首页> 外文期刊>Archives of Metallurgy and Materials >NUMERICAL AND EXPERIMENTAL ANALYSIS OF FRACTURE OF ATHROMBOGENIC COATINGS DEPOSITED ON VENTRICULAR ASSIST DEVICE IN MICRO-SHEAR TEST
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NUMERICAL AND EXPERIMENTAL ANALYSIS OF FRACTURE OF ATHROMBOGENIC COATINGS DEPOSITED ON VENTRICULAR ASSIST DEVICE IN MICRO-SHEAR TEST

机译:微剪切试验中沉积在心室辅助装置上的生源性涂层断裂的数值和实验分析

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摘要

The Polish left ventricular assist device (LVAD - RELIGA_EXT) will be made of thermoplastic polycarbonate-urethane (Bionate II) with deposited athrombogenic nano-coatings: gold (Au) and titanium nitride (TiN). Referring to the physical model, the two-scale model of LVAD developed in the previous works in the authors' finite element code is composed of a macro-model of blood chamber and a micro-model of wall: TiN, Au and Bionate II. The numerical analysis of stress and strain states confirmed the possibility of fracture based on localization of zones of the biggest values of triaxiality factor. The introduction of Au interlayer between TiN and polymer improved the toughness of the connection, and increased the compressive residual stress in the coating what resulted in reduction of stress and strain close to the boundary between substrate and coating.
机译:波兰左心室辅助装置(LVAD-RELIGA_EXT)将由热塑性聚碳酸酯-氨基甲酸酯(Bionate II)制成,并沉积有形成血栓的纳米涂层:金(Au)和氮化钛(TiN)。关于物理模型,作者先前在有限元代码中开发的两级LVAD模型由血室的宏观模型和壁的微观模型(TiN,Au和Bionate II)组成。应力和应变状态的数值分析证实了基于三轴性因子最大值的区域的局部化的可能性。在TiN和聚合物之间引入Au中间层提高了连接的韧性,并增加了涂层中的压缩残余应力,这导致了应力和应变的降低,接近于基底和涂层之间的边界。

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