高氮奥氏体不锈钢是利用氮代替镍进行合金化的一种合金结构钢,氮的固溶存在是材料具备优良性能的前提.焊接是高氮奥氏体不锈钢工程应用需要解决的首要问题之一,氮是影响其焊接性的主要因素,为了获得与母材性能匹配的焊接接头,必须理解熔焊过程中的氮行为.对熔焊时电弧区、熔池区的氮行为进行了分析,以实现焊缝固溶氮含量的有效控制.
参考文献
[1] | Speidel M O.Properties and Application of High-Nitrogen Steels[A].London:Institute of Metals,1989:366. |
[2] | Stein G;Tresken F.Arc-Welding Steels Nitrogen-Alloyed Beyond the Solubility Limit[A].Stahl and Eisen:Dǘsseldorf,1990:303-308. |
[3] | Insu WOO;Masatoshi ARITOSHI;Yasushi KIKUCHI .Metallurgical and Mechanical Properties of High Nitrogen Austenitic Stainless Steel Friction Welds[J].ISIJ International,2002(4):401-406. |
[4] | Iamboliev T;Zumbilev A .Laser Beaming Welding of HighNitrogen Containing Austenitic Steel[J].Welding Journal,1999,78(07):245-252. |
[5] | Lancaster J F.The Physics of Welding[M].Oxford:Pergamon Press,1984 |
[6] | Kuwana T;Kokawa H;Saotome M.Quantitative Prediction of Nitrogen Absorption by Steel During Gas Tungsten Arc Welding[A].Graz-Seggau,Austria,1995:25-27. |
[7] | Ilakomskii V;Torkhov G F .Absorption of Nitrogen From Plasma by Liquid Metal[J].Soviet Physics-Doklady,1999,13(11):1159-1162. |
[8] | Kaze J D;King T B .The Kinetics of Nitrogen Absorption and Desorption From a Plasma Arc by Molten Iron[J].Metallurgical Transactions,1989,20B(04):175-185. |
[9] | Ouden G Den;Griebling O.Nitrogen Absorption During Arc Welding[A].Gatlinburg,USA,1989:431-435. |
[10] | Bandopadhyay A;Banerjee A;DebRoy T .Nitrogen Activity Determination in Plasma[J].Metallurgical Transactions,1992,23B(04):207-214. |
[11] | M. DU TOIT;P.C. PISTORIUS .Nitrogen Control during Autogenous Arc Welding of Stainless Steel--Part 1: Experimental Observations[J].Welding Journal,2003(8):(219-S)-(224-S)-0. |
[12] | Toit M Du;Pistorius P C .Nitrogen Control During Autogenous Arc Welding of Stainless Steel:Part-A Kinetic Model for Nitrogen Absorption and Desorption[J].Welding Journal,2003,82(09):231-237. |
[13] | Ridolfi M R;Tassa O .Formation of Nitrogen Bubbles During the Solidification of 16-18%Cr High Nitrogen Austenitic Stainless Steel[J].Intermetallics,2003(11):1335-1338. |
[14] | Svyazhin AG;Skuza Z;Hutny A;Siwka J .The gas blow-holes forming in nitrogen iron alloys and steels during their crystallization[J].Materials Science Forum,1999(0):377-384. |
[15] | Makoto OGAWA;Kazuo HIRAOKA;Yasuyuki KATADA .Chromium Nitride Precipitation Behavior in Weld Heat-affected Zone of High Nitrogen Stainless Steel[J].ISIJ International,2002(12):1391-1398. |
[16] | Ogawa T;Koseki T .Weldability of Newly Developed Austenitic Alloys for Cryogenic Service:Part Ⅱ High-Nitrogen Stainless Steel Weld Metal[J].Welding Journal,1988,67(01):9-17. |
[17] | A. DI SCHINO;J. M. KENNY;M. G. MECOZZI .Development of high nitrogen, low nickel, 18%Cr austenitic stainless steels[J].Journal of Materials Science,2000(19):4803-4808. |
[18] | Takaki S;Goto H;Nakamura N .Alloy design for suppressing eutectoid reaction in high nitrogen austenitic steels[J].Materials Science Forum,1999(0):249-254. |
[19] | T. A. PALMER;T. DebROY .Physical Modeling of Nitrogen Partition between the Weld Metal and Its Plasma Environment[J].Welding Journal,1996(7):197s-207s. |
[20] | Wada H;Pehlke R D .Solubility of Nitrogen in Liquid Fe-Cr-Ni Alloys Containing Manganese and Molybdenum[J].Metallurgical Transactions,1977,8B(12):675-682. |
[21] | Hertzman S;Wessman S .An experimental and theoretical study of nitrogen flux in stainless steel TIG welds[J].Materials Science Forum,1999(0):579-590. |
[22] | Kamiya O;Kikuchi Y .Comparison of welding behavior of SUS316L steel by gas tungsten and gas metal arc processes in high pressure nitrogen atmosphere[J].Materials Science Forum,1999(0):609-614. |
