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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear properties of micro arc oxidized and hydrothermally treated Ti6Al4V alloy in simulated body fluid
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Wear properties of micro arc oxidized and hydrothermally treated Ti6Al4V alloy in simulated body fluid

机译:微弧氧化和水热处理的Ti6Al4V合金在模拟体液中的磨损性能

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摘要

Hydroxyapatite (HA) has a strong ability to form a direct chemical bond with the hard tissues. It is also synthesized on Ti6Al4V alloy using micro arc oxidation (MAO) followed by hydrothermal treatment (HT). In this study, Ca and P containing titania coated surfaces were achieved from the MAO coating process which was carried out at 450 V for 5 minutes and at a frequency of 300 Hz in a calcium acetate monohydrate and β-glycerophosphate aqueous solution. The substrates coated with TiO_2 were hydrothermally treated inside a NaOH solution which had the pH value of 11.0-11.5 at 160℃, 190℃ and 220℃ for 5 h and 10 h in a pressure vessel. Microstructure and phase components of the coatings were characterized using scanning electron microscope (SEM) and X-Ray diffraction (XRD) before and after micro arc oxidation and hydrothermal treatment. Each untreated, Ca and P containing TiO_2 coated and HA coated specimens were subjected to pin on disk wear tests inside simulated body fluid (SBF) at 37℃. It was observed that after HT, rough and porous bioactive HA crystals were formed on the surface. HA/TiO_2 film layer formed with MAO plus HT improved the wear properties of Ti6Al4V. By this way, a surface which has a good wear resistance and bone bonding ability was achieved.
机译:羟基磷灰石(HA)具有与硬组织形成直接化学键的强大能力。还可以在Ti6Al4V合金上使用微弧氧化(MAO),然后进行水热处理(HT)合成。在这项研究中,从MAO涂层过程中获得了含Ca和P的二氧化钛涂层表面,该过程在450伏特的电压下以300 Hz的频率在乙酸钙一水合物和β-甘油磷酸水溶液中进行。将TiO_2涂层的基材在NaOH溶液中进行水热处理,该NaOH溶液在压力容器中于160℃,190℃和220℃下的pH值为11.0-11.5,分别保持5 h和10 h。在微弧氧化和水热处理之前和之后,使用扫描电子显微镜(SEM)和X射线衍射(XRD)表征了涂层的微观结构和相成分。每个未经处理的,含Ca和P的TiO_2涂层和HA涂层的样品均在37℃的模拟体液(SBF)中进行针盘磨损试验。观察到在HT之后,在表面上形成粗糙且多孔的生物活性HA晶体。用MAO + HT形成的HA / TiO_2薄膜层改善了Ti6Al4V的磨损性能。通过这种方式,获得了具有良好的耐磨性和骨粘结能力的表面。

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