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徐祖耀文选【2025|PDF下载-Epub版本|mobi电子书|kindle百度云盘下载】
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- 上海交通大学材料科学与工程学院编 著
- 出版社: 北京:科学出版社
- ISBN:7030091566
- 出版时间:2001
- 标注页数:659页
- 文件大小:51MB
- 文件页数:676页
- 主题词:
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图书目录
MAIN ACADEMIC AWARDS RECEIVED AND ACADEMIC EXCHANGE ACTIVITIES OF PROFESSOR T.Y.HSU(XU ZUYAO) 徐祖耀院士主要学术成就所获奖项与学术交流Ⅰ.Martensitic Transformation1
The Tempering of High Speed Steel3
Diffusion of Carbon During the Formation of Low-carbon Martensite16
On Thermodynamic Calculation of Ms and on Driving Force for Martensitic Transformations in Fe-C20
The Effect of Quenched-in Vacancies on the Martensitic Transformation28
On Calculation of Ms and Driving Force for Martensitic Transformation in Fe-C35
The Effect of Austenite Ordering on the Martensitic Transformation in Fe-Ni Alloys42
An Approximate Approach for the Calculation of Ms in Iron-base Alloys51
Group Theory and Crystallography of the Martensitic Transformation in a Cu-26.71Zn-4.15 Al Shape Memory Alloy63
Thermodynamic Prediction of Ms and Driving Force for Martensitic Transformation in Fe-Mn-C Alloys75
Effect of Solution Strengthening of Austenite on Martensite Transformation in Fe-Ni-C Alloys83
In Situ Study of Phase Transformations in a 50.8at.%Ni-Ti Alloy91
An Investigation of Phase Transformation in a 50.8at.%Ni-Ti Shape Memory Alloy99
Isothermal Martensite Formation in an AISI 52100 Ball Bearing Steel106
Effect of Isothermal Martensite on Properties of an AISI 52100 Ball Bearing Steel115
Influence of Grain Size and Ordering Degree of the Parent Phase on Ms in a Cu-Zn-Al Alloy Containing Boron118
Pulsed Magnetic Field-induced Martensitic Transformation in an Fe-21Ni-4Mn Alloy126
Thermodynamics of the Martensitic Transformation in Cu-Zn Alloys133
Thermodynamics of Martensitic Transformation in Fe-Mn-C and Fe-Ni-C Alloys138
Estimation of the Critical Driving Force for the Thermoelastic Martensitic Transformation in Cu-Zn-Al Alloys145
Thermodynamics of the Martensitic Transformation in Cu-Al Alloys148
Thermodynamics of the Martensitic Transformation in Cu-Zn-Al Alloys154
The Behavior of Quenched-in Vacancies and Stabilization of Martensite in Copper-Based Shape Memory Alloys163
The Size Effect of the Martensitic Transformation in ZrO2-Containing Ceramics170
Carbon Diffusion and Kinetics During the Lath Martensite Formation177
Comment on"Influence of Austenite Grain Size on γ-ε Martensitic Transformation Temperature in Fe-Mn-Si-Cr Alloys"181
Thermomechanical Training Behavior and Its Dynamic Mechanical Analysis in an Fe-Mn-Si Shape Memory Alloy183
Catalysis of Deformation on Martensitic and Reverse Transformations in a NiAl-Fe Shape Memory Alloy194
Martensitic Transformation fcc(γ)→hcp(ε)200
In-situ TEM Observation of γ→ε Martensitic Transformation during Tensile Straining in an Fe-Mn-Si Shape Memory Alloy206
Analysis of the Stress-strain Curves of a Fe-Mn-Si Shape Memory Alloy214
Effect of f.c.c.Antiferromagnetism on Martensitic Transformation in Fe-Mn-Si Based Alloys220
Audio-Frequency Internal Friction Characteristics Associated with the γ→ε Martensitic Transformation in Fe-Mn-Si Based Alloys228
Reverse Transformation Characteristics of Thermally Induced ε(hcp) Martensite in an Fe-Mn-Si Based Alloy238
Energy Consideration of the fcc(γ)→hcp(ε) Martensitic Transformation in Fe-Mn-Si Based Alloys247
Interaction Between Antiferromagnetic Transition and Martensitic Transformation in Fe-Mn-Si Based Shape Memory Alloys259
Critical Driving Force for Martensitic Transformation fcc(γ)→hcp(ε) in Fe-Mn-Si Shape Memory Alloys269
Crystallography of fcc(γ)→hcp(ε) Martensitic Transformation in Fe-Mn-Si Based Alloys278
Martensitic Transformation in Fe-Mn-Si Based Alloys284
Soliton Interpretation of Relation Between Driving Force and Velocity of Interface Motion in Martensitic Transformation289
Ⅱ.Bainitic Transformation297
Thermodynamics of the Bainitic Transformation in Fe-C Alloys299
Effect of Austenite Strengthening on Martensitic and Bainitic Transformations317
