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A Study on the Stent Expansion Behavior of the Human Artery Based on Finite Element Analysis

机译:基于有限元分析的人体动脉支架扩张行为研究

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摘要

In this paper, non-linear interactions between a stent and an artery are analyzed using the finite element method [ANSYS (Ver 10.0)]. The material property of the artery is assumed to be hyper-elastic. The loading conditions were applied in three steps, according to the pressure level (pressure increase, constant load pressure, and pressure decrease). From the results, the maximum von Mises stresses were measured in the area of contact of the stent and the artery. The maximum von Mises stresses of the stent and artery were obtained and the increase in the maximum pressure showed a decrease in the von Mises stress of the stent. The simulated results show that the distal end of the stent, which tilted after the expansion behavior in the artery, may damage the artery wall. The finite element model used in this study may help in designing the stent.
机译:在本文中,使用有限元方法[ANSYS(Ver 10.0)]分析了支架与动脉之间的非线性相互作用。假定动脉的材料特性是超弹性的。根据压力水平(压力增加,恒定负载压力和压力降低)分三步施加加载条件。根据结果​​,在支架和动脉的接触区域测量了最大冯·米塞斯应力。获得了支架和动脉的最大冯米塞斯应力,并且最大压力的增加显示了支架的冯米塞斯应力的减小。模拟结果表明,支架的远端在动脉扩张行为后倾斜,可能会损坏动脉壁。本研究中使用的有限元模型可能有助于设计支架。

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