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Sinter-coating method for the production of TiN-coated titanium foam for biomedical implant applications

机译:用于生物医学植入物应用的生产TiN涂层的钛泡沫的烧结涂覆方法

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摘要

Titanium foams for biomedical implant applications were produced by space holder technique. Novel sinter-coating method was used for the production of TiN layer on foams in order to enhance wear and corrosion resistance. In literature, Ti compacts were sintered in vacuum or argon atmosphere and then expensive and complex coating processes were carried out on sintered specimens. In this study, the titanium foams were sintered in N_2 atmosphere at 1200°C. Biocompatible TiN layer was coated on foam surface by gas nitriding simultaneously during sintering. Sinter-coating combines sintering and TiN coating in one step by sintering the green specimens in N_2 atmosphere. This reduces cost of operation and time. In addition, alkali treatment was used to activate surface of foams for partially induce a bioactive bone-like apatite to enhance bioactivity. Alkali treatment was performed by soaking the foams in NaOH solution and then heating at 600°C. After alkali treatment, foams were immersed into simulated body fluid to induce a bone-like apatite layer on foam surface.
机译:通过空间支架技术生产了用于生物医学植入物的钛泡沫。为了提高耐磨性和耐腐蚀性,采用了新型的烧结涂层法在泡沫上制备TiN层。在文献中,Ti压块在真空或氩气气氛中烧结,然后在烧结的样品上进行昂贵且复杂的涂层工艺。在这项研究中,钛泡沫在N_2气氛中于1200°C烧结。在烧结过程中,同时通过气体氮化将生物相容性TiN层涂覆在泡沫表面。烧结涂层通过在N_2气氛中烧结生坯样品,将烧结和TiN涂层结合在一个步骤中。这减少了操作成本和时间。此外,碱处理用于活化泡沫表面,以部分诱导生物活性的骨状磷灰石以增强生物活性。通过将泡沫浸泡在NaOH溶液中,然后在600℃加热来进行碱处理。碱处理后,将泡沫浸入模拟体液中,以在泡沫表面上诱导出骨状磷灰石层。

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