimental support for the catalytic effect of iron-group metals on electrodeposition of rhenium[J]. Electrochem. Solid-State Lett. 2010, 13(12): D91-D93.
[56]
A. Naor, N. Eliaz, E. Gileadi. Electrodeposition of alloys of rhenium with iron-group metals from aqueous solutions [J]. J. Electrochem. Soc., 2010, 157(7): D422- D427.
[57]
O. Berkh, N. Eliaz, E. Gileadi. The initial stages of electrodeposition of Re-Ni alloys [J]. J. Electrochem. Soc., 2014, 161(5): D219 - D226.
[58]
O. Berkh, A. Khatchatouriants,N. Eliaz, E. Gileadi. The influence of weak ionic interactions on electrode reactions during electrodeposition of Re-Ni alloys [J]. J. Electrochem. Soc., 2014, 161(12): D632-D639.
[59]
B. A. Rosen, E. Gileadi, N. Eliaz. Microstructure and composition of pulse plated Re-Ni alloys on a rotating cylinder electrode [J]. J. Electroanal. Chem., 2014, 731: 93-99.
[60]
M. Cohen-Sagiv, N. Eliaz, E. Gileadi. Incorporation of iridium into electrodeposited rhenium–nickel alloys [J]. Electrochim. Acta, 2013, 88: 240-250.
[61]
W.P. Wu, N. Eliaz, E. Glieadi. The effects of pH and temperature on electrodeposition of Re-Ir-Ni alloy from aqueous solutions[J]. J. Electrochem. Soc., 2015, 162(1): D1-D7.
[62]
A. Duhin, A. Inberg, N. Eliaz, E. Gileadi. Electroless plating of rhenium-nickel alloys[J]. Electrochim. Acta, 2011, 56(26): 9637-9643.
[63]
A. Duhin, A. Rozenblat-Raz, L. Burstein, A. Inberg, D. Horvitz, Y. Shacham-Diamand, N. Eliaz, E. Gileadi. Growth study of nanoscale Re–Ni coatings on functionalized SiO2 using electroless plating [J]. Applied Surface Science, 2014, 313: 159–165.