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Finite element simulation of welding of large structures
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Brown, S., and Song, H., 1992, –Finite Element Simulation of Welding of Large Structures.— ASME Journal of Engineering for Industry, Vol. 114, pp. 441-451
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ASME Journal of Engineering for Industry
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Brown, S.1
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Dong, P., Hong, J. K., Zhang, J., Rogers, P., Bynum, J., and Shah, S., 1998, –Effects of Repair Weld Residual Stresses on Wide-Panel Specimens Loaded in Tension,— ASME JOURNAL OF PRESSURE VESSEL TECHNOLOGY, Vol. 120, pp. 122-128
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Dong, P.1
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Finite element analysis of temperatures and stresses in a single-pass butt-welded pipe (Influence of mesh density and material modeling)
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Karlsson, C. T., 1990, –Finite Element Analysis of Temperatures and Stresses in a Single-Pass Butt-Welded Pipe (Influence of Mesh Density and Material Modeling),— Engineering Computer, Vol. 6, pp. 133-141
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Evaluation of 2d and 3d fea models for predicting residual stress and distortion
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Michaleris, P., Feng, Z., and Campbell, G., 1997, –Evaluation of 2D and 3D FEA Models for Predicting Residual Stress and Distortion,— ASME PVP-Vol. 347
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ASME PVP
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Michaleris, P.1
Feng, Z.2
Campbell, G.3
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10
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Welding residual stresses at the intersection of a small diameter pipe penetrating a thick plate
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Mochizuki, M., Enomoto, K., Okamoto, N., Saito, H., and Hayashi, E., 1993a, –Welding Residual Stresses at the Intersection of a Small Diameter Pipe Penetrating a Thick Plate,— Nuclear Engineering and Design, Vol. 144, pp. 439-447
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Mochizuki, M., Saito, N., Sakata, S., and Moriguchi, K., 1993b, –Residual Stress Analysis Traced Welding Pass Sequences Using Inherent Strain,— Proceedings, JSASS/JSME Structures Conference (in Japanese), Vol. 35, pp. 114-117
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(1993)
Proceedings, JSASS/JSME Structures Conference (In Japanese)
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Mochizuki, M.1
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A study on residual stress of butt-welded plate joint using inherent strain analysis
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Transactions of the 13Th International Conference on Structural Mechanics in Reactor Technology, Porto Alegre, Brazil
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Studies on residual stress analysis in welded structures and application for strength evaluation
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Mochizuki, M., 1997, –Studies on Residual Stress Analysis in Welded Structures and Application for Strength Evaluation,— doctoral dissertation, Kyoto University (in Japanese), pp. 156-168
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Mochizuki, M.1
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14
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The effects of induction heating conditions on controlling residual stresses in welded pipes
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Rybicki, E. F., and McGuire, P. A., 1982, –The Effects of Induction Heating Conditions on Controlling Residual Stresses in Welded Pipes,— ASME Journal of Engineering Materials and Technology, Vol. 104, pp. 267-273
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ASME Journal of Engineering Materials and Technology
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Rybicki, E.F.1
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0022697434
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A three-dimensional finite element evaluation of a destructive experimental method for determining throughthickness residual stresses in girth welded pipes
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Rybicki, E. F., and Shadley, J. R., 1986, –A Three-Dimensional Finite Element Evaluation of a Destructive Experimental Method for Determining ThroughThickness Residual Stresses in Girth Welded Pipes,— ASME Journal of Engineering Materials and Technology, Vol. 108, pp. 99-106
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ASME Journal of Engineering Materials and Technology
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Rybicki, E.F.1
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Transient and residual thermal strain-stress analysis of gmaw
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Tekrewal, P., and Mazumder, J., 1991, –Transient and Residual Thermal Strain-Stress Analysis of GMAW,— ASME Journal of Engineering Materials and Teclmol-ogy, Vol. 113, pp. 336-343
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ASME Journal of Engineering Materials and Teclmol-Ogy
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Tekrewal, P.1
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New measuring method of three-dimensional residual stresses in long welded joints using inherent strain as parameters-lz method
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Ueda, Y., and Fukuda, K., 1989, –New Measuring Method of Three-Dimensional Residual Stresses in Long Welded Joints Using Inherent Strain as Parameters-Lz Method,— ASME Journal of Engineering Materials and Technology, Vol. III, pp. 1-8
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ASME Journal of Engineering Materials and Technology
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Ueda, Y.1
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Experimental verification for predicting method of welding residual stresses in t-joints using inherent strain
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Ueda, Y., Yuan, M. G., Mochizuki, M., Umezawa, S., and Enomoto, K., 1993a, –Experimental Verification for Predicting Method of Welding Residual Stresses in T-Joints Using Inherent Strain,— Transactions of the Japan Welding Research Institute, Vol. 22, pp. 169-176
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Ueda, Y.1
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19
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0027683102
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Prediction of residual stresses in butt welded plates using inherent strains
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Ueda, Y., and Yuan, M. G., 1993b, –Prediction of Residual Stresses in Butt Welded Plates Using Inherent Strains,— ASME Journal of Engineering Materials and Technology, Vol. 115, pp. 417-423
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ASME Journal of Engineering Materials and Technology
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Ueda, Y.1
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84902080142
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Tlylz method and t method for measurement of three-dimensional residual stresses in bead-on-plate welds
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Ueda, Y., Ma, N. X., and Koki, R., 1994, –TLyLz Method and T Method for Measurement of Three-Dimensional Residual Stresses in Bead-on-Plate Welds,— Transactions of the Japan Welding Research Institute, Vol. 23, pp. 239-247
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Transactions of the Japan Welding Research Institute
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Ueda, Y.1
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0006242549
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Distributions of residual stress and inherent strains in fillet welds
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Ueda, Y., and Ma, N. X., 1995, –Distributions of Residual Stress and Inherent Strains in Fillet Welds,— Transactions of Japan Welding Research Institute, Vol. 24, pp. 123-130
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Transactions of Japan Welding Research Institute
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Ueda, Y.1
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