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The structure and mechanical properties of as-cast Ti-25Nb-xSn alloys for biomedical applications

机译:生物医学应用铸态Ti-25Nb-xSn合金的结构和力学性能

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摘要

The effects of tin on the structure and mechanical properties of a Ti-25Nb-based system were studied with an emphasis on improving the strength/modulus ratio. Commercially pure titanium (c.p. Ti) was used as a control. As-cast Ti-25Nb and a series of Ti-25Nb-xSn (x=1, 3, 5, 7, 8, 9, 10, 11, 13, and 15wt%) alloys prepared using a commercial arc-melting vacuum pressure casting system were investigated. The experimental results showed that the as-cast Ti-25Nb has an a" phase, and when 1-5 wt% Sn was introduced into the Ti-25Nb alloy, the structure remained essentially unchanged. However, with 7-15 wt% Sn, retention of the metastable p phase began. Among the developed Ti-25Nb-xSn alloys, all the alloys had good ductility, and Ti-25Nb-8Sn and Ti-25Nb-9Sn alloys had lower bending moduli (52 and 53 GPa, respectively) than c.p. Ti (99 GPa) and the other Ti-25Nb-based alloys (61-133 GPa). Moreover, Ti-25Nb-9Sn and Ti-25Nb-llSn alloys exhibited higher bending strength/modulus ratios, as large as 20.5 and 20.6, respectively, higher than those of c.p. Ti (8.5) and the Ti-25Nb alloys (19.8). The Ti-25Nb-10Sn (41°) and Ti-25Nb-llSn (46°) alloys had superior elastically recoverable angles, about 17.0 and 15.2 times greater than that of c.p. Ti, respectively. In the current search for a better implant material, p-phase Ti-25Nb-(8-11 )Sn alloys show considerable promise due to their low moduli, ductile properties, excellent elastic recovery capability, reasonably high strength (or high strength/modulus ratio), and better shape memory effect.
机译:研究了锡对Ti-25Nb基体系的结构和力学性能的影响,重点是提高强度/模量比。商业上纯的钛(c.p. Ti)用作对照。使用工业电弧熔化真空压力制备的铸态Ti-25Nb和一系列Ti-25Nb-xSn(x = 1、3、5、7、8、9、10、11、13和15wt%)合金铸造系统进行了调查。实验结果表明,铸态的Ti-25Nb具有a“相,当将1-5 wt%的Sn引入Ti-25Nb合金时,其结构基本上保持不变。但是,当Sn-15Nb的含量为7-15%时在已开发的Ti-25Nb-xSn合金中,所有合金均具有良好的延展性,而Ti-25Nb-8Sn和Ti-25Nb-9Sn合金的弯曲模量较低(分别为52 GPa和53 GPa)。 )比cp Ti(99 GPa)和其他Ti-25Nb基合金(61-133 GPa)更高;此外,Ti-25Nb-9Sn和Ti-25Nb-llSn合金的弯曲强度/模量比更高,高达20.5分别比cp Ti(8.5)和Ti-25Nb合金(19.8)高20.6和20.6。Ti-25Nb-10Sn(41°)和Ti-25Nb-llSn(46°)合金具有优异的弹性回复角分别比cp Ti分别大17.0倍和15.2倍。在目前寻找更好的植入材料方面,p相Ti-25Nb-(8-11)Sn合金由于其低模量,瓷砖性能,出色的弹性恢复能力,合理的高强度(或高强度/模量比)和更好的形状记忆效果。

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  • 来源
    《Materials Science and Engineering》 |2013年第15期|1-7|共7页
  • 作者单位

    Department of Dental Technology and Materials Science, Central Taiwan University of Science and Technology, Taiwan, ROC Institute of Biomedical Engineering and Materials Science, Central Taiwan University of Science and Technology, Taiwan, ROC;

    Department of Dental Technology and Materials Science, Central Taiwan University of Science and Technology, Taiwan, ROC Institute of Biomedical Engineering and Materials Science, Central Taiwan University of Science and Technology, Taiwan, ROC;

    Department of Dental Technology and Materials Science, Central Taiwan University of Science and Technology, Taiwan, ROC Institute of Biomedical Engineering and Materials Science, Central Taiwan University of Science and Technology, Taiwan, ROC;

    Department of Mechanical and Automation Engineering, Da-Yen University, Taiwan, ROC;

    Department of Mechanical and Automation Engineering, Da-Yen University, Taiwan, ROC;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Titanium alloys; X-ray diffraction; Mechanical characterization;

    机译:钛合金;X射线衍射;机械特性;

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