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The simulation for study of von Mises stress sensitiveness to the change of coronal conformity in knee prosthesis

机译:von Mises对膝关节假体冠状顺应性变化的应力敏感性研究的模拟

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Two-dimensional finite element contact modelling is often conducted to simulate the contact mechanism in knee prosthesis. This is based on the assumption that the contact stresses are more sensitive to change in the coronal plane than in the sagittal plane. Therefore, the simulation is then can be simply conducted only in the coronal plane with neglecting the sagittal dimension. Thus, the model is only a two-dimensional model. Based on this issue, the investigation of the response of contact stress (von Mises) to the coronal and sagittal conformity variation was conducted. For the need of investigation, ten three-dimensional finite element models of knee prosthesis have been created. From the result, the gradient of von Mises stress when the conformity varied in the coronal plane was -12.015, and when the conformity was varied in the sagittal plane, the gradient was ?9.774. This meant that the von Mises stress had high sensitiveness to the change of the coronal conformity variation of knee prosthesis than to the change of the sagittal conformity. Therefore, the contact modelling of knee prosthesis can be simply carried out in the coronal plane.
机译:通常进行二维有限元接触建模来模拟膝关节假体的接触机制。这是基于这样的假设,即接触应力对冠状面的变化比矢状面的变化更敏感。因此,可以仅在冠状平面内简单地进行模拟,而忽略矢状尺寸。因此,该模型只是二维模型。基于这个问题,对接触应力(冯·米塞斯)对冠状和矢状顺应性变化的响应进行了研究。为了进行研究,已经创建了十个膝关节假体的三维有限元模型。由结果可知,当在冠状面内的顺应性变化时,von Mises应力的梯度为-12.015,在矢状面内的顺应性变化时的梯度为〜9.774。这意味着冯·米塞斯应力对膝关节假体的冠状顺应性变化的敏感性高于对矢状顺应性的敏感性。因此,可以在冠状平面内简单地进行膝关节假体的接触建模。

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