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切割用等离子弧的数值分析 被引量:3

Numerical analysis for cutting plasma arc
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摘要 以转移型直流电弧等离子体切割炬为研究对象,根据局部热力学平衡假设和磁流体动力学理论构建了电弧数学模型,采用数值模拟方法分析了等离子体炬内等离子体的传热和流动特性,阴极形状、锥角、内缩量和喷嘴形状对切割气流的速度和等离子温度分布的影响。并对五种常用形状阴极和两种不同内缩量的割炬内等离子流体速度场和温度场进行了比较。从数值分析的角度验证了阴极斑点较小的阴极能产生较大的焰流速度和热量,以及内缩量的增加对电弧的压缩具有显著作用。 The transferred arc direct current plasma cutting torch was chosen as the studied object.According to the assumption of partial thermodynamic equilibrium and the theory of magnetic fluid dynamics,a mathematic model was developed. The plasma heat-transferring and fluid properties were numerically simulated based on this model.The effect,which is induced by the cathode configuration and taper,the length of inside shrink and the spray nozzle,on the cutting current and the plasma temperature was demonstrated.The arc current density distribution was calculated based on the built model.The velocity field and temperature field of five sorts of shape of cathode and two sorts of length of inside-shrink were studied.Conclusion is drawn that cathode which have langer cathode spot area can produce higher velocity and temperature of plasma,and a significant effect of increasing of cathode inside shrink on the compression of arc has been proved.
作者 李波 吴杰峰
出处 《焊接学报》 EI CAS CSCD 北大核心 2007年第9期95-98,共4页 Transactions of The China Welding Institution
关键词 等离子体炬 阴极 数值模拟 plasma torch cathode numerical analysis
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  • 1樊丁,杜华云,张瑞华.GTAW电弧温度场与流场数值模拟[J].电焊机,2004,34(8):6-9. 被引量:5
  • 2李桓,李俊岳,李益山,韦福水.钨极氩-氮电弧的高热特性[J].焊接学报,1993,14(2):125-131. 被引量:13
  • 3[1]Scott D A, Kovitya P and Haddad G N 1989 J. Appl. Phys. 66 5232
  • 4[2]Westhoff R 1992 PhD Thesis Department of Materials Sciences and Engineering, M I T
  • 5[3]Murphy A B and Kovitya P 1993 J. Appl. Phys. 73 4759
  • 6[4]Bauchire J M, Gonzalez J J and Gleizes A 1997 Plasma Chem.Plasma Process 17 409
  • 7[5]Li H P and Chen X 2001 J.Phys. D:Appl. Phys. 282494
  • 8[6]Li H P and Chen X 2002 Chin. Phys. 11 44
  • 9[7]Li H P, Pfender E and Chen X 2003 J. Phys. D: Appl. Phys. 361084
  • 10[8]Klinger L, Vos J B and Appert K, submitted to J. Phys. D: Appl.

共引文献32

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  • 1袁行球,李辉,赵太泽,王飞,俞国扬,郭文康,须平.直流电弧等离子体炬的特性研究[J].物理学报,2004,53(11):3806-3813. 被引量:18
  • 2殷凤良,胡绳荪,郑振太,马力.等离子弧焊电弧的数值模拟[J].焊接学报,2006,27(8):51-54. 被引量:31
  • 3雷玉成,李彩辉,郁雯霞,程晓农.氮氩保护的TIG焊电弧等离子体的数值分析[J].中国机械工程,2007,18(15):1846-1850. 被引量:2
  • 4Hsu K C.,Etemadi K.,Pfcnder E.. Study of the free-burning high-intensity argon arc[J]. J. Appl. Phys, 1983,54(3): 1293-1301.
  • 5Freton P.,Gonzalez J. J.,Gleizes A.. Comparison between a two- a three-dimensional arc plasma configuration[J]. J. Phys. D:Appl. Phys,2000,33(19): 2442-2452.
  • 6Hsu K C,Etemadi K,Pfender E.Study of the Free-burningHigh-intensity Argon Arc[J].J.Appl.Phys.,1983,54(3):1293-1301.
  • 7Freton P,Gonzalez J J,Gleizes A.Comparison between a Two-and a Three-dimensional Arc Plasma Configuration[J].J.Phys,D1Appl.Phys.,2000,33:2442-2452.
  • 8Zhou X,Heberlein J.Analysis of the Arc-cathode Interaction ofFree-burning Arcs[J].Plasma Sources Sci.Technol.,1994,(3):564-574.
  • 9Murphy A B,Arundell C J.Transport Coefficients of Argon,Nitrogen,Oxygen,Argon-nitrogen and Argon-oxygen Plasmas[J].Plasma Chem.Plasma Process.,1994,14:451-490.
  • 10赵朋成,王璐璐,李淑江,武传松,史平安.一种激光热传导钎焊的热源模型[J].焊接学报,2011,32(3):13-16. 被引量:7

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