Institute of Materials Science, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
Research center for structural Materials, National Institute for Materials Science, Tsukuba, Japan.
J Biomater Appl. 2021 Sep;36(3):428-440. doi: 10.1177/08853282211012525. Epub 2021 May 23.
Hydroxyapatite (HAp) and octacalcium phosphate (OCP) layers were formed on Mg- 4mass% Y- 3mass% rare earth (WE43) alloy by a chemical solution deposition method at various pH values of pH 5.5, 6.2, 7.5, and 8.6. Adhesion strength of HAp and OCP layers was evaluated before and after immersing in a medium for 14 days by a pull-off test. The corrosion resistance of these coatings was measured by polarization tests performed in a simulated body fluid (SBF). XRD analysis demonstrated that HAp coating layers were formed at pH 7.5 and 8.6, while OCP coating layers were formed at pH 5.5 and 6.2. Adhesion test results showed that the as-coated pH7.5-HAp layer had the highest adhesion strength of 8.6 MPa, which was attributed to the very dense structure of the coating layer. The as-coated pH8.6-HAp layer showed the adhesion strength of 6.5 MPa. The adhesion strength of the as-coated pH5.5- and pH6.2-OCP layers was 3.9 and 7.1 MPa, respectively, that was governed by the thick and fragile property of the layers. After immersing in the medium for 14 days, the adhesion strength of pH7.5- and pH8.6-specimens decreased to 5.8 and 5.6 MPa, respectively. The pitting corrosion and formation of Mg(OH) under the HAp layers were responsible for the decrease of adhesion strength. The polarization tests in SBF at 37 °C showed that the corrosion current density decreased with the HAp and OCP coatings, indicating the improvement of the corrosion resistance of WE43 alloy. The HAp coatings improved the corrosion resistance more efficiently than the OCP coatings.
通过化学溶液沉积法在各种 pH 值(pH 5.5、6.2、7.5 和 8.6)下在 Mg-4mass%Y-3mass%稀土(WE43)合金上形成了羟基磷灰石(HAp)和八钙磷酸盐(OCP)层。通过拉脱试验评估了在 14 天浸入介质前后 HAp 和 OCP 层的附着力。通过在模拟体液(SBF)中进行的极化试验测量了这些涂层的耐腐蚀性。XRD 分析表明,在 pH 7.5 和 8.6 下形成了 HAp 涂层,而在 pH 5.5 和 6.2 下形成了 OCP 涂层。附着力测试结果表明,原始 pH7.5-HAp 层具有最高的附着力 8.6 MPa,这归因于涂层的非常致密的结构。原始 pH8.6-HAp 层显示出 6.5 MPa 的附着力。原始 pH5.5-和 pH6.2-OCP 层的附着力分别为 3.9 和 7.1 MPa,这是由层的厚而脆弱的性质决定的。在浸入介质 14 天后,pH7.5 和 pH8.6 样品的附着力分别降低至 5.8 和 5.6 MPa。HAp 层下的点蚀和 Mg(OH)的形成是附着力降低的原因。在 37°C 的 SBF 中的极化测试表明,随着 HAp 和 OCP 涂层的存在,腐蚀电流密度降低,表明 WE43 合金的耐腐蚀性得到提高。HAp 涂层比 OCP 涂层更有效地提高了耐腐蚀性。