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Wettability Modification for Biosurface of Titanium Alloy by Means of Sequential Carburization

机译:顺序渗碳法改性钛合金生物表面的润湿性

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Microporous titanium carbide coating was successfully synthesized on medical grade titanium alloy by using sequential carburization. Changes in the surface morphology of titanium alloy occasioned by sequential carburization were characterized and the wettability characteristics were quantified. Furthermore, the dispersion forces were calculated and discussed. The results indicate that sequential carburization is an effective way to modify the wettability of titanium alloy. After the carburization the surface dispersion force of titanium alloy increased from 76.5 × 10-3 J·m-2 to 105.5 × 10-3 J·m-2, with an enhancement of 37.9 %. Meanwhile the contact angle of titanium alloy decreased from 83° to 71.5°, indicating a significant improvement of wettability, which is much closer to the optimal water contact angle for cell adhesion of 70°.
机译:通过顺序渗碳成功地在医用级钛合金上合成了微孔碳化钛涂层。表征了连续渗碳引起的钛合金表面形貌的变化,并量化了润湿性。此外,计算并讨论了分散力。结果表明,顺序渗碳是改变钛合金润湿性的有效方法。渗碳后,钛合金的表面分散力从76.5×10-3 J·m-2增加到105.5×10-3 J·m-2,提高了37.9%。同时,钛合金的接触角从83°降低到71.5°,表明润湿性有了显着改善,这更接近于70°的细胞粘附最佳水接触角。

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