Dislocation density based model for plastic deformation and globularization of Ti-6Al-4V
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- Type
- article
- Published
- 2013-11-01
- Cited by
- 217
- References
- 68
- OpenAlex
- https://openalex.org/W2036928440
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137180800
Keywords
Materials science, Dislocation, Flow stress, Deformation (meteorology), Isothermal process
References
- ANISOTROPY OF THE HOT PLASTIC DEFORMATION OF Ti-6Al-4V SINGLE-COLONY SAMPLES (PREPRINT)
- Mesoscale Modeling of the Recrystallization of Waspaloy and Application to the Simulation of the Ingot-Cogging Process (Preprint)
- Thermodynamics and kinetics of slip
- Fundamentals of modeling for metals processing
- Titanium: A Technical Guide
- Physical Metallurgy Principles
- Phase Transformations in Metals and Alloys
- Static grain growth in a microduplex Ti–6Al–4V alloy
- Prediction of hot compression flow curves of Ti–6Al–4V alloy in α + β phase region
- Microstructural mechanisms during hot working of commercial grade Ti–6Al–4V with lamellar starting structure
- Investigation of mechanical behavior of quenched Ti–6Al–4V alloy by microindentation
- A statistical theory of flow stress and work-hardening
- Dislocation Cell Formation in Metals
- Experimental investigation of vacancy effects in pure metals
- A new constitutive model for HCP metals
- Work-hardening/softening behaviour of b.c.c. polycrystals during changing strain paths: I. An integrated model based on substructure and texture evolution, and its prediction of the stress–strain behaviour of an IF steel during two-stage strain paths
- Mechanical behavior of Ti-6Al-4V at high and moderate temperatures-Part II: constitutive modeling
- Literature Survey on Diffusivities of Oxygen, Aluminum, and Vanadium in Alpha Titanium, Beta Titanium, and in Rutile
- Characterization of Dynamic Globularization Behavior during Hot Working of Ti-6Al-4V Alloy
- A dislocation mechanics-based crystallographic model of a B2-type intermetallic alloy
Cited by
- Temperature dependent work hardening in Ti–6Al–4V alloy over large temperature and strain rate ranges: Experiments and constitutive modeling
- The identification of dynamic recrystallization and constitutive modeling during hot deformation of Ti55511 titanium alloy
- Rola warunków odkształcenia w kształtowaniu się mikrostruktury stopu TI6AL4V
- Predicting the effects of microstructural features on strain localization of a two-phase titanium alloy
- Competition between dynamic recovery and recrystallization during hot deformation for TC18 titanium alloy
- Unified modeling of flow softening and globularization for hot working of two-phase titanium alloy with a lamellar colony microstructure
- Flow stress model for IN718 accounting for evolution of strengthening precipitates during thermal treatment
- The integrated influence on hot deformation of dual-phase titanium alloys incorporating dynamic recrystallization evolution and α/β phase transformation
- Formation of duplex microstructure in Zr–2.3Nb alloy and its plastic behaviour at various strain rates
- A continuum model for dislocation dynamics incorporating Frank–Read sources and Hall–Petch relation in two dimensions
- Towards predictive simulations of machining
- Simulation of additive manufacturing using coupled constitutive and microstructure models
- Improved dislocation density-based models for describing hot deformation behaviors of a Ni-based superalloy
- Comparative energy consumption analyses of an ultra high frequency induction heating system for material processing applications
- Effect of microstructure evolution of the lamellar alpha on impact toughness in a two-phase titanium alloy
- Behavior and modeling of microstructure evolution during metadynamic recrystallization of a Ni-based superalloy
- A novel unified dislocation density-based model for hot deformation behavior of a nickel-based superalloy under dynamic recrystallization conditions
- Crystal Plasticity Finite-Element Simulation of Ti-6Al-4V Alloy with 3D Polycrystalline Models
- Unified constitutive modelling for two-phase lamellar titanium alloys at hot forming conditions
- Electric current–assisted deformation behavior of Al-Mg-Si alloy under uniaxial tension
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