Micro- and Nano-Bionic Surfaces: Biomimetics, Interface Energy Field Effects, and Applications: Elsevier Series on Tribology and Surface Engineering
Autor Deyuan Zhang, Yonggang Jiang, Huawei Chen, Xiangyu Zhang, Lin Feng, Jun Caien Limba Engleză Paperback – 2 noi 2021
Sections demonstrate how to solve problems of high efficiency, high quality, and low damage material removal for metals, composites, soft tissues, and other materials by applying bionic wave-motion surface characteristics. The latest theoretical and technical developments in field control methods applied to biological interfaces are also discussed, and the book concludes with a chapter on fabrication strategies to synthesize micro/nano functional particles based on bio-templates.
- Provides an overview on the latest research in bio-inspired surfaces and devices for tactile and flow-field perception
- Introduces techniques for characterizing different bionic surfaces and how to use energy fields analysis to treat different bionic surface and interface problems
- Discusses the latest theoretical and experimental developments in field control and their applications in the biomedical field
- Outlines fabrication methods and assembly and alignment processes of micro-/nano-functional particles based on microorganism templates
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Specificații
ISBN-13: 9780128245026
ISBN-10: 0128245026
Pagini: 358
Ilustrații: 200 illustrations (20 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.48 kg
Editura: ELSEVIER SCIENCE
Seria Elsevier Series on Tribology and Surface Engineering
ISBN-10: 0128245026
Pagini: 358
Ilustrații: 200 illustrations (20 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.48 kg
Editura: ELSEVIER SCIENCE
Seria Elsevier Series on Tribology and Surface Engineering
Cuprins
1. Characterization Methods of the Drag Reduction/Increase on the Biologic Micro/Nano Surface
2. Characterization of Natural Super-Slippery and Strong Attachment Surfaces
3. Electron and Ion Transport Theory at Micro/Nano Interface of Cells
4. Universality Analysis of the Biologic Micro/Nano Surface/Interface Energy Field Effect
5. Drag Increase in Micro/Nano-Bionic Surface Enhancing Force Perception
6. Bioinspired Drag Reduction Surface
7. Wave-Motion Wetting in Bionic Micro/Nano Interface for High-Efficient Machining
8. Bioinspired Functional Surfaces for Medical Devices
9. Biomimetic Modification of Cells for Enhanced Energy Field Effects
10. Engineering Analysis of the Manufacturing Technologies for the Bionic Micro/Nano Surface/Interface
2. Characterization of Natural Super-Slippery and Strong Attachment Surfaces
3. Electron and Ion Transport Theory at Micro/Nano Interface of Cells
4. Universality Analysis of the Biologic Micro/Nano Surface/Interface Energy Field Effect
5. Drag Increase in Micro/Nano-Bionic Surface Enhancing Force Perception
6. Bioinspired Drag Reduction Surface
7. Wave-Motion Wetting in Bionic Micro/Nano Interface for High-Efficient Machining
8. Bioinspired Functional Surfaces for Medical Devices
9. Biomimetic Modification of Cells for Enhanced Energy Field Effects
10. Engineering Analysis of the Manufacturing Technologies for the Bionic Micro/Nano Surface/Interface