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Topology Optimization of a Prosthetic Knee Joint Component

机译:假体膝关节组件的拓扑优化

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In order to simulate the damping effect of cartilage at human’s knee joint, the component of a prosthetic knee joint is topology optimized as a compliant mechanism. After optimization, the component not only has the desired damping effect, but also has a lightweight structure, which is still capable of withstanding the prescribed loads. The SIMP (Solid Isotropic Material with Penalization) interpolation scheme for topology optimization is used here with OC (Optimality Criteria) method as optimizer. The optimization is implemented by a MATLAB code. A proof test by ANSYS has shown that the optimized component with Polyethylene Terephthalate (PET) as material has a displacement about 1.65 mm within constraints of material volume and strength.
机译:为了模拟软骨在人膝关节的阻尼效果,假体膝关节的部件是作为柔顺机制优化的拓扑。优化后,该部件不仅具有所需的阻尼效果,而且还具有轻质结构,其仍然能够承受规定的负载。拓扑优化的SIMP(阳性各向同性材料与惩罚)插值方案在此处使用OC(最优标准)方法作为优化器。优化由MATLAB代码实现。 ANSYS的证据测试表明,作为材料的聚对苯二甲酸乙二醇酯(PET)的优化组分在材料体积和强度的限制内具有约1.65mm的位移。

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