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首页> 外文期刊>Journal of Materials Engineering and Performance >Heat-Treated TiO2 Plasma Spray Deposition for Bioactivity Improvement in Ti-6Al-4V Alloy
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Heat-Treated TiO2 Plasma Spray Deposition for Bioactivity Improvement in Ti-6Al-4V Alloy

机译:Ti-6Al-4V合金中生物活性改善热处理的TiO2等离子体喷雾沉积

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In the present study, titanium di-oxide (TiO2) coating has been developed on Ti-6Al-4V substrate by plasma spray deposition. Followed by plasma spraying, heat treatment of the sprayed sample has been carried out by isothermally holding it at 823 K (550 A degrees C) for 2 h. Microstructural analysis shows the presence of porosity and unmelted particles on the as-sprayed surface, the area fraction of which reduces after heat treatment. X-ray diffraction analysis shows the phase transformation from anatase (in precursor powder) to rutile (in as-sprayed coating and the same after heat treatment). There is an improvement in nano-hardness, "Young's modulus" and wear resistance in plasma-sprayed TiO2 coating (as-sprayed as well as post-heat-treated condition) as compared to as-received Ti-6Al-4V, though post-heat treatment offers a superior hardness, "young's modulus" and wear resistance as compared to as-sprayed coating. The corrosion behavior in "hank's solution" shows decrease in corrosion resistance after plasma spraying and post-heat treatment as compared to as-received substrate. A significant decrease in contact angle and improvement in bioactivity (in terms of apatite deposition) were observed in TiO2-coated surface as compared to as-received Ti-6Al-4V.
机译:在本研究中,通过等离子体喷射沉积在Ti-6Al-4V基板上开发了钛偶氮(TiO2)涂层。然后通过等离子体喷涂,通过在823k(550℃)下2小时,通过向823k(550℃)等温将其进行喷涂样品的热处理。微观结构分析显示在热处理后减少的孔隙率和未熔化颗粒的存在,其面积减少。 X射线衍射分析显示从锐钛矿(前体粉末)到金红石的相变(在热处理后喷涂涂层和相同)。与接收的Ti-6al-4V相比,纳米硬度,“杨氏模量”和耐血液喷涂的TiO2涂层(如喷洒和后热处理的病症)的耐磨性有所改善。 - 与喷涂的涂层相比,热处理提供优异的硬度,“杨氏模量”和耐磨性。与接收的基材相比,“Hank溶液”中的腐蚀行为显示出等离子体喷涂和后热处理后的耐腐蚀性降低。与接收的Ti-6Al-4V相比,在TiO 2涂覆的表面中观察到在TiO 2涂覆的表面中观察到的接触角和生物活性的改善(在磷灰石沉积方面)的显着降低。

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