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The Influence of Small Quantities of Oxygen in the Structure Microstructure Hardness Elasticity Modulus and Cytocompatibility of Ti-Zr Alloys for Dental Applications

机译:少量氧气对牙科用Ti-Zr合金的结构显微组织硬度弹性模量和细胞相容性的影响

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摘要

The mechanical properties of Ti alloys are changed significantly with the addition of interstitial elements, such as oxygen. Because oxygen is a strong stabilizer of the α phase and has an effect on hardening in a solid solution, it has aroused great interest in the biomedical area. In this paper, Ti-Zr alloys were subjected to a doping process with small amounts of oxygen. The influence of interstitial oxygen in the structure, microstructure and some selected mechanical properties of interest for use as biomaterial and biocompatibility of the alloys were analyzed. The results showed that in the range of 0.02 wt% to 0.04 wt%, oxygen has no influence on the structure, microstructure or biocompatibility of the studied alloys, but causes hardening of the alloys, increasing the values of the microhardness and causing variation in the elasticity modulus values.
机译:钛合金的机械性能会随着间隙元素(例如氧气)的添加而发生显着变化。因为氧是α相的强稳定剂,并且对固溶体中的硬化有影响,所以它引起了生物医学领域的极大兴趣。在本文中,对Ti-Zr合金进行了少量氧气的掺杂处理。分析了间隙氧在结构,微观结构和某些选定的感兴趣的机械性能(用作合金的生物材料和生物相容性)方面的影响。结果表明,在0.02重量%至0.04重量%的范围内,氧对所研究的合金的结构,微观结构或生物相容性没有影响,但是引起合金的硬化,增加了显微硬度的值并且引起合金的变化。弹性模量值。

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