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Effect of the substitutional elements on the microstructure of the Ti-15Mo-Zr and Ti-15Zr-Mo systems alloys

机译:替代元素对Ti-15Mo-Zr和Ti-15Zr-Mo系合金的微观结构的影响

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Titanium alloys have excellent biocompatibility, and combined with their low elastic modulus, become more efficient when applied in orthopedic prostheses. Samples of Ti-15Mo-Zr and Ti-15Zr-Mo system alloys were prepared using an arc-melting furnace with argon atmosphere. The chemical quantitative analysis was performed using an optical emission spectrometer with inductively coupled plasma and thermal conductivity difference. The X-ray diffractograms, allied with optical microscopy, revealed the structure and microstructure of the samples. The mechanical analysis was evaluated by Vickers microhardness measurements. The structure and microstructure of alloys were sensitive to molybdenum and zirconium concentration, presenting α′, α″ and β phases. Molybdenum proved to have greater β-stabilizer action than zirconium. Microhardness was changed with addition of molybdenum and zirconium, having Ti-15Zr-10Mo (436±2HV) and Ti-15Mo-10Zr (378±4HV) the highest values in each system.
机译:钛合金具有出色的生物相容性,并具有低弹性模量,在整形外科假体中使用时效率更高。使用具有氩气氛的电弧熔化炉制备了Ti-15Mo-Zr和Ti-15Zr-Mo系合金样品。使用具有电感耦合等离子体和热导率差的光发射光谱仪进行化学定量分析。 X射线衍射图与光学显微镜相结合,揭示了样品的结构和微观结构。通过维氏显微硬度测量来评估机械分析。合金的结构和微观结构对钼和锆的浓度敏感,呈现α',α''和β相。事实证明,钼具有比锆更大的β稳定剂作用。加入钼和锆会改变显微硬度,其中Ti-15Zr-10Mo(436±2HV)和Ti-15Mo-10Zr(378±4HV)在每个系统中的最高值。

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