DOI QR코드

DOI QR Code

The Effect of Load Orientation for Crack Propagation and Acoustic Emission Evaluation on Plain Woven CFRP

평직 CFRP 복합재료의 균열진전 및 AE평가에 미치는 하중방향 영향

  • Published : 2004.04.01

Abstract

In recent year, composite materials are increasingly used in various fields of engineering because of its superior properties. The relationships of between crack propagation and AE characteristics fer CFRP plain woven laminate composites are examined. AE signals are measured during the fracture behavior tests. The purpose of study is to estimate the crack extension behavior with AE characteristics according to the load orientation fur plain woven CFRP laminate composite.

Keywords

References

  1. Seung Hwan, Lee and Hiroshi, Noguchi, 2002, 'Tension-Tension Fatigue Strength Characteristics of Hybrid Composites with Non-Woven Tissue,' Transactions of the JSME(A), Vol. 68, No. 671, pp. 1054-1062 https://doi.org/10.1299/kikaia.68.1054
  2. Lawcock, G. L. Ye and Mai, Y., 1997, 'Progressive Damage and Residual Strength of a Carbon Fiber Reinforced Metal Laminate,' Journal of Composite Materials, Vol. 31, No. 8, pp. 762-787 https://doi.org/10.1177/002199839703100802
  3. Yoshiyuki Tomita and Kojiro Morioka, 1997, 'Effect of lay-up sequence on mechanical properties and fracture behavior of advanced CFRP laminate composite,' Materials Science and engineering, A 234-236, pp. 778-781
  4. Nidal Alif, Lief A. Carlsson, and Louis Boogh, 1998, 'The effect of weave pattern and crack propagation direction on mode delamination resistance of woven glass and carbon composites,' Elsevier Science, pp. 603-611 https://doi.org/10.1016/S1359-8368(98)00014-6
  5. Katsunobu Nonaka, Kunihiko Okada,Kazuro Kageeyama, Kazuyoshi Sekine, 1993, 'A Study on Nondestructive Evaluation of Damage Development in Carbon/Epoxy Laminates by Means of AE Analysis and Infrared Thermal Imaging Stress Analysis,' Transactions of the JSSE, Vol. 32, No. 4, pp. 233-241
  6. H. J. Chun, I. M. Daniel, 1998, 'AE Characteristics on Damage and Failure Mechanisms of Crossply Composite Laminates,' KSCM, Vol. 11, No. 5, pp. 14-21
  7. Ni, Q, 1997, 'Fracture Behavior and Acoustic Emission in Bending Test on single-fiber Composites,' Engineering Fracture Mechanics, Vol. 56, p. 779 https://doi.org/10.1016/S0013-7944(97)00001-5
  8. Chow,T.M., Hutchins, D. A., Mottram, J. T., 1993, 'Simultaneous Acoustic Emission and Ultrasonic Tomography Imaging in Anisotropic Polymer Composite-Material,' Journal of Acoustical Society of America, Vol. 94, pp. 944-953 https://doi.org/10.1121/1.408197
  9. S. Barre, Benzeggagh, M. L, 1994, 'On the Use of a Acoustic Emission to Investigate Damage Mechanisms in Glass-Fiber-Reinforced Polyopylene,' Composite Science and Technology, Vol. 52, pp. 369-376 https://doi.org/10.1016/0266-3538(94)90171-6
  10. E. Jinen, Q. Q. Ni, and H. W. Li, 1996, 'The Behave of Crack Propagation and Acoustic Emission in CFRP Fabric Mano-Lamina Composite Made in Situ SEM,' Transactions of the JSME(A), Vol. 62, No, 602, pp. 2207-2215 https://doi.org/10.1299/kikaia.62.2207
  11. Ely TM, Hill, EK. 1995, 'Longitudinal Splitting and Fiber Freakge Characterisation in Graphite/epoxy Using Acoustic Emission Data,' Material Eval, pp. 288-294
  12. Standard Test Method for 'Tensile Properties of Polymer Matrix Composite Materials,' 2000, ASTM D3039
  13. Standard Test Method for 'Measurement of Fatigue Crack Growth Rates,' 1999, ASTM E647

Cited by

  1. Fatigue Damage Evaluation of Woven Carbon-Fiber-Reinforced Composite Materials by Using Fatigue Damage Model vol.34, pp.6, 2010, https://doi.org/10.3795/KSME-A.2010.34.6.757