Please wait a minute...
材料研究学报  2002, Vol. 16 Issue (1): 67-73    
  论文 本期目录 | 过刊浏览 |
双涂层和梯度涂层改善SiCf/Al界面性能的微观机制
朱祖铭; 郭延风; 石南林; 朱桂秋; 冯纪伟
中国科学院金属研究所材料疲劳与断裂国家重点实验室
引用本文:

朱祖铭; 郭延风; 石南林; 朱桂秋; 冯纪伟 . 双涂层和梯度涂层改善SiCf/Al界面性能的微观机制[J]. 材料研究学报, 2002, 16(1): 67-73.

全文: PDF(872 KB)  
摘要: 研究了双涂层(RD)和梯度涂层(RG)处理改善SiCf/Al界面和复合材料性能的微观机制,发现RD试样中纤维外涂层氮化硼(BN)阻档了Al向界面内层C的扩散,从而阻止Al、C脆性相的生成,同样RG试样中C、Si梯度分布阻碍Al、C脆性相的形成,故这二种涂层处理均较单C涂层较好地改善了界面和复合材料性能。
关键词 SiCf/Al复合材料纤维涂层处理界面性能     
Key words
收稿日期: 1900-01-01     
1 J.Friedel, F.Denoyer, Les quasicristaux de AlLiCu comme alliages de Hume-Rothery,C.R.Acad, Sci.Paris,305, 171(1987)
2 J.Friedel, Do metallic quasicrystals and associated Frank and Kasper phases follow the Hume-Rothery rules,Helvetica.Acta., 61, 538(1988)
3 C.Dong, A.Perrot, J.M.Dubois, E.Belin, Constant e/a line and Hume-Rothery phases in Al-Cu-Fe and Al-Cu-Fe-Cr quasicrystalline systems, Mater Sci. Forum, 150/151, 403(1994)
4 C.Dong, The concept of the approximants of quasicrystals. Scripta Materialia, 33, 239(1995)
5 QIANG Jianbing(羌建兵), WANG Yingmin(王英敏), CHEN Weirong(陈伟荣), DONG Chuang(董闯), Valence electron concentration features of Al-based ternary quasicrystalline phase diagrams, Chinese Journal of Materials Research (材料研究学报), 16 (5) , 500(2002)
6 A.P.Tsai, A.Inoue, T.Masumoto, New decagonal Al-Ni-Fe and Al-Ni-Co alloys prepared by liquid quenching, Mater.Tans.JIM., 30, 150(1989)
7 R.A.Dunlap, Mossbauer effect studies of Hume-Rothery stablization mechanisms in decagonal Al-Fe-Ni quasicrystals, Phil.Mag., B67, 69(1993)
8 U.Lemmerz, B.Grushko, C.Freiburg, M.Jansen, Study of decagonal quasicrystalline phase formation in the Al-Ni-Fe alloy system, Phil.Mag.Lett., 69, 141(1994)
9 K.N.Ishihara, A.Yamamoto, Penrose patterns and related structure I: superstructure and generalized Penrose patterns, Acta. crystallogr., A44, 508(1988)
10 P.Villars, L.D.Calvert, Pearson's Handbook of Crystallographic Data for Intermetallic Phase (AEM, Metals Park, OH, 1985) p.1062
11 M.Ellner, T.R hrer, Zur struktur ader tternaren phase FeNiAl_5, Z.Metallkd., 81, 847(1990)
12 C.Dong, The Al_3Ni_2 structure as approximant of quasicrystals, J.Phys. I France, 5, 625(1995)
13 C.Pohla, P.L.Ryder, Crystalline and quasicrystalline phases in rapidly solidified Al-Ni alloys, Acta Mater.,45, 2155(1997)
14 B.Grushro, D.Holland-Moritz, High-Ni decagonal phase, Scripta Materialia, 35, 1141(1996)
15 W.H.Taylor Electron configurations in some transition metal alloys, Act.Met., 2, 684(1954)
16 K.K.Feng, C.Y.Yang, Y.Q.Zhou, J.G.Zhao, W.S.Zhan, B.G.Shen, Icosahedrally related deagonal quasicrystal in rapidly-cooled Al-14at.%Fe alloy,Phys.Rev.Lett., 56, 2060(1986)
17 M.Tanaka, K.Tsuda, M.Terauchi, A.Fujiwara, A.P.Tsai, A.Inoue, T.Masumoto., Electron diffraction and electron microscopy study on decagonal quasicrystal on Al-Ni-Fe alloys. J. Non-cryst.Solids, 153, 98(1993)
18 K.Hiraga, K.Yubuta, K.T.Park, High-resolution electron microscopy of Al-Ni-Fe decagonal quasicrystal,J.Mater.Res., 11, 1702(1996)
19 X.Z.Li, K.H.Kuo, Decagonal quasicrystals with different periodicities along the tenfold axis in rapidly solidified Al-Ni alloys, Phil.Mag.Lett., 58, 167(1988)
20 M.Saito, M.Tanaka, A.P.Tsai, A.Inoue, T.Masumoto, Space group determination of decagonal quasicrystals of an Al70Ni15Fe15 alloy using convergent-beam electron diffraction, Jap.J.appl.Phys., 31, L109(1992)
21 A.Yamamoto, K.N.Ishihara, Penrose patterns and related structure Ⅱ: decagonal quasicrystals, Acta Crystallogr., A44, 707(1988)
22 S.Idziak, P.A.Heiney,P.A.Bancel, Structure and disorder in the Al-Pd decagonal phase, Mater.Sci.Forum,22~24, 353(1987)
23 A.P.Tsai, A.Inoue, T.Masumoto, Chemical effects on periodicity and structure of decagonal phases in Al-Ni-and Al-Co-based alloys, Phil.Mag.Lett., 71, 161(1995)
[1] 贾彩霞,王乾,任荣,孙福宁. Technora纤维表面等离子体处理对其复合材料界面性能的影响[J]. 材料研究学报, 2019, 33(6): 461-466.
[2] 汪波, 黄赤, 黄志雄, 张景洁. 不同偶联剂对空心玻璃微球/酚醛复合泡沫塑料界面性能的影响[J]. 材料研究学报, 2016, 30(3): 209-219.
[3] 朱祖铭; 郭延风; 石南林; 朱桂秋; 马通达 . SiCf/Al复合材料的界面性能及机制[J]. 材料研究学报, 2002, 16(1): 62-66.
[4] 董雁瑾; 杨海升; 白以龙 . 玻璃纤维增强复合材料的I型层间断裂韧性[J]. 材料研究学报, 1999, 13(2): 147-152.
[5] 孙文训;张志谦;黄玉东. 炭纤维表面处理对CF/PI复合材料界面性能的影响(英文)[J]. 材料研究学报, 1998, 12(2): 163-166.