[23] | Kikuchi Y;Kobayashi H;Kamiya O .Mechanical characteristics of high nitrogen contained weld metal based on 316L stainless steel[J].Materials Science Forum,1999(0):621-626. |
[24] | Yasushi KIKUCHI;Osamu KAMIYA;Kazuo KUMAGAI;Irwan HIDAYAT .MICROSTRUCTURE AND FRACTURE TOUGHNESS OF 316L HIGH NITROGEN WELD METAL PRODUCED BY HIGH-PRESSURE NITROGEN ARC WELDING[J].Transactions of JWRI,1997(1):109-113. |
[25] | Iamboliev T;Zumbilev A .Laser Beaming Welding of HighNitrogen Containing Austenitic Steel[J].Welding Journal,1999,78(07):245-252. |
[26] | Staffan HERTZMAN;Rachel JARGELIUS PETTERSSON;Roland BLOM;Esa KIVINEVA;Jan ERIKSSON .Influence of Shielding Gas Composition and Welding Parameters on the N-content and Corrosion Properties of Welds in N-alloyed Stainless Steel Grades[J].ISIJ International,1996(7):968-976. |
[27] | Harzenmoser M;Hereth M;Diener M;Rennhard C .Recent developments on the weldability of a new high nitrogen stainless steel[J].Materials Science Forum,1999(0):591-596. |
[28] | Staffan HERTZMAN;Rachel JARGELIUS PETTERSSON;Roland BLOM;Esa KIVINEVA;Jan ERIKSSON .Influence of Shielding Gas Composition and Welding Parameters on the N-content and Corrosion Properties of Welds in N-alloyed Stainless Steel Grades[J].ISIJ International,1996(7):968-976. |
[29] | Kobayashi T;Kowana H .The Nitrogen Absorption of Iron Weld Metal During Gas Tungsten Arc Welding[J].Transaction of Japan welding society,1986,17(01):20-26. |
[30] | Blake P D.Nitrogen in Steel Welds Metals[M].Metal Construction,1979:196-197. |
[31] | Ouden G Den;Ohno S .Effect of Surface Active Elements on Nitrogen Content of Iron Under Arc Melting[J].Transactions of the National Research Institute of Metallurgy,1973,15(01):20-28. |
[32] | Kamiya O.;Chen ZW.;Kikuchi Y. .Microporosity formation in partially melted zone during welding of high nitrogen austenitic stainless steels[J].Journal of Materials Science,2002(12):2475-2481. |
[33] | Vilpas M;Hanninen H .The role of nitrogen in improving pitting corrosion resistance of high-alloy austenitic and duplex stainless steel welds[J].Materials Science Forum,1999(0):603-608. |
[34] | Kuwana T;Kokawa H;Naitoh K .The Nitrogen Absorption of Stainless Steel Weld Metal During Gas Tungsten Arc Welding[J].Transactions of Japan Welding Society,1988,17(02):134-142. |
[35] | Brooks J A .Weldability of High N,High Mn Austenitic Stainless Steel[J].Welding Journal,1975,54(06):189-195. |
[36] | Hertzman S;Wessman S .An experimental and theoretical study of nitrogen flux in stainless steel TIG welds[J].Materials Science Forum,1999(0):579-590. |
[37] | Neuschutz Yzhai;Hauck A .Nitrogen Transfer Into Plasma Heated Steel Metals as a Function of Arc Polarity[J].Steel Research,1994,65(06):219-224. |
[38] | Katz J D;King T B .The Kinetics of Nitrogen Absorption and Desorption From a Plasma Arc by Molten Iron[J].Metallurgical Transactions B,1989,20(04):175-185. |
[39] | Uda M;Ohno S .Effect of Surface Active Elements on Nitrogen Content of Iron Under Arc Melting[J].Transactions of the National Research Institute of Metallurgy,1973,15(01):20-28. |
[40] | Lancaster J F.Metallurgy of Welding[M].Cambridge:Abington Publishing,1999:231. |
[41] | Sinha O P;Gupta R C .Fe-Cr Melt Nitrogenation When Exposed to Nitrogen Plasma[J].ISIJ International,1993,33(05):567-576. |
[42] | B BONNEFOIS;L COUDREUSE;J CHARLES .A-TIG welding of high nitrogen alloyed stainless steels: a metallurgically high-performance welding process[J].Welding International,2004(3):208-212. |
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