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Influence of hot-pressing pressure on the densification of short-carbon-fiber-reinforced, randomly oriented carbon/carbon composite
Thakur Sudesh Kumar Raunija and Sharad Chandra Sharma 한국탄소학회 Carbon Letters 9 Pages
한국탄소학회 Carbon Letters 2015, Vol.16 No.1 4 25-33 (9 pages)
The prime objective of this research was to study the influence of hot-pressing pressure and matrix-to-reinforcement ratio on the densification of short-carbon-fiber-reinforced, randomly oriented carbon/carbon-composite. Secondary objectives included determination of the physical and mechanical properties of the resulting composite. The ‘hybrid carbon-fiberreinforced mesophase-pitch-derived carbon-matrix’ composite was fabricated by hot pressing. During hot pressing, pressure was varied from 5... -
Effects of Fiber Orientations and Hybrid Ratios on Lubricant Tribological Characteristics of $Al_2O_{3f}/SiC_p$ Reinforced MMCs
왕일기, 송정일, Wang. Yi-Qi, Song. Jung-Il 한국복합재료학회 복합재료 : 한국복합재료학회지 9 Pages
한국복합재료학회 복합재료 : 한국복합재료학회지 2009, Vol.22 No.5 15-23 (9 pages)
가압주조법으로 제조한 $Al_2O_3$ 섬유와 SiC 입자 혼합 보강 금속복합재료(MMCs)의 상온과 고온에서 윤활마모특성을 조사하였다. 마모시험은 거리와 온도의 변화에 따라 속도를 고정시켜 25Kgf의 하중하에서 수행하였으며 MMCs의 시험편은 가압의 수평(PR)방향과 수직(N)방향에서 채취하였다. 혼합비의 영향을 관찰한 결과 상온에서는 20%섬유만 보강한 PR방향 MMCs의 마모거동은 N방향 보다 우수한 결과를 보였으나, 혼합보강 MMCs는 반대로 나타내었다. 고온($100^{circ}C$)에는 모든 MMCs에서 PR방향의 마모거동이 N 방향보다 우수한... -
Fabrication and Applications of Carbon Nanotube Fibers
Hungo Choo, Yeonsu Jung, Youngjin Jeong, Hwan Chul Kim, Bon-Cheol Ku 한국탄소학회 Carbon Letters 14 Pages
한국탄소학회 Carbon Letters 2012, Vol.13 No.4 1 191-204 (14 pages)
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Pitch based carbon fibers for automotive body and electrodes
Kap Seung Yang, Bo-Hye Kim, Seong-Ho Yoon 한국탄소학회 Carbon Letters 9 Pages
한국탄소학회 Carbon Letters 2014, Vol.15 No.3 2 162-170 (9 pages)
They also recommended the use of carbon fiber with strength of 1700 MPa, modulus of 170 GPa, and 1.5% elongation. This study introduced a ca. 5.5 μm carbon fiber with 2000 MPa tensile strength obtained from a precursor through simple distillation of petroleum residue. Petroleum pitch based carbon nanofibers prepared via electrospinning were characterized and potential applications were introduced on the basis of their large specific surface area and relatively high electrical conductivity.


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