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Fundamental Mechanical Properties of Carbon Nanotubes : Current Understanding and the Related Experimental Studies
| Content Provider | Semantic Scholar |
|---|---|
| Author | Yu, Min-Feng |
| Copyright Year | 2004 |
| Abstract | Representing a new class of nanoscale material, carbon nanotubes possess many e dinary mechanical and electronic properties stemming essentially from their unique metric and chemical structures. Through more than two decades of extensive theo and experimental investigations, our understanding on the mechanical properties o bon nanotubes has greatly improved. The intrinsic mechanical properties of carbon n tubes, such as their stiffness, strength and deformability, have been relatively well st and understood; and other mechanics-related properties of carbon nanotubes, such defect formation, the fracture mechanism, the interface mechanics and the electrome ics, have also being broadly examined and a comprehensive knowledge of them be emerge. I review the current status of research on the mechanical study of carbon tubes, especially on the experimental study of their fundamental mechanical prope such as Young’s modulus, tensile and shear strength, compressibility and deforma Selected experimental methods and techniques used for the studies will also be duced. I conclude the review by discussing the new challenges still facing the mech study of carbon nanotubes. @DOI: 10.1115/1.1755245 # |
| File Format | PDF HTM / HTML |
| Alternate Webpage(s) | http://www.yu.gatech.edu/Documents/Publications/JEMT-2004.pdf |
| Language | English |
| Access Restriction | Open |
| Subject Keyword | Bisphosphonate-associated osteonecrosis Carbon Dioxide Carbon-Carbon Lyases Classical nucleation theory Experiment Greater Than Image resolution Interface Device Component Mechanics Modulus robot NaN Name Nanos Nanotubes Nanotubes, Carbon Numerical aperture Shear Strength Sodium Software bug Specimen Source Codes - Tube Stemming Stiffness Stress, Mechanical |
| Content Type | Text |
| Resource Type | Article |