首页> 外文期刊>Journal of materials science >Sol-gel based calcium phosphates coatings deposited on binary Ti-Mo alloys modified by laser beam irradiation for biomaterial/ clinical applications
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Sol-gel based calcium phosphates coatings deposited on binary Ti-Mo alloys modified by laser beam irradiation for biomaterial/ clinical applications

机译:激光凝胶辐照改性的二元Ti-Mo合金上沉积的溶胶-凝胶基磷酸钙涂层,用于生物材料/临床应用

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摘要

Ti-15Mo alloy samples were irradiated by pulsed Yb: YAG laser beam under air and atmospheric pressure. Calcium phosphate coatings were deposited on the irradiated surfaces by the sol-gel method. The sol was prepared from the precursors Ca (NO3)(2).4H(2) O and H-3 PO4. The modified surfaces were submitted to heat treatment conditions at 350 and 600 A degrees C. The results showed that the two conditions established have a sufficient energy to promote ablation on the laser beam irradiated surfaces. Likewise, it has been demonstrated the processes of fusion and fast solidification from the laser beam irradiation, under ambient atmosphere, inducing the formation of stoichiometric TiO2 and non-stoichiometric titanium oxides, including Ti3O5, TiO, Ti3O and Ti6O with different oxide percentages depending on the fluency used. Besides that, laser modification has allowed a clean and reproducible process, providing no traces of contamination, an important feature for clinical applications. The physico-chemical and morphological properties indicated the formation of a mixture of phases: calcium pyrophosphate, hydroxyapatite and beta-TCP for the procedure (PA: calcination temperature), whereas HA (hydroxyapatite) and beta-TCP (tricalcium phosphate) were obtained by the procedure (PB: calcination temperature). Therefore, it was possible to obtain a Ti-15Mo alloy surface consisted on calcium phosphate ceramics of biological interest using the procedure (PB). Thus, the laser beam irradiation associated to bioactive coatings of calcium phosphates of biological interest have shown to be promising and economically feasible for use in dental and orthopedic implants.
机译:在空气和大气压下,用脉冲Yb​​:YAG激光束照射Ti-15Mo合金样品。通过溶胶-凝胶法将磷酸钙涂层沉积在被辐照的表面上。该溶胶是由前体Ca(NO3)(2).4H(2)O和H-3 PO4制备的。将改性的表面置于350和600 A的温度下进行热处理。结果表明,所建立的两个条件具有足够的能量来促进激光束照射表面的烧蚀。同样,已经证明了在环境气氛下激光束照射引起的熔融和快速凝固过程,诱导了化学计量的TiO2和非化学计量的氧化钛的形成,包括不同氧化物百分比的Ti3O5,TiO,Ti3O和Ti6O,具体取决于使用的流利度。除此之外,激光修改还允许一个干净且可重复的过程,没有污染的痕迹,这是临床应用的重要特征。理化性质和形态学性质表明形成了以下相的混合物:焦磷酸钙,羟基磷灰石和β-TCP用于该过程(PA:煅烧温度),而HA(羟基磷灰石)和β-TCP(磷酸三钙)通过程序(PB:煅烧温度)。因此,可以使用步骤(PB)获得由生物学关注的磷酸钙陶瓷组成的Ti-15Mo合金表面。因此,与生物学上感兴趣的磷酸钙的生物活性涂层相关的激光束辐照已被证明在牙科和整形外科植入物中使用是有希望且经济可行的。

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