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同轴等温钠热管的研制 被引量:1

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摘要 为了改善高温固定点炉的等温特性以提高铝、银凝固定点的复现水平,中国计量科学研究院近年来开展了高温钠热管固定点炉的研究。而建立钠热管的制作系统并独立自主地研制钠热管是该研究的关键。在吸收国内外同行积累的宝贵经验的基础上,设计了一套新的高温钠热管制作系统,并利用该系统成功研制了适用于铝凝固点复现的同轴等温钠热管。本文将详细介绍高温钠热管的制作系统、研制步骤及制作工艺。
出处 《计量技术》 2009年第5期7-10,共4页 Measurement Technique
基金 基金项目:科技部科技平台项目“能源和热工计量基标准体系优化与完善(2005DKA10705)”课题
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参考文献14

  • 1G. P. Peterson, An introduction to heat pipes, 1994
  • 2S.W.纪著,蒋章焰译.热管理论与使用.科学出版社,1981.
  • 3G. F. Strouse, NIST implementation and realization of ITS - 90 over the range 83K to 1235K: Reproducibility, stability, and uncertainties. Temperature: Its Measurement and Control in Science and Industry ( Vol. 6), American Institute of Physics, 1992, 169 - 174
  • 4Gregory E Strouse and George T. Furnkawa, Thermal Characteristics of the NIST Fixed - Point Ceils, Furnace, and Maintenance Baths over the Temperature Range from 83. 8058K to 1234.93K. Proceedings of the 7^th International Symposium on Temperature and Thermal Measurements in Industry and Science (TEMPMEKO' 99 ) . Delft, NMi-VSL, 1999, 153-158
  • 5P. Marcarino, P. P. M. Steur, R. Dematteis, Realization at IMGC of the ITS -90 fixed Points from the argon triple point upwards, Temperature: Its Measurement and Control in Science and Industry ( Vol. 7), American Institute of Physics, 2003, 65 - 70
  • 6Cheng Yinhang, Liu Yaping, Li Yongqian, Jin Xiuying, Song Hengxue, A medium temperature radiation calibration facility using a new design of heat pipe body as a standard source, Measurement Science and Technology, 2001(12), 491 -494
  • 7P. Marcarino, A. Merlone, G. Coggiola, A. Tiziani. Gas - controlled heat pipe for thermometer calibration between 450℃ and 950℃. Proceedings of the 7^th International Symposium on Temperature and Thermal Measurements in Industry and Science ( TEMPMEKO' 99), Delft, NMi - VSL, 1999, 298 - 303
  • 8A. Medone, P. Marcarino, R. Dematteis, C. Bassani. New gas - controlled heat pipes. Proceedings of 9^th International Symposium on Temperature and Thermal Measurements in Industry and Science, Cavtat - Dubrovnic, Craotia, 2004, Laboratory for Process Measurement, Faculty of Mechanical Engineering and Naval Architecture, 2005, 421 -425
  • 9E. Devin, M. Megharfi, R. Morice, Characterization of a sodium heat pipe insert for calibration by comparison in the range from 600℃ to 960℃. Proceedings of the 7^th International Symposium on Temperature and Thermal Measurements in Industry and Science (TEMPMEKO'99), Delft, NMi - VSL, 1999, 268 -273
  • 10中国科学院北京力学研究所热管组.钠热管性能的实验研究[J].力学学报,1976,(1).

二级参考文献6

  • 1H. Preston -Thomas, The International Temperature Scale of 1990 (ITS90). Metrologia 27, 3 - 10( 1990), . p. 107
  • 2Amir. Faghri, Heat pipe science and technology, (U. S. A ) Taylor&Francis, 1995, pp. 3 -9
  • 3G. F. Strouse, NIST implementation and realization of ITS - 90 over the range 83K to 1235K: Reproducibility, stability, and uncertainties. TMCSI[ C], AIP(U. S. A), 1992, 6, 169 -174
  • 4(B) W. Mangum, G. T. Furukawa, (C)W. Meyer, M. L. Reil- ly, G. F. Strouse, W. L Tew, Realization of the ITS - 90 at the National Institute of Standard and Technology. Working documents submitted to the 19^th meeting of the Comite Consuhaif de Thermometrie( CCT), 18 - 20 sep1996, CCT/96 - 11
  • 5Li Xumo, Su Jingrong, Wang Yulan, Zhao Mingjian, Xiao Wuzi, Realization of the international temperature scale of 1990 between 0℃ and 961.78℃ at NIM. TMCSI[C], AIP(U. S. A), 1992, 6, 193 - 198
  • 6Gregory F. Strouse and George T. Furukawa, Thermal Characteristics of the NIST Fixed - Point Cells, Furnace, and Maintenance Baths over the Temperature Range from 83. 8058K to 1234.93K.Proceedings of the 7^th International Symposium on Temperature and Thermal Measurements in Industry and Science (TEMPMEKO' 99). Vol. 1, pp153-158

共引文献1

同被引文献14

  • 1闫小克,吕卓凡,马重芳,李杰,段宇宁,Xiao-ke Zhuo-fan Chong-fang Yu-ning.高精度钠热管固定点炉及其等温特性[J].计量学报,2009(6). 被引量:7
  • 2Grover G M, Cotter T P, Erikson G F. Structure of very high thermal conductance [J]. J. Apply Phys. , 1964, 35 (6): 1990-1991.
  • 3Deverall J E, Kemme J E, Florschuetz L W. Sonic limitations and startup problems of heat pipes [R]. New Mexico: Los Alamos Scientific Laboratory, 1970.
  • 4Faghri A, Buchko M, Cao Y. A study of high temperature heat pipes with multiple heat sources and sinks ( I ): Experimental methodology and frozen startup profiles [J]. Heat Transfer, 1991, 113:1003-1009.
  • 5Zhang Hong, Zhuang Jun. Research, development and industrial application of heat pipe technology in China [J]. Applied Thermal Engineering, 2003, 23 (9):1067-1083.
  • 6Brost O, Munzel W D. Heat in Europe//Proceeding 10th pipe applications development Annual Intersociety Energy Conversion Engineering Conference [ C ]. New York Institute of Electrical and Electronics Engineers, 1975: 18-22.
  • 7Cotter T P. Theory of heat pipes [R]. USAEC Report, LA3246, 1965:50.
  • 8Sockol P M, Forman R. Re examination of heat pipe startup//Proc. 9th IEEE Thermionic Conversion[C].Miami Beach, 1970:571-573.
  • 9Beam J E. Transient heat pipe analysis//AIAA 20th Thermophysics Conference [ C]. Williamsburg, VA, 1985:936-946.
  • 10Cao Y, Faghri A. Closed-form analytical solutions of high- temperature heat pipe startup and frozen startup limitation [J]. J. Heat Transfer, 1992 (4): 1028-1037.

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