钚材料具有极其复杂的物理化学特性,关于钚材料从微观到宏观等各个角度的科学研究都是对当前科学和技术的挑战.关注钚材料的老化研究,综合分析了引起钚材料老化的3种机制,以及研究采用的方法、手段和取得的成果,为相关研究提供参考.
参考文献
[1] | Terminello L J.Challenges in Plutonium and Actinide Materials Science.www.mrs.org/publications/bulletin,2001. |
[2] | Wick O J.Plutonium Handbook--A Guid to the Technology.Gordon and Breach:Science Publishers,1967,36-68. |
[3] | Kusnezov D,Soudah J.Advanced Simulation and Computing PROGRAM PLAN FY05.A Publication of the Office of Advanced Simulation & Computing.NNSA Defense Programs,September 2004,1-15. |
[4] | Hecker S S,Martz J C.Aging of Plutonium and Its Alloy.Los Alamos Science,2000,26:238. |
[5] | Haschke J M,Allen T H,Morales L A.Surface and Corrosion Chemistry.Los Alamos Science,2000,26:252. |
[6] | Schwartz D,Zocco T.Improved Differential Scanning Calorimeters Enable Scientists to Make More-accurate Studies of Plutonium and Its Alloys.the Actinide Research Quarterly,3rd quarter,2001,1. |
[7] | 王同权.高能质子辐射效应研究.长沙:国防科技大学博士论文,2003. |
[8] | 卡恩 R W,哈森 P,可雷默 E J.核材料,材料科学与技术丛书.北京:科学出版社,1999,160-212. |
[9] | Danneskiold J.Los Alamos Experiment Speeds up Aging of Nuclear Weapons with "Spiked" Plutonium.www.lanl.gov,2003. |
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