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用于医学应用的新型Zr-Ti-Nb合金:开发、化学和机械性能以及生物相容性

New Zr-Ti-Nb Alloy for Medical Application: Development, Chemical and Mechanical Properties, and Biocompatibility.

作者信息

Mishchenko Oleg, Ovchynnykov Oleksandr, Kapustian Oleksii, Pogorielov Maksym

机构信息

NanoPrime, 25 Metalowcow Str., Dedice 39-200, Poland.

Department of Surgical and Propaedeutic Dentistry, Zaporizhzhia State Medical University, 26, Prosp.Mayakovskogo, Zaporizhzhia 69035, Ukraine.

出版信息

Materials (Basel). 2020 Mar 13;13(6):1306. doi: 10.3390/ma13061306.

Abstract

The concept of mechanical biocompatibilities is considered an important factor for orthopedics and dental implants. The high Young modulus of traditional Ti-based alloys can lead to stress-shielding syndrome and late postoperative complications. The development of new Al- and V-free Ti alloys with a low elastic modulus is a critical task for implantology. Despite the relatively low Young modulus and appropriate biological response of metastable beta-Ti alloys, their production requires complex metallurgical solutions and a high final cost that limit commercial application. The current research aimed to develop a Zr-Ti-Nb system with a low Young modulus suitable for biomedical application, including orthopedics and dental implantology. Two different charges were used for new alloy production with melting in a vacuum-arc furnace VDP-1 under atmospheric control (argon + helium) with a non-consumable tungsten electrode and a water-cooled copper crystallizer. Post-treatment included a forging-rolling process to produce a bar suitable for implant production. SEM with EDX and the mechanical parameters of the new alloy were evaluated, and a cell culture experiment provided a biocompatibility assessment. The chemical composition of the new alloy can be represented as 59.57-19.02-21.41 mass% of Zr-Ti-Nb. The mechanical properties are characterized by an extremely low Young modulus-27,27 GPa for the alloy and 34.85 GPa for the bar. The different master alloys used for Zr-Ti-Nb production did not affect the chemical compound and mechanical parameters so it was possible to use affordable raw materials to decrease the final price of the new product. The cell culture experiment demonstrated a full biocompatibility, indicating that this new alloy can be used for dental and orthopedics implant production.

摘要

机械生物相容性的概念被认为是骨科和牙科植入物的一个重要因素。传统钛基合金的高杨氏模量会导致应力屏蔽综合征和术后晚期并发症。开发具有低弹性模量的新型无铝和无钒钛合金是植入学的一项关键任务。尽管亚稳β钛合金的杨氏模量相对较低且具有适当的生物反应,但其生产需要复杂的冶金解决方案且最终成本高昂,这限制了其商业应用。当前的研究旨在开发一种适用于生物医学应用(包括骨科和牙科植入学)的具有低杨氏模量的Zr-Ti-Nb系统。使用两种不同的炉料在大气控制(氩气+氦气)下的真空电弧炉VDP-1中,采用非消耗性钨电极和水冷铜结晶器进行新合金的熔炼。后处理包括锻造-轧制工艺,以生产适合植入物生产的棒材。对新合金进行了带有能谱仪的扫描电子显微镜分析和力学参数评估,并通过细胞培养实验进行了生物相容性评估。新合金的化学成分可表示为Zr-Ti-Nb的质量分数分别为59.57-19.02-21.41%。其力学性能的特点是合金的杨氏模量极低,为27.27 GPa,棒材的杨氏模量为34.85 GPa。用于Zr-Ti-Nb生产的不同中间合金不会影响化合物和力学参数,因此可以使用价格合理的原材料来降低新产品的最终价格。细胞培养实验表明该合金具有完全的生物相容性,这表明这种新合金可用于牙科和骨科植入物的生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08f8/7142640/f275511f7158/materials-13-01306-g001.jpg

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