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Modeling and simulation of physical performance of a External Unilateral Mechatronic Orthopaedic Fixator - Bone system

机译:外部单侧机电骨科固定器-骨系统的物理性能建模与仿真。

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Restricted element study of the fracture healing by external fixation device was investigated. The analyses were performed under an axial and variable loaded boundary conditions. The effect of different fracture size and different distance between bone and the external fixator device on the stress distribution was investigated. The results show that stresses in the external fixator device are highest at the beginning of the fracture healing process, and are gradually decreasing with the time of the treatment. The analyses were carried out using the commercial package CATIA P3 V5R11. This allowed to build a three-dimensional model more similar to the geometrical architecture of the long bone as well as of the external fixator. Three-dimensional restricted element model also allowed a collection of more realistic results. However, the accuracy of the results depends not only on the quality of the model geometry but also on the material properties assigned to the model components. It also depends on the accuracy in the simulation of the finite element model and the optimized mesh generation
机译:研究了外固定装置对骨折愈合的限制因素研究。分析是在轴向和可变载荷边界条件下进行的。研究了不同的骨折尺寸和不同的骨与外固定器之间的距离对应力分布的影响。结果表明,外固定器中的应力在骨折愈合过程开始时最高,并随着治疗时间的增加而逐渐减小。使用商业包装CATIA P3 V5R11进行分析。这样就可以建立一个三维模型,该模型更类似于长骨以及外固定器的几何结构。三维受限元素模型还允许收集更实际的结果。但是,结果的准确性不仅取决于模型几何的质量,还取决于分配给模型组件的材料属性。它还取决于有限元模型仿真的准确性和优化的网格生成

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