欢迎登录材料期刊网

材料期刊网

高级检索

主要介绍了Ti合金在核燃料后处理设备中的应用研究进展.开发Ti合金替代超低碳不锈钢作核燃料后处理设备用材料已成为后处理设备用材料的发展方向.目前Ti-5Ta钛合金已在日本东海村后处理厂进行了中试运行,它的综合性能评价较好,在后处理环境中应用也最具前景.印度对其开发的Ti-5%Ta-1.8%Nb钛合金进行了腐蚀性能研究,结果表明它比普通低碳不锈钢和硝酸级不锈钢具有更好的耐蚀性.

参考文献

[1] Kiuchi K .Corrosion problems and countermeasures to corrosion of reprocessing materials used in boiling nitric acid[R].Jaeri-Research,1998.
[2] Kiuchi K;Hayakawa H;Takagi Y.New Alloy Development for Fuel Reprocessing Plant Materials Used in Nitric Acid solutions[A].London(UK),1995:284.
[3] Doi M;Kiuchi K;Yano M.Improvement effect on corrosion under heat flux in nitric acid solution of anti-IGC stainless steel and high Cr-W-Si ni base RW alloy[J].Jaeri-Research,2001:20.
[4] Kiuchi K;Hayashi M;Hayakawa H.Fundamental Study of Controlling Factors on Reliability of Fuel Reprocessing Plant Materials Used in Nitric Acid solutions[A].London(UK),1995:267.
[5] 黄嘉琥;应道宴.钛制化工设备[M].北京:化学工业出版社,2002
[6] Kiuchi K;Hayashi M;Hayakawa H.Fundamental Study of Controlling Factors on Reliability of Fuel Reprocessing Plant Materials Used in Nitric Acid solutions[A].London(UK),1995:267.
[7] Souza K;Robin A .Preparation and characterization of Ti-Ta alloys for application in corrosive media[J].Materials Letters,2003,57:3010.
[8] Craig B D;Anderson D S.ASM Handbook of corrosion data[M].USA:ASM Publication Materials Park,1995:543.
[9] Kapoor K.;Kain V.;Gopalkrishna T.;Sanyal T.;De PK. .High corrosion resistant Ti-5%Ta-1.8%Nb alloy for fuel reprocessing application[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2003(1):36-44.
[10] Takafumi Motooka;Kiyoshi Kiuchi .Corrosion fatigue of refractory materials in boiling nitric acid[J].Materials transactions,2002(5):1220-1224.
[11] T. Motooka;K. Kiuchi .Difference in Corrosion Fatigue Behavior Between Ti-5Ta Alloy and Zirconium in Boiling Nitric Acid[J].Corrosion: The Journal of Science and Engineering,2002(8):703-709.
[12] Mudali U;Dayal R;Gnanamoorthy J .Corrosion studies on materials of construction for spent nuclear fuel reprocessing plant equipment[J].Journal of Nuclear Materials,1993,203:73.
[13] Tsuji N;Ishikawa K;Kishimoto Y.The development of the acid recovery evaporator with new materials[A].Paris(France),1987:1203.
[14] Maki A.Corrosion Circumstance in the Tokai Reprocessing Plant and Evaluation of the corrosion Rate[J].サイクル機構技报,2002(14):23.
[15] Karthikeyan T;Dasgupta A;Saroja S;Vijayalakshmi M;Raghunathan VS .Studies on weldability of Ti-5Ta-1.8Nb alloy[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2004(3):299-301.
[16] T. Karthlkeyan;Amp Dasgupta;S. Saroja .Weldability and Microstructural Variations in Weldments of Ti-5Ta-1.8Nb Alloy[J].Journal of Materials Engineering and Performance,2005(2):241-248.
[17] Yamamoto T;Tsukui S;Okamoto S et al.Gamma-ray irradiation effect on corrosion rates of stainless steel Ti and Ti-5Ta in boiling 9N nitric acid[J].Journal of Nuclear Materials,1996,228:162.
[18] Takeuchi M.The fifth international conference on nuclear fuel reprocessing and waster management[A].Nice(France):[s.n.],1998:845.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%