[1] |
刘志盈. 高真空多层低温绝热管道抽真空工艺试验研究[D]. 上海: 上海交通大学, 2013(in chinese)
Liu Z Y. Research on vacuum-pumping technology of high-vacuum multilayer cryogenic insulation pipe[D]. Shanghai: Shanghai Jiao Tong University, 2013
|
[2] |
毛红威, 陈叔平, 杨佳卉, 等. 高空真多层绝热低温管道中波纹管简化有限元模拟方法[J]. 低温工程,2016(5):64−70(in chinese)
Mao HW, Chen SP, Yang JH, et al. A simplified finite element simulation method of bellows used in HV-MLI cryogenic pipes[J]. Cryogenic Engineering,2016(5):64−70
|
[3] |
吴同文, 杨磊, 刘大群, 等. 低温下真空多层绝热材料导热系数的测试[J]. 深冷技术,1996(04):30−32(in chinese)
Wu TW, Yang L, Liu DQ, et al. Testing of thermal conductivity of vacuum multilayer insulation materials at low temperatures[J]. Cryogenic Technology,1996(04):30−32
|
[4] |
魏蔚, 汪荣顺. 高真空多层绝热被的性能及其量热器的试验研究[J]. 低温与超导,2007,35(1):21−24(in chinese)
Wei W, Wang RS. Experimental study on performance of multilayer insulation blankets using calorimetric method[J]. Cryogenics and Superconductivity,2007,35(1):21−24
|
[5] |
朱浩唯, 黄永华, 李骏, 等. 真空多层绝热性能测试装置及初步实验验证[J]. 低温工程, 2012(3): 47-51(in chinese)
Zhu HW, Huang YH, Li J, et al. An experimental setup for performance testing of multilayer insulation and preliminary inspection[J]. Cryogenic Engineering, 2012(3): 64-70
|
[6] |
Polinski J, Chorowski M, Choudhury A, et al. Synthesis of the multilayer cryogenic insulation modelling and measurements[J]. AIP Conference Proceedings. American Institute of Physics,2008,985(1):1367−1374
|
[7] |
程进杰, 朱建炳, 李正清. 低温容器高真空多层绝热性能分析[J]. 低温与超导,2013,41(2):11−14(in chinese)
Cheng JJ, Zhu JB, Li ZQ. Analysis on the performance of high vacuum multilayer insulation for cryogenic storage vessel[J]. Cryogenics and Superconductivity,2013,41(2):11−14
|
[8] |
沈铣. 高真空多层绝热材料绝热性能测试系统研究[D]. 浙江: 浙江大学, 2013(in chinese)
Shen X. Study on a insulation performance testing system for high vacuum MLI[D]. Zhejiang: Zhejiang University, 2013
|
[9] |
孟扬, 李旺奎. 真空计的发展新趋势[J]. 真空科学与技术,1999,19(2):116(in chinese)
Meng Y, Li WK. New development trend of vacuum meters[J]. Journal of Vacuum Science & Technology,1999,19(2):116
|
[10] |
肖慧荣, 刘建魁, 邓加南. 真空灭弧室真空度在线检测系统[J]. 真空科学与技术学报,2017,37(1):106−112(in chinese)
Xiao HR, Liu JK, Deng JN. Novel monitor for on-line measurement of pressure in vacuum interrupter[J]. Journal of Vacuum Science & Technology,2017,37(1):106−112
|
[11] |
陈瑞祥, 孙振川, 吕乾乾, 等. 真空管道结构模拟试验系统研制与试验验证[J]. 真空科学与技术学报,2020,40(9):818−826(in chinese)
Chen RX, Sun ZC, Lv QQ, et al. Characterization of structural mechanics of vacuum-tube with lab-built simulator: an experimental study[J]. Journal of Vacuum Science & Technology,2020,40(9):818−826
|
[12] |
李得天, 习振华, 王永军, 等. 真空测试计量技术及其航天应用[J]. 真空科学与技术学报,2021,41(9):795−816(in chinese)
