首页> 外文会议>Computers and information in engineering conference;ASME international design engineering technical conferences and computers and information in engineering conference >PSEUDO ELIMINATION OF GEOMETRY DEPENDENCE IN SURROGATE MODELS OF DISTRIBUTED KNEE LOADS FROM AN EXPLICIT DYNAMIC FINITE ELEMENT ANALYSIS
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PSEUDO ELIMINATION OF GEOMETRY DEPENDENCE IN SURROGATE MODELS OF DISTRIBUTED KNEE LOADS FROM AN EXPLICIT DYNAMIC FINITE ELEMENT ANALYSIS

机译:基于显式动力有限元分析的伪消除分布式膝关节负荷替代模型的几何依赖。

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The premise of a total knee replacement (TKR) is to alleviate pain and increase joint mobility. The expected 20 year life span of the knee insert exceeds that of the standard patient given traditional wear and tear. With more active lifestyles, greater wear rates and shorter life spans are predicted for tibial inserts. Greater wear rates increase the probability that a patient will require additional surgery later in life. This research provides a knee loading model to estimate the pressure loading distribution through Finite Element Modeling (FEM). The publicly available patient data was used to eliminate the geometry dependence in a surrogate model of distributed knee loads from an explicit Finite Element Analysis (FEA). The developed method based upon FEM and FEA, produced two notable results. The secondary results showed the FEM accurately estimated the medial and lateral contact forces during the stance phase. However, the primary result was that the surrogate model successfully interpolated the contact surface forces using results from the FEA without requiring any knowledge of the geometry of the contact surfaces.
机译:全膝关节置换(TKR)的前提是减轻疼痛并增加关节活动度。考虑到传统的磨损,膝盖插入物的预期20年寿命超过了标准患者的寿命。随着生活方式的活跃,胫骨插入物的磨损率将提高,寿命将缩短。较高的磨损率会增加患者在以后的生活中需要进行其他手术的可能性。这项研究提供了一个膝盖载荷模型,可以通过有限元建模(FEM)估算压力载荷分布。使用公开可用的患者数据,从显式的有限元分析(FEA)中消除了分布式膝关节负荷的替代模型中的几何形状依赖性。基于FEM和FEA的开发方法产生了两个显着的结果。次要结果表明,FEM可以准确地估计站立阶段的内侧和外侧接触力。但是,主要结果是,替代模型使用FEA的结果成功地内插了接触表面力,而无需了解接触表面的几何形状。

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