Bainite Formation in Low Carbon Cr-Ni Steels323
An Investigation of Internal Friction within the Incubation Period of the Bainitic Transformation333
Bainite Formation in a Silver-Cadmium Alloy340
Thermodynamics of the Bainitic Transformation in Cu-Zn Alloy349
On Bainite Formation354
Kinetics Characteristics of Bainite Formation in Cu-Zn-Al Alloys363
Thermodynamics of the Bainitic Transformation in Cu-Zn-Al Alloys367
Morphology and Structure of Transformation Products Formed at Intermediate Temperature in a Cu-Zn-Al Alloy374
Non-inheritance of Ordering of Parent Phase During the Bainite Formation379
Thermodynamics of Bainitic Transformation in a Cu-24at%Al Alloy384
Thermodynamic Consideration of Formation Mechanism of α1 Plate in β Cu-Base Alloys387
Bainitic Transformation in 8mol% CeO2-ZrO2401
Ⅲ.Shape Memory Alloys and Shape Memory Effect407
The Effect of Martensite Ordering on Shape Memory Effect in a Copper-Zinc-Aluminium Alloy409
Influence of Ordering Degree Grain Size and Pre-Strain on Shape Memory Effect of Cu-Zn-Al Alloy417
Influence of Deformation at Martensite State on Shape Recovery in Cu-Zn-Al Memory Alloys421
Perspective in Development of Shape Memory Materials Associated with Martensitic Transformation430
The Effect of Nitrogen on Shape Memory Effect in Fe-Mn-Si Alloys435
Two-way Shape Memory Effect in a NiAl-Fe Alloy440
Effect of Stacking Fault Probability on γ→ε Martensitic Transformation and Shape Memory Effect in Fe-Mn-Si Based Alloys444
Shape Memory Effect of a Nd-doped Polycrystalline NiAl Alloy459
The Influence of Rare Earth Element on Shape Memory Effect in Fe-Mn-Si Alloys464
Fe-Mn-Si Based Shape Memory Alloys469
Ⅳ.Thermodynamics of Materials477
C-C Interaction Energy in Fe-C Alloys479
Phase Boundaries of Single-phase ε-and γ'-Fields in Fe-C-N Ternary Phase Diagram489
Thermodynamics of the α-and β-Phases Equilibria and Ordering in Cu-Zn System495
Thermodynamic Calculation of the Equilibrium Temperature between the Tetragonal and Monoclinic Phases in CeO2-ZrO2504
Thermodynamic Calculation of the Ms Temperature in 8 mol% CeO2-ZrO2509
Gibbs Free Energy Evaluation of the fcc(γ)and hcp(ε)Phases in Fe-Mn-Si Alloys513
Thermodynamic Consideration of Antiferromagnetic Transition on fcc(γ)→hcp(ε)Martensitic Transformation in Fe-Mn-Si Shape Memory Alloys520
Thermodynamic Prediction of Ms in Fe-Mn-Si Shape Memory Alloys Associated with fcc(γ)→hcp(ε)Martensitic Transformation526
Ⅴ.Spinodal Decomposition,Pearlitic Transformation and Other Topics533
Mechanism of Embrittlement in Tempered Martensite535
The Internal Friction of the Pearlitic,Bainitic and Martensitic Transformations in Fe-Ni-C Alloys542
Thermodynamic Criterion of Spinodal Decomposition in Ternary Systems549
Segregation of Rare Earth During Isothermal Transformation in Low Carbon Steels556
Effects of Rare Earth Element on Isothermal and Martensitic Transformations in Low Carbon Steels559
Self-energy and Interaction Energy of Stacking Fault in fcc Metals Calculated by Embedded-atom Method578
Ⅵ.Proceedings of International Conferences587
Superledges and Carbides in Bainite589
The Shape Memory Effect of Cu-Zn-Al Alloys594
Heat Treating Process for Stabilization of Retained Austenite in a 1C-1.5Cr Ball Bearing Steel600
Thermodynamics of Martensitic Transformation in Ferrous Alloys606
The Effect of Some Factors on Ms and SME in Ce-TZP Ceramics614
Local Softening of Parent Phase Within the Incubation Period of Isothermal Martensitic Transformation in an Fe-Ni-Mn Alloy616
Stabilization of Martensite and Ordering of the Parent Phase in a Cu-Zn-Al Alloy622
Martensitic Transformation fcc(γ)→hcp(ε)and the Shape Memory Effect in Fe-Mn-Si Based Alloys628
Characteristics of the Martensitic Transformation fcc(γ)→hcp(ε) Associated with SME in Fe-Mn-Si Based Alloys and a Novel Shape Memory Alloy Fe-Mn-Si-Re634
Appendix641
List of Papers Published by T.Y.Hsu(Xu Zuyao)with His Coll aborators (1957 to Sept.2000)643
A.Papers In Chinese643
B.Papers In English651
List of Books Published by T.Y.Hsu(Xu Zuyao)with His Co-workers(1951 to 2000)659
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