[1] |
Baquero-Ruiz M, Coda S, Dolizy F, et al. Non-evaporable getter pump operations in the TCV tokamak[J]. Fusion Engineering and Design,2021,165:112267 doi: 10.1016/j.fusengdes.2021.112267
|
[2] |
单睿, 齐通通, 黎秉哲, 等. 非蒸散型薄膜吸气剂的研究现状及应用进展[J]. 功能材料,2018,49(5):5049−5055(in Chinese)
Shan R, Qi T T, Li B Z, et al. Research status and application progress of non-evaporable film getter[J]. Journal of Functional Materials,2018,49(5):5049−5055
|
[3] |
Kondrashev S, Beebe E, Coe B, et al. Development of highly efficient NEG pumping system for EBIS[J]. Review of Scientific Instruments,2019,90(11):113307 doi: 10.1063/1.5127751
|
[4] |
Maccallini E, Siviero F, Bonucci A, et al. Non evaporable getter (NEG) technology: a powerful tool for UHV-XHV systems[J]. AIP Conference Proceedings,2012,1451(1):24−27
|
[5] |
Ferrario B. Chemical pumping in vacuum technology[J]. Vacuum,1996,47(4):363−370 doi: 10.1016/0042-207X(95)00252-9
|
[6] |
Zhang Y L, Li J S, Zhang T B, et al. Hydrogenation thermokinetics and activation behavior of non-stoichiometric Zr-based Laves alloys with enhanced hydrogen storage capacity[J]. Journal of Alloys and Compounds,2017,694:300−308 doi: 10.1016/j.jallcom.2016.10.021
|
[7] |
Moghadam A H, Dashtizad V, Kaflou A, et al. Effect of rare earth elements on sorption characteristics of nanostructured Zr–Co sintered porous getters[J]. Vacuum,2015,111:9−14 doi: 10.1016/j.vacuum.2014.09.008
|
[8] |
Cekić B, Ćirić K, Iordoc M, et al. Kinetics of hydrogen absorption in Zr-based alloys[J]. Journal of Alloys and Compounds,2013,559:162−166 doi: 10.1016/j.jallcom.2013.01.104
|
[9] |
彭述明, 赵鹏骥, 徐志磊, 等. ZrV2金属间化合物的制备与物相分析[J]. 原子能科学技术,2002,36(4-5):436−438,461(in Chinese)
Peng S M, Zhao P J, Xu Z L, et al. Preparation and phase analysis of ZrV2[J]. Atomic Energy Science and Technology,2002,36(4-5):436−438,461
|
[10] |
Hariyadi A, Suwarno S, Denys R V, et al. Modeling of the hydrogen sorption kinetics in an AB2 laves type metal hydride alloy[J]. Journal of Alloys and Compounds,2022,893:162135 doi: 10.1016/j.jallcom.2021.162135
|
[11] |
Tengfei L, Yan Z, Xiuying W, et al. Sorption properties of titanium getter with addition of Zr-V-Fe[C]//Proceedings of the 10(th) China-Russia Symposium on Advanced Materials and Technologies. Ed. Editorial Office of Rare Metals. Editorial Office of RareMetals, 2009, 4: 417−420
|
[12] |
崔航, 崔建东, 徐瑶华, 等. Zr xV yFe z低温激活吸气剂的CO吸气动力学研究[J]. 真空科学与技术学报,2016,36(3):278−283(in Chinese)
Cui H, Cui J D, Xu Y H, et al. Synthesis and CO absorption behavior of Zr xV yFe z getter alloys[J]. Chinese Journal of Vacuum Science and Technology,2016,36(3):278−283
|
[13] |
中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会. GB/T 25497-2010 吸气剂气体吸放性能测试方法[S]. 北京: 中国标准出版社, 2011(in Chinese)
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China. GB/T 25497-2010 Test methods for gas absorbency and release of getters[S]. Beijing: Standards Press of China, 2011
|
[14] |
ASTM F 798-97 Standard practice for determining gettering rate, sorption capacity, and gas content of nonevaporable getters in the molecular flow region[S]. West Conshohocken: American Society for Testing and Materials, 2008.
|
[15] |
胡志方, 尹延西, 江洪林, 等. ZrV xFe(2- x)合金的制备及其显微组织[J]. 特种铸造及有色合金,2012,32(8):765−767(in Chinese)
Hu Z F, Yin Y X, Jiang H L, et al. Preparation and microstructure of the ZrV xFe(2- x) alloys[J]. Special Casting & Nonferrous Alloys,2012,32(8):765−767
|
[16] |
熊玉华, 顾为, 尉秀英, 等. ZrVFe吸气剂激活过程及其机理[J]. 中国有色金属学报,2008,18(7):1358−1363(in Chinese) doi: 10.3321/j.issn:1004-0609.2008.07.031
Xiong Y H, Gu W, Wei X Y, et al. Activation process and mechanism of ZrVFe getter[J]. The Chinese Journal of Nonferrous Metals,2008,18(7):1358−1363 doi: 10.3321/j.issn:1004-0609.2008.07.031
|
[17] |
冯天佑, 陈联, 朱建炳, 等. 锆钒铁吸气剂的研究现状及进展[J]. 真空与低温,2017,23(1):7−12(in Chinese) doi: 10.3969/j.issn.1006-7086.2017.01.002
Feng T Y, Chen L, Zhu J B, et al. Research status and development of ZrVFe getter[J]. Vacuum & Cryogenics,2017,23(1):7−12 doi: 10.3969/j.issn.1006-7086.2017.01.002
|
[18] |
张烁. 钛/锆基非蒸散型吸气剂选择性吸气性能研究[D]. 北京: 北京有色金属研究总院, 2021(in Chinese)
Zhang S. Gas selective absorption performance of Ti/Zr-based non evaporable getter[D]. Beijing: Beijing Nonferrous Metals Research Institute, 2021
|
[19] |
Welch K. Chapter 4 - Nonevaporable getters[M]//Welch K. Capture pumping technology (2nd edition). Amsterdam: Elsevier, 2001: 229−253
|