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Numerical analysis of crimping and inflation process of balloon-expandable coronary stent using implicit solution

机译:气囊扩张式冠状动脉支架压接和充气过程的隐式数值分析

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The paper presents an applied methodology for numerical finite element analysis of coronary stent crimping and the free inflation process with the use of a folded noncompliant angioplasty balloon. The use of an implicit scheme is considered as the most original part of the work, as an explicit finite element procedure is very often preferred. Hitherto, when the implicit solution was used for the finite element solution, the simulated issue was largely simplified. Therefore, the authors focused on the modelling methodology with minimum possible simplification, ie, a full load path (compression and inflation in single analysis), solid element discretization, and sophisticated contact models (bodies with highly different stiffness). The obtained results are partially compared with experimental data (radial force during the crimping procedure) and present satisfactory compliance. The authors believe that presented methodology allow for significant improvement of the obtained results, as well as potential extension of the research scope, compared to previous efforts performed using the explicit integration scheme. Moreover, the presented methodology is believed to be suitable for sensitivity and optimization studies.
机译:本文提出了一种使用折叠式非顺应性血管成形术球囊对冠状动脉支架压接和自由充气过程进行数值有限元分析的应用方法。隐式方案的使用被认为是工作的最原始部分,因为显式有限元程序通常是首选。迄今为止,当将隐式解用于有限元解时,模拟问题就大大简化了。因此,作者专注于以尽可能少的简化来简化建模方法,即完整的载荷路径(单次分析中的压缩和充气),实体元素离散化和复杂的接触模型(刚度差异很大的实体)。将获得的结果与实验数据(压接过程中的径向力)进行部分比较,并显示令人满意的柔度。作者认为,与以前使用显式整合方案所做的努力相比,提出的方法可以显着改善获得的结果,并可能扩大研究范围。而且,所提出的方法被认为适合于灵敏度和优化研究。

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