전기 분사 증착 방식을 이용한 탄소 나노 튜브 박막의트라이볼로지적 특성에 관한 연구Tribological Properties of Carbon Nanotube Thin Films by using Electrodynamic Spraying Method
- Other Titles
- Tribological Properties of Carbon Nanotube Thin Films by using Electrodynamic Spraying Method
- Authors
- 김창래; 김대은; 김해진
- Issue Date
- 2018
- Publisher
- 한국트라이볼로지학회
- Keywords
- 고체 윤활; 탄소나노튜브; 마찰; 마모; solid lubricants; carbon nanotube; friction; wear
- Citation
- 한국트라이볼로지학회지, v.34, no.6, pp 313 - 317
- Pages
- 5
- Indexed
- KCI
- Journal Title
- 한국트라이볼로지학회지
- Volume
- 34
- Number
- 6
- Start Page
- 313
- End Page
- 317
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/12279
- DOI
- 10.9725/kts.2018.34.6.313
- ISSN
- 2713-8011
- Abstract
- Carbon-based coatings, including carbon nanotubes (CNTs), graphene, and buckyball (C60), receive much interest because of their outstanding mechanical and electrical properties for a wide range of electromechanical component-based applications. Previous experimental results demonstrate that these carbon-based coatings are promising solid lubricants because of their superior tribological properties, and thus help prolong the lifetime of silicon-based applications. In this study, CNT coatings are deposited on a bare silicon (100) substrate by electrodynamic spraying under different deposition conditions. During the coating deposition, the applied voltage, CNT concentration of the solution, distance between the injecting nozzle and the substrate and diameter of the injecting nozzle are optimized to control the thickness and surface roughness of the CNT coatings. The surface morphology and thickness of the coatings are characterized by scanning electron microscopy (SEM) and atomic force microscopy (AFM), respectively. The friction and wear properties of the coatings are investigated by using a pin-on-reciprocating-type tribotester under various experimental conditions. The friction coefficient of the CNT coating is as low as 0.15 under high normal loads. The overall results reveal that CNT coatings deposited by electrodynamic spraying provide relatively uniform with superior lubrication performance.
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Collections - 공학계열 > Division of Mechanical and Aerospace Engineering > Journal Articles

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