During the first welding process in manufacturing a precise seam container, the steel material must first undergo a full annealing treatment. Multilayer welding operations are conducted and then applied with refining treatment to obtain the goal by hardening. The influence of thermal refining on mechanical properties of annealed SAE 4130 by multilayer GTAW (gas tungsten arc welding) was discussed. The AW (annealing+welding) and AWST (annealing+welding+solution+tempering) occurred with a minimum hardness value at GGHAZ (grain growth heat affected zone) due to coarse grain growth~ the hardness occurred with sudden drops between the multilayer welding, but was still larger than the minimum value at HAZ (heat affected zone). The welded joint efficiency of the AWST was 89.9%, with the elongation reduced to 77.2% of AST (annealing+solution+tempering). The cross section of the tensile samples both appeared with a uniform dimple-shaped structure, and however the necking for AST was greater than that for AWST. The impact value for AWST was 166.5% of AST. Moreover, from microstructure observations, it was found that AWST had a greater tendency to ductile failure than AST. These results can be inferred., the process of steady pressure and the initial position of the precision tube breakage HAZ. However, when stress occurs instantly, HAZ can absorb more energy, therefore the initial damage does not occur.
参考文献
[1] | Carrison W M .Uhrahigh Strength Steels for Aerospace Appli cations[J].Journal of Materials,1990,42(05):20. |
[2] | Zwilsky K M.Metal Handbook:Properties and Selection:Irons,Steel,and High Performance Alloys:Classification and Designation of Carbon and Low-Alloy Steels[M].Ohio:ASM International,1990 |
[3] | Tsai M C .Microstructural Evolution of Simulated Heat-Affect ed Zone in Cr Mo Alloy Steels and Phase Transformation in an AIS1 410 Stainless Steel[D].Taiwan:National Taiwan Uni versity,2002. |
[4] | AMS 6370M:Steel Bars,Forging and Rings 0.95Cr-0,20Mo(0.28--0.33C)(SAE ,1130)[S].Warrendale,PA:Society of Automotive Engi-neers,Inc,2006. |
[5] | AMS 2632:Inspection,Ul- trasonic,of Thin Materials,0.50 Inch(12.7 mm)and Under in Cross-Sectional Thickness[S].Warrendale,PA:Society of Automotive Engineers,Inc,1995. |
[6] | AMS 2630B.Inspection,Ul- trasonic,of Thin Materials 0.50 Inch(12.7 ram)Thick[S].Warrendale,PA~ Society of Automotive Engineers,Inc,1995. |
[7] | Lee W S;Su T T .Mechanical Properties and Microstructural Features of AISI 4340 High-Strength Alloy Steel Under Quenched and Tempered Conditions[J].J of Materials Pro- cessing Technology,1999,87(1/2/3):198. |
[8] | Olson D L.Metal Handbook:Welding,Brazing,and Solde- ring:Solid-State Transformations in Weldments[M].Ohio:ASM International,1997 |
[9] | S. Murugan;Sanjai K. Rai;P.V Kumar .Temperature distribution and residual stresses due to multipass welding in type 304 stainless steel and low carbon steel weld pads[J].International Journal of Pressure Vessels and Piping,2001(4):307-317. |
[10] | S. Murugan;P. V. Kumar;B. Raj;M. S. C. Bose .Temperature distribution during multipass welding of plates[J].International Journal of Pressure Vessels and Piping,1998(12):891-905. |
[11] | S. K. ALBERT;T. P. S. GILL;A. K. TYAGI;S. L. MANNAN;S. D. KULKARNI;P. RODRIGUEZ .Soft Zone Formation in Dissimilar Welds between Two Cr-Mo Steels[J].Welding Journal,1997(3):135s-142s. |
[12] | Cho J R;Lee B Y;Moon Y H et al.Investigation of Residu- al Stress and Post Weld Heat Treatment of Multi-Pass Welds by Finite Element Method and Experiments[J].Journal of Materials Processing Technology,2004,155:1690. |
[13] | Huang C C;Pan Y C;Chuang T H .Effects of Post-Weld Heat Treatments on the Residual Stress and Mechanical Prop-erties of Electron Beam Welded SAE 4130 Steel Plates[J].Journal of Materials Engineering and Performance,1997,6(01):61. |
[14] | AMS 6457C:Steel,Weld- ing Wire 0.95Cr-0,20Mo(0.28 -- 0.33C)Vacuum Melted,Environmental Controlled Packaging SAE 4130[S].Warren- dale,PA:Society of Automotive Engineers,Inc,2001. |
[15] | Krauss G .Solidification,Segregation,and Banding in Alloy Steels[J].Metallurgical and Materials Transactions,2003,34B(06):781. |
[16] | Saxena A;Prasad SN;Goswami S;Subudhi J;Chaudhuri SK .Influence of austempering parameters on the microstructure and tensile properties of a medium carbon-manganese steel[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1-2):53-58. |
[17] | Leslie W C.The Physical Metallurgy of Steels[M].New York:McGraw-Hill,1981 |
[18] | Barnett, MR;Balasubramaniam, R;Kumar, V;MacRae, C .Correlation between microstructure and phosphorus segregation in a hypereutectoid Wootz steel[J].Journal of Materials Science,2009(9):2192-2197. |
[19] | Tau L;Chan S L I .Effects of Ferrite/Pearlite Alignment on the Hydrogen Permeation in a AISI 4130 Steel[J].Materials Letters,1996,29(1/2/3):143. |
[20] | Lee W S;Su T T .Mechanical Properties and Microstructural Features of AISI 4340 High-Strength Alloy Steel Under Quenched and Tempered Conditions[J].J of Materials Pro- cessing Technology,1999,87:198. |
[21] | Copley S M.Metal Handbook:Heat Treating:Quenching of Steel[M].Ohio:ASM International,1991 |
[22] | Zhou W;Chew K G .Effect of Welding on Impact Toughness of Butt-Joints in a Titanium Alloy[J].Materials Science and Engineering,2003,347A:180. |
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