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Numerical investigations of the mechanical properties of a braided non-vascular stent design using finite element method

机译:编织非血管支架设计力学性能的有限元数值研究

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This paper discusses various issues relating to the mechanical properties of a braided non-vascular stent made of a Ni-Ti alloy. The design of the stent is a major factor which determines its reliability after implantation into a stenosed non-vascular cavity. This paper presents the effect of the main structural parameters on the mechanical properties of braided stents. A parametric analysis of a commercial stent model is developed using the commercial finite element code ANSYS. As a consequence of the analytical results that the pitch of wire has a greater effect than other structural parameters, a new design of a variable pitch stent is presented to improve mechanical properties of these braided stents. The effect of structural parameters on mechanical properties is compared for both stent models: constant and variable pitches. When the pitches of the left and right quarters of the stent are 50% larger and 100% larger than that of the central portion, respectively, the radial stiffness in the central portion increases by 10% and 38.8%, while the radial stiffness at the end portions decreases by 128% and 164.7%, the axial elongation by 25.6% and 56.6% and the bending deflection by 3.96% and 10.15%. It has been demonstrated by finite element analysis that the variable pitch stent can better meet the clinical requirements.
机译:本文讨论了与由Ni-Ti合金制成的编织无血管支架的机械性能有关的各种问题。支架的设计是决定其植入狭窄的非血管腔后可靠性的主要因素。本文介绍了主要结构参数对编织支架力学性能的影响。使用商用有限元代码ANSYS开发了商用支架模型的参数分析。作为分析结果的结果,金属丝的间距比其他结构参数具有更大的影响,提出了一种可变间距支架的新设计,以改善这些编织支架的机械性能。比较了两种支架模型的结构参数对机械性能的影响:恒定螺距和可变螺距。当支架的左,右四分之一的螺距分别比中心部分大50%和100%时,中心部分的径向刚度将增加10%和38.8%,而支架的径向刚度将增加10%和38.8%。末端部分减少了128%和164.7%,轴向伸长减少了25.6%和56.6%,弯曲变形减少了3.96%和10.15%。通过有限元分析已经证明,可变节距支架可以更好地满足临床要求。

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