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Microstructure, mechanical properties, and blood compatibility of zirconium nitride deposited on nickel-titanium shape memory alloy

机译:镍钛形状记忆合金上沉积的氮化锆的微观结构,力学性能和血液相容性

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摘要

ZrN is deposited on electropolished NiTi shape memory alloy to enhance the surface properties. The microstructure, mechanical properties, and blood compatibility are evaluated by scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), nanoindentation, hemolysis analysis, and blood platelet adhesion test. The ZrN film has a fine fibrous structure composed of the desirable stable ZrN phase together with a small amount of a second ZrO2 phase. The hardness and modulus values increase initially with larger nanoindentation depths and after reaching maximum values, gradually decrease finally attaining stable values of about 3.4 GPa and 68 GPa, respectively which reflect the composite hardness and modulus values of the system. Our study reveals that the ZrN film may degrade the surface wettability, but the hemolysis resistance and thromboresistance can be improved thereby making the surface treated materials more suitable in biomedical implants.
机译:ZrN沉积在电抛光的NiTi形状记忆合金上以增强表面性能。显微结构,机械性能和血液相容性通过扫描电子显微镜(SEM),X射线光电子能谱(XPS),X射线衍射(XRD),纳米压痕,溶血分析和血小板粘附试验进行评估。 ZrN膜具有由所需的稳定的ZrN相和少量的第二ZrO 2相组成的细纤维结构。硬度和模量值最初随着较大的纳米压痕深度而增加,并在达到最大值后逐渐降低,最终分别达到约3.4 GPa和68 GPa的稳定值,这分别反映了系统的复合硬度和模量值。我们的研究表明,ZrN膜可能会降低表面的可湿性,但是可以改善抗溶血性和抗血栓形成性,从而使表面处理过的材料更适合生物医学植入物。

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