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Biomimetic Deposition of Apatite on Zr-1Nb and Ti-6Al-4V

机译:磷灰石对ZR-1NB和Ti-6Al-4V的磷灰石沉积

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Biomimetic apatite deposition behaviors on Zr-1Nb and Ti-6Al-4V plate with various surface conditions were examined. Both alloys were polished with abrasive papers to have different roughness and some of them were treated in NaOH before deposition of apatites in the simulated body fluid. After, 10 days immersion in a SBF, NaOH treated Zr-1Nb and Ti-6Al-4V were completely coated with apatite. The deposition rate of apatite was higher on NaOH-treated Ti-6Al-4V than on NaOH-treated Zr-1Nb initially, but the deposition rate on Zr-1Nb accelerated after 2 days and the total weight gain due to the deposition on Zr-1Nb approached to that of Ti-6Al-4V. NaOH treatment was found to enhance the deposition rate of apatite on Ti-6Al-4V significantly. On the other hand, the deposition rate of Zr-1Nb was not influenced by NaOH treatment. Without NaOH treatment, the polished Zr-1Nb with abrasive paper was found to induce more apatite nucleation than the polished Zr-6Al-4V. The presence of apatite was confirmed by XRD analysis. SEM observation revealed a conglomerated granular structure with elongate plates.
机译:研究了ZR-1NB和Ti-6Al-4V板上的仿真磷灰石沉积行为,具有各种表面条件。在磨料纸上抛光两种合金以​​具有不同的粗糙度,并且在模拟体液中的磷灰石沉积之前,其中一些在NaOH中处理。之后,将10天浸入SBF中,NaOH处理的Zr-1Nb和Ti-6Al-4V完全涂有磷灰石。磷灰石的沉积速率在NaOH处理的Ti-6Al-4V上比在NaoH处理的Zr-1Nb上最初较高,但在2天后加速Zr-1NB的沉积速率,并且由于Zr的沉积而加速了总重量的增益1NB接近TI-6AL-4V的。发现NaOH处理可显着提高Ti-6Al-4V的磷灰石沉积速率。另一方面,ZR-1NB的沉积速率不受NaOH处理的影响。没有NaOH处理,发现抛光Zr-1NB与磨料纸诱导比抛光的Zr-6Al-4V更为磷灰石成核。通过XRD分析证实了磷灰石的存在。 SEM观察揭示了具有细长板的颗粒颗粒结构。

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