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Static, dynamic and fatigue behavior of newly designed stem shapes for hip prosthesis using finite element analysis

机译:新型人工髋关节假体杆的静态,动态和疲劳行为的有限元分析

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摘要

Forces applied to the implant due to human activity generate dynamic stresses varying in time and resulting in the fatigue failure of implant material. Therefore, it is important to ensure the hip prostheses against static, dynamic and fatigue failure. Finite element method has been used in orthopedic biomechanics as an important tool in the design and analysis of total joint replacements and other orthopedic devices. In this study, four stem shapes of varying curvatures for hip prosthesis were modeled. Static, dynamic and fatigue behavior of these designed stem shapes were analyzed using commercial finite element analysis code ANSYS. Static analyses were conducted under body load. Dynamic analyses were performed under walking load. Pro/Engineer was used for CAD modeling of the stem shapes. Fatigue behavior of stem shapes was predicted using ANSYS Workbench software. Performance of the stem shapes was investigated for Ti-6A1-4V and cobalt-chromium metal materials and compared with that of a commonly used stem shape developed by Charnley.
机译:由于人类活动而施加到植入物上的力会产生随时间变化的动态应力,并导致植入物材料的疲劳破坏。因此,重要的是要确保髋关节假体免受静态,动态和疲劳破坏。有限元方法已在骨科生物力学中用作设计和分析全关节置换物及其他骨科器械的重要工具。在这项研究中,为髋关节假体建模了四个曲率不同的茎形状。使用商业有限元分析代码ANSYS分析了这些设计杆形状的静态,动态和疲劳行为。在身体负荷下进行静态分析。在步行负荷下进行动态分析。 Pro / Engineer用于茎形状的CAD建模。使用ANSYS Workbench软件预测了杆形的疲劳行为。研究了Ti-6A1-4V和钴铬金属材料的茎形性能,并将其与Charnley开发的常用茎形进行比较。

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