000 05830cam a2200457Ii 4500
999 _c94664
_d94664
_x1
001 94664
003 ES-MaUEC
005 20230102112626.0
006 m o d
007 cr cnu---unuuu
008 161006s2016 sz ob 000 0 eng d
020 _a3319408631
_q(electronic bk.)
020 _a9783319408637
_q(electronic bk.)
020 _z3319408615
020 _z9783319408613
035 _a(OCoLC)959979799
_z(OCoLC)960281990
_z(OCoLC)960711341
_z(OCoLC)962017456
_z(OCoLC)962124925
_z(OCoLC)962353666
_z(OCoLC)974651244
040 _aN$T
_cN$T
_dYDX
_dN$T
_dEBLCP
_dIDEBK
_dOCLCO
_dGW5XE
_dIDB
_dUAB
_dMERUC
_dIOG
_dESU
_dZ5A
_dJBG
_dIAD
_dICN
_dOTZ
_dAZU
_dUPM
_dOCLCF
_dOCLCQ
_dU3W
_dES-MaUEC
_bspa
050 4 _aTA417.6
_bH656 2016 EB
100 1 _aHojny, Marcin,
_eautor
_9669317
245 1 0 _aModeling steel deformation in the semi-solid state
_cMarcin Hojny.
264 1 _aCham, Switzerland
_bSpringer
_c2016.
300 _a1 recurso en línea
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
490 0 _aAdvanced structured materials
_x1869-8441
_vVolume 47.
500 _aSpringerLink
504 _aIncluye referencias bibliográficas
505 0 _aAcknowledgment; Contents; Nomenclature; Abstract; 1 Introduction; 2 State of the Art; References; 3 Aim of the Study; 4 Integration of Physical and Computer Simulation; 4.1 Characteristics of the Integrated Modelling Concept; 4.2 Hybrid Analytical-Numerical Model of Mushy Steel Deformation; 4.2.1 Resistance Heating Model; 4.3 "One Decision Software"-The DEFFEM Package; 4.4 Summary; References; 5 Spatial Solutions Based on the Particle Method; 5.1 Introduction; 5.2 The Smoothed Particle Hydrodynamics (SPH) Method; 5.2.1 Fluid Model; 5.3 Test Cases to Validate the Solver
505 8 _a5.3.1 Free Particles Fall5.3.2 Structure Impact; 5.4 Summary; References; 6 Spatial Solutions Based on the Finite Element Method; 6.1 Thermal Model; 6.1.1 Discretization for Steady Heat Flow Cases; 6.1.2 Discretization for Transient Heat Flow Cases; 6.2 Solidification Model (FEM Approach); 6.3 Mechanical Model; 6.3.1 Spatial Solution; 6.3.1.1 Transformation of the Coordinate System and Integration; 6.3.1.2 Time Problem; 6.4 Solidification Model (CAFE Approach); References; 7 Physical Simulation of Steel Deformation in the Semi-solid State; 7.1 Material and Test Methodology
505 8 _a7.1.1 Samples and Tools7.1.2 The Determination of Characteristic Temperatures; 7.1.3 Thermal Process Map (TPM); 7.2 Preliminary Experimental Research of Steel Deformation in the Semi-solid State; 7.2.1 The Dependence of Steel Microstructure Parameters on the Cooling Rate During Solidification; 7.2.2 Steel Ductility Tests; 7.2.3 Macrostructure and Microstructure; 7.3 Summary; References; 8 Modelling Concept Based upon Axially Symmetrical Models; 8.1 Direct Simulation Using the Gleeble Thermo-Mechanical Simulator; 8.1.1 Testing the Temperature Distribution
505 8 _a8.1.2 Macrostructure and Microstructure8.2 Application of Tomography to the Spatial Analysis of the Melting Zone; 8.3 Numerical Modelling with the DEFFEM Simulation System; 8.3.1 Modelling of the Resistance Heating Process; 8.3.1.1 Example Results of Resistance Heating; 8.3.2 Modelling the Deformation Process; 8.3.2.1 Rheological Model; 8.3.2.2 The Numerical Identification Methodology (NIM) for the Low Temperature Range; 8.3.2.3 The Direct Identification Methodology (DIM) for the Extra-High Temperature Range
505 8 _a8.3.2.4 The Numerical Identification Methodology (NIM) for the Extra-High Temperature Range8.4 Summary; References; 9 Modelling Concept Based upon Three-Dimensional Models; 9.1 Modified Experimental Research Methodology; 9.2 Resistance Heating Model; 9.3 Modelling the Resistance Heating Process; 9.4 Deformation Process; 9.5 Microstructure; 9.6 Summary; References; 10 Summary and Future Work; Appendix A; Appendix B; Appendix C; Appendix D; Appendix E
520 3 _aThis book addresses selected aspects of steel-deformation modelling, both at very high temperatures and under the conditions in which the liquid and the solid phases coexist. Steel-deformation modelling with its simultaneous solidification is particularly difficult due to its specificity and complexity. With regard to industrial applications and the development of new, integrated continuous casting and rolling processes, the issues related to modelling are becoming increasingly important. Since the numerous industrial tests that are necessary when traditional methods are used to design the process of continuous casting immediately followed by rolling are expensive, new modelling concepts have been sought. Comprehensive tests were applied to solve problems related to the deformation of steel with a semi-solid core. Physical tests using specialist laboratory instruments (Gleeble 3800thermo-mechanical simulator, NANOTOM 180 N computer tomography, Zwick Z250 testing equipment, 3D blue-light scanning systems), and advanced mathematical modelling (finite element method (FEM), SPH smoothed particle method, cellular automata method CA) were used. This book presents in detail a modelling concept for steel deformation in the semi-solid state based on an approach integrating physical and computer simulations with a full or partial information exchange between these areas. .
988 _aEBOOK, asignarmaterias, EBSPRINGER_2017A
650 7 _aMecánica de medios continuos
_2embne
_0(OCoLC)fst00876787
_0
_9142188
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-3-319-40863-7
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
_cLE
998 _b02/2018
_dz
_e-
_zSI