Study of Fatigue Behavior of Repaired Composites

복합재료의 수리후 피로거동 고찰

  • 최재원 (포항공과대학교 기계공학과) ;
  • 황운봉 (포항공과대학교 기계공학과) ;
  • 박현철 (포항공과대학교 기계공학과) ;
  • 한경섭 (포항공과대학교 기계공학과)
  • Published : 1999.06.01

Abstract

The static strength and fatigue life of repaired graphite/epoxy laminates are observed using tensile coupon. The lay-up of investigated laminates was [$0^{\circ}$/$\pm$$45^{\circ}$/$90^{\circ}$]$_s$. Static strength was measured from the specimens prepared by various repair techniques such as precured-single patch, precured-double patch and cure-in-place methods. The strength was recovered to the extent of 60~80 % of unnotched case. Fatigue life was also measured from the laminates repaired with cure-in-place method. Hwang and Han's MFLPE 1(modified fatigue life prediction equation 1), which was based on the fatigue modulus degradation model and reference modulus, was chosen for fatigue life prediction of repaired specimen and compared with the conventional fatigue life equation such as S-N curve and Basquin's relation. The MFLPE 1 has better agreement with experimental data than S-N curve and Basquin's relation.

복합재료내의 결함을 원공노치로 가정하고 노치의 크기에 따른 정하중 및 피로실험을 수행하였다. 원공이 존재하는 복합재료에 대하여 다양한 수리기법을 적용하여 정하중 실험을 수행하였다. 수리기법중에 precured double patched 방식과 cure-in-place 방식의 수리는 가장 우수한 결과를 보여 평활재의 약 60∼80%의 강도복구효과를 보였다. 우수한 결과기법을 나타낸 수리기법중에 보다 실제적인 방식이라고 사료되는 cure-in-place 방식으로 수리된 재료에 대하여 피로실험을 수행하였다. 수리된 재료는 정하중 및 피로의 경우에 있어서 향상된 결과를 보였으며 피로시 평활재의 거동을 나타낸다. 참고계수를 도입하여 회귀분석된 피로수명예측식(MFLPE's)은 수리된 시편에 비해 타 예측식에 비해 더 좋은 결과를 나타낸다.

Keywords

References

  1. Composite Materials in Aircraft Structures Middleton, D. H.
  2. NASA CR-3794 Repair Techniques for Celion/LSRC-16 Graphite/Polyimide Composite Structures Jones, J. S.;Graves, S. R.
  3. Composite Repair no.1 Advanced Composite Repair-Recent Development and Some Problems Myhre, S. M.
  4. Proceedings of Composite Repair of Aircraft Structures v.1 Standardization of Composite Repair for Commercial Transport Aircraft Shyprykevich, P.
  5. SAE Technical Paper Series, No. 951145 Status of Bonded Boron/Epoxy Doubles for Miltary and Commercial Metallic Aircraft Structures Bruce Belason, E.
  6. Composite Airframe Structures Chun-Yubg Niu, M.
  7. Bonded Repair of Aircraft Structures Baker, A. A.;Jones, R.
  8. Composite Structures v.11 New Studies on the Effect of Bearing Loads in Lugs with Clearencd Fit Pins Ramamurthy, T. S.
  9. Journal of Composite Materials v.24 Stress and Failure Analysis of a Pin-Loaded Compsite Plate:An Experimental Study Tsai, M. Y.;Morton, J.
  10. Journal of Composite Materials v.18 Stresses Around a Pin-Loded Hole in Orthotropic Plates Zhang, K. D.;Ueng, C. E. S.
  11. Fibrous Composites in Structural Design Sensitivity of Bonded and Bolted and Bolted Joints in Composites to Load/Environmental Spectruc Variations Grimes, G. C.;Jeans, L. L.;Demuts, E.
  12. Journal of Composite Materials v.20 Fatigue of Composite-Fatigue Modulus Concept and life Prediction Hwang, W.;Han, K. S.
  13. Composite materials: Fatigue and Fracture(Second volume), ASTM STP 1012 Fatigue of Composite Materials-Damage Model and Life Prediction Hwang, W.;Han, K. S.;Paul, A. Lagace(Ed.)
  14. Journal of Advanced Materials Single- and Multi- Stress Level Fatigue Life Prediction of Glass/Epoxy Composites Hwang, W.;Lee,C. S.;Park, H. C.;Han, K. S.
  15. Composite Repairs no.1 Development of Repair Procedures for Graphite/Epoxy Structures on Commericial Transport Stone, R. H.
  16. Engineering Fracture Mechanics v.17 no.1 Analysis of Bonded Repairs to Damaged Fibre Composite Structures Jones, R.;Callinan, R. J.;Agarwal, K. C.
  17. 포항공과대학교 석사학위논문 원공노치를 가진 복합적층판의 피로수 명예측 허재석
  18. Proceeding of International Comference on Advanced Composite Materials The Influence of Hole Size in Static Strength and Fatigue for CFRP Composite Materials Yip, M. C.;Perng, T. B.;Chandra, T.(Eds.);Dhingra, A. K.(Eds.)