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Abstract AI-Helper 아이콘AI-Helper

In this study, the effect of Carbon/PEEK composites on the tribological properties has been investigated. Also, its validity has been tested in the capacity of alternative materials of the Ti-based materials used for artificial hip joint. Moreover, this work evaluated the mechanical properties accor...

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제안 방법

  • The mechanical properties according to the friction and wear were also investigated. Also, this study analyzed the effect of the friction on the composites according to the fiber ply orientation. The following results were obtained from these data.
  • Friction tests were carried out to observe the destroyed morphology in the interface between the resin and fiber, and the friction surface of the specimen was analyzed using an electron microscope.The friction shape for each specimen was shown in Fig.
  • Stainless steel was used as the relative friction surface and the normal load was fixed at 20N. The friction angles were separated into the parallel and normal directions in order to investigate the frictional property according to the fiber ply orientation and friction angle, and the friction coefficient was investigated. The friction velocity was 2.
  • The test was progressed for the friction coefficients according to the fiber ply orientation. The results of the friction coefficient are shown in Fig.
  • Therefore, in this study, carbon/PEEK composites and carbon/Epoxy composites were fabricated, and the different mechanical properties according to the friction were investigated through a friction test. Simultaneously, we considered the effect of friction in relation to the mechanical properties of the carbon/PEEK composites and carbon/epoxy composites according to the ply orientation angle and friction angle of the fiber.

대상 데이터

  • In this study, the composites were manufactured Carbon/PEEK composites and Carbon/Epoxy composites. The mechanical properties according to the friction and wear were also investigated.
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참고문헌 (9)

  1. Y. H. Kim, S. W. Yoon, and R. Murakami, Design of Artificial Hip Joint by Carbon/PEEK Composites, Advanced Materials Research, 774-776 (2013) 1336-1341. 

  2. Y. H. Kim, S. W. Yoon, and R. Murakami, Effect of Moisture Absorption and Fiber Ply Orientation for Artificial Hip Joint on the Mechanical Properties of Carbon/PEEK Composites, Advanced Materials Research, 774-776 (2013) 1326-1335. 

  3. Y. H. Kim, S. W. Yoon, and R. Murakami, Mechanical Properties of Carbon/PEEK Composites According to the Fiber Ply Orientation and Sizing Removal of Carbon Fiber for Artificial Hip Joint, Advanced Materials Research, 750-752 (2013) 164-175. 

  4. Ikeda M, Komatsu SY, Sowa I, and Niinomi M, Aging behavior of the Ti-29Nb-13Ta-4.6Zr new b alloy for medical implants, Metall Mater Trans A, 33 (2002) 487-493. 

  5. Niinomi M, Recent research and development in titanium alloys for biomedical applications and healthcare goods, Sci. Technol. Adv. Mater., 4 (2003) 445-454. 

  6. Bania PJ, Lenning GA, and Hall JA, Development and properties of Ti-15V-3Al-3Sn-3Cr. In: Boyer RR, Rosenberg HW, editors. b Titanium Alloys in the 1980's. Warrendale, PA: AIME; (1984) 209-229. 

  7. Kamachi Mudali U, Sridhar TM, and Baldev R, Corrosion of bioimplants. Sadhana 28 (2003) 601-637. 

  8. S. W. Chun, Y. M. Kim, and H. J. Kang, Tribological properties of laminated fiber orientation in carbon fiber/epoxy composites for reflecting material of the electromagnetic wave, J. Korean Ind. Eng. Chem., 10-5 (1999) 778-783. 

  9. S. K. Ryoo and K. W. Kim, A study on friction and wear behavior of carbon fiber reinforced polyetheretherketone, The Korean Society of Mechanical Engineers, 25-6 (2001) 930-937. 

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