基本信息·出版社:清华大学出版社 ·页码:354 页 ·出版日期:2005年07月 ·ISBN:7302086060 ·条形码:9787302086062 ·版本:第1版 ·装帧:精装 · ...
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先进磁性材料手册第3卷:先进磁性材料的制作和加工 |
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先进磁性材料手册第3卷:先进磁性材料的制作和加工 |
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基本信息·出版社:清华大学出版社
·页码:354 页
·出版日期:2005年07月
·ISBN:7302086060
·条形码:9787302086062
·版本:第1版
·装帧:精装
·开本:0开 Pages Per Sheet
·丛书名:21世纪科技前沿丛书
内容简介 本书的目的是对磁性材料研究的新近进展提供一种全面的理解。本书共分四卷,每一卷集中论述一个具体的研究领域。每一章首先对该章的基本概念和重要观念进行阐述,然后从实验和理论方面进行详细地说明,最后介绍该领域的发展前景以及新的思想。书中提供了详尽的参考文献,可供研究人员参考。
每种新磁性材料的开发成功都取决于它的性能与成本。在正确的磁理论建立后,如何使用最合适的制作加工工艺是开发制造新磁性材料的关键。第3卷对近年来各种磁性材料的制作加工原理和性能的相关性进行分析总结并瞻望未来。
本书的读者对象为研究生和相关专业的研究人员。
编辑推荐 每种新磁性材料的开发成功都取决于它的性能与成本。在正确的磁理论建立后,如何使用最合适的制作加工工艺是开发制造新磁性材料的关键。本书是《先进磁性材料手册》的第三卷,主要是对近年来各种磁性材料的制作加工原理和性能的相关性进行分析总结并瞻望未来。
本书适合于磁性材料相关专业的研究生和研究人员。
目录 Foreward
Preface
List of Contributors
1 HDDR Processfor the Production of High Performance Rare-Earth Magnets
1.1 Introduction1
1.2 HDDR Phenomena in Nd\|Fe\|B3
1.2.1 Hydrogen Absorption4
1.2.2 Disproportionation in Nd2Fe14B4
1.2.3 Recombination of Disproportionated Nd2Fe14B8
1.3 Anisotropy in HDDR Treated Nd\|Fe\|B Magnets11
1.4 HDDR Phenomena in Other Rare\|Earth Magnetic Materials21
1.4.1 Sm2Fe17Nx Compound21
1.4.2 ThMn12\|type Compound23
1.4.3 Nd3(Fe, Ti)29\|Type Compound24
1.5 Summary25
References 252 Process and Magnetic Properties of RareEarth Bonded Magnets32
2.1 Introduction32
2.2 Recent Progress on RareEarth Magnetic Powders for Bonded Magnets34
2.2.1 Isotropic NdFeB Powders34
2.2.2 Lean Neo Isotropic Powders38
2.2.3 Anisotropic NdFeB Powders for Bonded Magnets39
2.2.4 SmCo Powder for Bonded Magnet Applications40
2.2.5 Other Magnetic Powders43
2.3 Process and Magnetic Properties of Polymer Bonded Rare Earth Magnets44
2.3.1 Bonded Magnets Produced by Compression Molding Process44
2.3.2 Hot Compression Molding Process49
2.3.3 Bonded Magnets Produced by Injection Molding Process52
2.3.4 Bonded Magnets Produced by Extrusion Process53
2.4 Polymers and Polymer Additives for Bonded RareEarth Magnets55
2.5 Environmental Stability of Polymer Bonded Magnets57
2.6 Summary61
References653 Laser Processing of Magnetic Materials69
3.1 Introduction69
3.2 Laser Characteristics and Laser Facilities for Materials Processing70
3.2.1 Laser Characteristics70
3.2.2 Lasers Available for Materials Processing71
3.2.3 Laser Materials Interaction74
3.3 Laser Surface Treatment of Magnetic Thin Films74
3.3.1 Precise Grain Size Control of Magnetic Thin Films75
3.3.2 Alignment of Magnetic Grains by Laser Annealing78
3.4 Interferometric Laser Lithography79
3.4.1 Multi\|Step ILL80
3.4.2 Direct Patterning Using ILL82
3.5 Concluding Remarks85
References854 Processing and Properties of Nanocomposite Nd2Fe14B\|Based Permanent Magnets88
4.1 Introduction88
4.2 Basic Considerations on Processing Techniques88
4.3 Preparation of Amorphous or Nanostructured Precursors91
4.4 Transformation of Amorphous or Nanostructured Precursors97
4.5 Direct Preparation of Nanocomposite Permanent Magnets99
4.6 Effects of Additive Elements on Crystallization Behavior100
4.6.1 Fe3B/Nd2Fe14B101
4.6.2 Advanced Nanocomposite Permanent Magnets Based on Fe3B/Nd2Fe14B103
4.6.3 α\|Fe/Nd2Fe14B104
4.7 Practical Properties of Nanocomposite Nd2Fe14B\|Based Magnets106
4.7.1 Magnetic Properties106
4.7.2 Corrosion Behaviors107
4.7.3 Magnetizability108
4.8 Application Examples109
4.9 Future Subjects110
References1115 Amorphous and Nanocrystalline Soft Magnetic Materials: Tailoring of Magnetic
Properties, Magnetoelastic and Transport Properties115
6 Nanogranular Layered Magnetic Films182
7 Monodisperse Ferromagnetic Metal Particles: Synthesis by Chemical Routes, Size
Control and Magnetic Characterizations217
8 Monocrystalline Half\|Metallic NiMnSb Thin Films: Preparation and
Characterization267
9 Bulk Amorphous Magnetic Materials303
Index353
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