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Quenched and tempered steels are prone to hydrogen induced cracking in the heat affected gone after welding.The use of austenitic stainless steel consumables to weld the above steel was the only available remedy because of higher solubility for hydrogen in austenitic phase.In this investigation,an attempt was made to determine a suitable consumable to replace expensive austenitic consumables.Two different consumables,namely,austenitic stainless steel and lOW hydrogen ferritic steel,were used to fabricate the joints by shielded metal arc welding(SMAW)and flux cored arc welding(FCAW)processes.The joints fabricated by using low hydrogen ferritic steel consumables showed superior transverse tensile properties,whereas joints fabricated by using austenitic stainless steel consumables exhibited better impact toughness,irrespective of the welding process used.The SMAW joints exhibited superior mechanical and impact properties,irrespective of the consumables used,than their FCAW counterparts.

参考文献

[1] Ade F .Ballistic Qualification of Armour Steel Weldments[J].Welding Journal,1991,70(01):53.
[2] Coe F R .Welding Steels Without Hydrogen Cracking[R].Cambridge:Abington Publishing,1973.
[3] Alkemade S J .The weld Cracking Susceptibility of High Hardness Armour Steel[R].Australia:Defence Science and Technology Organization,1996.
[4] Madhusudhan Reddy G;Mohandas T;Tagore G R N .weldability Studies on High-Strength Low-Alloy Steel Using Austenitic Stainless Steel Filler[J].Journal of Materials Processing Technology,1995,49:213.
[5] Deb P;Challenger K D;Clark D R .Transmission Electron Microscopy Characterizations of Preheated and Non-Preheated Shielded Metal Arc Weldments of HY-80 Steel[J].Material Science and Engineering,1988,77:155.
[6] Cary H B.Modern Welding Technology[M].London:Prentice-Hall Inc,1999
[7] Wilson J .The Development of Welding Techniques for British Fighting Vehicles[R].UK Crown Copyright,1978.
[8] Wojnowski D.;Oh Y.K. .Metallurgical Assessment of the Softened HAZ Region During Multipass Welding[J].Journal of manufacturing science and engineering,2000(2):310-315.
[9] Madhusudhan Reddy G;Mohandas T;Papukutty K K .Effect of Welding Process on the Ballistic Perfclrmanee of High-Strength Low-Alloy Steel Weldments[J].Journal of Materials Processing Technology,1998,74(1-3):27.
[10] Barbaro F J;Krauklis P;Easterling K E .Formation of Acicular Ferrite at Oxide Particles in Steels[J].Journal of Materials Science and Technology,1989,5:1057.
[11] Parmar R S.Welding Engineering and Technology[M].New Delhi:Khanna Publishers,2003
[12] Rao E J .Studies on Fatigue Crack Growth Behaviour of Welded Cruciform and Butt Joints of a Low Alloy(Q&T)High Strength Steel With Austenitic and Ferritic Fillers[D].Madras:IIT-Madras,1998.
[13] Parker J D;Stratford G C .Review of Factors Affecting Condition Assessment of Nickel Based Transition Joints[J].Science and Technology of Welding and Joining,1999,4(01):29.
[14] Wang W;Liu S .Alloying and Microstructural Management in Developing SMAW Electrodes for HSLA-100 Steel[J].Welding Journal,2002,81(06):132s.
[15] B. Basu;R. Raman .Microstructural variations in a high-strength structural steel weld under isoheat input conditions[J].Welding Journal,2002(11):239-S-248-S-0.
[16] WANG JUAN;LI YAJIANG .Microstructure characterization in the weld metals of HQ130 + QJ63 high strength steels[J].Bulletin of Materials Science,2003(3):295-299.
[17] Harrison P;Farrar R .Mierostructure and Toughness of CMn and CMn-Ni Weld Metal-Part I[J].Metals Construction,1987,7(02):392R.
[18] Dixon B;Hakansson K .Effect of Welding Parameters on weld zone Toughness and Hardness in 690 MPa Steel[J].Welding Journal,1995,64(04):122s.
[19] Barbaro F J;Krauklis P;Easterling K E .Formation of Acicular Ferrite at Oxide Particles in Steels[J].Journal of Material Science Technology,1989,5:1057.
[20] Bhadeshia H K D H;Svensson L E.Mathematical Modeling pf weld Phenomena[M].London:Institute of Materials,1993
[21] Taylor D S;Evans G M .Development of MMA Electrodes for Offshore Fabrication[J].Metal Construction,1983,15(03):438.
[22] Siewert T A .How to Predict Impact Energy From Stainless Steel Weld Composition[J].Welding Design & Fabrication,1978,10:87.
[23] Delong W T .Ferrite in Austenitic Stainless Steel Weld Metal[J].Welding Journal,1974,53(11):273s.
[24] David S A;Broski D N;Goodwin G M .Solidification Behaviour of Austenitic Stainless Steel Filler Metal[J].Welding Journal,1979,58(11):330s.
[25] Goodwin G M;Cole N C;Slaughter G M .A Study of Ferrite Morphology in Austenitie Stainless Weldments[J].Welding Journal,1972,51(09):425s.
[26] Rodrigues D M;Menezes L F;Loureiro A .The Influence of the HAZ Softening on the Mechanical Behaviour of Welded Joints Containing Cracks in the Weld Metal[J].Engineering Fracture Mechanics,2004,71(13-14):2053.
[27] Kim Ji Hyun;Oh Young Jin;Hwang II Soon et al.Fracture Behaviour of Heat-Affected Zone in Low Alloy Steels[J].Journal of Nuclear Materials,2001,299(02):132.
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