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Effect of femoral head shape on mechanical behaviours of artificial hip joint

机译:股骨头形状对人工髋关节力学行为的影响

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The human femoral head is not a perfect sphere, but the artificial femoral head is made spherical due to simple manufacturing. The shape may significantly affect the mechanical characteristics of artificial hip joint. This paper is aiming at studying the shape effect of femoral head on mechanical behaviors of artificial hip joint. Three hip joint models with different shapes femoral head were proposed in the finite element analysis software Ansys (version 11.0). Mechanical properties, such as acetabular deformation, were investigated under static and dynamic conditions. In static condition, the acetabular deformation of spherical model is 8.8×10−5 m, and the deformation for ellipsoidal model and conchoidal model are 3.2×10−5 m and 3.4×10−5 m. The acetabular peak stresses are 1.718×107 Pa, 8.87 × 106 Pa and 9.52 × 106 Pa respectively. In the spherical model, peak value occurs in the bottom of the socket, while peak values of the second and third model are obtained at a circle region away from the socket bottom. In dynamic condition, both deformation and peak stress change abruptly. The acetabular deformations are 1.045×10−3 m, 1.143×10−3 m and 1.151×10−3m, the peak stresses are 3.313×108 Pa, 3.260×108 Pa and 3.277×108 Pa. The mean stresses of the second and third model along the sliding direction are lower than the first model. And less deformation is generated near the rim of the acetabulum for the second model.
机译:人的股骨头不是一个完美的球体,但是由于简单的制造,人造的股骨头被制成球形。形状可能会严重影响人工髋关节的机械特性。本文旨在研究股骨头的形状对人工髋关节力学行为的影响。在有限元分析软件Ansys(版本11.0)中提出了三种不同形状的股骨头髋关节模型。在静态和动态条件下研究了力学性能,例如髋臼变形。在静态条件下,球形模型的髋臼变形为8.8×10 −5 m,椭球模型和贝壳状模型的变形为3.2×10 -5 m和3.4 ×10 −5 米髋臼峰值应力分别为1.718×10 7 Pa,8.87×10 6 Pa和9.52×10 6 Pa。在球形模型中,峰值出现在插座底部,而第二和第三模型的峰值在远离插座底部的圆形区域获得。在动态条件下,变形和峰值应力都会突然变化。髋臼变形为1.045×10 -3 m,1.143×10 -3 m和1.151×10 -3 m,峰值应力为分别为3.313×10 8 Pa,3.260×10 8 Pa和3.277×10 8 Pa。滑动方向低于第一个模型。对于第二个模型,在髋臼边缘附近产生的变形较小。

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