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Optimal Material Selection for Total Hip Implant: A Finite Element Case Study

机译:全髋关节植入物的最佳材料选择:有限元案例研究

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The selection of most proper materials in engineering design is known as an important stage of the design process. In order to successfully complete this stage, it is necessary to have sufficient knowledge about the structure of materials, density, melting point, thermal expansion coefficient, tensile and yield strength, elongation, modulus of elasticity, hardness and many other properties. There are several selection systems that help the design engineer to choose most suitable material that meet the required properties. In the field of bioengineering, the selection of materials and the development of new materials for the clinical needs are increasingly important. In this study, the cases of optimal implant stabilization were investigated, material alternatives for hip prosthesis were evaluated, and optimal materials were determined. Using computerized tomography data with MIMICS software, virtual surgery was applied the hip bone and the implant was attached to bone. Boundary conditions and material properties have been defined, and finite element model has been created. FEA investigation of the mechanical behavior of the hip implant for various material alternatives determined by the CES software showed that the best material candidate is austenitic, annealed and biodurable stainless steel in terms of the micromotions at the implant-bone cement interface regarding osseointegration. This candidate showed 20.69% less strain value than the most commercially used hip implant material, Ti6Al4V. Therefore, the findings of this study suggest that the use of some specific stainless steel materials for implants may reduce the operation cost and increase the operation success for the total hip arthroplasty.
机译:在工程设计中选择最合适的材料被称为设计过程的重要阶段。为了成功完成此阶段,必须对材料的结构,密度,熔点,热膨胀系数,拉伸强度和屈服强度,伸长率,弹性模量,硬度和许多其他特性有足够的了解。有几种选择系统可以帮助设计工程师选择最合适的材料,以满足所需的性能。在生物工程领域,为了临床需要选择材料和开发新材料变得越来越重要。在这项研究中,研究了最佳植入物稳定性的情况,评估了髋关节假体的替代材料,并确定了最佳材料。使用带有MIMICS软件的计算机断层扫描数据,对髋骨进行虚拟手术,并将植入物固定在骨上。定义了边界条件和材料属性,并创建了有限元模型。 FEA对由CES软件确定的各种材料替代物的髋关节植入物的机械性能进行的研究表明,就植入物-骨水泥界面上的骨整合而言,微运动方面,最佳的材料候选材料是奥氏体,退火和生物耐用的不锈钢。与最常用的髋关节植入材料Ti6Al4V相比,该候选材料的应变值低20.69%。因此,这项研究的结果表明,将某些特定的不锈钢材料用于植入物可降低全髋关节置换术的手术成本并提高手术成功率。

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