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Finite element simulation of the hip joint during stumbling: a comparison between static and dynamic loading

机译:绊脚期间髋关节的有限元模拟:静态和动态载荷之间的比较

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摘要

Finite element stress analysis technique has been used to optimize both design and material selection in load-bearing components in artificial hip joints based on the static load analysis, by selecting the peak load during the patient activity. In this study, a component was subjected to a dynamic load due to stumbling and the peak static load of the same patient load activity. Two quantitative measures are calculated: peak stress and stressed volume. It has been shown that each measure may lead to differing conclusions. It is concluded that from a thorough analysis of the hip prosthesis components (prosthesis, cement mantle and bone) it is not the peak stress but rather the proportion of the stressed elements (or stressed volume) which should be the indicator if a precise analysis of the load transfer mechanism is required. In static analysis the material was assumed to be linear elastic continuum with isotropic properties, whereas in dynamic analysis it was assumed to be hi-linear elasto-plastic.
机译:有限元应力分析技术已被用于基于静态载荷分析,通过在患者活动期间选择峰值载荷,来优化人工髋关节中承重组件的设计和材料选择。在这项研究中,由于绊脚和相同患者负荷活动的峰值静态负荷,组件承受了动态负荷。计算了两个定量度量:峰值应力和应力体积。已经表明,每种措施可能得出不同的结论。结论是,从对髋关节假体组件(假体,水泥套和骨)的透彻分析中,不是峰值应力而是应力元素(或应力体积)的比例才是进行精确分析的指标。需要负载传递机制。在静态分析中,该材料被假定为具有各向同性特性的线性弹性连续体,而在动态分析中,该材料被认为是线性弹塑性。

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