000 03379cam a2200433Mc 4500
001 u11883
003 SA-PMU
005 20210418123731.0
008 160419s2015 enka b 001 0 eng d
040 _aDKDLA
_bdan
_cDKDLA
_dOCLCO
_dOCLCF
_dOCLCQ
_dOCLCO
020 _a9781783264971
_q(pbk)
020 _a1783264977
_q(pbk)
035 _a(OCoLC)946968713
050 1 4 _aTS205
_b.L556 2015
084 _a621.7
_2z
084 _a669
_2z
084 _a621.9.04
_2z
245 0 0 _aFundamentals of materials modelling for metals processing technologies :
_btheories and applications
260 _aLondon :
_bImperial College Press,
_c2015
300 _a512 p :
_bill. ;
_c23 cm
504 _aIncludes bibliographical references and index
505 0 _aMetal forming and materials modelling -- Mechanics of metal deformation -- Unified constitutive modelling techniques -- Plasticity in cold metal forming -- Viscoplasticity and microstructural evolution in warm 7 hot metal forming -- Continuum damage mechanics in metal forming -- Numerical methods for materials modelling -- Materials and process modelling in metal forming applications -- Crystal plasticity for micra forming process modelling -- Appendix A: Examples of determined unified viscoplastic constitutive equations
500 _aICP
520 8 _aThis book provides a comprehensive introduction to the unique theory developed over years of research on materials and process modelling and its application in metal forming technologies. This book provides a comprehensive introduction to the unique theory developed over years of research on materials and process modelling and its application in metal forming technologies. It starts with the introduction of fundamental theories on the mechanics of materials, computational mechanics and the formulation of unified constitutive equations. Particular attention is paid to elastic plastic formulations for cold metal forming and unified elastic viscoplastic constitutive equations for warm/hot metals processing. Damage in metal forming and numerical techniques to solve and determine the unified constitutive equations are also detailed. Examples are given for the application of the unified theories to solve practical problems encountered in metal forming processes. This is particularly useful to predict microstructure evolution in warm/hot metal forming processes. Crystal plasticity theories and modelling techniques with their applications in micro-forming are also introduced in the book. - - The book is self-contained and unified in presentation. The explanations are highlighted to capture the interest of curious readers and complete enough to provide the necessary background material to further explore/develop new theories and applications.
650 0 _aMetals
_xFormability.
650 0 _aMaterials science
_xData processing.
650 0 _aMaterials
_xMathematical models.
650 7 _aMaterials
_xMathematical models
_2fast
_0(OCoLC)fst01011852
650 7 _aMaterials science
_xData processing
_2fast
_0(OCoLC)fst01011960
650 7 _aMetals
_xFormability
_2fast
_0(OCoLC)fst01018126
653 _aTechnology
700 1 _aLin, Jianguo
029 0 _aDKDLA
_b820051-katalog:001905967
029 1 _aDKDLA
_b820010-katalog:6224773
942 _cBOOK
994 _aZ0
_bSUPMU
948 _hNO HOLDINGS IN SUPMU - 1 OTHER HOLDINGS
596 _a1
999 _c4408
_d4408