Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials

Portella, P.D.; Rie, K.-T.

In stock
Regular price 142.500 KD inc. VAT
License
Table of contents
  • Copyright Pageii
  • Contentsvii
  • Chapter 1. Isothermal Low Cycle Fatigue; General Aspects1
  • Room and high-temperature low cycle fatigue of lamellar structured TiAl3
  • The effect of creep pre-deformation on high-temperature fatigue behaviour of the titanium alloy IMI9
  • The effects of oxidation and creep on the elevated temperature fatigue behaviour of a near-α titani15
  • Cyclic plasticity of cold-worked nickel at high mean stresses21
  • Isothermal high temperature fatigue behaviour of NiCr22Co12Mo9 under superimposed LCF and HCF loadin27
  • Low cycle fatigue of superalloy single crystals CMSX-433
  • Fracture mechanism of ferritic ductile cast iron in extremely low cycle fatigue39
  • Low cycle fatigue behaviour of recycable high strength PM-steels45
  • Low cycle fatigue behaviour of porous PM 316L austenitic stainless steel51
  • High temperature fatigue behaviour of X20CrMoV121 and X10CrMoVNb9157
  • Anomalous cyclic behaviour of ferritic stainless steels63
  • Low cycle fatigue of stainless steels: a comparative study69
  • Cyclic stress-strain response to different strain histories in austenitic, ferritic and austenitic-f75
  • The evaluation of internal and effective stresses during low cycle fatigue in stainless steels81
  • Variation occured in the second region of da/dN-ΔK curve87
  • Determination of cold work energy in LCF/HCF region93
  • Contribution to the physical understanding of the Manson-Coffin law99
  • Effect of some measuring technique factors influencing the LCF test results105
  • Testing and study on low cycle impact fatigue111
  • Chapter 2. Thermal and Thermo-Mechanical Loading117
  • Thermal and thermal-mechanical fatigue of superalloys, a challenging goal for mechanical tests and m119
  • Thermo-mechanical fatigue (TMF) in turbine airfoils: typical loading, 3D effects and adjusted testin131
  • Low cycle fatigue and thermomechanical fatigue behaviour of coated and uncoated IN738 superalloy137
  • High temperature fatigue behaviour of coated IN738 LC143
  • Thermomechanical fatigue of a coated directionally solidified nickel-base superalloy149
  • Viscoplastic model for thermomechanical fatigue155
  • Features on thermal fatigue of ferrite matrix ductile cast iron161
  • The influence of secondary dendrite arm spacing on the TMF response of Al 319 alloys167
  • Thermomechanical fatigue of surfaced and sprayed elements173
  • Aspects of thermal fatigue deformation process of wrought Ni-base superalloy179
  • Deformation behaviour of wrought nickel base superalloy subjected to isothermal cyclic creep and the185
  • Chapter 3. Multiaxial Loading191
  • Micromechanical simulations of stage I fatigue crack growth under multiaxial loading193
  • Influence of stress concentration and multiaxial stress state on low cycle fatigue199
  • An evaluation of methods for estimating fatigue lives under multiaxial nonproportional variable ampl205
  • Influence of load- and deformation-controlled multiaxial tests on fatigue life to crack initiation211
  • Influence of multi-axial loading on the lifetime in LCF strength217
  • On the utility of complex multiaxial cyclic loadings in tension-torsion-internal and external pressu223
  • Design criteria for multiaxial creep-fatigue supported by advanced multiaxial experiments229
  • Comparative techniques for multiaxial testing235
  • An algorithm for solving non-linear problems in mechanics of structures under complex loading histor241
  • Fatigue in biaxial stress state of prestrained aluminium247
  • A new nonlinear damage cumulative model for multiaxial fatigue253
  • Experimental verification of similarity of creep velocity curves259
  • Chapter 4. Microstructural Aspects265
  • Microstructural aspects of low cycle fatigue267
  • Relationship between cyclic stress-strain response and substructure279
  • Characterization of plasticity-induced martensite formation during fatigue of austenitic steel285
  • Influence of 160 000 service hours on the high temperature LCF behaviour of 2.25Cr-1Mo steel291
  • Cyclic deformation behaviour of a superaustenitic stainless steel and the role of embrittling precip297
  • The effect of δ-ferrite on low cycle fatigue behaviour at high temperature in type 304L stainless s303
  • Low-cycle fatigue behaviour of a 316 LN stainless steel at 77 K and associated structural transforma309
