1840卷钛工业进展TitaniumIndustryProgress参考文献References[1]李金英,石磊,胡彦涛.我国乏燃料后处理大厂建设的几点思考[J].核化学与放射化学,2011,33(4):204-210.[2]杨帆,巨建辉,毛小南,等.高Ta钛合金在沸腾硝酸中的腐蚀行为[J].钛工业进展,2014,31(6):17-21.[3]李想,张宏韬.乏燃料后处理产业的市场前景及发展路径[J].南方能源建设,2017,4(3):35-38.[4]顾忠茂.核能与先进核燃料循环技术发展动向[J].现代电力,2006,23(5):89-94.[5]LiH,LiuC,XuJ,etal.Gamma-rayirradiationbehaviorofahexagonalTi–6Taalloyappliedinspentnuclearfuelreprocessing[J].JournalofMaterialsScience,2022,57(43):20521-20530.[6]LiuC,LiH,XuJ,etal.Gamma-rayirradiationinduceddislocationloopsinhexagonalzirconium[J].JournalofNuclearScienceandTechnology,2023,60(2):93-97.[7]徐建平,苏航标,郭荻子,等.核乏燃料后处理设备用钛合金腐蚀性能研究进展[J].稀有金属与硬质合金,2019,47(3):36-37.[8]杨帆,吴金平,郭荻子,等.Ti-Ta合金在硝酸中电化学腐蚀研究[J].钛工业进展,2018,35(2):22-25.[9]陈延鑫,何辉,唐洪彬,等.后处理工艺Purex流程计算机模拟研究现状及展望[J].核化学与放射化学,2012,34(4):193-200.[10]于婷,叶国安,何辉,等.PUREX流程钚还原反萃过程的计算机模拟研究进展[J].核化学与放射化学,2017,39(4):257-267.[11]叶国安,张虎.核燃料后处理技术发展及其放射化学问题[J].化学进展,2011,23(7):1289-1294.[12]RajB,MudaliUK.Materialsdevelopmentandcorrosionproblemsinnuclearfuelreprocessingplants[J].ProgressinNuclearEnergy,2006,48(4):283-313.[13]KamachiMudaliU,RavishankarA,NingshenS,etal.Materialsdevelopmentandcorrosionissuesinthebackendoffuelcycle[J].EnergyProcedia,2011,7(1):468-473.[14]宋品玲,吴金平,杨英丽.Ti-6Ta合金等离子焊焊接接头的组织与性能[J].钛工业进展,2013,30(6):30-33.[15]NingshenS,MudaliUK,MukherjeeP,etal.InfluenceofoxygenionirradiationonthecorrosionaspectsofTi-5%Ta-2%Nballoyandoxidecoatedtitanium[J].CorrosionScience,2008,50(8):2124-2134.[16]TonpeS,SaibabaN,JayarajRN,etal.ProcessdevelopmentforfabricationofZircaloy-4dissolverassemblyforreprocessingofspentnuclearfuel[J].EnergyProcedia,2011,7:459-467.[17]齐博毅,刘承泽,杨庆浩,等.用于乏核燃料后处理的商用Zr702在沸腾硝酸溶液中的应力腐...