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Article

Biomechanical Performance Analysis of the Monolateral External Fixation Devices with Steel and Composite Material Frames under the Impact of Axial Load

1
Department of Mechanical Design, Faculty of Mechanical Engineering, University of Sarajevo, 71000 Sarajevo, Bosnia and Herzegovina
2
Department of Vehicle Engineering, Faculty of Mechanical Engineering, University of Sarajevo, 71000 Sarajevo, Bosnia and Herzegovina
3
Department of Physics and Mathematics, Faculty of Mechanical Engineering, University of Sarajevo, 71000 Sarajevo, Bosnia and Herzegovina
*
Author to whom correspondence should be addressed.
Appl. Sci. 2022, 12(2), 722; https://doi.org/10.3390/app12020722
Submission received: 8 December 2021 / Revised: 28 December 2021 / Accepted: 29 December 2021 / Published: 12 January 2022

Abstract

This paper describes comparative analysis of the biomechanical performances conducted on the external fixation devices whose frames are made out of two different material (stainless steel and composite material). Biomechanical properties were determined with experimental and FEM (finite element method) models which are used to study the movement of the fracture crack, establish stiffness of the design solutions and monitor generated stresses on the zones of interest. Geometric modeling of two fixation devices configurations B50 and C50 is used as a basis for structural analysis under the impact of axial load. Structural analysis results are confirmed with an experimental setup. Analyzed deflection values in the load and fracture zones are used to define the exact values of the stiffness for the construction design and fracture, respectively. The carbon frame device configuration has 28% lower construction stiffness than the one with the steel frame (for B50 configuration), i.e., 9% (for C50 configuration). In addition, fracture stiffness values for the composite frame application are approximately 23% lower (B50 configuration), i.e., 13% lower (C50 configuration), compared to steel frame. The carbon frame device has about 33% lower stresses at the critical zones compared to the steel frame at the control zone MM+ and, similarly, 35% lower stresses at the control zone MM-. With an exhausting analysis of the biomechanical properties of the fixation devices, it can be concluded that steel frame fixation device is superior, meaning it has better biomechanical characteristics compared to carbon frame fixation device, regarding obtained data for stresses and stiffnesses of the frame construction and fracture. Considering stresses at the critical zones of the fixation device construction, the carbon frame device has better biomechanical performances compared to steel frame devices.
Keywords: external fixation; composite material; stainless steel; construction design stiffness; fracture stiffness; stress external fixation; composite material; stainless steel; construction design stiffness; fracture stiffness; stress

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MDPI and ACS Style

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. Appl. Sci. 2022, 12, 722. https://doi.org/10.3390/app12020722

AMA Style

Pervan N, Mešić E, Muminović AJ, 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. https://doi.org/10.3390/app12020722

Chicago/Turabian Style

Pervan, Nedim, Elmedin Mešić, Adis J. Muminović, Muamer Delić, Enis Muratović, Mirsad Trobradović, and Vahidin Hadžiabdić. 2022. "Biomechanical Performance Analysis of the Monolateral External Fixation Devices with Steel and Composite Material Frames under the Impact of Axial Load" Applied Sciences 12, no. 2: 722. https://doi.org/10.3390/app12020722

APA Style

Pervan, N., Mešić, E., Muminović, A. J., Delić, M., Muratović, E., Trobradović, M., & Hadžiabdić, V. (2022). Biomechanical Performance Analysis of the Monolateral External Fixation Devices with Steel and Composite Material Frames under the Impact of Axial Load. Applied Sciences, 12(2), 722. https://doi.org/10.3390/app12020722

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