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A three dimensional numerical interaction model for the fixation of mandibular fractures

机译:下颌骨折固定三维数值相互作用模型

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Two and three dimensional finite element models (FEM) were developed to simulate the behavior of a fractured jaw bone and the fixation materials. Mini-plates with various geometric and material properties and screw combinations were considered. Their effects on the variation of maximum stress contours were investigated. The geometric and material properties of the plate, screw and bone were seen to play important roles in effecting the relative displacement at the fractured surface and the spatial variation of the maximum stress across the jaw bone. Softer materials yielded less stress concentrations around the screws while increasing the relative deformation at the fractured surface and stiffer ones caused higher stress concentrations while decreasing the displacements. Results were also seen to be dependent on the loading and the need for the use of patient specific 3D solutions was emphasized.
机译:开发了两个和三维有限元模型(FEM)以模拟骨折钳口骨和固定材料的行为。考虑了具有各种几何和材料特性和螺杆组合的迷你板。研究了对最大应力轮廓变化的影响。看到板,螺钉和骨骼的几何和材料特性,以发挥重要作用,以实现裂缝表面的相对位移和颌骨上最大应力的空间变化。更柔软的材料在螺钉周围产生较小的应力浓度,同时增加裂缝表面处的相对变形,并且使得在减少位移的同时引起更高的应力浓度的相对变形。结果还认为依赖于装载,强调了对使用患者特异性3D解决方案的需求。

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