DOI QR코드

DOI QR Code

Prediction of the Torque Capacity for Tubular Adhesive Joints with Composite Adherends

복합재료 접착체를 가지는 튜브형 접합부의 토크전달능력 예측

  • 오제훈 (한양대학교 기계정보경영공학부)
  • Published : 2006.12.01

Abstract

Since the performance of joints usually determines the structural efficiency of composite structures, an extensive knowledge of the behavior of adhesive joints and the related effect on joint strength is essential for design purposes. In this study, the torque capacity of adhesive joints was predicted using the combined thermal and mechanical analyses when the adherend was a composite tube. A finite element analysis was performed to evaluate residual thermal stresses developed in the joint, and mechanical s stresses in the adhesive were calculated including both the nonlinear adhesive behavior and the behavior of composite tubes. Three different joint failure modes were considered to predict joint failure: interfacial failure, adhesive bulk failure, and adherend failure. The influence of the composite adherend stacking angle on the residual thermal stresses was investigated, and how the residual thermal stresses affect the joint strength was also discussed. Finally, the predicted results were compared with experimental results available in literature.

Keywords

References

  1. Adams, R.D., and Peppiatt, N.A., 1977, 'Stress Analysis of Adhesive Bonded Tubular Lap Joints,' J. Adhesion, Vol. 9, pp. 1-18 https://doi.org/10.1080/00218467708075095
  2. Alwar, R.S., and Nagaraja, Y.R., 1976, 'Viscoelastic Analysis of an Adhesive Tubular Joint,' J. Adhesion, Vol. 8, pp. 79-92 https://doi.org/10.1080/00218467608075072
  3. Lee, D.G., Kim, K.S., and Lim, Y.T., 1991, 'An Experimental Study of Fatigue Strength for Adhesively Bonded Tubular Single Lap Joints,' J. Adhesion, Vol. 35, pp. 39-53 https://doi.org/10.1080/00218469108030434
  4. Lee, S.J., and Lee, D.G., 1992, 'Development of a Failure Model for the Adhesively Bonded Tubular Single Lap Joint,' J. Adhesion, Vol. 40, pp. 1-14 https://doi.org/10.1080/00218469208030467
  5. Lee, S.J., and Lee, D.G., 1995, 'Optimal Design of the Adhesively Bonded Tubular Single Lap Joint,' J. Adhesion, Vol. 50, pp. 165-180 https://doi.org/10.1080/00218469508014364
  6. Choi, J.H., and Lee, D.G., 1994, 'The Torque Transmission Capacities of the Adhesive Tubular Lap Joint,' Trans. of the KSME (A), Vol. 18, pp. 85-92
  7. Lee, S.J., and Lee, D.G., 1994, 'An Analytic Study of the Adhesively Bonded Tubular Double Lap Joint,' Trans. of the KSME (A), Vol. 18, pp. 1412-1420
  8. Lee, S.J., and Lee, D.G., 1995, 'An Iterative Solution for the Torque Transmission Capability of Adhesively Bonded Tubular Single Lap Joints with Nonlinear Shear Properties,' J. Adhesion, Vol. 53, pp. 217-227 https://doi.org/10.1080/00218469508009940
  9. Lee, D.G., and Oh, J.H., 1999, 'Nonlinear Solution for the Adhesively Bonded Tubular Double Lap Joint with Nonlinear Shear Properties of Adhesive,' Trans. of the KSME (A), Vol. 23, pp. 1732-1740
  10. Thomsen, O.T., and Kildegaard, A., 1990, 'Analysis of Adhesive Bonded Generally Orthotropic Circular Shells,' Proceedings of the Fourth European Conference of Composite Materials, Stuttgart, Germany, pp. 723-729
  11. Chon, C.T., 1982, 'Analysis of Tubular Lap Joint in Torsion,' J. Composite Materials, Vol. 16, pp. 268-284 https://doi.org/10.1177/002199838201600402
  12. EI-hady, F.A., and Kandil, N., 2002, 'Optimization of Tubular Double Lap Joint Configuration,' Polymer Composites, Vol. 23, pp. 934-941 https://doi.org/10.1002/pc.10490
  13. Oh, J.H., 2006, 'Nonlinear Analysis of Adhesive Tubular Joints with Composites Adherends subject to Torsion,' J. of the KSCE, Vol. 19, pp. 29-36
  14. Choi, J.K, and Lee, D.G., 1995, 'Torque Transmission Capabilities of Bonded Polygonal Lap Joints for Carbon Fiber Epoxy Composites,' J. Adhesion, Vol. 48, pp. 235-250 https://doi.org/10.1080/00218469508028164
  15. Herakovich, C.T., 1998, Mechanics of Fibrous Composites, New York: John Wiley & Sons, Inc.