Agarwal A. Carbon nanotubes: reinforced metal matrix composites (Boca Raton, 2011). - ОГЛАВЛЕНИЕ / CONTENTS
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ОбложкаAgarwal A. Carbon nanotubes: reinforced metal matrix composites / A.Agarwal, S.R.Bakshi, D.Lahiri. - Boca Raton: CRC Press, 2011. - 305 p.: ill. - (Nanomaterials and their applications). - Incl. bibl. ref. - Ind.: p.297-305. - ISBN 978-1-4398-1149-8
 

Оглавление / Contents
 
Foreword ....................................................... xi
Preface ...................................................... xiii
Authors ...................................................... xvii
List of Abbreviations ......................................... xix

1  Introduction ................................................. 1
   1.1  Composite Materials ..................................... 1
   1.2  Development of Carbon Fibers ............................ 3
   1.3  Carbon Nanotubes: Synthesis and Properties .............. 4
   1.4  Carbon Nanotube-Metal Matrix Composites ................. 8
   1.5  Chapter Highlights ..................................... 12
   References .................................................. 13

2  Processing Techniques ....................................... 17
   2.1  Powder Metallurgy Routes ............................... 18
   2.2  Melt Processing ........................................ 30
   2.3  Thermal Spraying ....................................... 35
   2.4  Electrochemical Routes ................................. 47
   2.5  Novel Techniques ....................................... 52
   2.6  Conclusion ............................................. 60
   2.7  Chapter Highlights ..................................... 60
   References .................................................. 61

3  Characterization of Metal Matrix-Carbon Nanotube
   Composites .................................................. 71
   3.1  X-Ray Diffraction ...................................... 71
   3.2  Raman Spectroscopy ..................................... 72
   3.3  Scanning Electron Microscopy with Energy Dispersive
        Spectroscopy ........................................... 75
   3.4  High Resolution Transmission Electron Microscopy ....... 76
   3.5  Electron Energy Loss Spectroscopy ...................... 78
   3.6  X-Ray Photoelectron Spectroscopy ....................... 79
   3.7  Mechanical Properties Evaluation ....................... 79
   3.8  Thermal Properties ..................................... 90
   3.9  Electrical Properties .................................. 92
   3.10 Electrochemical Properties ............................. 93
   3.11 Chapter Highlights ..................................... 96
   References .................................................. 97

4  Metal-Carbon Nanotube Systems .............................. 101
   4.1  Aluminum-Carbon Nanotube System ....................... 102
   4.2  Copper-Carbon Nanotube System ......................... 116
   4.3  Nickel-Carbon Nanotube System ......................... 129
   4.4  Magnesium-Carbon Nanotube System ...................... 140
   4.5  Other Metals-Carbon Nanotube Systems .................. 145
   4.6  Chapter Highlights .................................... 156
   References ................................................. 156

5  Mechanics of Metal-Carbon Nanotube Systems ................. 169
   5.1  Elastic Modulus of Metal Matrix-Carbon Nanotube 
        Composites ............................................ 170
   5.2  Strengthening Mechanisms in Metal Matrix-Carbon
        Nanotube Composites ................................... 181
   5.3  Chapter Highlights .................................... 199
   References ................................................. 199
   
6  Interfacial Phenomena in Carbon Nanotube Reinforced
   Metal Matrix Composites .................................... 203
   6.1  Significance of Interfacial Phenomena ................. 203
   6.2  Energetics of Carbon Nanotube-Metal Interaction ....... 206
   6.3  Carbon Nanotube-Metal Interaction in Various 
        Systems ............................................... 209
   6.4  Chapter Highlights .................................... 218
   References ................................................. 218

7  Dispersion of Carbon Nanotubes in Metal Matrix ............. 223
   7.1  Significance of Carbon Nanotube Dispersion ............ 223
   7.2  Methods of Improving Carbon Nanotube Dispersion ....... 224
   7.3  Quantification of Carbon Nanotube Dispersion .......... 230
   7.4  Chapter Highlights .................................... 237
   References ................................................. 238

8  Electrical, Thermal, Chemical, Hydrogen Storage, and 
   Tribological Properties .................................... 241
   8.1  Electrical Properties ................................. 241
   8.2  Thermal Properties .................................... 245
   8.3  Corrosion Properties .................................. 250
   8.4  Hydrogen Storage Property ............................. 252
   8.5  Sensors and Catalytic Properties ...................... 254
   8.6  Tribological Properties ............................... 255
   8.7  Chapter Highlights .................................... 260
   References ................................................. 261

9  Computational Studies in Metal Matrix-Carbon Nanotube 
   Composites ................................................. 267
   9.1  Thermodynamic Prediction of Carbon Nanotube-Metal
        Interface ............................................. 270
   9.2  Microstructure Simulation ............................. 272
   9.3  Mechanical and Thermal Property Prediction by the 
        Object-Oriented Finite Element Method ................. 274
   9.4  Chapter Highlights .................................... 276
   References ................................................. 277

10 Summary and Future Directions .............................. 281
   10.1 Summary of Research on MM-CNT Composites .............. 281
   10.2 Future Directions ..................................... 287
   References ................................................. 292

Index ......................................................... 297


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