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2022 | OriginalPaper | Chapter

Optimization of Hip Implant Designs Based on Its Mechanical Behaviour

Authors : Hasan Göktaş, Eda Subaşi, Metin Uzkut, Mustafa Kara, Hamit Biçici, Hadi Shirazi, K. N. Chethan, Şenay Mihçin

Published in: Biomechanics in Medicine, Sport and Biology

Publisher: Springer International Publishing

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Abstract

Total Hip Arthroplasty (THA) is one of the best advancements in healthcare. THA is required when the hip joint causes immobility and pain. The designed hip implants vary in geometry with different geometrical parameters. The geometry plays an important role in the mechanical behavior of the hip implant. In this study, the optimum selection of hip implant under static loading was evaluated using Finite Element Modeling (FEM). Hip implants with three different stem cross-sections including. (a) elliptic, (b) oval, and (c) trapezoidal were designed using a commercial Computer-Aided Design (CAD) software package. The FEM analysis was carried out via ANSYS R2019 to assess the key mechanical parameters of the implants such as stress distribution and deformation. The results were evaluated for the best stress and strain values. The optimum design had equivalent stress (von Misses) of 258,1 MPa, equivalent strain of 0.004, with total deformation of 0.24 mm and frictional stress of 0.362 MPa producing best values for trapezoidal cross-sectioned design. The findings of this study provided an insight into the selection of appropriate hip implant design with certain geometric design parameters to produce optimum results in clinical applications.

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Metadata
Title
Optimization of Hip Implant Designs Based on Its Mechanical Behaviour
Authors
Hasan Göktaş
Eda Subaşi
Metin Uzkut
Mustafa Kara
Hamit Biçici
Hadi Shirazi
K. N. Chethan
Şenay Mihçin
Copyright Year
2022
DOI
https://doi.org/10.1007/978-3-030-86297-8_4