Nanotube Superfiber Materials: Changing Engineering Design: Micro and Nano Technologies
Editat de Mark Schulz, Vesselin Shanov, Zhangzhang Yinen Limba Engleză Hardback – 29 sep 2013
Key properties of superfiber materials are high flexibility and fatigue resistance, high energy absorption, high strength, good electrical conductivity, high maximum current density, reduced skin and proximity effects, high thermal conductivity, lightweight, good field emission, piezoresistive, magnetoresistive, thermoelectric, and other properties. These properties will open up the door to dozens of applications including replacing copper wire for power conduction, EMI shielding, coax cable, carbon biofiber, bullet-proof vests, impact resistant glass, wearable antennas, biomedical microdevices, biosensors, self-sensing composites, supercapacitors, superinductors, hybrid superconductor, reinforced elastomers, nerve scaffolding, energy storage, and many others.
The scope of the book covers three main areas: Part I: Processing; Part II: Properties; and Part III: Applications. Processing involves nanotube synthesis and macro scale material formation methods. Properties covers the mechanical, electrical, chemical and other properties of nanotubes and macroscale materials. Different approaches to growing high quality long nanotubes and spinning the nanotubes into yarn are explained in detail. The best ideas are collected from all around the world including commercial approaches. Applications of nanotube superfiber cover a huge field and provides a broad survey of uses. The book gives a broad overview starting from bioelectronics to carbon industrial machines.
- First book to explore the production and applications of macro-scale materials made from nano-scale particles
- Sets out the processes for producing macro-scale materials from carbon nanotubes, and describes the unique properties of these materials
- Potential applications for CNT fiber/yarn include replacing copper wire for power conduction, EMI shielding, coax cable, carbon biofiber, bullet-proof vests, impact resistant glass, wearable antennas, biomedical microdevices, biosensors, self-sensing composites, supercapacitors, superinductors, hybrid superconductor, reinforced elastomers, nerve scaffolding, energy storage, and many others
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Specificații
ISBN-13: 9781455778638
ISBN-10: 145577863X
Pagini: 848
Dimensiuni: 191 x 235 x 53 mm
Greutate: 1.72 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 145577863X
Pagini: 848
Dimensiuni: 191 x 235 x 53 mm
Greutate: 1.72 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Public țintă
professional nanomaterials engineers and applied scientists working in government laboratories, commercial industry applied R & D laboratories, industry consultants, academic post-docs,etc.Cuprins
Chapter 1. Nanotube Materials – Promise, Practicality and Prospects, Stephen C. Hawkins
PART I: PROCESSING (Nanotube Synthesis, Spinning, Drawing, Post Treatment) [11 chapters]
PART II: PROPERTIES (Improvement, Mechanical, Electrical, Thermal) [9 chapters]
PART III: APPLICATIONS (Cables, Composites, Antennas, Shielding, Space Elevator) [9 chapters]
PART I: PROCESSING (Nanotube Synthesis, Spinning, Drawing, Post Treatment) [11 chapters]
PART II: PROPERTIES (Improvement, Mechanical, Electrical, Thermal) [9 chapters]
PART III: APPLICATIONS (Cables, Composites, Antennas, Shielding, Space Elevator) [9 chapters]