  • Influence of the bainitic microstructure on short fatigue crack growth in HSS steel butt-welded join315
  • Fatigue-induced martensitic transformation in metastable stainless steels321
  • Correlation between grain boundary structure and cyclic plastic strain below yield stress327
  • Significance of microstructure and pore morphology on the initiation and growth of fatigue cracks in333
  • Effects of matrix-structures on low cycle fatigue properties in ductile cast irons339
  • Effect of predeformation on the high-temperature low cycle fatigue behaviour of polycrystalline Ni-b345
  • Estimation of the critical stress for γ' shearing in a single crystal superalloy from LCF data351
  • Phase instability in titanium alloy GTM-900 during low cycle fatigue at elevated temperature357
  • Structural aspects of surfaced elements fatigue life363
  • Investigation of structural changes of structural steel (in thin foil) at low cycle deformations369
  • Elasto-plastic transition in TEMPCORE reinforcing steel373
  • Microstructural aspects of strain localization during low-cycle fatigue in model AL-Li alloys379
  • Chapter 5. Influence of Environmental Conditions and Surface Treatments385
  • Hydrogen effects on the saturation stress and the ability to fracture of nickel single crystals fati387
  • Evaluation of stress corrosion resistance and corrosion fatigue fracture behavior of ultra-high-stre393
  • Fatigue of cemented carbides with different surface modifications under cyclic loads399
  • Damage accumulation and crack growth in metals under hydrogen embrittlement405
  • Environmentally assisted low-cycle fatigue crack initiation and growth411
  • Elasto-plastic transition of carbon tool steels surface treated by laser417
  • Effect of the near-surface layers and surface modification on behaviour of BCC metals under fatigue423
  • Chapter 6. Advanced Materials429
  • Cyclic stress-strain and fatigue behaviour of particulate-reinforced Al-matrix composites431
  • Influence of local damage on the creep behaviour of particle reinforced metal matrix composites437
  • Thermal and thermal-mechanical fatigue of dispersion strengthened Al-alloys443
  • In-cycle strain evolution in a short-fibre reinforced aluminium-alloy during thermal cycling creep449
  • Influence of Al2O3 fiber reinforcement on the thermal-mechanical fatigue behaviour of the cast alumi455
  • Isothermal low cycle fatigue of titanium matrix composites461
  • Mechanics and mechanisms of thermal fatigue damage in SCS-6/Ti-24Al-11Nb composite467
  • Investigations on the thermomechanical fatigue behaviour of particle reinforced aluminium alloys app473
  • Off-axis shear behavior of selected MMC's479
  • Some experimental data of low-cycle impact fatigue for several metallic materials485
  • Chapter 7. Behaviour of Short and Large Cracks491
  • Cyclic strain localisation, crack nucleation and short crack growth493
  • An analysis of the Gerber parabolic relationship based upon small fatigue crack growth behavior505
  • A consideration of scatter in small fatigue crack growth511
  • Propagation of short fatigue cracks in austempered ductile iron under cyclic block loading517
  • Small crack propagation during low cycle fatigue tests at elevated temperature523
  • Fatigue life curves of materials and the growth of short cracks529
  • Stereological analysis of fatigue short crack propagation in Zircaloy-4535
  • A stochastic model for plural fracture541
  • Fatigue crack growth and fatigue life estimation of notched members in a short crack range547
  • Initiation and propagation of cracks at sharp notches under cyclic loading553
  • Topography of the crack nuclei at the emerging persistent slip band in austenitic 316L steel559
  • Chapter 8. Crack Initiation and Coalescing; Damage Evolution565
  • Interaction between low cycle fatigue and high cycle fatigue in 316L stainless steel567
  • Effect of loading wave form on the results of low cycle fatigue and fatigue crack propagation tests573
  • Relation between cyclic J-integral and crack tip opening displacement at low-cycle fatigue579
  • Effect of stress ratio on local fatigue damage accumulation around notch585
  • Modelling of the creep fatigue crack growth based on the calculation of the cavity configuration in591
  • Crack propagation behaviour of the titanium alloy IMI 834 under high temperature creep-fatigue condi597
  • Numerical simulation of viscoplastic crack closure603
  • Investigations on influence of the plastic zone after single-peak overload on fatigue life of struct609
  • Fatigue crack propagation in powder heterogeneous metallic materials615
