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外加纵向磁场对等离子弧堆焊层组织与性能的影响 被引量:3

Effects of applied longitudinal magnetic field on plasma arc hardfacing microstructure and property
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摘要 对铁基合金Fe5进行等离子弧堆焊时外加纵向磁场来控制堆焊层的硬质相的形态及分布,并对堆焊层进行了硬度、磨损试验,显微组织及X射线衍射分析,对堆焊层组织性能进行研究.结果表明,施加纵向磁场的堆焊层明显比无磁场作用的堆焊层硬度高、耐磨性好;磁场电流为3 A时的堆焊层性能最佳;合金堆焊层的显微组织α,γ固溶体被充分细化,并获得理想的硬质相Cr7C3,CrB等. To control the shape and distribution of hard phase,longitudinal magnetic field was applied during plasma hardfacing of Fe5 alloy.The hardness,wearing,microstructure and X-ray diffraction analysis of the hardfacing layer were tested as well as the structure and property of the handfacing layer of the powder.The results showed that the layer had higher hardness and better wearing with magnetic field than the layer formed without magnetic field.The properties of hardfacing layer were optimum when the magnetic field current was 3A and the microstructures of alloy hardfacing layer obtained ideal hard phase such as Cr7C3,CrB ect and solid solution α and γ were refined sufficiently.
出处 《焊接学报》 EI CAS CSCD 北大核心 2010年第1期71-74,共4页 Transactions of The China Welding Institution
关键词 等离子弧堆焊 磁场 硬质相 plasma arc surfacing welding magnetic field hard phase
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  • 1Brown D C et al. The effect of electromagnetic stirring and mechanical vibration on arc welding. Welding Journal , 1962, 41 (2) :241s ~250s
  • 2Tseng C F, Savage W F. The effect of arc oscillation in either the transverse or longitudinal direction has a beneficial effect on the fusion zone microstucture and tends to reduce sensitivity to hot cracking. Welding Journal, 1971,50 (12) :777 ~ 785
  • 3Yu Jianrong, Zhang Jiaying et al . Contracted effect of bell shade shape welding arc and accompanied magnetic field with spiral pipe shape. Transactions of Nonferrous Metals Society of China (English Edition) ,1997 ,7(2) :95 ~98
  • 4Tse, Man H C, Yue H C, T M. Effect of electric and magnetic fields on plasma control during CO2 laser welding. Optics and Lasers in Engineering, 1999,32 ( 1 ) :55 ~ 63
  • 5Kou S, Le Y . Improve weld quality by low frequency arc oscillation. Welding Journal, 1985,64 ( 3 ): 51 ~ 55
  • 6[苏]阿勃拉洛夫M.A,阿勃杜拉赫曼诺夫P.Y.电磁作用焊接技术.韦福水,路登平译.北京:机械工业出版社,1988.
  • 7B.A. Пoпoв. Bлияниe магитНoгo полянафopмиpoваниe coeдинeнияпpиконтактнoйтoчeнoй cваpкe. CваpoчнoйПpoизводство,1992(10) :28 -30
  • 8Vilafuerte J C, Kerr H W. Electromagnetic stirring and grain refinement in stainless steel GTA welds. Welding Journal, 1990,69(1) :ls ~ 13s
  • 9G. Madhusudhan. Reddy, Amol A. Gokhale, K. Prasad. Rao. Weld microstructure refinement in a 1441 grade aluminiumlithium alloy. Journal of Material Science, 1997 (32) :4117 ~4126
  • 10Asai S. Recent development and prospect of electromagnetic processing of materials. Science and Technology of Advanced Materials ,2000,1 (4): 191 ~ 200

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