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A NEW DESIGNED ACETABULAR CUP - INITIAL STRENGTH EVALUATION USING FINITE ELEMENT ANALYSIS

机译:一种新的设计髋臼杯 - 使用有限元分析的初始强度评估

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In total hip replacement, polyethylene acetabular cup liner back wear particle generation has remained as a significant cause for prothesis loosening in the medium and long term. In this study, the new acetabular cup composed of metal-backed shell, metal sandwich, and UHMWPE liner has been developed within an equator plus outer shell to eliminate back-wear debris. The elastoplastic finite element model was used to verify the biomechanical initial strength of the new acetabular cup design. Three-dimensional models were developed of both the newly designed and also a standard acetabular cup, composed of the same metal-backed shell with a standard UHMWPE liner of 6 mm thickness. The von Mises and contact stresses were estimated by changing various loading conditions and radial clearances. The FEM results showed that with loads of five times body weight (5×72 kg) and below that the von Mises stresses were lower than the yielding strength (13.3 MPa) in relation to the changes of loading direction. In addition, the peak of von Mises stresses of the new design acetabular on the inner surface of UHMWPE liner were relatively lower than that of the standard cup under all loading conditions. Therefore, the newly designed acetabular cup outer shell with a single piece inner metal-polyethylene sandwich liner has been demonstrated on FEA to have sufficient mechanical initial strength to safely withstand loads applied at ranges of angle and radial clearance.
机译:在总髋关节替代品中,聚乙烯髋臼杯衬里背磨颗粒一直是培养基和长期前导下放松的显着原因。在这项研究中,在赤道加外壳内开发了由金属背壳,金属三明治和UHMWPE衬里组成的新髋臼杯,以消除背部磨损碎片。弹塑性有限元模型用于验证新型髋臼杯设计的生物力学初始强度。三维模型是由新设计的和标准髋臼杯开发的,由与6mm厚的标准UHMWPE衬里组成的标准髋臼杯。通过改变各种装载条件和径向间隙来估算Von Mises和接触应力。有组织结果表明,载荷五倍体重(5×72千克),低于von误判应力低于加载方向的变化的屈服强度(13.3MPa)。此外,von MISES在UHMWPE衬里内表面上的新设计髋臼的应力比在所有装载条件下的标准杯的内表面上的应力相对较低。因此,新设计的髋臼杯外壳具有单件式内金属 - 聚乙烯夹层衬垫,已经在FEA上进行了证实,具有足够的机械初始强度以安全地承受在角度和径向间隙范围内施加的载荷。

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