可生物降解镁锌银金属玻璃的设计与表征

IF 4.7 1区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING
Jian WANG , Chen WANG , Wei-feng RAO , In-ho JUNG
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引用次数: 0

摘要

为了开发可生物降解植入应用的镁锌银金属玻璃(MGs),研究人员采用相图计算(CALPHAD)和实验测量相结合的方法,对镁锌银合金的玻璃形成能力(GFA)和生物相容性进行了研究。从理论上预测了两个合金系列,特别是 Mg96-xZnxAg4 和 Mg94-xZnxAg6 (x=17、20、23、26、29、32、35)的高 GFA 潜力,并通过实验测试予以证实。X 射线衍射(XRD)和差示扫描量热法(DSC)技术用于评估这些合金的结晶度、GFA 和结晶特性。结果表明,Mg73Zn23Ag4 和 Mg64Zn32Ag4 组成的 Mg96-xZnxAg4 以及 Mg66Zn28Ag6 和 Mg63Zn31Ag6 组成的 Mg94-xZnxAg6 显示出更优越的 GFA。值得注意的是,Mg96-xZnxAg4 系列的 GFA 优于 Mg94-xZnxAg6 系列。此外,Mg70Zn26Ag4、Mg74Zn20Ag6 和 Mg71Zn23Ag6 合金显示出可接受的腐蚀率、良好的细胞相容性以及对细胞增殖的积极影响。这些特性使它们适合应用于医疗领域,有可能成为可生物降解植入体的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and characterization of biodegradable Mg−Zn−Ag metallic glasses
In order to develop the Mg−Zn−Ag metallic glasses (MGs) for biodegradable implant applications, the glass formation ability (GFA) and biocompatibility of Mg−Zn−Ag alloys were investigated using a combination of the calculation of phase diagrams (CALPHAD) and experimental measurements. High GFA potentiality of two alloy series, specifically Mg96−xZnxAg4 and Mg94−xZnxAg6 (x=17, 20, 23, 26, 29, 32, 35), was predicted theoretically and then substantiated through experimental testing. X-ray diffraction (XRD) and differential scanning calorimetry (DSC) techniques were used to evaluate the crystallinity, GFA, and crystallization characteristics of these alloys. The results showed that compositions between Mg73Zn23Ag4 and Mg64Zn32Ag4 for Mg96−xZnxAg4, Mg66Zn28Ag6 and Mg63Zn31Ag6 for Mg94−xZnxAg6 displayed a superior GFA. Notably, the GFA of the Mg96−xZnxAg4 series was better than that of the Mg94−xZnxAg6 series. Furthermore, the Mg70Zn26Ag4, Mg74Zn20Ag6, and Mg71Zn23Ag6 alloys showed acceptable corrosion rates, good cytocompatibility, and positive effects on cell proliferation. These characteristics make them suitable for applications in medical settings, potentially materials as biodegradable implants.
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来源期刊
CiteScore
7.40
自引率
17.80%
发文量
8456
审稿时长
3.6 months
期刊介绍: The Transactions of Nonferrous Metals Society of China (Trans. Nonferrous Met. Soc. China), founded in 1991 and sponsored by The Nonferrous Metals Society of China, is published monthly now and mainly contains reports of original research which reflect the new progresses in the field of nonferrous metals science and technology, including mineral processing, extraction metallurgy, metallic materials and heat treatments, metal working, physical metallurgy, powder metallurgy, with the emphasis on fundamental science. It is the unique preeminent publication in English for scientists, engineers, under/post-graduates on the field of nonferrous metals industry. This journal is covered by many famous abstract/index systems and databases such as SCI Expanded, Ei Compendex Plus, INSPEC, CA, METADEX, AJ and JICST.
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