利用XRD,SEM和EDX对石墨表面钛金属化界面的物相、微观组织及成分进行了分析.结果表明,金属化石墨微观组织呈层状结构,依次为内层(石墨)、过渡层、致密层及外层(Ti),其中过渡层厚约为720 μm,致密层厚约为40 um.XRD及EDX分析证实了致密层物相为碳化钛,SEM分析证实了致密层与过渡层及Ti层结合牢固.但还发现在Ti层与致密层界面处存在短微裂纹,在致密层与过渡层界面处未有发现,原因主要是材料间的热膨胀系数差异产生热应力所致.并且还对石墨表面金属化机理进行了探讨.研究表明,其机理是通过金属Ti与石墨发生界面反应生成碳化钛来实现.
参考文献
[1] | Ueda Y;Shiota K;Kitamura Y et al.[J].Fusion Engineering and Design,1998,41:55. |
[2] | Appendino P;Casalegno V;Ferraris M et al.[J].Fusion Engineering and Design,2003,66~68:225. |
[3] | 王艳艳,李树杰,闫联生.采用钛基活性钎料高温钎焊高强石墨[J].稀有金属材料与工程,2005(06):970-973. |
[4] | Chaumat G;Le Gallo a;Le Marois G et al.[J].Journal of Nuclear Materials,1996,233~237:932. |
[5] | Appendino P;Ferraris M;Casalegno V;Salvo M;Merola M;Grattarola M .Direct joining of CFC to copper[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2004(0):1563-1566. |
[6] | Akiba M;Suzuki S .[J].Fusion Engineering and Design,1998,39~40:2,19. |
[7] | Barabash V.;Cardella A.;Mazul I.;Odegard BC.;Plochl L. Tivey R.;Vieider G.;Akiba M. .Armor and heat sink materials joining technologies development for ITER plasma facing components[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2000(Pt.B):1248-1252. |
[8] | Qi Hua Fan;A. Fernandes;J. Gracio .Diamond coating on steel with a titanium interlayer[J].Diamond and Related Materials,1998(2/5):603-606. |
[9] | Yongqing Fu;Hejun Du;Chang Q. Sun .Interfacial structure, residual stress and adhesion of diamond coatings deposited on titanium[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2003(1):107-114. |
[10] | Gabouzea N;Ait-Hamouda K;Ouendadji S et al.[J].Superlattices and Microstructures,2004,36:87. |
[11] | 张光晋,郭全贵,刘占军,刘朗.掺钛石墨导电性及其微观结构的研究[J].新型炭材料,2000(04):35-38. |
[12] | 高巧音.[J].金属学报,1983(06):250. |
[13] | 于力;刘技文;赵杰 et al.[J].金属学报,1996,32(12):1270. |
[14] | Arvieu C;Manaudb J P;Quenisset J M .[J].Journal of Alloys and Compounds,2004,368:116. |
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