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Analytical modelling of Kirschner wires in Ilizarov circular external fixator as pretensioned slender beams

机译:Ilizarov圆形外固定架中预应力细长梁的克氏针的分析模型

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摘要

Transfixing thin Kirschner wires (K-wires) are the key components of the Ilizarov fixator regarding its axial stiffness, which affects the mechanobiological environment in which bone is healed. Mechanically speaking, K-wires are slender beams that are axially tensioned, then fixed and transversely loaded. The existing solutions to such a problem either do not accommodate any axial loading prior to transverse loading, or do not account for the change in the axial load (reaction) due to transverse loading. Their applicability is also limited vis-à-vis applied loads and beam dimensions. This work seeks to address those problems by providing a mathematical formulation for a pretensioned slender beam that accounts for the change in the beam tension due to lateral loading. Central loading of a pretensioned beam was studied and new polynomial equations have been derived, the roots of which yield the final tension for a (i) long, slender and heavily loaded beam and (ii) relatively thicker beam subjected to a lower load. Results were produced and discussed for the specific application of pretensioned K-wires in circular (ring) external fixators in orthopaedics (such as Ilizarov's), which were checked (validated) via two- and three-dimensional finite-element analyses.
机译:就其轴向刚度而言,透明的Kirschner细钢丝(K线)是Ilizarov固定器的关键组件,这会影响骨骼愈合的机械生物学环境。从机械上来讲,K线是细长的梁,它们在轴向被拉紧,然后被固定并受到横向载荷。解决该问题的现有解决方案要么不承受横向载荷之前的任何轴向载荷,要么不考虑由于横向载荷引起的轴向载荷(反应)的变化。相对于施加的载荷和梁尺寸,它们的适用性也受到限制。这项工作试图通过为预应力细长梁提供数学公式来解决这些问题,该数学公式考虑了由于侧向载荷引起的梁张力变化。研究了预应力梁的中心载荷,并推导了新的多项式方程,其根产生了(i)长而细长的重载荷梁和(ii)承受较低载荷的较厚梁的最终张力。产生并讨论了预应力K线在骨科(例如Ilizarov's)的圆形(环形)外固定器中的具体应用的结果,并通过二维和三维有限元分析对其进行了检查(验证)。

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