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Shape optimization of femoral components of an artificial hip prosthesis using the three-dimensional P-version finite element study and the in vitro measurement of strain in the bone cement

机译:三维P-Version有限元研究和骨水泥菌株的体外测定,塑造人工髋关节假体的股骨成分的形状优化

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Though Total Hip Arthroplasty (THA) is being performed with greater frequency every year for patients with endstage arthritis of hip, mechanical fatigue of bone cement leading to damage accumulation is implicated in the loosening of cemented hip components. This fatigue failure of bone cement has been reported to be the result of high tensile and shear stresses at the bone cement. The aim of this study is to design the optimum shape of femoral component of a THA that minimizes the peak stress value of maximum principal stress at the bone cement and to validate the FEM results by comparing numerical stress with experimental ones. The p-version three-dimensional Finite Element Method (FEM) combined with an optimization procedure was used to perform the shape optimization. Moreover the strain in the cement mantle surrounding the cemented femoral component of a THA was measured in vitro using strain gauges embedded within the cement mantle adjacent to the developed femoral stem to validate the optimization results of FEM.
机译:虽然每年为髋臼肠道关节炎的患者进行髋关节炎患者的总髋关节置换术(THA),但导致损伤积聚的骨水泥的机械​​疲劳均涉及粘合髋部件的松动。据报道,这种抗骨水泥的疲劳失效是骨水泥的高拉伸和剪切应力的结果。本研究的目的是设计一种股骨的股骨组分的最佳形状,其最小化骨水泥的最大主应力的峰值应力值,并通过将数值应力与实验结果进行比较来验证有限元的结果。使用与优化过程相结合的P型三维有限元方法(FEM)来执行形状优化。此外,使用嵌入在发达的股骨杆附近的水泥地幔内的应变计,在体外测量围绕THA的胶泥型股骨组分的水泥罩中的菌株以验证FEM的优化结果。

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