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Original Articles

Numerical and experiment investigation on joining process and failure behaviors of CFRP/Al electromagnetic riveted joint

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Pages 1996-2007 | Received 02 Jul 2020, Accepted 03 Nov 2020, Published online: 17 Nov 2020

References

  • X.Y. Xu, N. Fallahi, and H. Yang, Efficient CUF-based FEM analysis of thin-wall structures with Lagrange polynomial expansion, Mech. Adv. Mater. Struct., 2020. DOI: https://doi.org/10.1080/15376494.2020.1818331.
  • H. Jiang, C.C. Zeng, G.Y. Li, and J.J. Cui, Effect of locking mode on mechanical properties and failure behavior of CFRP/Al electromagnetic riveted joint, Compos. Struct., pp. 113162, 2020. DOI: https://doi.org/10.1016/j.compstruct.2020.113162.
  • Y. Koga and A. Todoroki, Three-dimensionally printed designable joint for carbon fibre reinforced plastics, Adv. Compos. Mater., vol. 28, no. 2, pp. 147–161, 2019.
  • A. Pramanik, et al., Joining of carbon fibre reinforced polymer (CFRP) composites and aluminium alloys-A review, Compos. Part A-Appl. Sci. Manuf., vol. 101, pp. 1–29, 2017.
  • J.J. Machado, E.A. Marques, A.Q. Barbosa, and L.F. Silva, Influence of hygrothermal aging on the quasi-static and impact behavior of single lap joints using CFRP and aluminum substrates, Mech. Adv. Mater. Struct., 2019. DOI: https://doi.org/10.1080/15376494.2019.1675104.
  • L.M. Fernández-Cañadas, I. Ivañez, S. Sanchez-Saez, and E.J. Barbero, Effect of adhesive thickness and overlap on the behavior of composite single-lap joints, Mech. Adv. Mater. Struct., pp. 1–10, 2019. DOI: https://doi.org/10.1080/15376494.2019.1639086.
  • O. Omran, V.D. Nguyen, H. Jaffal, and P. Coorevits, Development of a connector element for multi-material bolted-joint under tensile loading, Mech. Adv. Mater. Struct., vol. 26, no. 21, pp. 1796–1807, 2019.
  • J.S. Hu, K.F. Zhang, Q.D. Yang, H. Cheng, S.N. Liu, and Y. Yang, Fretting behaviors of interface between CFRP and coated titanium alloy in composite interference-fit joints under service condition, Mater. Des., vol. 134, pp. 91–102, 2017.
  • H. Jiang, G.Y. Li, X. Zhang, and J.J. Cui, Fatigue and failure mechanism in carbon fiber reinforced plastics/aluminum alloy single lap joint produced by electromagnetic riveting technique, Compos. Sci. Technol., vol. 152, pp. 1–10, 2017.
  • J.V. Esteves, S.M. Goushegir, J.F. dos Santos, L.B. Canto, E. Hage, and S.T. Amancio-Filho, Friction spot joining of aluminum AA6181-T4 and carbon fiber-reinforced poly (phenylene sulfide): effects of process parameters on the microstructure and mechanical strength, Mater. Des., vol. 66, pp. 437–445, 2015.
  • N.M. André, S.M. Goushegir, J.F. dos Santos, L.B. Canto, and S.T. Amancio-Filho, Spot joining of aluminum alloy 2024–T3 and carbon- fiber-reinforced poly (phenylene sulfide) laminate with additional PPS film interlayer: microstructure, mechanical strength and failure mechanisms, Compos. Part B-Eng., vol. 94, pp. 197–208, 2016.
  • D. Assuncao, Conduction mode: broadening the range of applications for laser welding, 63rd Annual Assembly & International Conference of the International Institute of Welding, Istanbul, Turkey, 2010.
  • S. Katayama, Y. Kawahito, and M. Mizutani, Latest progress in performance and understanding of laser welding, Phys. Proc., vol. 39, pp. 8–16, 2012.
  • Y.F. Qin, H. Jiang, Y.J. Cong, G.Y. Li, L. Qi, and J.J. Cui, Rivet die design and optimization for electromagnetic riveting of aluminium alloy joints, Eng. Optim. 2020. DOI: https://doi.org/10.1080/0305215X.2020.1751149.
  • X. Zhang, H. Jiang, T. Luo, L. Hu, G.Y. Li, and J.J. Cui, Theoretical and experimental investigation on interference fit in electromagnetic riveting, Int. J. Mech. Sci., vol. 156, pp. 261–271, 2019.
  • J. H. Deng, C. Tang, M.W. Fu, and Y.R. Zhan, Effect of discharge voltage on the deformation of Ti grade 1 rivet in electromagnetic riveting, Mater. Sci. Eng. A, vol. 591, pp. 26–32, 2014.
  • J. Hartmann and T. Brown, Integration and qualification of the HH500 hand operated electromagnetic riveting system on the 747 Section 11, SAE Aerofast Conference, Wichita, September, 1993.
  • V. Psyk, D. Risch, B.L. Kinsey, A.E. Tekkaya, and M. Kleiner, Electromagnetic forming-a review, J. Mater. Process. Technol., vol. 211, no. 5, pp. 787–829, 2011.
