The effect of post-welding conditions in friction stir welds: From weld simulation to ductile failure
暂无分享,去创建一个
[1] Michael A. Sutton,et al. A Study of Residual Stresses and Microstructure in 2024-T3 Aluminum Friction Stir Butt Welds , 2002 .
[2] A. Gurson. Continuum Theory of Ductile Rupture by Void Nucleation and Growth: Part I—Yield Criteria and Flow Rules for Porous Ductile Media , 1977 .
[3] M. N. James,et al. Residual stresses and fatigue performance , 2007 .
[4] A. Needleman,et al. Analysis of the cup-cone fracture in a round tensile bar , 1984 .
[5] William D. Lockwood,et al. Mechanical response of friction stir welded AA2024: experiment and modeling , 2002 .
[6] H. Schmidt,et al. A local model for the thermomechanical conditions in friction stir welding , 2004 .
[7] V. Tvergaard. On fatigue crack growth in ductile materials by crack–tip blunting , 2004 .
[8] Yuh J. Chao,et al. Effects of temperature-dependent material properties on welding simulation , 2002 .
[9] Viggo Tvergaard,et al. Influence of void nucleation on ductile shear fracture at a free surface , 1982 .
[10] Phil E. Irving,et al. The role of residual stress and heat affected zone properties on fatigue crack propagation in friction stir welded 2024-T351 aluminium joints , 2003 .
[11] F. Roger,et al. Steady state thermomechanical modelling of friction stir welding , 2006 .
[12] Laurent Dubourg,et al. Prediction and Measurements of Thermal Residual Stresses in AA2024-T3 Friction Stir Welds as a Function of Welding Parameters , 2010 .
[13] K. L. Nielsen,et al. Effect of a shear modified Gurson model on damage development in a FSW tensile specimen , 2009 .
[14] Thomas Pardoen,et al. Integrated modeling of friction stir welding of 6xxx series Al alloys: Process, microstructure and properties , 2012 .
[15] M. Preuss,et al. Microstructure, mechanical properties and residual stresses as a function of welding speed in aluminium AA5083 friction stir welds , 2003 .
[16] Zhili Feng,et al. Modelling of residual stresses and property distributions in friction stir welds of aluminium alloy 6061-T6 , 2007 .
[17] V. Tvergaard. Material Failure by Void Growth to Coalescence , 1989 .
[18] Y. Bréchet,et al. Sequential modeling of local precipitation, strength and strain hardening in friction stir welds of an aluminum alloy 6005A-T6 , 2007 .
[19] Xinhai Qi,et al. Thermal and Thermo-Mechanical Modeling of Friction Stir Welding of Aluminum Alloy 6061-T6 , 1998 .
[20] H. Schmidt,et al. Assessment of Benchmark Cases for Modeling of Residual Stresses and Distortions in Friction Stir Welding , 2008 .
[21] V. Tvergaard. Influence of voids on shear band instabilities under plane strain conditions , 1981 .
[22] Jesper Henri Hattel,et al. An analytical model for the heat generation in friction stir welding , 2004 .
[23] Jesper Henri Hattel,et al. Thermal modelling of friction stir welding , 2008 .
[24] K. L. Nielsen,et al. Modelling of plastic flow localisation and damage development in friction stir welded 6005A aluminium alloy using physics based strain hardening law , 2010 .
[25] K. L. Nielsen. Ductile damage development in friction stir welded aluminum (AA2024) joints , 2008 .
[26] P. J. Webster,et al. Synchrotron X-ray residual strain scanning of a friction stir weld , 2001 .
[27] Rajiv S. Mishra,et al. Friction Stir Welding and Processing , 2007 .
[28] Philip J. Withers,et al. Dissimilar friction stir welds in AA5083-AA6082: The effect of process parameters on residual stress , 2006 .
[29] D. C. Weckman,et al. Predicting onset of high speed gas metal arc weld bead defects using dimensional analysis techniques , 2007 .
[30] P. Michaleris,et al. Comparison of buckling distortion propensity for SAW, GMAW, and FSW , 2006 .
[31] Philip J. Withers,et al. Global mechanical tensioning for the management of residual stresses in welds , 2008 .
[32] A. Needleman,et al. Void Nucleation Effects in Biaxially Stretched Sheets , 1980 .
[33] H. Fjaer,et al. Modelling of the microstructure and strength evolution in Al–Mg–Si alloys during multistage thermal processing , 2004 .
[34] M. N. James,et al. Synchrotron diffraction measurement of residual stresses in friction stir welded 5383-H321 aluminium butt joints and their modification by fatigue cycling , 2004 .
[35] A. Murphy,et al. The Characterization of Friction Stir Welding Process Effects on Stiffened Panel Buckling Performance , 2006 .
[36] Philip J. Withers,et al. The effect of tensioning and sectioning on residual stresses in aluminium AA7749 friction stir welds , 2008 .
[37] K. Dang Van,et al. Modelling of the residual state of friction stir welded plates , 2008 .
[38] D. Fabrègue,et al. Multiscale Analysis of the Strength and Ductility of AA 6056 Aluminum Friction Stir Welds , 2007 .
[39] Philip J. Withers,et al. Simulation of the Effectiveness of Dynamic Cooling for Controlling Residual Stresses in Friction Stir Welds , 2008 .
[40] Michael A. Sutton,et al. Predicting residual thermal stresses in friction stir welded metals , 2006 .
[41] Qingyu Shi,et al. Residual stresses simulation for friction stir welded joint , 2007 .
[42] Yuh J. Chao,et al. Numerical simulation of transient temperature and residual stresses in friction stir welding of 304L stainless steel , 2004 .
[43] Cem Celal Tutum,et al. Optimisation of process parameters in friction stir welding based on residual stress analysis: A feasibility study , 2010 .
[44] Jesper Sandberg Thomsen. Trends in Welding Research, Proceedings , 2006 .
[45] K. L. Nielsen,et al. Strain Hardening and Damage in 6xxx Series Aluminum Alloy Friction Stir Welds , 2010 .
[46] R Kovacevic,et al. Parametric finite element analysis of stress evolution during friction stir welding , 2006 .