综述了碳/碳复合材料抗氧化铱涂层的制备技术,阐述了该涂层应用存在的问题及解决方法,并对碳/碳复合材料超高温抗氧化铱涂层的发展趋势进行了展望.
参考文献
[1] | Sheehan J E;Buesking K W;Sullivan B J et al.Carbon-Carbon composites[J].Annual Review of Materials Science,1994,24:19-44. |
[2] | 王世驹,安宏艳,陈渝眉,朱金华.碳/碳复合材料氧化行为的研究[J].兵器材料科学与工程,1999(04):36-40. |
[3] | James E Sheehan .Oxidation protection for carbon fiber composites[J].Carbon,1989,27(05):709-715. |
[4] | 黄剑锋,李贺军,熊信柏,曾燮榕,李克智,付业伟,黄敏.炭/炭复合材料高温抗氧化涂层的研究进展[J].新型炭材料,2005(04):373-379. |
[5] | Tuffias R H;Melden G J;Harding J T .High temperature oxidation-resistant thruster materials,phase Ⅱ[R].Aeronautics and Space Administration Lewis Research Center,Cleveland,OH 44135,1991. |
[6] | Campbel I E;Sherwood E M.High Temperature Materials and Technology[M].New York:John Wiley and Sons,Inc,1967 |
[7] | Echigoya J;Mumtaz K;Hayasaka Y;Aoyagi E .Electron microscopic study of sputter-deposited Ir films[J].Journal of Materials Science,2004(20):6215-6219. |
[8] | Tuffias R H;Williams B E.Lightweight,inespensive radiation-cooled advanced composite combustion chambers[A].San Diego,California,USA,1995 |
[9] | Mumtaz K;Echigoy J;Taya M .Preliminary study of iridium coating on carbon/carbon composites[J].Materials Science,1993,28(20):5521-5527. |
[10] | Mumtaz K;Echigoya J;Hirai T .Iridium coatings on carbon-carbon composites produced by two different sputtering methods:a comparative study[J].Journal of Materials Science Letters,1993,12:1411-1412. |
[11] | Lloyd Snell;Avery Nelson;Pal Molian .A novel laser technique for oxidation-resistant coating of carbon-carbon composite[J].Carbon: An International Journal Sponsored by the American Carbon Society,2001(7):991-999. |
[12] | Tuffias R H;Brockmeyer J W;Fortini A J.Engineering issues of iridium/rhenium rocker engines revisited[A].Los Angeles,California,USA,1999 |
[13] | 胡昌义 .CVD Ir/Re复合材料研究[D].中南大学,2002. |
[14] | 杨文彬,张立同,成来飞,华云峰,徐永东.MOCVD法制备多层Ir涂层的显微结构[J].固体火箭技术,2006(01):56-59. |
[15] | Harding J T;Kazaroff J M;Appel M A et al.Iridium-coated rhenium thrusters by CVD[NASA TM-101309][R].,1988-10. |
[16] | Wenbin Yang;Litong Zhang;Yunfeng Hua .Thermal stability of iridium coating prepared by MOCVD[J].International Journal of Refractory Metals & Hard Materials,2009(1):33-36. |
[17] | Microstructure and evolution of iridium coating on the C/C composites ablated by oxyacetylene torch[J].Acta astronautica,2010(5/6):682. |
[18] | 陈照峰;陶杰;徐重 .一种在碳材料抗氧化用铱涂层及其制备方法[P].CN,1904126A,2007-01-31. |
[19] | 朱利安,杨盛良,白书欣,张虹,万红.铱及其合金的加工及应用[J].贵金属,2009(04):58-62. |
[20] | 宁建华.电铸成型的Ir/Re火箭发动机燃烧室[J].火箭推进,2001(06):52-58. |
[21] | Harding W B .Electrodeposition of platinum,iridium,and platinum-iridium alloy coatings from molten salt electrolytes[J].Plating and Surface Finishing,1978,65(02):30. |
[22] | Saltykova N A;Kotovskii S N;Portnyagin O V et al.Effects of current reversal on the structure of iridium deposits obtained by molten-chloride electrolysis[J].Soviet Electrochemistry,1990,26(03):338. |
[23] | Jehn H .High temperature behaviour of platinun group metals in oxidizing atmospheres[J].Journal of the Less-Common Metals,1984,100:321-339. |
[24] | Steven J Schneider.Advanced liquid rcokets[A].Indianapolis,Indiana,1992 |
[25] | Criscione J M;Mercuri R A;Schram E P et al.High temperature protective coating for graphite.ML-TDR-64-173,Part Ⅲ[R].Wright-Patterson AFB,OH:Air Force Materials Laboratory,1965. |
[26] | Brain D Reed.Evaluation of Oxide-Coated Iridium-Rhenium Chambers[A].Los Angeles,California,USA,1993 |
[27] | Pierson H O .Stabilized high temperature oxides by CVD[Final Report (ULT/TR-87-4829),Contract N62269-87-C-0204][R].Warminster,PA:Naval Air Development Center,1987. |
[28] | Tuffias R H;Melden G J;Harding J T et al.High Temperature Oxidation-resistant Thrust Materials[R].Cleveland OH:NASA Contractor Report 187205,1997. |
[29] | N. A. Saltykova;O. V. Portnyagin .Electrodeposition of iridium-ruthenium alloys from chloride melts: the structure of the deposits[J].Электрохимия,2001(9):1076-1083. |
[30] | 闻明;管伟明;胡昌义 等.铱铝高温抗氧化涂层的制备方法[P].CN,101497998A,2009-08-05. |
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