可再生能源材料相图模拟=Modelling of Phase Diagrams for Renewable Energy Materials:英文/崔佳鑫,鄂殿玉,但家云著
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可再生能源材料相图模拟=Modelling of Phase Diagrams for Renewable Energy Materials:英文/崔佳鑫,鄂殿玉,但家云著
定价:76.00元
出版时间:2023.9
ISBN 978-7-5024-9627-2
9787502496272
Contents
Chapter 1Introduction
1.1Background and motivation
1.2Objectives
1.3Structure of the book
Chapter 2Literature Review
2.1Methods for phase diagram determination
2.1.1Equilibrated alloy for phase diagrams determination
2.1.2Diffusion couples for phase diagram determination
2.1.3Analysis measurements for phase diagram determination
2.2CALPHAD(Calculation of Phase Diagram)calculation
technology
2.2.1CALPHAD development history
2.2.2CALPHAD process
2.2.3CALPHAD application
2.2.4Thermodynamic calculation principles
2.2.5Thermodynamic models
2.2.6Basic processes of thermodynamic functions
Chapter 3Thermodynamic Calculation of the S-Sb System and Cu-S-Sb
System
3.1Introduction
3.2The phase diagram information of the Cu-S-Sb system
3.2.1The Cu-S system
3.2.2The Cu-Sb system
3.2.3The S-Sb system
3.2.4The Cu-S-Sb system
3.3Thermodynamic models
3.3.1Liquid phase
3.3.2Solution phase
3.3.3Intermetallic compound
3.4Study procedure
3.4.1Experimental procedure
3.4.2Assessment procedure
3.4.3Results for the S-Sb binary system
3.4.4Results for the Cu-S-Sb ternary system
3.5Conclusions
Chapter 4Experimental Investigation and Thermodynamic Modelling of the
Se-Sn-Te System
4.1Introduction
4.2Experimental procedures
4.3Literature information
4.3.1The Se-Sn system
4.3.2The Sn-Te system
4.3.3The Se-Te system
4.3.4The Se-Sn-Te system
4.4Thermodynamic calculation
4.4.1Thermodynamic model
4.4.2Assessment procedure
4.5Results and discussion
4.5.1Experimental investigation
4.5.2Thermodynamic optimization
4.6Conclusions
Chapter 5Thermdoynamic Modelling of the V-Zr System Supported by
Key Experiments
5.1Introduction
5.2Phase diagram information
5.2.1Phase diagram data
5.2.2Thermodynamic optimization results in literature
5.3Experimental procedures
5.4Thermodynamic model
5.4.1Pure elements
5.4.2Solution phases
5.4.3Intermetallic compound
5.5Results and discussion
5.5.1Experimental investigation
5.5.2Thermodynamic optimization
5.6Conclusions
Chapter 6Experimental Investigation and Thermdoynamic Modelling of
the Ti-V-Zr System
6.1Introduction
6.2Literature information
6.2.1The Ti-V system
6.2.2The Ti-Zr system
6.2.3V-Zr system
6.2.4Ti-V-Zr system
6.3Experimental procedures
6.4Thermodynamic modelling
6.4.1Thermodynamic model
6.4.2Modelling procedure
6.5Results and discussion
6.5.1Experimental investigation
6.5.2Thermodynamic optimization
6.6Conclusions
Chapter 7Experimental Investigation and Thermdoynamic Modelling
of the Fe-Si-Zr System
7.1Introduction
7.2Literature information
7.2.1The Fe-Si system
7.2.2The Fe-Zr system
7.2.3The Si-Zr system
7.2.4The Fe-Si-Zr system
7.3Experimental investigation
7.3.1Experimental procedures
7.3.2Experimental results
7.4Thermodynamic modelling
7.4.1Thermodynamic models
7.4.2Assessment procedure
7.4.3Thermodynamic optimisation results
7.5Conclusions
Chapter 8Conclusions and Recommendations
8.1Summary and conclusions
8.2Recommended future work
References
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