Li DT, Xi ZH, Wang YJ, et al. Vacuum metrology technology and its space application[J]. Journal of Vacuum Science & Technology,2021,41(9):795−816
|
[13] |
唐莹, 张鹏. 基于FLUENT计算的LNG真空管道泄漏安全分析[J]. 真空科学与技术学报,2021,41(4):363−368(in chinese)
Tang Y, Zhang P. Safety analysis of LNG vacuum pipeline leakage based on FLUENT calculation[J]. Journal of Vacuum Science & Technology,2021,41(4):363−368
|
[14] |
曾群锋, 于飞. 真空摩擦磨损试验机的真空系统设计[J]. 真空科学与技术学报,2013,33(7):627−631(in chinese) doi: 10.3969/j.issn.1672-7126.2013.07.01
Zeng QF, Yu F. Design of vacuum system for vacuum tribometer[J]. Journal of Vacuum Science & Technology,2013,33(7):627−631 doi: 10.3969/j.issn.1672-7126.2013.07.01
|
[15] |
曾群锋, 董光能, 于飞, 等. Si3N4球/DLC膜摩擦副在真空环境下的摩擦学行为研究[J]. 真空科学与技术学报,2014,34(11):1184−1191(in chinese)
Zeng QF, Dong GN, Yu F. Tribological property in vacuum of high speed steel modified with diamond-like-carbon coatings[J]. Journal of Vacuum Science & Technology,2014,34(11):1184−1191
|
[16] |
Zeng QF, Erdemir A, Erylimaz O. Ultralow friction of ZrO2 ball sliding against DLC films under various environments[J]. Applied Sciences,2017,7(9):938 doi: 10.3390/app7090938
|
[17] |
邓笔财. 复合低温传输管线的真空多层绝热机理及传热特性研究[D]. 中国科学院大学, 2019(in chinese)
Deng BC. Research on vacuum multilayer insulation mechanism and heat transfer characteristics of multiple cryogenic transfer line[D]. University of Chinese Academy of Sciences, 2019
|
[18] |
曹虎银, 姜浩, 王强, 等. 基于温度场原理的真空管道真空度测试系统平台设计与实现[J]. 真空科学与技术学报,2022,42(10):726−730(in chinese)
Cao HY, Jiang H, Wang Q, et al. Implementation and design of vacuum test platform of the vacuum pipeline based on the principle of temperature field[J]. Journal of Vacuum Science & Technology,2022,42(10):726−730
|
[19] |
杨明. LNG装置中低温管道设计[J]. 城市建设理论研究,2014(36):4771−4772(in chinese)
Yang M. Cryogenic piping design in LNG plants[J]. Theoretical Research in Urban Construction,2014(36):4771−4772
|
[20] |
何燚, 陈传宝. 真空多层绝热管道夹层真空度变化研究[C]. 第十届全国低温工程大会暨中国航天低温专业信息网2011年度学术交流会论文集. 2011: 389-392(in chinese)
He Y, Chen CB. Study on the change of vacuum degree in the interlayer of vacuum multilayer insulated pipes[C]. The 10th National Cryogenic Engineering Conference and 2011 Annual Academic Exchange Meeting of China Aerospace Cryogenic Professional Information Network. 2011: 389-392
|
[21] |
达道安. 真空设计手册[M]. 北京: 国防工业出版社, 1991(in chinese)
Da DA. Vacuum design manual[M]. Beijing: National Defense Industry Press, 1991
|
[22] |
徐烈, 方荣生, 马庆芳. 绝热技术[M]. 北京: 国防工业出版社, 1990(in chinese)
Xu L, Fang RS, Ma QF. Adiabatic Technology[M]. Beijing: National Defense Industry Press, 1990
|
[23] |
潘俊兴. 低温容器的绝热性能指标及其估算[J]. 低温工程,1997(2):43−46(in chinese)
Pan J X. Insulation performance indexes for cryogenic container and their estimation[J]. Cryogenic Engineering,1997(2):43−46
|