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首页> 外文期刊>Journal of materials science >Preparation, structural, microstructural, mechanical and cytotoxic characterization of as-cast Ti-25Ta-Zr alloys
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Preparation, structural, microstructural, mechanical and cytotoxic characterization of as-cast Ti-25Ta-Zr alloys

机译:铸造Ti-25TA-Zr合金的制备,结构,微观结构,机械和细胞毒性表征

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摘要

Titanium alloys have been widely used as biomaterials, especially for orthopedic prostheses and dental implants, but these materials have Young's modulus almost three times greater than human cortical bones. Because of this, new alloys are being produced for the propose of decreasing Young's modulus to achieve a more balanced mechanical compatibility with the bone. In this paper, it is reported the development of Ti-25Ta alloys as a base material, in which was introduced zirconium, with concentration varying between 0 and 40 wt%, with the aim of biomedical applications. The alloys were prepared in an arc-melting furnace. The microstructural analysis was performed by x-ray diffraction as well as optical and scanning electron microscopy. Selected mechanical properties were analyzed by microhardness and Young's modulus measurements, and cytotoxicity analysis by indirect test. X-ray measurements revealed the presence of alpha '' phase in the alloy without zirconium; alpha '' + beta phases for alloys with 10, 20, and 30 wt% of zirconium, and beta phase only for the alloy with 40 wt% of zirconium. These results were corroborated by the microscopy results. The hardness of the alloy was higher than that of cp-Ti due to the actions of zirconium and tantalum as hardening agents. The Young's modulus decreases with high levels of zirconium due to the stabilization of the beta phase. The cytotoxicity test showed that the extracts of studied alloys are not cytotoxic for osteoblast cells in short periods of culture.[GRAPHICS].
机译:钛合金已被广泛用作生物材料,特别是对于矫形假体和牙科植入物,但这些材料的杨氏模量几乎比人类皮质骨骼大的三倍。因此,正在为杨氏模量减少而制作新的合金,以实现与骨骼更平衡的机械兼容性。本文报道,据报道,Ti-25TA合金作为基础材料的发展,其中引入锆,浓度在0和40重量%之间变化,目的是生物医学应用。将合金制备在熔炉中。通过X射线衍射以及光学和扫描电子显微镜进行微观结构分析。通过微硬度和杨氏模量测量分析所选机械性能,并通过间接测试进行细胞毒性分析。 X射线测量显示没有锆的合金中α'相的存在; α''+β相对于10,20和30wt%的锆的合金,并且仅针对具有40wt%的锆的合金的β相。这些结果通过显微镜结果证实。由于锆和钽作为硬化剂的作用,合金的硬度高于CP-TI的硬度。由于β相稳定,杨氏模量随高水平的锆。细胞毒性试验表明,研究的合金的提取物不是在短时间内的成骨细胞的细胞毒性。[图形]。

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  • 来源
    《Journal of materials science 》 |2020年第2期| 19.1-19.8| 共8页
  • 作者单位

    UNESP Univ Estadual Paulista Lab Anelasticidade & Biomat BR-17033360 Bauru SP Brazil|IBTNBr Inst Biomat Tribocorros & Nanomed Brazilia BR-17033360 Bauru SP Brazil;

    UNESP Univ Estadual Paulista Lab Anelasticidade & Biomat BR-17033360 Bauru SP Brazil|IBTNBr Inst Biomat Tribocorros & Nanomed Brazilia BR-17033360 Bauru SP Brazil;

    UNESP Univ Estadual Paulista Lab Anelasticidade & Biomat BR-17033360 Bauru SP Brazil|IBTNBr Inst Biomat Tribocorros & Nanomed Brazilia BR-17033360 Bauru SP Brazil;

    UNESP Univ Estadual Paulista Lab Anelasticidade & Biomat BR-17033360 Bauru SP Brazil|IBTNBr Inst Biomat Tribocorros & Nanomed Brazilia BR-17033360 Bauru SP Brazil;

    UNESP Univ Estadual Paulista Lab Anelasticidade & Biomat BR-17033360 Bauru SP Brazil|IBTNBr Inst Biomat Tribocorros & Nanomed Brazilia BR-17033360 Bauru SP Brazil|IFSP Sao Paulo Fed Inst Educ Sci & Technol BR-14781502 Barretos SP Brazil;

    UNESP Univ Estadual Paulista Lab Anelasticidade & Biomat BR-17033360 Bauru SP Brazil|IBTNBr Inst Biomat Tribocorros & Nanomed Brazilia BR-17033360 Bauru SP Brazil;

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