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NiTi shape-memory alloy oxidized in low-temperature plasma with carbon coating: Characteristic and a potential for cardiovascular applications

机译:具有碳涂层的低温等离子体中氧化的NiTi形状记忆合金:特征和潜在的心血管应用

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Surface layers currently produced on NiTi alloys do not meet all the requirements for materials intended for use in cardiology. Plasma surface treatments of titanium and its alloys under glow discharge conditions make it possible to produce surface layers, such as TiN or TiO2, which increases corrosion resistance and biocompatibility. The production of layers on NiTi alloys with the same properties, and maintaining their shape memory and superelasticity features, requires the use of low-temperature processes. At the same time, since it is known that the carbon-based layers could prevent excessive adhesion and aggregation of platelets, we examined the composite a-CNH + TiO2 type surface layer produced by means of a hybrid method combining oxidation in low-temperature plasma and Radio Frequency Chemical Vapor Deposition (RFCVD) processes. Investigations have shown that this composite layer increases the corrosion resistance of the material, and both the low degree of roughness and the chemical composition of the surface produced lead to decreased platelet adhesion and aggregation and proper endothelialization, which could extend the range of applications of NiTi shape memory alloys. (C) 2017 Elsevier B.V. All rights reserved.
机译:目前在NiTi合金上生产的表面层不能满足用于心脏病学的材料的所有要求。在辉光放电条件下对钛及其合金进行等离子表面处理,可以生产出诸如TiN或TiO2之类的表面层,从而提高了耐腐蚀性和生物相容性。在具有相同性能的NiTi合金上生产层并保持其形状记忆和超弹性特征,需要使用低温工艺。同时,由于已知碳基层可以防止血小板的过度粘附和聚集,因此我们研究了通过在低温等离子体中结合氧化的混合方法制备的复合α-CNH+ TiO2型表面层和射频化学气相沉积(RFCVD)工艺。研究表明,该复合层提高了材料的耐腐蚀性,低粗糙度和所产生表面的化学组成均导致血小板粘附和聚集减少以及适当的内皮化,从而可以扩展NiTi的应用范围形状记忆合金。 (C)2017 Elsevier B.V.保留所有权利。

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