Tomographic investigation of plasma jets produced by multielectrode plasma torches

被引:33
|
作者
Schein, J. [1 ]
Richter, M. [1 ]
Landes, K. D. [1 ]
Forster, G. [1 ]
Zierhut, J. [1 ]
Dzulko, M. [1 ]
机构
[1] Univ Bundeswehr, EIT, Munich, Germany
关键词
diagnostics and control; multielectrode plasma torches; plasma jet shape; stability of TS process; TS coating process; three-dimensional optical measurement;
D O I
10.1007/s11666-008-9186-0
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Recent advances in the development of new plasma torches rely on the use of multiple electrodes to improve plasma jet stability. Examples are the Triplex, employing three cathodes and a single anode, and the Delta, which uses three anodes with a single common cathode. To characterize the plasma jet produced by these plasma torches, initial experiments have been performed using tomography in the visible range. Due to the improved stability of the plasma jet in the multielectrode configuration it is possible to carry out tomography by means of a regular charge-coupled device (CCD) camera, which is rotated around the plasma jet axis. The two-dimensional information obtained by the CCD camera is subsequently processed to produce an image of the three-dimensional emission distribution. The tomographic analysis is mated with a simple but effective simulation tool, which can be used as a basis for parameter-dependent multielectrode plasma torch design.
引用
收藏
页码:338 / 343
页数:6
相关论文
共 50 条
  • [31] Influence of low atomic number plasma component on the formation of laser-produced plasma jets
    Kasperczuk, A.
    Pisarczyk, T.
    Badziak, J.
    Borodziuk, S.
    Chodukowski, T.
    Gus'kov, S. Yu
    Demchenko, N. N.
    Ullschmied, J.
    Krousky, E.
    Masek, K.
    Pfeifer, M.
    Rohlena, K.
    Skala, J.
    Pisarczyk, P.
    PHYSICS OF PLASMAS, 2010, 17 (11)
  • [32] Plasma heating in steelmaking:: Graphite electrodes versus metallic plasma torches
    Neuschütz, D
    Stadler, P
    Bebber, H
    PROGRESS IN PLASMA PROCESSING OF MATERIALS 1997, 1997, : 511 - 518
  • [33] Experimental investigation on frequency characteristics of plasma synthetic jets
    Zong, Haohua
    Kotsonis, Marios
    PHYSICS OF FLUIDS, 2017, 29 (11)
  • [34] Tomographic characterization of gas jets for Laser-plasma acceleration with increased sensitivity
    Chaulagain, Uddhab
    Karatodorov, Stefan
    Raclavsky, Marek
    Lorenz, Sebastian
    Lamac, Marcel
    Albrecht, Martin
    Tomkus, Vidmantas
    Dudutis, Juozas
    Mackeviciute, Migle
    Gecys, Paulius
    Nejdl, Jaroslav
    INTERNATIONAL CONFERENCE ON X-RAY LASERS 2020, 2021, 11886
  • [35] EXPERIMENTAL INVESTIGATION OF POWDER VAPORIZATION IN THERMAL PLASMA JETS
    VARDELLE, M
    TRASSY, C
    VARDELLE, A
    FAUCHAIS, P
    PLASMA CHEMISTRY AND PLASMA PROCESSING, 1991, 11 (02) : 185 - 201
  • [36] Suspension plasma spraying of zirconia coatings using different plasma torches
    Sokolowski, P.
    Latka, L.
    Kozerski, S.
    Dietrich, D.
    Pala, Z.
    Lampke, T.
    Pawlowski, L.
    18TH CHEMNITZ SEMINAR ON MATERIALS ENGINEERING, 2016, 118
  • [37] Measurement of Plasma Jet Parameters for Programming Plasma Spraying Torches.
    Fiszdon, J.
    Gauk, W.
    Daniault, J.
    1976, 13 (01): : 11 - 15
  • [38] Computational and experimental investigation of plasma deflagration jets and detonation shocks in coaxial plasma accelerators
    Subramaniam, Vivek
    Underwood, Thomas C.
    Raja, Laxminarayan L.
    Cappelli, Mark A.
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2018, 27 (02):
  • [39] CONSIDERATIONS ON MULTIELECTRODE PROBES FOR PLASMA DIAGNOSTICS
    AVRAM, E
    STUDII SI CERCETARI DE FIZICA, 1976, 28 (06): : 585 - 600
  • [40] High Power Argon, Nitrogen Plasma Torches
    Hakki, A.
    Kashapov, N.
    Sadikov, K.
    INTERNATIONAL CONFERENCE - THE PHYSICS OF LOW TEMPERATURE PLASMA (PLTP-2017), 2017, 927