Experimental Study and Finite Element Simulation of Residual Stress in Welded Sections of Steel P91 Pipes with Multi-pass Welding
Subject Areas : Mechanical EngineeringDavood Azadi 1 , Nosratollah Solhjoei 2 , SayedAli Mousavi 3
1 - Department of Mechanical Engineering,
Najafabad Branch, Islamic Azad University, Najafabad, Iran
2 - Department of Mechanical Engineering,
Najafabad Branch, Islamic Azad University, Najafabad, Iran
3 - Najafabad Branch, Islamic Azad University, Najafabad, Iran
*Corresponding author
Keywords:
Abstract :
[1] Hibbitt H. D., Marcal P. V., 1973, “A numerical thermo-mechanical model for the welding and subsequent loading of a fabricated structure”, Company and Structure, Vol. 3, pp. 1145-1174.
[2] Friedman, E., 1978, “Analysis of weld puddle distortion”, Welding J Research Suppl., pp. 161-166.
[3] Westby O., 1968, “Temperature distribution in the workpiece by welding”, Department of Metallurgy and Metals Working, The Technical University, Trondheim Norway.
[4] Masubushi, K., 1980, “Analysis of welded structures”, Pergamon Press, and Fracture mechanics applications in failure studies, Materials Characterization, Vol 33.
[5] Andersson B. A. B., 1978, “Thermal stresses in submerged-arc welded joint considering phase transformation”, Journal of Engineering Materials and Technology, Trans. ASME, Vol. 100, pp. 356-362.
[6] Marcal P., 1974, “Structural mechanics programs”, Charlottesville, University Press, pp. 191-206.
[7] Chihoski R. A., 1972, “Understanding weld cracking in Aluminum sheet”, Welding Journal, Vol. 25, pp. 24-30.
[8] Brickstad, B. and Josefson, B. L., 1998, “A parametric study of residual stresses in multi-pass butt-welded stainless steel pipes”, International Journal of Pressure Vessels and Piping, Vol. 75, pp. 11-25.
[9] Yajiang, L., Juan, W., Maoai, C. and Xiaoqin, S., 2004, “Finite element analysis of residual stress in the welded zone of a high strength steel”, Bulletin of Materials Science, Vol. 27(2), pp. 127-132.
[10] Dean D., Shoichi K., 2010, “FEM prediction of welding residual stresses in a sus304 girth-welded pipe with emphasis on stress distribution near weld start/end location”, Computational Materials Science, Vol. 50, pp. 612-621.
[11] Goldak, J., Chakravarti, A., Bibby, M., 1984, “A new finite element model for welding heat sources, Metallurgical Transactions”, Vol 15B, PP 299-305.
[12] Yaghi, A., Hyde, T. H., Becker, A. A., Sun1, W., Williams, J. A., Pathiraj, B., 2005, “Simulation of residual stresses in welded p91 pipes”, 5th International Conference on Mechanics and Materials in Design, Chapter IV, pp. 1-15.
[13] Yaghi. A., Hyde. T., Becker. A., Sun. W., 2009, “Thermo-mechanical modeling of weld microstructure and residual stresses in P91 pipes”, Energy Material 4 (3), 113-123.
[14] Yaghi. A, Hyde. T., Becker. A., William. J., Sun. W., 2008. “Finite element simulation of welding and residual stresses in a P91 steel pipe incorporating solid state phase transformation and post weld heat treatment”, Journal of Strain Analysis for Engineering Design, 43 (5), 275-293.
[15] Kim. S., Kim. J., Lee. W., 2009, “Numerical Prediction and neutron diffraction measurement of residual stress for modified 9Cr-1Mo steel”, Journal of material Processing Technology, 167 (2), 480-487.
[16] Deng, D., Murakawat, H., 2006, “The Prediction of welding residual stress in multi-pass butt-welded modified 9Cr–1Mo steel pipe considering phase transformation effects”, Computational Material science, 37 (3), 209-219.
[17] Kumar, S., Awasthi, R., Vishwanadham, C. S., Bhuanumurthy, K., Dey, G. K., 2014, “Thermo-metallurgical and thermo-mechanical computations for laser welded joint in 9Cr–1Mo (V, Nb) ferritic/martensitic steel”, Materials and Design, 59, 211-220.
[18] Zubairuddin, M., Alber, S. K., Mahadevan, S., Vasudevan, M., Chaudhari, V., Suri, V. K., 2014, “Experimental and Finite element analysis of residual stress and distortion in GTA welding of modified 9Cr-1Mo steel”, Journal of Mechanical Science and Technology, 28 (12), 5095-5105.
[19] Schajer, G. S., 1988, “Measurement of Non-uniform Residual Stresses Using the Hole- Drilling Method”, Part II—Practical Application of the Integral Method, Journal of Engineering Materials and Technology, 110(1), 344-349.
[20] Abburi Venkataa, K., Kumarb, S., Deyc, H. C., Smitha, D. J., Bouchardd P. J., and Truman, C, E., 2014, "Study on the Effect of Post Weld Heat Treatment Parameters on the Relaxation of Welding Residual Stresses in Electron Beam Welded P91 Steel Plates", Procedia Engineering, l 86 (1) ,223–233.
[21] Jamshidian, M., Mousavi, S. A., 2015, “Thickness Measuring of Thin Metal by Non Destructive with Fuzzy Logic Control System”, Journal of Modern Processes in Manufacturing and Production, Vol. 4( 4), 39-45.