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用于生物医学应用的等径角挤压 Ti-28Nb-35.4Zr 合金的机械、腐蚀、纳观摩擦学和生物相容性性能。

Mechanical, corrosion, nanotribological, and biocompatibility properties of equal channel angular pressed Ti-28Nb-35.4Zr alloys for biomedical applications.

机构信息

School of Engineering, RMIT University, Melbourne, Victoria 3001, Australia.

School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou 325027, China.

出版信息

Acta Biomater. 2022 Sep 1;149:387-398. doi: 10.1016/j.actbio.2022.07.005. Epub 2022 Jul 8.

Abstract

This study systematically investigated the effect of equal channel angular pressing (ECAP) on the microstructure, mechanical, corrosion, nano-tribological properties and biocompatibility of a newly developed β Ti-28Nb-35.4Zr (hereafter denoted TNZ) alloy. Results indicated that ECAP of the β TNZ alloy refined its microstructure by forming ultrafine grains without causing stress-induced phase transformation, leading to formation of a single β phase. The ECAP-processed TNZ alloy exhibited a compressive yield strength of 960 MPa, and high plastic deformation capacity without fracturing under compression loads. Potentiodynamic polarization tests revealed the higher tendency of ECAP-processed TNZ alloys to form passive oxide films on its surface, which exhibited a lower corrosion rate (0.44±0.07 µm/y) in Hanks' balanced salt solution compared to its as-cast counterpart (0.71±0.10 µm/y). Nanotribological testing also revealed higher resistance of the ECAP-processed TNZ alloy to abrasion, wear and scratching, when compared to its as-cast counterpart. Cytocompatibility and cell adhesion assessments of the ECAP-processed TNZ alloys showed a high viability (111%) of human osteoblast-like SaOS2 cells after 7 d of culturing. Moreover, the ECAP-processed TNZ alloy promoted adhesion and spreading of SaOS2 cells, which exhibited growth and proliferation on alloy surfaces. In summary, significantly enhanced mechanical, corrosion, and biological properties of ECAP-processed TNZ alloy advocate its suitability for load-bearing implant applications. STATEMENT OF SIGNIFICANCE: Equal channel angular pressing (ECAP) provides a unique combination of enhanced mechanical and functional properties of materials by optimizing their microstructures and phase transformations. This study investigated the mechanical, nano-tribological, corrosion, and biocompatibility properties of a newly developed β Ti-28Nb-35.4Zr (TNZ) alloy processed via ECAP. Our findings indicated that ECAP of the β TNZ alloy refined its microstructure by forming ultrafine grains without causing stress-induced phase transformation. Compared to its as-cast counterpart, ECAP-processed TNZ exhibited significantly enhanced compressive yield strength, plastic deformation capacity, hardness, wear, and corrosion properties. Moreover, in vitro cytocompatibility and cell adhesion studies revealed high cellular viabilities, growth and proliferation of osteoblast-like SaOS2 cells on the ECAP-processed TNZ alloy.

摘要

本研究系统地研究了等径角挤压(ECAP)对新型β Ti-28Nb-35.4Zr(以下简称 TNZ)合金的微观结构、力学、腐蚀、纳米摩擦学性能和生物相容性的影响。结果表明,ECAP 细化了β TNZ 合金的微观结构,形成了超细晶粒,而不会引起应力诱导的相变,从而形成单一的β相。ECAP 处理的 TNZ 合金的压缩屈服强度为 960 MPa,在压缩载荷下具有很高的塑性变形能力而不会断裂。动电位极化试验表明,ECAP 处理的 TNZ 合金表面更容易形成钝化氧化膜,在 Hank's 平衡盐溶液中的腐蚀速率(0.44±0.07 µm/y)低于其铸态对应物(0.71±0.10 µm/y)。纳米摩擦学试验也表明,与铸态相比,ECAP 处理的 TNZ 合金具有更高的抗磨损、磨损和划伤能力。ECAP 处理的 TNZ 合金的细胞相容性和细胞黏附评估表明,人成骨样 SaOS2 细胞在培养 7 天后的存活率为 111%。此外,ECAP 处理的 TNZ 合金促进了 SaOS2 细胞的黏附和铺展,细胞在合金表面生长和增殖。总之,ECAP 处理的 TNZ 合金显著提高了机械、腐蚀和生物学性能,适合用于承重植入物应用。

意义陈述

等径角挤压(ECAP)通过优化材料的微观结构和相转变,提供了增强材料机械和功能特性的独特组合。本研究通过 ECAP 研究了新型β Ti-28Nb-35.4Zr(TNZ)合金的机械、纳米摩擦学、腐蚀和生物相容性。我们的研究结果表明,ECAP 细化了β TNZ 合金的微观结构,形成了超细晶粒,而不会引起应力诱导的相变。与铸态相比,ECAP 处理的 TNZ 合金具有显著提高的压缩屈服强度、塑性变形能力、硬度、耐磨性和耐腐蚀性。此外,体外细胞相容性和细胞黏附研究表明,SaOS2 成骨样细胞在 ECAP 处理的 TNZ 合金上具有较高的细胞活力、生长和增殖。

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