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不含细胞毒性元素的低杨氏模量钛基多孔块状玻璃合金。

Low Young's modulus Ti-based porous bulk glassy alloy without cytotoxic elements.

作者信息

Nicoara M, Raduta A, Parthiban R, Locovei C, Eckert J, Stoica M

机构信息

Politehnica University Timisoara, P-ta Victoriei 2, 300006 Timisoara, Romania.

IFW Dresden, Institute for Complex Materials, Helmholtzstr. 20, 01069 Dresden, Germany.

出版信息

Acta Biomater. 2016 May;36:323-31. doi: 10.1016/j.actbio.2016.03.020. Epub 2016 Mar 12.

Abstract

UNLABELLED

A new a biocompatible Ti42Zr40Ta3Si15 (atomic %) porous bulk glassy alloy was produced by combination of rapid solidification and powder metallurgy techniques. Amorphous alloy ribbons were fabricated by melt spinning, i.e. extremely fast quenching the molten alloy with 10(6)K/s from T=1973K down to room temperature. The ribbons were then cryo-milled at liquid nitrogen temperature in order to produce powder, which was subsequently hot pressed. The resulting thick pellets have a porosity of about 14vol%, a high compression strength of 337MPa and a Young's modulus of about E=52GPa, values very close to those characteristic of cortical bone. Moreover, the morphology of the samples is very similar to that of cortical bone. The biocompatibility, which is due to the absence of any toxic element in the chemical composition, together with the suitable mechanical behavior, make these samples promising for orthopedic and dentistry applications.

STATEMENT OF SIGNIFICANCE

Ti-based alloys are nowadays the standard solution for biomedical implants. However, both the conventional crystalline and amorphous alloys have higher rigidity as the human bone, leading to the damage of the bone at the interface, and contains harmful elements like vanadium, aluminum, nickel or beryllium. The hierarchical porous structures based on glassy alloys with biocompatible elements is a much better alternative. This work presents for the first time the manufacturing of such porous bodies starting from Ti-based amorphous alloy ribbons, which contains only non-harmful elements. The morphology and the compressive mechanical properties of these new products are analyzed in regard with those characteristic to the cortical bone.

摘要

未标注

通过快速凝固和粉末冶金技术相结合制备了一种新型生物相容性Ti42Zr40Ta3Si15(原子百分比)多孔块状玻璃合金。非晶合金薄带通过熔体纺丝制备,即将熔融合金从T = 1973K以10(6)K/s的速度极快地淬火至室温。然后将薄带在液氮温度下进行低温研磨以制备粉末,随后进行热压。所得的厚片材具有约14体积%的孔隙率、337MPa的高抗压强度和约E = 52GPa的杨氏模量,这些值与皮质骨的特征值非常接近。此外,样品的形态与皮质骨非常相似。由于化学成分中不存在任何有毒元素,再加上合适的力学性能,这些样品在骨科和牙科应用方面很有前景。

重要性声明

钛基合金如今是生物医学植入物的标准解决方案。然而,传统的晶态和非晶合金都比人体骨骼具有更高的刚性,导致界面处的骨骼受损,并且含有钒、铝、镍或铍等有害元素。基于具有生物相容性元素的玻璃合金的分级多孔结构是一种更好的选择。这项工作首次展示了从仅包含无害元素的钛基非晶合金薄带开始制造此类多孔体。针对这些新产品的形态和压缩力学性能与皮质骨的特征进行了分析。

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