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Biomechanical design of a composite femoral prosthesis to investigate the effects of stiffness, coating length, and interference press fit

机译:复合材料股骨假体的生物力学设计,以研究刚度,涂层长度和过盈压配合的影响

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摘要

Traditionally, high stiffness hip prostheses are associated with aseptic loosening. Hence, the effects of stiffness, coating length, and interference press fit on load sharing and micro-movements are investigated for a better understanding from a mechanical perspective. A simplified 3D model of the femur and prostheses composed of cobalt chrome (CoCr), titanium (Ti), and glass/polypropylene (Twintex [0](2nT)) composite are constructed. Three interference fits corresponding to 5, 25, and 50 mu m are used with half, three-quarter, and full lengths of coating that are used to assemble the prostheses with bones to investigate micro-movements at the bone-prosthesis interfaces, interfacial failure, and stress transfer to the bone. The reaction forces of body weight and muscular forces in the femur are used to simulate the FE model. The results indicate that the CoCr and Ti prostheses exhibit low micro-movements at the proximal end and high micro-movements at the distal end and vice versa for the Twintex [0](2nT) composite prosthesis. Uniformity of stress transfer to the bone along the prosthesis efficiently increases with increases in the coating lengths and interference press fits for all the cases. A fully coated length of Twintex [0](2nT) composite prosthesis with a 50-mu m interference press fit provides the most efficient load sharing and stress transfer to the bone and micro-movements at the bone-prosthesis interface.
机译:传统上,高硬度髋关节假体与无菌性松动有关。因此,研究了刚度,涂层长度和过盈压配合对载荷分配和微小运动的影响,以便从机械角度更好地理解。构建了由钴铬(CoCr),钛(Ti)和玻璃/聚丙烯(Twintex [0](2nT))复合材料组成的股骨和假体的简化3D模型。使用三种分别对应于5、25和50μm的干涉配合以及一半,四分之三和全长的涂层,这些涂层用于将假体与骨骼组装在一起,以研究假体界面处的微动,界面破坏,应力转移到骨骼。股骨的体重和肌肉反作用力被用来模拟有限元模型。结果表明,对于Twintex [0](2nT)复合假体,CoCr和Ti假体在近端呈现出低微运动,在远端表现出高微运动,反之亦然。随着涂层长度的增加,应力沿着假体传递到骨头的均匀性有效地增加,并且在所有情况下干涉压配合都是合适的。 Twintex [0](2nT)复合假体的全涂层长度与50微米的干涉压配合可提供最有效的负载分担,并将应力转移到骨骼以及假体界面处的微小运动。

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