期刊文献+

Ti35合金焊接接头在高温硝酸中的腐蚀性能研究 被引量:11

Research on Corrosion Behavior of Ti35 Alloy Welding Joint in High Temperature Nitric Acid
下载PDF
导出
摘要 以沸腾的核乏燃料后处理模拟料液及空白硝酸溶液为腐蚀液,研究了Ti35合金焊接接头的耐腐蚀性能。在模拟料液中对Ti35合金熔敷金属及焊接热模拟样进行全浸腐蚀实验,间接评价了焊接接头熔区及热影响区的耐腐蚀性能。结果表明:Ti35合金焊接接头在沸腾空白硝酸溶液及模拟料液中均具有良好的均匀腐蚀性能,焊缝熔区及热影响区的腐蚀速率大于焊接接头的腐蚀速率,焊接接头的腐蚀对焊接应力的敏感性不高;在沸腾空白硝酸介质中,硝酸浓度对焊接接头的耐蚀性能有较大的影响,随硝酸浓度的提高,焊接接头的耐蚀性能有所下降;硝酸溶液中氧化性金属阳离子对Ti35合金的焊接接头具有缓蚀作用。 In this paper, the corrosion of Ti35 alloy welding joints was investigated in boiling simulated solution of reprocessing and blank nitric acid. The corrosion resistance was evaluated indirectly by deposited metal and welding thermal simulation sample immersed in simulated solution. The tests show that the welding joints of Ti35 alloy display excellent uniform corrosion behavior in boiling simulated solution of reprocessing and blank nitric acid. The corrosive rates of molten zone and heat - affected zone are higher than that of matrix. The corrosion of welding joints is found to be insensitive to the welding stress. In the different concentration of nitric acid solution, with concentration increased, the corrosive rate of joints is evidently accelerated. The metal ion existed in solution can inhibit corrosion of welding joints of Ti35 alloy.
出处 《钛工业进展》 CAS 2012年第1期22-25,共4页 Titanium Industry Progress
基金 国家"973"计划资助项目(2007CB613807)
关键词 Ti35合金 焊接 腐蚀 乏燃料后处理 Ti35 alloy welding corrosion spent fuel reprocessing
  • 相关文献

参考文献18

  • 1Hydea Roderick, Ishikawaa Muriel, Myhrvoldb Nathan, et al. Nuclear fission power for 21st century needs: enabling technologies for large - scale, low - risk, affordable nuclear electricity[J]. Progress in Nuclear Energy, 2008, 50 (2/ 6) : 82 -91.
  • 2Dey P K, Bansal N K. Spent fuel reprocessing: a vital link in Indian nuclear power program [ J ]. Nuclear Engineering and Design, 2006, 236 (7/8) : 723 - 729.
  • 3Raj Baldev, Mudali U Kamachi. Materials development and corrosion problems in nuclear fuel reprocessing plants [ J ]. Progress in Nuclear Energy, 2006, 48 (4) : 283 - 313.
  • 4Fauvet P, Balbaud F, Robin R, et al. Corrosion mechanisms of austenitic stainless steels in nitric media used in re- processing plants [ J ]. Journal of Nuclear Materials, 2008, 375: 52-64.
  • 5Kiuchi K, Hayakawa H, Takagi Y, et al. New alloy development for fuel reprocessing plant materials used in nitric acid solutions [ C ]//The Fourth International Conference on Nuclear Fuel Reprocessing and Waster Management RECOD' 94. London: British Nuclear Industry Forum, 1995:284 - 286.
  • 6Kapoor K, Kain Vivekanand, Gopalkrishan T, et al. High corrosion resistant Ti - 5% Ta - 1.8% Nb alloy for fuel reprocessing application[ J]. Journal of Nuclear Materials, 2003, 322 : 36 - 44.
  • 7Shankar A Ravi, Dayal P K, Balasubramaiam R, et al. Effect of heat treatment on the corrosion behaviour of Ti - 5Ta - 1.8Nb alloy in boiling concentrated nitric acid [ J ]. Journal of Nuclear Materials, 2008, 372:277 -284.
  • 8Motooka Takafumi, Kiuchi Kiyoshi. Corrosion fatigue of refractory materials in boiling nitric acid [ J ]. Materials Transactions, 2002, 43(5) : 1220 - 1224.
  • 9Souza Karen, Robin Alain. Preparation and characterization of Ti - Ta alloys for application in corrosive media[ J]. Materials Letters, 2003, 57 : 3010 - 3016.
  • 10徐潇潇,崔岚,邱绍宇,李思凡,盛钟琦,邰江.Ti-5%Ta钛合金在乏燃料模拟溶解液中的腐蚀行为[J].核动力工程,2005,26(4):406-409. 被引量:9

二级参考文献1

  • 1Akira Maki. Corrosion Circumstance in the Tokai Reprocessing Plant and Evaluation of the Corrosion Rate[R].サィクㄦ技报. 2002.

共引文献9

同被引文献61

引证文献11

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部