期刊文献+

纳米技术在制冷及低温领域的应用与展望 被引量:4

Nanotechnology Used on Domain of Refrigeration and Cryogenic
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摘要 分析了近年来纳米技术的研究现状和发展趋热势,详细的阐述了纳米技术在制冷与低温领域的一些应用及预期的发展。主要对纳米材料、纳米制造技术在制冷及低温领域的应用等方面进行了深入研究。 The research development of nanotechnology was introduced in recent years, the applications amd expectations which were applied in the domain of refrigeration and cryogenic were described in detail. If the applications of nanotechnology in the domain of refrigeration and cryogenic are to improve its performance farther, the key problems applied in the domain of refrigeration and cryogenic such as below should be studied deeply : nanophase materials, nanophase technique of manufacture.
机构地区 西安交通大学
出处 《流体机械》 CSCD 北大核心 2007年第4期64-67,共4页 Fluid Machinery
关键词 纳米 制冷 低温 nanotechnology refrigeration cryogenic
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  • 1Zhang Jieli,Shao Yuanzhi(Department ofphysics, Zhongshan University, Guangzhou 510275).PREPARATION OF NANOCOMPOSITE BINARY GADOLINIUM ALLOYS AND THEIR ENHANCED MAGNETIC ENTROPY CHANGE[J].中国有色金属学会会刊:英文版,1996,6(3):86-91. 被引量:1
  • 2邵元智,熊正烨,张介立.稀土纳米磁致冷复合材料[J].中国有色金属学报,1996,6(1):70-73. 被引量:9
  • 3邵元智,熊正烨,张介立,张进修.Gd二元合金纳米固体的磁热熵特性[J].物理学报,1996,45(10):1749-1755. 被引量:9
  • 4[1]"Magnetic Refrigeration Makes a Cool Debut" By Steve Karsjen, Ames Laboratory
  • 5[2]V.K. Pecharsky and K. A. Gschneidner ,Jr. ,Phys. Rev. Lett. ,78,4494(1997)
  • 6[3]V.K. Pecharsky and K. A. Gschneidner, Jr. , Appl.Phys. Lett. ,70,3299(1997)
  • 7[4]V.K. Pecharsky and K. A. Gschneidner,Jr. ,J. Magn.Magn. Mater. ,167,L179(1997)
  • 8[7]R.D. MeMichael ,R. D. Shull ,L. J. Swartzendruber ,L.H. Bennett,J. Magn. Magn. Mater. ,111,29(1992)
  • 9[8]R. D. Shull, National Institute of Standards and Technology Activities in Nan technology
  • 10[9]Session Q5-Magnetocaloric Effect/Magnetic Refrigeration. INVITED session, Wednesday afternoon, March 18,1998,408A, Los Angeles Convention Center. [Q5.04] The Enhanced Magneto caloric Effect of Magnetic Nano composites

共引文献22

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  • 1王瑞祥,邹得宝,张秋丽,郝斌.纳米颗粒用于HFCs制冷系统的可行性分析[J].流体机械,2003,31(z1):120-124. 被引量:9
  • 2潘俊兴.低温液体容器静态蒸发率与闭口憋压时间的关系[J].化工装备技术,1995,16(1):41-42. 被引量:2
  • 3毕胜山,史琳,雍翰林,王瑞祥.纳米粒子添加剂对制冷系统材料影响的实验研究[J].制冷学报,2006,27(6):1-4. 被引量:11
  • 4TSG117001-2004,压力容器定期检验规则[S].
  • 5TSG110004-2009.固定式压力容器安全技术监察规程[S].2009.
  • 6DB41/T559-2008,低温绝热压力容器定期柃验规程[S].
  • 7GB/T18443.5-200l,低温绝热压力容器试验方法静态蒸发率测量[s].
  • 8Wang R X, Xie H B. A refrigerating system using HF -C134a and mineral lubricant appended with n - TiO2 (R) as working fluids [ C ]. Proceedings of the 4th International Symposium on HAVC. Beijing, Chi- na: Tsinghua University press, 2003. 888 - 892.
  • 9Ruixiang Wang, Qingping Wu, Yezheng Wu. Use of n -anoparticles to make mineral oil lubricants feasible for use in a residential air conditioner employing hydro -fluorocarbons refrigerants [ J ]. Energy and Build- ings ,2010,42:2111-2117.
  • 10Sheng shan Bi, Kai Guo, Zhigang Liu, et al. Perform- ance of a domestic refrigerator using TiO2 - R600a nano - refrigerant as working fluid [ J ]. Energ Conu- ers Manage,2011,52:733-737.

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