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Theoretical and Finite Element Modeling of Fine Kirschner Wires in Ilizarov External Fixator

机译:Ilizarov外固定器精细Kirschner电线的理论与有限元建模

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摘要

The mechanical behavior of the transosseous elements is a defining factor in the overall stiffness, stability, and reliability of an external fixation system. Mechanics involving the application of thin Kirschner wires in Ilizarov apparatus is yet to be fully explained. To address this problem, load-deflection behavior of the pretensioned thin wires laterally loaded by the bone is necessary to be studied. In this paper, the lateral deflections of thin Kirschner wires are studied both theoretically and computationally. Fully three dimensional finite element (FE) modeling and analyses were performed in which the bone was modeled as a hollow cylinder, and the wire-bone interaction was assumed to be frictionless. The mathematical solution resulted in new exact solutions for the deflection as well as final tension in the wires subjected to the lateral loading under a cylinder representing the bone. Results from the FE analyses turned out to be very close to those from the mathematical solution. The results obtained from theory and FE method are comparable to published experimental findings. Some aspects of the pretensioned thin wire behavior in ring fixation systems, e.g., stiffness-tension proportionality, were revealed in the results. The current study adds to the existing knowledge on the general behavior of tensile elements. Copyright © 2010 by ASME.
机译:该穿骨元件的机械行为是在整体刚度,稳定性和外部固定系统的可靠性的决定性因素。涉及应用Ilizarov装置薄克氏针的应用力学是尚未得到充分说明。为了解决这个问题,在预张紧细线由骨侧向装载的负荷 - 挠曲特性是必要进行研究。在本文中,薄克氏针的横向偏转都被理论上和计算研究。进行完全三维有限元(FE)建模和分析,其中所述骨建模为一个中空的圆柱体,并假定线骨相互作用是无摩擦。数学溶液导致的偏转以及新的精确解在表示骨的气缸下经受横向负载的导线最终张力。从有限元分析结果竟然是非常接近从数学的解决方案。从理论和有限元方法得到的结果与公布的实验结果。在固定环系统,例如,刚度张力比例的预张紧细线行为的一些方面中,被揭露在结果中。目前的研究增加了对拉伸要素的一般行为的现有知识。版权所有©2010 ASME。

著录项

  • 作者

    A. R. Zamani; S. O. Oyadiji;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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