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大功率长寿命电弧等离子体炬的研制 被引量:3

DEVELOPMENT OF HIGH POWER ARC PLASMA TORCH WITH LONG LIFE
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摘要 通过对大功率长寿命等离子体炬的基本特性的深入了解 ,得到了一套完整的等离子体炬运行参数。制成的等离子体炬功率在 80~ 2 5 0 k W之间可任意调节 ,弧电压最高达到 490 V,热效率最高达到 73% ,等离子体射流长度大于 40 cm。研制的等离子体系统运行稳定 ,性能可靠 ,阴极烧损量仅为 4.1ng·C- 1。该等离子体炬已成功地应用于三废处理实验中 ,运行时间已超过 10 0 A complete set of plasma torch operating parameters is obtained through deep going understanding of the basic properties of a high power arc plasma torch with long life. The completed plasma torch has an adjustable power in the range of 80~250kW with arc voltage up to 490V, thermal efficiency up to 73% and jet length more than 40cm. The plasma torch system operates stably and reliably, and the cathode burnup is only 4.1ng·C -1 .This plasma torch has successfully operated in waste disposal experiments for more than 100 hours.
出处 《核聚变与等离子体物理》 CAS CSCD 北大核心 2000年第4期246-250,共5页 Nuclear Fusion and Plasma Physics
关键词 电弧等离子体矩 伏安特性 阴极烧损 Arc plasma torch Voltage current characteristic Cathode burnup
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参考文献3

  • 1Feng Xiaozhen,The 2nd Asia-PacificConference on Plasma Science and Technology,1992年,375页
  • 2赵华学(译),热等离子体实用动力学,1982年,50页
  • 3德列斯文 C B,低温等离子体物理及技术,1980年,15页

同被引文献16

  • 1汪刘应,王汉功,华绍春,曹小平.多功能微弧等离子喷涂技术[J].焊接学报,2006,27(2):81-84. 被引量:10
  • 2安连彤,高阳.双阳极等离子喷枪电弧特性与热效率分析[J].真空科学与技术学报,2007,27(2):109-112. 被引量:6
  • 3鲍卫仁.[D].太原:太原理工大学,2003.
  • 4[1]M.J. Copsey. Applications of thermal plasma technology to environmental problems in Western Europe. International Symposium on Environmental Technologies, Atlanda, U. S. A., 1995
  • 5[2]Feng Xiaozhen, et al. The improvement on treatment of pulp waste liquor using plasma. The 2nd Asia-Pacific Conference on Plasma Science and Technology, Korea, 1994
  • 6[3]Feng Xiaozhen, et al. A new technology and recovered soda system for treating pulp waste with plasma. 13th International Symposium on Plasam. Chemistry Conference, Beijing China,1997
  • 7[4]Maher I.Boulos,Pierre Fauchais, Emil Pfender. Thermal Plasmas. Volume 1. Canada, 1994
  • 8Westergard R, Axen N, Wiklund U, et al. An evaluation of plasma sprayed ceramic coating by erosion, abrasion and bend testing[J]. Wear, 2000, 246:12-19.
  • 9Rata V, Coudert J F. Pressure and arc voltage coupling in dc plasma torches : Identification and extraction of oscillation modes [J]. Journal of Applied Physics, 2010, 108(4): I -8.
  • 10Mostaghimi J, Chandra S, Ghafouri-Azar R, et al. Modeling thermal spray coating processes: a powerful tool in design and optimization [ J ]. Surface and Coating Technology, 2003, 163 : 1 -11.

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