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通过电泳沉积工艺获得的含TiN颗粒层对Ti-Al-V合金的改性:表面和结构性能

Modification of Ti-Al-V Alloys with Layers Containing TiN Particles Obtained via the Electrophoretic Deposition Process: Surface and Structural Properties.

作者信息

Biegun-Żurowska Maria, Berezicka Anna, Gajek Marcin, Goryczka Tomasz, Ziąbka Magdalena

机构信息

Department of Ceramics and Refractories, Faculty of Materials Science and Ceramics, AGH University of Krakow, 30-059 Krakow, Poland.

Institute of Materials Science, University of Silesia in Katowice, 75 Pułku Piechoty 1A, 41-500 Chorzow, Poland.

出版信息

Materials (Basel). 2024 Nov 22;17(23):5710. doi: 10.3390/ma17235710.

Abstract

The aim of this work was to obtain homogenous coatings containing chitosan with different concentrations of titanium nitride particles (TiN). The coatings were deposited via an electrophoretic process on an etched medically pure Ti-6Al-4V alloy. As part of the study, the zeta potential of the suspensions used for EPD coating deposition was measured, allowing for the optimization of process parameters and the assessment of suspension stability. Subsequently, the research focused on evaluating the microstructure (SEM + EDS), structure (XRD), and surface characteristics (roughness, contact angle, surface energy, microhardness, coating adhesion) of the deposited layers. SEM microscopy confirmed the effective deposition of titanium nitride particles onto the titanium alloy surface. XRD analysis proved the assumed phase composition of the coating. The increase in TiN phase content in the individual layers was confirmed. The chitosan/TiN layer's introduction altered the alloy surface, increasing its roughness and static water contact angle. The highest roughness and hydrophobic properties were observed in the coating with a 2 wt.% concentration of titanium nitride particles. Additionally, the coating containing the highest concentration of ceramic particles (2 wt.%) exhibited the highest hardness (197 HV) among all the tested layers. However, the TiN particles incorporation in the layer decreased the adhesion strength, from 2.36 MPa (0.5 wt.% TiN) to 1.04 MPa (2 wt.% TiN). The coatings surface and structural properties demonstrate potential as protective layers for implants and are suitable for further biological studies to assess their applicability in medical and veterinary fields.

摘要

这项工作的目的是获得含有不同浓度氮化钛颗粒(TiN)的壳聚糖均匀涂层。通过电泳工艺将涂层沉积在经过蚀刻的医用纯Ti-6Al-4V合金上。作为研究的一部分,测量了用于电泳沉积涂层的悬浮液的zeta电位,从而优化工艺参数并评估悬浮液的稳定性。随后,研究重点评估了沉积层的微观结构(SEM + EDS)、结构(XRD)和表面特性(粗糙度、接触角、表面能、显微硬度、涂层附着力)。SEM显微镜证实了氮化钛颗粒有效沉积在钛合金表面。XRD分析证明了涂层的假定相组成。确认了各层中TiN相含量的增加。壳聚糖/TiN层的引入改变了合金表面,增加了其粗糙度和静态水接触角。在氮化钛颗粒浓度为2 wt.%的涂层中观察到最高的粗糙度和疏水性能。此外,在所有测试层中,含有最高浓度陶瓷颗粒(2 wt.%)的涂层表现出最高硬度(197 HV)。然而,TiN颗粒掺入层中降低了附着力强度,从2.36 MPa(0.5 wt.% TiN)降至1.04 MPa(2 wt.% TiN)。涂层的表面和结构性能显示出作为植入物保护层的潜力,适用于进一步的生物学研究,以评估其在医学和兽医学领域的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f98b/11642151/79236a886de2/materials-17-05710-g016.jpg

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