  • Z.Q. Cao and M. Cardew-Hall, Interference-fit riveting technique in fiber composite laminates, Aerosp. Sci. Technol., vol. 10, no. 4, pp. 327–330, 2006.
  • G.Y. Li, H. Jiang, X. Zhang, and J.J. Cui, Mechanical properties and fatigue behavior of electromagnetic riveted lap joints influenced by shear loading, J. Manuf. Processes, vol. 26, pp. 226–239, 2017.
  • H. Jiang, Y.J. Cong, X. Zhang, G.Y. Li, and J.J. Cui, Fatigue degradation after salt spray ageing of electromagnetically riveted joints for CFRP/Al hybrid structure, Mater. Des., vol. 142, pp. 297–307, 2018.
  • H. Jiang, L.Q. Sun, D.Y. Dong, G.Y. Li, and J.J. Cui, Microstructure and mechanical property evolution of CFRP/Al electromagnetic riveted lap joint in a severe condition, Eng. Struct., vol. 180, pp. 181–191, 2019.
  • P.G. Reinhall, S. Ghassaei, and V. Choo, An analysis of rivet die design in electromagnetic riveting. ASME, J. Vib. Acoust. Stress Reliab. Des., vol. 110, no. 1, pp. 65–69, 1988.
  • E.A. Repetto, R. Radovitzky, M. Ortiz, R.C. Lundquist, and D.R. Sandstrom, A finite element study of electromagnetic riveting, ASME, J. Manuf. Sci. Eng., vol. 121, no. 1, pp. 61–68, 1999.
  • X. Zhang, M.Y. Zhang, L.Q. Sun, and C.F. Li, Numerical simulation and experimental investigations on TA1 titanium alloy rivet in electromagnetic riveting, Arch. Civil Mech. Eng., vol. 18, no. 3, pp. 887–901, 2018.
  • J.J. Cui, L. Qi, H. Jiang, G.Y. Li, and X. Zhang, Numerical and experimental investigations in electromagnetic riveting with different rivet dies, Int. J. Mater. Form., vol. 11, no. 6, pp. 1–12, 2018.
  • H. Jiang, Y.J. Cong, J.S. Zhang, X.H. Wu, G.Y. Li, and J.J. Cui, Fatigue response of electromagnetic riveted joints with different rivet dies subjected to pull-out loading, Int. J. Fatigue, vol. 129, pp. 105238, 2019.
  • M. Gokhan Atahan and M. Kemal Apalak, Low velocity oblique impact behavior of adhesively bonded single lap joints, J. Adhes. Sci. Technol., vol. 34, no. 3, pp. 263–298, 2020.
  • Y. Zuo, Z. Cao, Y. Cao, Q. Zhang, and W. Wang, Dynamic behavior of CFRP/Ti single-lap pinned joints under longitudinal electromagnetic dynamic loading, Compos. Struct., vol. 184, pp. 362–371, 2018.
  • J.J. Cui, et al., Influence of thickness of composite layers on failure behaviors of carbon fiber reinforced plastics/aluminum alloy electromagnetic riveted lap joints under high-speed loading, Int. J. Impact Eng., vol. 115, pp. 1–9, 2018.
  • V. Blanchot and A. Daidie, Riveted assembly modelling: Study and numerical characterisation of a riveting process, J. Mater. Process. Technol., vol. 180, no. 1-3, pp. 201–209, 2006.
  • G.Y. Li, H.K. Deng, Y.F. Mao, X. Zhang, and J.J. Cui, Study on AA5182 aluminum sheet formability using combined quasi-static-dynamic tensile processes, J. Mater. Process. Technol., vol. 255, pp. 373–386, 2018.
  • Z. Hashin, Failure criteria for unidirectional fiber composites, J. Appl. Mech.-Trans. ASME, vol. 47, no. 2, pp. 329–334, 1980.
  • K.-Y. Chang, S. Llu, and F.-K. Chang, Damage tolerance of laminated composites containing an open hole and subjected to tensile loadings, J. Compos. Mater., vol. 25, no. 3, pp. 274–301, 1991.
  • H. Jiang, T. Luo, G. Li, X. Zhang, and J. Cui, Fatigue life assessment of electromagnetic riveted carbon fiber reinforce plastic/aluminum alloy lap joints using Weibull distribution, Int. J. Fatigue, vol. 105, pp. 180–189, 2017.
  • H.H. Geng, J.Q. Mao, X. Zhang, G.Y. Li, and J.J. Cui, Strain rate sensitivity of Al-Fe magnetic pulse welds, J. Mater. Process. Technol., vol. 262, pp. 1–10, 2018.
  • S. Heimbs, S. Schmeer, J. Blaurock, and S. Steeger, Static and dynamic failure behaviour of bolted joints in carbon fibre composites, Compos. Part A-Appl. Sci. Manuf., vol. 47, pp. 91–101, 2013.
  • X.Q. Cheng, S.W. Wang, J. Zhang, W.J. Huang, Y.J. Cheng, and J.K. Zhang, Effect of damage on failure mode of multi-bolt composite joints using failure envelope method, Compos. Struct., vol. 160, pp. 8–15, 2017.
  • F.R. Liu, L.B. Zhao, S. Mehmood, J.Y. Zhang, and B. Fei, A modified failure envelope method for failure prediction of multi-bolt composite joints, Compos. Sci. Technol., vol. 83, pp. 54–63, 2013.

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