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牙科用 Ti-Zr 二元合金的开发与性能。

Development and properties of dental Ti-Zr binary alloys.

机构信息

School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, China.

Department of Prosthodontics, The Affiliated Stomatology Hospital, School of Medicine, Zhejiang University, Key Laboratory of Oral Biomedical Research of Zhejiang Province, Hangzhou 310006, Zhejiang, China.

出版信息

J Mech Behav Biomed Mater. 2020 Dec;112:104048. doi: 10.1016/j.jmbbm.2020.104048. Epub 2020 Aug 22.

Abstract

In this study, two medium Zr-containing Ti-based alloys with commercially pure titanium as control were systematically investigated to assess their potential biomedical application. After samples subjected to TMP and CR, it was found that the Zr addition significantly affected the microstructure, phase constitutions, mechanical properties and cytocompatibility. The microstructural results showed that increasing Zr concentrations resulted in more refined grains. Furthermore, Zr changed the phase constitution: CR Ti-20Zr was formed by the single α-phase while CR Ti-30Zr alloy was formed by the coexistence of α and deformation-induced FCC phases. The P-type FCC phase was dominant and more prone to occur than the B-type one. The mechanical tests demonstrated that the increasing Zr content led to a simultaneous increase in micro-hardness, strength and plasticity of CR samples due to the combined effects of solution strengthening, work hardening and the FCC phase. The SEM fractography indicated that the brittle fracture of CR Ti-20Zr due to deformation twins and ductile fracture of CR Ti-30Zr because of FCC phase. Furthermore, Ti-Zr alloys presented comparable cytocompatibility to the CP-Ti control based on cell viability, proliferation and intracellular O content of MSCs. Specifically, alkaline phosphatase activity in BMSCs were significantly higher for grain refined CR Ti-30Zr. Considering all these results, CR Ti-30Zr alloy exhibited the optimal comprehensive performance to be potential dental materials.

摘要

在这项研究中,我们系统地研究了两种含有中等 Zr 的 Ti 基合金(以商业纯钛作为对照),以评估它们在生物医学方面的应用潜力。经过 TMP 和 CR 处理后,发现 Zr 的添加显著影响了微观结构、相组成、力学性能和细胞相容性。微观结构结果表明,增加 Zr 浓度导致晶粒更加细化。此外,Zr 改变了相组成:CR Ti-20Zr 由单一的 α 相组成,而 CR Ti-30Zr 合金由 α 相和变形诱导的 FCC 相共存组成。P 型 FCC 相占主导地位,比 B 型 FCC 相更容易发生。力学测试表明,由于固溶强化、加工硬化和 FCC 相的共同作用,Zr 含量的增加导致 CR 样品的显微硬度、强度和塑性同时增加。SEM 断口形貌表明,CR Ti-20Zr 由于变形孪晶而发生脆性断裂,CR Ti-30Zr 由于 FCC 相而发生延性断裂。此外,Ti-Zr 合金的细胞相容性与 CP-Ti 对照相当,基于 MSC 的细胞活力、增殖和细胞内 O 含量。具体来说,晶粒细化的 CR Ti-30Zr 中的碱性磷酸酶活性显著更高。考虑到所有这些结果,CR Ti-30Zr 合金表现出最佳的综合性能,有望成为潜在的牙科材料。

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