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Geometric and material nonlinearity in tensioned wires of an external fixator.

机译:外部固定器张紧导线中的几何和材料非线性。

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Objective. To investigate the fundamental characteristics of a tensioned wire in an external fixator. Design. Many factors that may influence the wire performance including the change in wire geometry, material hardening and yielding, loading and unloading, and levels of pre-tension are considered in order to obtain a whole spectrum of the wire characteristics. Background. External fixation is widely used in the treatment of unstable fractures, limb lengthening, and congenital and pathological orthopedic deformities. With the use of tensioned wires, external fixation provides attractive features such as minimal invasiveness, maximum tailorability, and versatility. These seemingly simple wires actually fulfill a very complex duty. To be able to maximize the benefit of these wires, it is necessary to know their fundamental characteristics. Methods. A single wire was isolated from an external Ilizarov ring-frame, and nonlinear elastic and plastic analyses of the wire were performed using the method of finite element analysis. Results. The nonlinear behavior of the wire originates not only from the material hardening and yielding but also from the change in its geometry. Pre-tension reduces wire deflection, delays the onset of full-plastic deformation, and elevates the limiting plastic moment, but at the same time leads to early material hardening and yielding. Conclusions. An entire load-deflection curve is necessary when comes to describe the wire performance. To enhance the wire performance, further efforts should be directed to exploiting the benefit of geometric nonlinearity of the wire. Relevance The findings will lead to refinement of external fixation design and provide engineering information to surgeons regarding the application of pre-tension during surgery.
机译:目的。研究外部固定器中拉紧钢丝的基本特性。设计。为了获得导线特性的整个光谱,考虑了许多可能影响导线性能的因素,包括导线几何形状的变化,材料的硬化和屈服,加载和卸载以及预张力水平。背景。外固定支架广泛用于治疗不稳定的骨折,四肢延长以及先天性和病理性骨科畸形。通过使用张紧的金属丝,外部固定可提供吸引人的功能,例如最小的侵入性,最大的可定制性和多功能性。这些看似简单的电线实际上完成了非常复杂的任务。为了最大程度地发挥这些电线的优势,有必要了解它们的基本特性。方法。将单根导线与外部Ilizarov环形框架隔离,并使用有限元分析方法对导线进行非线性弹性和塑性分析。结果。线材的非线性行为不仅源于材料的硬化和屈服,还源于其几何形状的变化。预张力可减少钢丝变形,延迟全塑性变形的发生,并提高极限塑性力矩,但同时又会导致材料过早硬化和屈服。结论描述电线的性能时,必须有一条完整的载荷-挠度曲线。为了提高导线的性能,应该进一步努力开发导线几何非线性的好处。相关性该发现将导致外固定设计的完善,并为外科医生提供有关手术中预紧力应用的工程信息。

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