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Analysis of Mechanical Stability for External Fixation Device in the Case of Anterior-Posterior Bending

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Języki publikacji
EN
Abstrakty
EN
Analysis of mechanical stability for external fixation device Orthofix in the case of anterior-posterior bending is carried out in this paper. Device is applied to the lower leg for the case of unstable fracture. Real device is measured and 3D CAD model is developed. CAD model is used for numerical structural stress analysis which is carried out using CATIA V5 software. Results for displacements are obtained for selected critical places on the device and for the place of fracture. In addition, values of principal and von Misses stresses are obtained and analyzed. Using obtained results, conclusions about mechanical stability of device are formulated.
Twórcy
autor
  • Faculty of Mechanical Engineering, University of Sarajevo, Vilsonovo šetalište 9, Sarajevo, Bosnia and Herzegovina
  • Faculty of Mechanical Engineering, University of Sarajevo, Vilsonovo šetalište 9, Sarajevo, Bosnia and Herzegovina
  • Faculty of Mechanical Engineering, University of Sarajevo, Vilsonovo šetalište 9, Sarajevo, Bosnia and Herzegovina
  • Faculty of Mechanical Engineering, University of Sarajevo, Vilsonovo šetalište 9, Sarajevo, Bosnia and Herzegovina
  • Faculty of Mechanical Engineering, University of Sarajevo, Vilsonovo šetalište 9, Sarajevo, Bosnia and Herzegovina
Bibliografia
  • 1. Pervan N., Mešić E., Muminović A.J., Delić M., Muratović E., Trobradović M., Hadžiabdić V. Biomechanical Performance Analysis of the Monolateral External Fixation Devices with Steel and Composite Material Frames under the Impact of Axial Load. Applied Sciences. 2022; 12(2): 722.
  • 2. Verma V., Pal K.A. Finite Element Investigation on the Design of Mechanically Compatible Functionally Graded Orthopaedic Plate for Diaphyseal TibiaTransverse Fracture. Composites Part C: Open Access. 2022; 100228.
  • 3. Paul G.W. The history of external fixation. Clinics in podiatric medicine and surgery. 2003; 20(1): 1–8.
  • 4. Koo T.K.K., Chao E.Y.S., Mak A.F.T. Fixation Stiffness of Dynafix Unilateral External Fixator in Neutral and Non-neutral Configurations. Bio-Med. Mater. Eng. 2005; 15: 433–444.
  • 5. Drijber F.L.I.P., Finlay J.B., Moroz T.K., Rorabeck C.H. Source of the Slippage in the Universal Joints of the Hoffmann External Fixator. Med. Biol. Eng. Comput. 1990; 28: 8–14.
  • 6. Jasinska-Choromanska D., Sadzynski I. Monitoring Technique of Bone Fracture Healing Using External Fixators. Eng. Trans. 2003; 51: 255–265.
  • 7. Vossoughi J., Youm Y., Bosse M., Burgess A.R., Poka A. Structural Stiffness of the Hoffmann Simple Anterior Tibial External Fixation Frame. Ann. Biomed. Eng. 1989; 17: 127–141.
  • 8. Mešić E., Pervan N., Muminović A.J., Muminović A., Čolić M. Development of Knowledge-Based Engineering System for Structural Size Optimization of External Fixation Device. Applied Sciences. 2021; 11(22): 10775.
  • 9. Grubor P., Mitković M., Tanjga R. Značaj biomehaničkih karakteristika spoljnjeg fiksatora u liječenju kominutivnih preloma i koštanih defekata. Acta Fac. Med. Naiss. 2002; 19: 211–221.
  • 10. Mesic E., Pervan N., Repcic N., Muminovic A. Research of Influential Constructional Parameters on the Stability of the Fixator Sarafix. In: Annals of DAAAM for 2012 & Proceedings of the 23 rd International DAAAM Symposium, Vienna, Austria 2012, 561–564.
  • 11. Pervan N., Mesic E., Colic M., Avdic V. Stiffness analysis of the sarafix external fixator of composite materials. International Journal of Engineering & Technology. 2016; 5(1): 20–24.
  • 12. Yilmaz E., Belhan O., Karakurt L., Arslan N. and Serin, E. Mechanical performance of hybrid Ilizarov external fixator in comparison with Ilizarov circular external fixator. Clin. Biomech. 2003; 18: 518–522.
  • 13. Pervan N., Mesic E., Colic M., Avdic V. Stiffness Analysis of the Sarafix External Fixator based on Stainless Steel and Composite Material. TEM Journal. 2015; 4(4): 366–372.
  • 14. Mešić E., Muminović A., Čolić M., Petrović M., Pervan N. Development and Experimental Verification of a Generative CAD/FEM Model of an External Fixation Device. Tehnicki glasnik-Technical Journal. 2020; 14(1): 1–6.
  • 15. Mešić E., Muminović A., Čolić M., Petrović M., Pervan N. Structural Size Optimization of External Fixation Device. Advances in Science and Technology. Research Journal. 2020; 14(2): 233–240.
  • 16. De Bastiani G., Apley A.G., Goldberg A.A. Orthofix external fixation in trauma and orthopaedics. Springer, London; 2000.
  • 17. Chao E.Y., Hein T.J. Mechanical performance of the standard Orthofix external fixator. Orthopedics. 1988; 11(7): 1057–1069.
  • 18. Dehankar R., Langde A.M. Finite element approach used on the human tibia: a study on spiral fractures. Journal of Long Term Effects of Medical Implants. 2009; 19(4): 313–321.
  • 19. Pervan N., Mesic E., Colic M. Stress analysis of external fixator based on stainless steel and composite material. International Journal of Mechanical Engineering & Technology. 2017; 8(1): 189–199.
  • 20. Mešić E., Avdić V., Pervan N., Repčić N. Finite Element Analysis and Experimental Testing of Stiffness of the Sarafix External Fixator. Procedia Engineering. 2015; 100: 1598–1607.
  • 21. Mesic E., Avdic V., Pervan N. Numerical and experimental stress analysis of an external fixation system. Folia Medica Facultatis Medicinae Universitatis Saraeviensis. 2015; 50(1): 52–58.
  • 22. Mesic E., Avdic V., Pervan N., Muminovic A. A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap. TEM Journal. 2015; 4(3): 270–275.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ecc9a8c3-2341-4a90-b95b-2686d23cc41e
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