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書名:高猛TWIP鋼的凝固與變形行為 (英文)
ISBN:9787524001928
出版社:冶金工業
著編譯者:蘭鵬
頁數:196
所在地:中國大陸 *此為代購商品書號:1739791
可大量預訂,請先連絡。內容簡介
本書基於作者多年來在高錳鋼冶金方面的科研工作積累,分析了高錳鋼的歷史發展趨勢和當前瓶頸問題,採用理論模型、數值模擬和實驗測定等方法,對高錳TWIP(孿晶誘導塑性)鋼的歷史與發展現狀、奧氏體相層錯能模型計算與鋼種設計、凝固熱物性參數測定與分析、凝固組織形成與演變及其與成分的相關性、凝固組織變質細化、鑄態熱塑性及其影響因素、不同成分冷軋-退火的力學性能和加工硬化機制進行了詳細闡述,相關結果可為推進高錳鋼工業化提供數據參考和技術支撐。
目錄
1 High Manganese Austenitic Steel
1 1 Development
1 2 Usage classification and composition system
1 2 1 Wear resistance steel
1 2 2 Automotive steel
1 2 3 Nonmagnetic steel
1 2 4 Cryogenic steel
1 2 5 Damping steel
1 3 Present issues
1 3 1 Smelting
1 3 2 Casting
1 3 3 Rolling
1 3 4 Forming
1 3 5 Welding
References
2 Stacking Fault Energy
2 1 Background
2 2 SFE by calculation and experiment
2 2 1 Previous results
2 2 2 Comparison on models and parameters
2 3 Thermodynamic modeling description
2 3 1 Basic model for SFE calculation
2 3 2 Gibbs free energy change during transformation
2 4 Calculated SFE in high manganese austenite systems
2 4 1 Fe-Mn binary system
2 4 2 Fe-Mn-C ternary system
2 5 SFE variation against temperature and grain size
References
3 Solidification Related Thermophysical Properties
3 1 Background
3 2 Solidification temperature
3 2 1 Models and measurement
3 2 2 Liquidus and solidus
3 3 Macrostructure and phase
3 3 1 Macrostructure
3 3 2 Phase at room temperature
3 4 Thermal conductivity
3 5 Thermal expansion
3 6 Density,specific heat and latent heat
3 6 1 Density
3 6 2 Specific heat
3 6 3 Latent heat
3 7 Microsegregation
3 8 Some aspects on continuous casting technology
References
4 Solidification Behavior and Defect Sensitivity
4 1 Background
4 2 Numerical model
4 2 1 Materials and thermophysical parameters
4 2 2 CAFE model
4 2 3 Meshing and coupled calculation algorithm
4 2 4 Initial conditions and boundary conditions
4 3 Simulation results and verification
4 3 1 Solidification progress
4 3 2 Shrinkage and macrosegregation
4 3 3 Solidification microstructure
4 3 4 Grains orientation
4 3 5 Grain evolution by different transfer behavior
4 3 6 Quantified analysis on columnar to equiaxed transition
4 4 Solidification structure versus composition
4 5 Shrinkage and macrosegregation sensitivity versus composition
4 6 Solidification homogeneity control
References
5 Solidification Structure Refinement by Inoculation
5 1 Background
5 2 Inoculating operation
5 3 Thermodynamics of inoculation
5 3 1 Fe-Mn-C TWIP steel
5 3 2 Fe-Mn-C-Al TWIP steel
5 4 Refinement on Fe-Mn-C TWIP steel
5 4 1 Macrostructure
5 4 2 Grain size
5 4 3 Microsegregation
5 4 4 Inoculant particle
5 4 5 Heterogeneous nucleation
5 5 Refinement on Fe-Mn-C-Al TWIP steel
5 5 1 Solidification structure
5 5 2 Grain size
5 5 3 Dendrite and γ grain correspondency
5 5 4 Refinement mechanism
References
6 Hot Ductility and Deformation Mechnism
6 1 Background
6 2 Stress-strain behavior
6 3 Hot ductility
6 4 Matrix phase,homogeneity and grain size
6 4 1 Phase
6 4 2 Homogeneity
6 4 3 Grain size
6 5 Fracture morphology
6 6 Mechanism of hot ductility
6 6 1 Solute concentration
6 6 2 Dynamic recrystallization
6 6 3 Grain size
6 6 4 Twinning behavior
References
7 Tensile Properties and Microstructure
7 1 Background
7 2 Tensile property
7 3 Stress strain response
7 4 Microstructure and grain size
7 4 1 Matrix phase
7 4 2 Microstructure and grain size
7 5 Relationship between tensile property and microstructure
7 5 1 Tensile property and microstructure
7 5 2 Grain size and the product of strength and ductility
7 6 Relationship between property and composition
7 6 1 Composition design
7 6 2 Tensile property
7 6 3 Phase and microstructure
7 6 4 Mechanical property against composition
References
8 Strain Hardening Behavior
8 1 Background
8 2 Tensile and work hardening property
8 3 Matrix phase,microstructure and twinning behavior
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