Alansari A, Sun Y
School of Engineering and Sustainable Development, Faculty of Technology, De Montfort University, Leicester LE1 9BH, UK.
School of Engineering and Sustainable Development, Faculty of Technology, De Montfort University, Leicester LE1 9BH, UK.
J Mech Behav Biomed Mater. 2017 Oct;74:221-231. doi: 10.1016/j.jmbbm.2017.06.011. Epub 2017 Jun 10.
The objective of this study is to compare the mechanical behaviour of thermally oxidised commercially pure titanium (CP-Ti) and commercially pure zirconium (CP-Zr). For this purpose, these two bio-metals were thermally oxidised under the same condition (650°C for 6h) and the oxidised specimens were characterised using various analytical and experimental techniques, including oxygen uptake analysis, layer thickness and hardness measurements, scratch tests, dry sliding friction and wear tests and tribocorrosion tests in Ringer's solution. The results show that under the present thermal oxidation condition, 4 times more oxygen is introduced into CP-Zr than into CP-Ti and the oxide layer produced on CP-Zr is nearly 6 times thicker than that on CP-Ti. Thermally oxidised CP-Zr possesses a higher hardness, a deeper hardening depth and better scratch resistance than thermally oxidised CP-Ti. Under dry sliding and tribocorrosion conditions, thermally oxidised CP-Zr also possesses much better resistance to material removal and a higher load bearing capacity than thermally oxidised CP-Ti. Thus, thermally oxidised Zr possesses much better mechanical behaviour than thermally oxidised Ti.
本研究的目的是比较热氧化商业纯钛(CP-Ti)和商业纯锆(CP-Zr)的力学行为。为此,将这两种生物金属在相同条件下(650°C,6小时)进行热氧化,并使用各种分析和实验技术对氧化后的试样进行表征,包括吸氧分析、层厚和硬度测量、划痕试验、干滑动摩擦与磨损试验以及在林格氏溶液中的摩擦腐蚀试验。结果表明,在当前的热氧化条件下,CP-Zr中引入的氧量是CP-Ti中的4倍,且CP-Zr上生成的氧化层厚度几乎是CP-Ti上的6倍。热氧化后的CP-Zr比热氧化后的CP-Ti具有更高的硬度、更深的硬化深度和更好的抗划痕性。在干滑动和摩擦腐蚀条件下,热氧化后的CP-Zr比热氧化后的CP-Ti也具有更好的抗材料去除能力和更高的承载能力。因此,热氧化锆比热氧化钛具有更好的力学行为。