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EFFECT OF TAPERED GEOMETRY ON THE LOAD TRANSFER OF AN IDEALIZED CEMENTED HIP IMPLANT

机译:锥形几何形状对理想固结髋关节植入物载荷传递的影响

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摘要

Implant loosening of cemented hip implants is one of the major causes of failure of the arthroplasty. In cemented hip implants, the polymethyl methacrylate (PMMA), also called bone cement, is used as grouting material between the stem and the surrounding bone. During polymerisation of the cement, residual stresses are generated in the bulk cement. The bone cement does not have a chemical bond with the stem nor the bone; however, it fills completely the space between the two and serves to distribute the load being transferred from the stem to the bone. Numerical analyses on the load transfer of cemented hip implants usually do not include the residual stresses due to cement curing at the stem-cement interface. A recent study has shown that the inclusion of the residual stresses at the stem-cement interface affected the load transfer for an early post-operative situation. Their finite element (FE) analysis was performed on an idealized cemented hip implant having a straight stem. This study investigated the load transfer of an idealized cemented hip implant of tapered geometry. The FE analysis was three-dimensional and used non-linear contact elements to represent the debonded stem-cement interface. The cement stress distributions were determined at the interface with the inclusion of the residual stresses.
机译:髋骨植入物的植入物松动是关节置换术失败的主要原因之一。在骨水泥髋关节植入物中,聚甲基丙烯酸甲酯(PMMA)也称为骨水泥,用作茎和周围骨之间的灌浆材料。在水泥聚合过程中,在散装水泥中会产生残余应力。骨水泥与茎或骨没有化学键;但是,它完全填满了两者之间的空间,并用于分配从茎传递到骨骼的载荷。对骨水泥髋关节植入物的载荷传递的数值分析通常不包括由于骨水泥在茎-水泥界面处固化而产生的残余应力。最近的一项研究表明,在干骨水泥界面处残留应力会影响术后早期情况下的负荷转移。他们的有限元(FE)分析是在理想的具有直茎的骨水泥髋关节植入物上进行的。这项研究调查了理想的锥形几何形状的髋关节植入物的载荷传递。有限元分析是三维的,并使用非线性接触元素来表示脱粘的干水泥界面。在包含残余应力的情况下,确定了界面处的水泥应力分布。

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