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A Combined Scientometric and Critical Approach in Reviewing TiZr Implant Alloys and Coating Performances

机译:一种综合的科学研究和批判性方法,综合思考Tizr植入合金和涂层性能

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摘要

This review article was developed based on the scientometric analysis of the evaluated studies conducted on titanium?zirconium (TixZr) alloys from 2000 to the present. The scientometric data obtained helped us to identify the most researched topics and these topics were further analyzed and discussed. An increasing number of researchers are considering TixZr alloys as opposed to the traditional ones because these alloys present improved mechanical properties and in some cases improved corrosion resistance and biocompatibility. Due to the natural layer of oxides formed on these alloys, multiple surface modification methods can be applied to solve some of the challenges faced in the field of implantable materials. A significant number of studies are now focusing on surface modifications at the nanometer scale or various coatings for improved corrosion resistance and biological interactions. Although not yet commercially available, a TiZr alloy with a nanostructured surface and embedded biologically active substances, such as antibiotics or coated with hydroxyapatite, may become a future option.
机译:本综述文章是基于对2000年钛(TIXZR)合金对目前对钛(TIXZR)合金进行的评估研究的影响。获得的科学计数有助于我们识别最多研究的主题,并进一步分析和讨论这些主题。越来越多的研究人员正在考虑Tixzr合金而不是传统的合金,因为这些合金呈现出改善的机械性能,并且在某些情况下提高了耐腐蚀性和生物相容性。由于这些合金上形成的氧化物的天然层,可以应用多种表面改性方法来解决植入材料领域所面临的一些挑战。现在,大量研究现在集中在纳米级或各种涂层处的表面改性,以改善耐腐蚀性和生物相互作用。尽管尚未商业上可用的是,具有纳米结构表面和嵌入的生物活性物质的TizR合金,例如抗生素或用羟基磷灰石涂覆,可能成为未来的选择。

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