Obtaining functional-gradient Ti-HA coatings by detonation spraying

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
Zhuldyz Sagdoldina, D. Baizhan, Y. Kambarov, K. Torebek
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引用次数: 0

Abstract

Functional-gradient titanium/hydroxyapatite (TiHA) coatings were obtained using detonation spraying technology to improve the structure and mechanical properties. To obtain functional-gradient coatings, pulsed energy sources are best suited, namely, detonation spraying, in which the energy of the explosion of gas mixtures is used as a source of pulsed action. By controlling the modes of detonation spraying, it is possible to vary the temperature and rate of coating deposition; accordingly, it is possible to obtain a certain structuralphase structure of the coatings. The structural-phase state and tribological properties of TiHA detonation coatings were investigated by modern materials science methods: X-ray phase analysis (XRD), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDX-mapping), profilometry and ball-disk wear-resistance test. The results showed that the coatings had a continuously gradient elemental composition across the cross-section of the coatings with no boundary between the elemental layers of the coatings. The amount of Ti gradually decreased and the amount of hydroxyapatite gradually increased in the direction from the substrate to the surface of the coatings, which allows to expand the possibilities of using TiHA-coatings for bone implants. Since the surface layer is composed of HA, the resulting functional-gradient coating demonstrates excellent biocompatibility and the ability to create new bone tissue. The excellent mechanical strength of the functionally graded coatings is ensured by the Ti phase.
爆轰喷涂法制备功能梯度Ti-HA涂层
采用爆轰喷涂技术制备了功能梯度钛/羟基磷灰石(TiHA)涂层,改善了涂层的结构和力学性能。为了获得功能梯度涂层,脉冲能量源是最合适的,即爆轰喷涂,其中气体混合物爆炸的能量被用作脉冲作用的来源。通过控制爆轰喷涂的方式,可以改变涂层的沉积温度和速率;因此,有可能获得涂层的某种结构相结构。采用现代材料科学方法:x射线物相分析(XRD)、扫描电镜(SEM)、能谱分析(EDX-mapping)、轮廓测量法和球盘耐磨试验,研究了TiHA爆轰涂层的结构-相态和摩擦学性能。结果表明:涂层的元素组成沿涂层截面呈连续梯度分布,各元素层之间无边界;从基体到涂层表面的方向上,Ti的含量逐渐减少,羟基磷灰石的含量逐渐增加,这扩大了tiha涂层用于骨植入物的可能性。由于表层由透明质酸组成,因此所得到的功能梯度涂层具有良好的生物相容性和生成新骨组织的能力。Ti相保证了功能梯度涂层优异的机械强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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50.00%
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32
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