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Influence of friction and interference on the seating of a hemispherical press-fit cup: a finite element investigation

机译:摩擦和干扰对半球形压配合杯座的影响:有限元研究

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The formation of gaps in the polar region of acetabular cups is seen as a drawback of press-fit fixation of non-cemented acetabular cups. Recent findings indicate a link between long-term polar gaps and the gaps present directly after implantation. In this study the process of press-fitting is simulated with a linear-elastic two-dimensional axisymmetric finite-element model. The aim of this paper is to investigate the possible importance of friction and interference on the formation of these gaps. A range of cup-bone friction coefficients ( mu identical with 0.1-0.5) is assigned to the cup-bone interface in order to represent the unknown amount of friction occurring during press-fitting. The cup is modeled with a radius of 27 mm, whereas the radius of the cavity is varied between 26.50 and 26.75 mm, thus, creating 0.50 and 0.25 mm radial interference fits. The difference in cavity radius represents the discrepancy between the radius of the last-reamer-used and radius of the cavity it creates. The subchondral plate is considered as being completely removed during reaming. The effects of impact blows via the surgeon's mallet during surgery are modeled as a series of four load pulses, in which peak force is gradually increased from 0.5 to 4.0 kN. The effects of load removal as well as those of load application are investigated. On load application, the cup penetrates into the cavity, and on load removal, the cup rebounds. Depending on the friction, interference and load applied, the position of the cup after the load pulse is somewhere between its position at peak force and its position at the beginning of the pulse. Although the simplifications and conditions involved in the creation of the model necessitate caution when interpreting the results for all clinical cases, it is found that the seating of hemispherical cups in trabecular bone could be more satisfactory for intermediate values of friction ( mu identical with 0.2-0.3) and smaller interference fits (0.25 mm).
机译:在髋臼杯的极性区域中形成间隙被视为非骨水泥髋臼杯的压入固定的缺点。最近的发现表明,长期极性间隙和植入后直接存在的间隙之间存在联系。在这项研究中,用线性弹性二维轴对称有限元模型模拟了压配合过程。本文的目的是研究摩擦和干涉对这些间隙形成的可能重要性。一系列的杯-骨摩擦系数(μ等于0.1-0.5)被分配给杯-骨界面,以表示压配合期间发生的未知摩擦量。杯子的半径为27毫米,而空腔的半径在26.50到26.75毫米之间变化,因此产生了0.50到0.25毫米的径向过盈配合。腔半径的差异表示最后使用的半径与它创建的腔半径之间的差异。软骨下板被认为在扩孔过程中被完全去除。在手术过程中,通过外科医生的槌进行打击的效果被建模为一系列四个负载脉冲,其中峰值力从0.5 kN逐渐增加到4.0 kN。研究了负载去除以及负载施加的影响。在施加负载时,杯子会渗入空腔,而在去除负载时,杯子会反弹。根据摩擦,干扰和所施加的载荷,载荷脉冲之后的杯的位置介于其在峰值力处的位置和其在脉冲开始时的位置之间的某个位置。尽管在解释所有临床病例的结果时,模型创建过程中涉及的简化和条件需要谨慎,但发现半球杯在小梁骨中的位置对于中间摩擦值可能更令人满意(μ等于0.2- 0.3)和较小的过盈配合(0.25 mm)。

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