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Finite element analyses for optimization design of biodegradable magnesium alloy stent

机译:可生物降解镁合金支架优化设计的有限元分析

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Stents made of biodegradable magnesium alloys are expected to provide a temporary opening into a narrowed arterial vessel until it remodels and will progressively disappear thereafter. Inferior mechanical properties and fast corrosion of the magnesium alloys are the two crucial factors that impede the clinical application of the magnesium alloy stents (MAS). In the present study, gradual strut width, addition of the peak-to-valley unit and introduction of the annealing technology were designed and investigated by finite element analysis in order to improve the performance of the MAS. Two experiments were carried out for a preliminary validation of the simulation.
机译:由可生物降解的镁合金制成的支架有望在狭窄的动脉血管中提供一个临时开口,直到其重塑并在此后逐渐消失。镁合金的机械性能差和快速腐蚀是阻碍镁合金支架(MAS)临床应用的两个关键因素。在本研究中,通过有限元分析设计并研究了渐进的支撑杆宽度,峰谷单元的增加以及退火技术的引入,以提高MAS的性能。为了进行模拟的初步验证,进行了两个实验。

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