首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Biofunctional calcium titanate coating on titanium by simple chemical treatment process using calcium-hydroxide slurry - Effects of the heating temperatures
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Biofunctional calcium titanate coating on titanium by simple chemical treatment process using calcium-hydroxide slurry - Effects of the heating temperatures

机译:通过使用氢氧化钙浆料的简单化学处理工艺在钛上的生物功能钛酸钙涂层-加热温度的影响

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The present study investigates the effect of the heating temperature on the characteristics of the surface layer in a simple treatment process using calcium-hydroxide slurry. Furthermore, biofunctions of the treated titanium surfaces, such as bioactivity in a simulated body fluid and corrosion resistance under a bio-environment, are also investigated. Our treatment process using calcium-hydroxide slurry is as follows: a titanium substrate is buried in calcium hydroxide slurry, and the slurry is then heated in air. The calcium hydroxide slurry was prepared by mixing of calcium hydroxide powder and water. When treated at heating temperature beyond 873 K, a crystallized calcium titanate coating is formed on a titanium substrate and further, the thickness increases with the increase of heating temperature. On the crystallized calcium titanate coating, calcium phosphate is precipitated in a simulated body fluid; therefore, the treated titanium surface has bioactivity. Furthermore, anodic current density of the treated surface is 10-10~3 times lower than that of the non-treated surface.
机译:本研究在使用氢氧化钙浆料的简单处理过程中研究了加热温度对表面层特性的影响。此外,还研究了处理过的钛表面的生物功能,例如在模拟体液中的生物活性和在生物环境下的耐腐蚀性。我们使用氢氧化钙浆料的处理过程如下:将钛基材埋入氢氧化钙浆料中,然后在空气中加热该浆料。通过将氢氧化钙粉末和水混合来制备氢氧化钙浆料。当在超过873K的加热温度下处理时,在钛基底上形成结晶的钛酸钙涂层,并且进一步,厚度随着加热温度的增加而增加。在结晶的钛酸钙涂层上,磷酸钙沉淀在模拟的体液中。因此,处理后的钛表面具有生物活性。此外,经处理的表面的阳极电流密度比未经处理的表面的阳极电流密度低10-10〜3倍。

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