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Control of the micromovements of a composite-material nail design: A finite element analysis

机译:控制复合材料钉设计的微长纤维设计:有限元分析

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Background: Intramedullary nail fixation is the most accepted modality for stabilizing long bone midshaft fractures. The commercially used nails are fabricated from Stainless Steel or Titanium. Composite-materials (CM) mainly carbon-fiber reinforced polymers (CFRP) have been gaining more interest and popularity due to their properties, such as modulus of elasticity close to that of bone, increased fatigue strength, and radio-opacity to irradiation that permits a better visualization of the healing process. The use of CFRP instead of metals allows better control of different directional movements along a fracture site. The purpose of this analysis was to design a CM intramedullary nail to enable micromovements as depicted on a finite element analysis method.
机译:背景:髓内钉固定是稳定长骨中段骨折最常用的方法。商用钉子由不锈钢或钛制成。复合材料(CM)主要是碳纤维增强聚合物(CFRP),由于其特性,如接近骨的弹性模量、增加的疲劳强度和辐射不透明度,使得愈合过程更加可视化,因此越来越受到人们的关注和欢迎。使用碳纤维布代替金属,可以更好地控制断裂部位的不同方向运动。该分析的目的是设计一个CM髓内钉,以实现有限元分析方法中描述的微小运动。

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