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EFFECT OF Fe_2O_3 ON WELDING TECHNOLOGY AND MECHANICAL PROPERTIES OF WELD METAL DEPOSITED BY SELF-SHIELDED FLUX CORED WIRE

EFFECT OF Fe_2O_3 ON WELDING TECHNOLOGY AND MECHANICAL PROPERTIES OF WELD METAL DEPOSITED BY SELF-SHIELDED FLUX CORED WIRE
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摘要 Five experimental self-shielded flux cored wires are fabricated withdifferent amount of Fe_2O_3 in the flux. The effect of Fe_2O_3 on welding technology and mechanicalproperties of weld metals deposited by these wires are studied. The results show that with theincrease of Fe_2O_3 in the mix, the melting point of the pretreated mix is increased. LiBaF_3 andBaFe_(12)O_(19), which are very low in inherent moisture, are formed after the pretreatment. Themechanical properties are evaluated to the weld metals. The low temperature notch toughness of theweld metals is increased linearly with the Fe_2O_3 content in the flux due to the balance betweenFe_2O_3 and residual Al in the weld metal. The optimum Fe_2O_3 content in flux is 2.5 percent approx3.5 percent. Five experimental self-shielded flux cored wires are fabricated withdifferent amount of Fe_2O_3 in the flux. The effect of Fe_2O_3 on welding technology and mechanicalproperties of weld metals deposited by these wires are studied. The results show that with theincrease of Fe_2O_3 in the mix, the melting point of the pretreated mix is increased. LiBaF_3 andBaFe_(12)O_(19), which are very low in inherent moisture, are formed after the pretreatment. Themechanical properties are evaluated to the weld metals. The low temperature notch toughness of theweld metals is increased linearly with the Fe_2O_3 content in the flux due to the balance betweenFe_2O_3 and residual Al in the weld metal. The optimum Fe_2O_3 content in flux is 2.5 percent approx3.5 percent.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第1期55-57,共3页 中国机械工程学报(英文版)
关键词 Self-shielded flux arc welding Fe_2O_3 Welding technology Mechanicalproperties Self-shielded flux arc welding Fe_2O_3 Welding technology Mechanicalproperties
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参考文献9

  • 1Ralph Y. It's quicker by tube-welding with self-shielded cored wires. Welding and Metal Fabrication, 1997, 65(3): 3~6.
  • 2Keelcr T. Innershield welding part 1: development and applications. Metal Construction, 1981, 13(11): 667~673.
  • 3Kotecki D J, Moll R A. A toughness study of steel weld metal from self-shielded flux-cored electrodes-part 1. Welding Journal, 1970, 49 (4):157~165.
  • 4Kaplan H I, Hill D C. Thermodynamics of air-operating flux cored electrodes and an analysis of weld toughness. Welding Journal, 1976, 55(1):13~19.
  • 5Kotecki D J, Moll R A. A toughness study of steel weld-metal from self-shielded flux cored electrodes-part Ⅱ. Welding Journal, 1972, 51(3):138~155.
  • 6Edit Committee of Chemical Industry Encyclopaedia. Chemical Industry Encyclopaedia. Beijing: Publishing Company of Chemical Industry, 1996(In Chinese).
  • 7Mario Amata Y, Susan R F. Choosing the proper self-shielded FCAW wire.Welding Journal, 1999, 75(6): 33~39.
  • 8Quintana M A, Mclane J. Inclusion formation in self-shielded flux cored arc welds. Welding Journal, 2001, 80(4): 98~104.
  • 9Grong O, Kluken A O, Bjornbakk B. Effect of nitrogen on weld metal toughness in self-shielded flux cored arc welding. Joining & Materials,1988, 1(4): 164~169.

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