티타늄 금속기 복합재료의 미시-기계적 특성에 관한 연구

A Study on the Micro-mechanical Characteristics of Titanium Metal Matrix Composites

  • 하태준 (한양대학교 기계설계학과 대학원) ;
  • 김태원 (한양대학교 기계공학부)
  • 발행 : 2004.02.01

초록

고온진공가압 기술 및 포일-섬유-포일 방식을 이용하여 티타늄 금속기 복합재료를 개발하였으며, 완성된 복합재료의 미시-기계적 특성평가를 위해 다양한 실험을 수행하였다. 또한 열-음향방출 실험을 통해 강화공정 진행정도와 더불어 공정 중 발생한 복합재료의 결함을 검출하고, 변형기구를 바탕으로 한 파손과정을 분석하였다. 결과에서 보듯이 강화공정 중 발생하는 섬유 손상뿐만 아니라 냉각 과정에서의 섬유와 모재간의 열팽창 차이에 따른 미시손상이 복합재료의 기계적 성능에 영향을 미침을 확인하였다. 금속기 복합재료의 개발과 이를 이용한 산업으로의 적용은 완성된 복합재료의 미시-기계적 특성에 대만 정량-정성적인 분석과 함께 적합한 평가를 요구하며 따라서 공정 개발에 반드시 수반되어야 한다.

Vacuum hot pressing has been used for the development of titanium metal matrix composites using foil-fiber-foil technique. Subsequent micro-mechanical characteristics of the composites are then investigated by means of several experimental methods. The levels of consolidation, together with mechanism based failure processes of the materials have been analyzed by employing a thermo-acoustic emission technique. As shown by the results, fiber strength degradation occurs during the consolidation, and particularly residual stresses results from the thermal expansion mismatch between fiber and matrix materials during cooling process are incorporated in the changes of mechanical properties of the finished products. In industrial applications, both qualitative and quantitative evaluations of the material-mechanical characteristics are particularly important, and therefore must be included in process development. The present paper represents a methodology by which this can be achieved.

키워드

참고문헌

  1. Titanium Matrix Composites: Mechanical Behavior Mall,S.;Fecke,T.;Foringer,M.A.;Mall,S.(ed.);Nicholas,T.(ed.)
  2. Materials Science and Technology v.14 Towards cost effective manufacturing of Ti/SiC fibre composites and components Guo,Z.X. https://doi.org/10.1179/026708398790613443
  3. International Materials Reviews v.38 no.1 Processing of advanced continuous fibre composites: Current practice and potential developments Partridge,P.G.;Ward-Close,C.M. https://doi.org/10.1179/095066093790150901
  4. Acta. metall. mater. v.43 no.3 An ultimate tensile strength dependence on processing for consolidated metal matrix composites Duva,J.M.;Curtin,W.A.;Wadley,H.N.G. https://doi.org/10.1016/0956-7151(94)00309-6
  5. 한국복합재료학회지 v.16 no.3 Sic-Ti 금속기 복합재료의 강화거동에 관한 미시역학적 모델 김준완;김태원
  6. Nondestructive testing handbook(2nd ed.) v.5 Miller,R.K.;Mclntire,P.
  7. Journal of Materials Science v.38 Detection of microfracture processes in composite laminates by thermo-acoustic emission Choi,N.S.;Kim,Y.B.;Kim,T.W.;Lee,K.Y. https://doi.org/10.1023/A:1022393629338
  8. Journal of Composite Materials v.22 Detection of damage in composite materials by thermo-acoustic emission measurement Sato,N.;Kurauchi,T.;Kamigaito,O. https://doi.org/10.1177/002199838802200505
  9. Acta materialia v.50 Residual stress measurements in fibre reinforced titanium alloy composites Gungor,S. https://doi.org/10.1016/S1359-6454(02)00050-2
  10. Science and Engineering v.A288 Residual stresses in titanium matrix composites (TMC) in thermomechanical cycling using matrix etching Fang,Q.;Sidky,P.S.;Hocking,G.M.
  11. Acta mater. v.44 no.8 Debonding criterion in the pushout process of fiber-reinforced ceramics Honda,K.;Kagawa;Y. https://doi.org/10.1016/1359-6454(95)00417-3
  12. Materials Science and Technology v.12 Characterisation of acoustic emission signals during fracture and fatigue of SiC fibre reinforced titanium alloy composites Takashima,K.;Fox,K.M.;Barney,C.;Pursell,J.G.;Bowen,P. https://doi.org/10.1179/026708396790122125
  13. 비파괴검사학회지 v.21 no.3 열하중을 받는 복합재료 적층판의 손상에 대한 열·음향방출 해석 김영복;민대홍;이덕보;최낙삼
  14. J. Am. Ceram. Soc. v.74 no.11 Theory of mechanical properties of ceramic-matrix composites Curtin,W.A. https://doi.org/10.1111/j.1151-2916.1991.tb06852.x
  15. J. Mech. Phys. Solids v.43 no.3 Influence of processing damage of fiber-reinforced composites Curtin,W.A.;Zhou,S.J. https://doi.org/10.1016/0022-5096(94)00077-I
  16. Acta mater. v.44 no.8 A method for measuring residual strains in fiber-reinforced titanium matrix composites Ramamurty,U.;Dary,F.C.;Zok,F.W. https://doi.org/10.1016/1359-6454(95)00407-6
  17. Composites Science and Technology v.57 Experimental and theoretical assessment of the longitudinal tensile strength of unidirectional SiC-fiber/titanium-matrix composites Gundel,D.B.;Wawner,F.E. https://doi.org/10.1016/S0266-3538(96)00163-7