Evolution of activation energy during hot deformation of AA7150 aluminum alloy
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- Type
- article
- Published
- 2013-06-01
- Cited by
- 164
- References
- 24
- OpenAlex
- https://openalex.org/W1978046126
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:135528702
Keywords
Deformation (meteorology), Flow stress, Materials science, Strain rate, Alloy
References
- Review Grain and subgrain characterisation by electron backscatter diffraction
- Thermally Activated Mechanisms in Crystal Plasticity
- Hot Deformation and Processing of Aluminum Alloys
- On the effects of thermomechanical processing on failure mode in precipitation-hardened aluminium alloys
- Plastic Deformation of Metals
- Constitutive analysis in hot working
- On the mechanism of hot deformation
- Constitutive analysis to predict high-temperature flow stress in modified 9Cr–1Mo (P91) steel
- A comparative study on Arrhenius-type constitutive model and artificial neural network model to predict high-temperature deformation behaviour in Aermet100 steel
- Comparative hot workability of 7012 and 7075 alloys after different pretreatments
- Hot compressive deformation behavior of 7075 Al alloy under elevated temperature
- Modeling the hot-deformation behavior of Ni60 wt%–Ti40 wt% intermetallic alloy
- Hot deformation behavior and microstructural evolution of homogenized 7050 aluminum alloy during compression at elevated temperature
- Constitutive modeling for elevated temperature flow behavior of 42CrMo steel
- Constitutive equations for use in prediction of flow stress during extrusion of aluminium alloys
- Constitutive descriptions for hot compressed 2124-T851 aluminum alloy over a wide range of temperature and strain rate
- Hot deformation behavior of 7150 aluminum alloy during compression at elevated temperature
- Constitutive equations to predict high temperature flow stress in a Ti-modified austenitic stainless steel
- Two flowing stress models for hot deformation of XC45 steel at high temperature
- Activation energies for creep of high-purity aluminum
Cited by
- DEFORMATION BEHAVIOR OF A535 ALUMINUM ALLOY UNDER DIFFERENT STRAIN RATE AND TEMPERATURE CONDITIONS
- Characterization of hot workability in AA 7050 aluminum alloy using activation energy and 3-D processing map
- Characterization of hot processing parameters of powder metallurgy TiAl-based alloy based on the activation energy map and processing map
- Constitutive characteristics and microstructure evolution of 7150 aluminum alloy during isothermal and non-isothermal multistage hot compression
- Effect of Thermomechanical Processing on Electrical and Mechanical Properties of Aluminum Conductor Alloys
- Three-Dimensional Crystal Plasticity Finite Element Simulation of Hot Compressive Deformation Behaviors of 7075 Al Alloy
- Hot tensile deformation behaviors and constitutive model of an Al–Zn–Mg–Cu alloy
- Effects of Deformation Heating on Constitutive Analysis of a New Al-Mg-Si-Cu Alloy during Hot Compression
- Characterization of hot deformation behavior of an extruded Mg–Zn–Mn–Y alloy containing LPSO phase
- Hot Workability and Processing Maps of 7150 Aluminum Alloys with Zr and V Additions
- Effect of vanadium on hot deformation and microstructural evolution of 7150 aluminum alloy
- Constitutive models for high-temperature flow behaviors of a Ni-based superalloy
- Effect of creep-aging on precipitates of 7075 aluminum alloy
- Dynamic softening behavior of TC18 titanium alloy during hot deformation
- Microstructure evolution and mechanical properties of 7A09 high strength aluminium alloy processed by backward extrusion at room temperature
- New constitutive model for high-temperature deformation behavior of inconel 718 superalloy
- Evolution of activation energies for hot deformation of 7150 aluminum alloys with various Zr and V additions
- Modified constitutive analysis and activation energy evolution of a low-density steel considering the effects of deformation parameters
- The Hot Deformation Activation Energy of 7050 Aluminum Alloy under Three Different Deformation Modes
- A Numerical and Analytical Method Based on Energetic Criterion to Design and Optimize the Process Parameters for an Automotive Component
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