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Effect of UV irradiation on the surface Gibbs energy of Ti6Al4V and thermally oxidized Ti6Al4V

机译:紫外线对Ti6Al4V和热氧化Ti6Al4V表面吉布斯能的影响

摘要

Thermal oxidation of Ti6Al4V increases the thickness, modifies the structure, and changes the amount of alloying elements of the surface titanium dioxide layer with respect to the spontaneous passive layer of Ti6Al4V. The effects on the surface properties of Ti6Al4V and thermally oxidized Ti6Al4V after different periods of UV irradiation have been studied by measurement of water, formamide, and diiodomethane contact angles. The rate of modification of the water contact angle with the irradiation time is dependent on the surface treatment, but the water adhesion work, after an initial energetic step, follows a similar trend for both. Application of the Young equation together with the van Oss approach allowed evaluation of the surface Gibbs energy of the alloys. Similar to the water adhesion work, the surface Gibbs energy dependence on the irradiation time follows a similar trend for both samples and it is due to the change of the electron-donor parameter of the acid-base component. Also, a linear relationship common for both samples has been obtained between the cosines of the water contact angle and the formamide or diiodomethane contact angle. These facts indicate that the surface modification continuously produced by the UV irradiation is similar all along the process and similar for both samples after an energetic threshold for the thermally oxidized sample. It has been also tested that the hydrophilic-hydrophobic conversion is reversible for Ti6Al4V and Ti6Al4V thermally treated. © 2007 Elsevier Inc. All rights reserved.
机译:Ti6Al4V的热氧化相对于Ti6Al4V的自发钝化层,增加了厚度,改变了结构,并改变了表面二氧化钛层的合金元素的数量。通过测量水,甲酰胺和二碘甲烷的接触角,研究了不同紫外线照射时间后对Ti6Al4V和热氧化Ti6Al4V的表面性能的影响。水接触角随辐照时间的变化率取决于表面处理,但是在最初的能量步骤之后,水的粘附作用对于两者都遵循相似的趋势。将Young方程与van Oss方法一起应用可以评估合金的表面吉布斯能。与水粘附工作相似,两个样品的表面吉布斯能量依赖于照射时间的趋势相似,这是由于酸碱组分的电子给体参数的变化。而且,在水接触角和甲酰胺或二碘甲烷接触角的余弦之间已经获得了两个样品共有的线性关系。这些事实表明,由紫外线照射连续产生的表面改性在整个过程中都是相似的,并且在热氧化样品的高能阈值之后,两个样品都相似。还已经测试,对于热处理的Ti6Al4V和Ti6Al4V,亲水-疏水转化是可逆的。 ©2007 Elsevier Inc.保留所有权利。

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