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El. knyga: Ultrasonic Micro/nano Manipulations: Principles And Examples

(Nanjing Univ Of Aeronautics & Astronautics, China)
  • Formatas: 268 pages
  • Išleidimo metai: 13-Mar-2014
  • Leidėjas: World Scientific Publishing Co Pte Ltd
  • Kalba: eng
  • ISBN-13: 9789814525336
Kitos knygos pagal šią temą:
  • Formatas: 268 pages
  • Išleidimo metai: 13-Mar-2014
  • Leidėjas: World Scientific Publishing Co Pte Ltd
  • Kalba: eng
  • ISBN-13: 9789814525336
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Demands for high-performance micro/nano manipulations, from the manufacture of microelectronic and photonic devices, biomedical apparatus, nanoscience and nanotechnology, renewable energy, environment protection, and high-end appliances, have been rapidly increasing in recent years. However, there are very few books on ultrasonic manipulation technology, which is one of the important means in micro/nano manipulations.This unique title gives the basic physical principles of ultrasonic micro/nano manipulations, and highlights methods of implementing these principles. The nonlinear effects of ultrasound are described in details after piezoelectric transduction and acoustic field are introduced and discussed. Numerous important examples are given in this book, to help readers better understand the applications of these principles and characteristics of ultrasonic manipulators utilizing these principles. The examples cover the manipulations of micro solids, nanoscale entities, droplets and microfluid.This indispensable book will contribute positively to the development and application of micro/nano manipulation technology.
Preface v
Foreword vii
Chapter 1 Introduction 1(10)
1.1 Diversity of Actuation
1(3)
1.2 Generalities of Ultrasonic Micro/Nano Manipulations
4(3)
References
7(4)
Chapter 2 Physics in Ultrasonic Micro/Nano Manipulations 11(36)
2.1 Piezoelectric Transduction
11(8)
2.2 Acoustic Field and Energy Density
19(4)
2.3 Acoustic Radiation Force
23(7)
2.4 Acoustic Streaming
30(2)
2.5 Frictional Driving
32(3)
2.6 Chladni Effect
35(2)
2.7 Acoustic Cavitation and Bjerknes Forces
37(2)
2.8 Sound Induced Intermolecular Force Change
39(2)
2.9 Summary and Remarks
41(1)
References
41(6)
Chapter 3 Ultrasonic Trapping of Micro Solids 47(50)
3.1 On a Radiation Point
47(13)
3.2 On a Radiation Line
60(6)
3.3 On a Radiation Face
66(13)
3.4 π-shaped Ultrasonic Tweezers
79(15)
3.5 Summary and Remarks
94(1)
References
94(3)
Chapter 4 Ultrasonic Extraction, Driving and Removal of Micro Solids 97(52)
4.1 Particle Extraction
97(13)
4.2 Spin Driving of Particles
110(11)
4.3 Rotary Driving of Small Mechanical components
121(13)
4.4 Dust Removal for Photovoltaic Panels
134(13)
4.5 Summary and Remarks
147(1)
References
147(2)
Chapter 5 Ultrasonic Manipulations of Nanoscale Entities 149(46)
5.1 Contact Type Trapping and 3D Transfer of a Single Nanowire
149(8)
5.2 Noncontact Type Trapping and 2D Transfer of a Single Nanowire
157(13)
5.3 Controlled Rotary Driving of a Single Nanowire
170(10)
5.4 Concentration and Alignment of Nanoscale Entities
180(14)
5.5 Summary and Remarks
194(1)
References
194(1)
Chapter 6 Ultrasonic Microfluidic Manipulations 195(54)
6.1 Lobed Pattern in a Film of Suspension
195(10)
6.2 Adsorption and Extraction of Droplets without a Chamber
205(11)
6.3 Microfluidic Transportation in and Droplet Generation on a Twisted Bundle of Metal Wires
216(14)
6.4 Droplet Generation and Rotary Driving with an Ultrasonic Hollow Needle
230(8)
6.5 Merging of Microdroplets
238(8)
6.6 Summary and Remarks
246(1)
References
247(2)
Chapter 7 Concluding Remarks 249(4)
Index 253