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实体髋关节植入物中股骨头的凹槽设计优化:使用有限元分析和全因子设计对应力分布和总变形的研究

Groove design optimization of femoral heads in solid hip implants: Study on stress distribution and total deformation using FEA and full factorial design.

作者信息

Abdudeen Asarudheen, Abu Qudeiri Jaber E, Kareem Ansar

机构信息

Mechanical and Aerospace Engineering Department, College of Engineering, United Arab Emirates University, Al Ain, 15551, United Arab Emirates.

出版信息

Heliyon. 2024 May 6;10(10):e30658. doi: 10.1016/j.heliyon.2024.e30658. eCollection 2024 May 30.

Abstract

Hip replacement surgery is a common procedure that relies on the implant's design to withstand daily activities. This study aims to investigate the impact of different surface groove designs on the performance of solid hip implants using finite element analysis (FEA) and optimization techniques. The study evaluates the influence of grooves on the stress distribution and total deformation of the implant, considering three designs: no grooves, horizontal grooves, and vertical grooves on the surface of the femoral head. The simulations were conducted using Ansys Mechanical, and the optimization process was carried out using the general full factorial design method in Minitab software. The results demonstrate that the groove design significantly affects the stress distribution and wear of the implant. The vertical groove design shows better overall results, indicating the best performance. The study also evaluated the influence of force on the performance of the implant, with different load range. The optimization process using the general full factorial design method revealed that the optimal groove design was a vertical model with an optimized groove depth and width. These findings offer valuable insights into the impact of surface groove designs on the performance of solid hip implants, leading to better patient outcomes and longer implant lifespan. Overall, this study provides a comprehensive understanding of the effect of surface groove design on the performance of solid hip implants.

摘要

髋关节置换手术是一种常见的手术,它依赖于植入物的设计来承受日常活动。本研究旨在使用有限元分析(FEA)和优化技术,研究不同表面凹槽设计对实体髋关节植入物性能的影响。该研究评估了凹槽对植入物应力分布和总变形的影响,考虑了三种设计:无凹槽、水平凹槽和股骨头表面的垂直凹槽。使用Ansys Mechanical进行模拟,并使用Minitab软件中的通用全因子设计方法进行优化过程。结果表明,凹槽设计显著影响植入物的应力分布和磨损。垂直凹槽设计显示出更好的总体结果,表明性能最佳。该研究还评估了不同载荷范围内力对植入物性能的影响。使用通用全因子设计方法的优化过程表明,最佳凹槽设计是具有优化凹槽深度和宽度的垂直模型。这些发现为表面凹槽设计对实体髋关节植入物性能的影响提供了有价值的见解,从而带来更好的患者预后和更长的植入物使用寿命。总体而言,本研究全面了解了表面凹槽设计对实体髋关节植入物性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3dd/11128830/83e421861385/gr1.jpg

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