  • Stable damage accumulation and elasto-plastic deformation of composite materials621
  • Chapter 9. Constitutive Equations; Modelling627
  • A microstructurally based explanation for the high temperature LCF behaviour of the ODS nickel-base629
  • A numerical calculation on cyclic stress-strain response in the vicinity of crack tip in annealed co635
  • Numerical and experimental investigations of temperature-rate terms in modelling the inelastic mater641
  • Ratchetting of an austenitic steel under multiaxial and thermomechanical loading: experiments and mo647
  • Material parameter identification considering scattering and verification by full field experimental653
  • Multimodel analysis of elasto-plastic and elasto-visco-plastic deformation processes in materials an659
  • Experimental observation of heat generation rules of metallic materials under monotonic and cyclic l665
  • Computational simulation of self-heating generation in cyclic loading process671
  • BP program - interactive evaluation of Bodner-Partom model material constants677
  • Implementation of viscoplastic constitutive model in MARC computer code683
  • Chapter 10. Design Methods; Life Prediction689
  • Experimental investigation on the cyclic behaviour of transformed steel sheet691
  • Low cycle fatigue behaviour of two ferrite-pearlite microalloyed steels697
  • Proposal of a high-temperature low cycle fatigue life prediction model703
  • Fatigue propagation of surface cracks under cyclic loading709
  • Methods of service durability assessment715
  • Lifetime prediction - comparison between calculation and experiment on a large data base721
  • Standardized load-time histories - status and trends729
  • In-service integrity in the automotive industry today and tomorrow735
  • Simulation of long term creep fatigue behaviour by multi-stage service type strain cycling741
  • Effect of sequence of loading on cumulative fatigue damage in titanium alloy747
  • Universal J-integral for assessing multiaxial low cycle fatigue lives of various materials753
  • Cumulative damage modelling in a life prediction under random loading conditions759
  • Effect of the different counting methods of cyclic loading service spectrum on cumulative fatigue da765
  • Low-cycle fatigue of around notched specimens of anisotropic steels771
  • Prediction of constant-amplitude fatigue life to failure under pulsating tension (R>0) by use of the777
  • Chapter 11. Case Studies; Practical Experience785
  • Validation of life prediction methods for components subject to reep-fatigue loading787
  • Significance of dwell cracking for IN718 turbine discs801
  • Understanding of creep, fatigue and oxidation effects for aero-engine disk applications807
  • On a failure criterion for thermomechanical multiaxial low cycle fatigue and its industrial applicat815
  • The low-cycle fatigue of fibre-metal-hybrid structures821
  • Inadequate design specifications leading to fatigue failure in tank container shells827
  • Simplified life prediction for notched components with high local stresses833
  • The assessment of remaining fatigue life of airframe during operations839
  • Low cycle fatigue cracking of titanium compressor disks of aircratt engine D-30845
  • Lower bound collapse load and fatigue of materials851
  • Subject Index857
  • Materials Index863
  • Author Index867
Book details
  • Vendor Elsevier S & T
  • SKU 9780080433264
  • ISBN-13 9780080549941
  • Author Portella, P.D.; Rie, K.-T.
  • Category Technology & Engineering
  • Subject Materials Science

Do you have questions about this book?

Ask an expert!

The 4th International Conference on Low Cycle Fatigue and Elasto-Plastic Behaviour of Materials was held from 7-11 September 1998 in Garmisch-Partenkirchen, Germany.

In response to a call for papers, nearly 200 extended abstracts from 32 countries were submitted to the organizing committee. These papers were presented at the conference as invited lectures or short contributions and as oral or poster presentation. All the papers were presented in poster form in extended poster sessions–a peculiarity of the LCF Conferences which allows an intense, thorough discussion of all contributions.

Each chapter provides a comprehensive overview of a materials class or a given subject. Many contributions could have been included in two or even three chapters and so, in order to give a better overview of the content, the reader will find a subject index, a material index and an author index in the back of the book.