Department of Dental Materials and Research Center of Nano-Interface Activation for Biomaterials, College of Dentistry, Chosun University, 61452, Korea.
J Nanosci Nanotechnol. 2019 Feb 1;19(2):1114-1117. doi: 10.1166/jnn.2019.15903.
In this study, functional elements coatings on Ti-6Al-4V alloy by plasma electrolytic oxidation for biomaterials were studied using various experimental techniques. For this study, Ti-6Al-4V ELI disk (grade 5, Timet Co. Ltd., Japan diameter; 10 mm) were used as the substrate for PEO treatment in the electrolyte containing Ca, P, Si, Zn, and Mn ions. The PEO treatment was performed using a pulsed DC power supply at 280 V for 3 min. The PEO-treated surface was observed with field-emission scanning electron microscope (FE-SEM), and energy dispersive X-ray spectrometry (EDS; Oxford ISIS 310, England), Image Analyzer software, and X-ray diffractometer (TF-XRD, X'pert Philips, Netherlands). The number of pores increases, as the Zn ion content increases. And the number of pores decrease, as the Mn ion content increases. The addition of Zn and Mn ions affects the number and size of pores and the area occupied by the pores. Mn and Zn are distributed around pores and in the pores. Anatase and rutile peaks appear and the HA peak shifted to the left in the case of Mn and Zn ion additions.
本研究采用多种实验技术,研究了用于生物材料的 Ti-6Al-4V 合金等离子体电解氧化功能元素涂层。为此研究,以 Ti-6Al-4V ELI 盘(等级 5,Timet Co. Ltd.,日本直径;10 毫米)为基材,在含有 Ca、P、Si、Zn 和 Mn 离子的电解液中进行 PEO 处理。PEO 处理在 280 V 的脉冲直流电源下进行 3 分钟。用场发射扫描电子显微镜(FE-SEM)、能谱仪(EDS;Oxford ISIS 310,英国)、图像分析仪软件和 X 射线衍射仪(TF-XRD,X'pert Philips,荷兰)观察 PEO 处理后的表面。随着 Zn 离子含量的增加,孔隙数量增加。随着 Mn 离子含量的增加,孔隙数量减少。Zn 和 Mn 离子的添加影响孔隙的数量和大小以及孔隙的面积。Mn 和 Zn 分布在孔隙周围和孔隙内。添加 Mn 和 Zn 离子后,出现锐钛矿和金红石峰,HA 峰向左移动。