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生物医用β型Ti-25.6Nb-19.4Ta合金设计与微观结构的研究

Design and Microstructure of β-Type Ti-25.6Nb-19.4Ta Alloy for Biomedical Application

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【作者】 杨永建马秀梅孙威

【Author】 Yang Yongjian,Ma Xiumei,Sun Wei(Institute of Microstructure and Property of Advanced Materials,Beijing University of Technology,Beijing 100124,China)

【机构】 北京工业大学固体微结构与性能研究所

【摘要】 利用钛合金β稳定系数Kβ设计制备了4种具有不同组元和成分的医用钛合金,4种钛合金的Kβ值均在1.0~1.5之间,属于理论上的近β型钛合金。通过X射线衍射分析和背散射电子衍射分析,从4种合金中优化出均匀合金化的3元β型医用Ti-25.6Nb-19.4Ta(%,质量分数)合金。利用硬度测试、压缩实验与透射电子显微镜(TEM)等手段对Ti-25.6Nb-19.4Ta合金在铸态、固溶态和400℃不同时间时效处理后的性能和微观结构进行了测试与分析,结果显示:Ti-25.6Nb-19.4Ta合金经过400℃时效处理后,其硬度、强度、弹性模量等随α相、ω相的析出变化明显。对这些变化的分析,揭示了合金的性能与显微结构的密切关系。

【Abstract】 With the aid of Kβ calculation of β stability parameter for Ti-based alloys,four kinds of biomedical Ti-based alloys with different components and compositions were designed and prepared.All these Ti-based alloys had a Kβ value of 1.0~1.5,and theoretically belonged to a near β-type.It was clearly revealed by means of X-ray diffraction and back-scattered electron imaging that,of the four alloys prepared for biomedical application,ternary alloy Ti-25.6Nb-19.4Ta(%,mass fraction)was the most homogeneous β alloy.For Ti-25.6Nb-19.4Ta alloy in states of as-cast,solid solution and aging treatment at 400 ℃ for different periods of time,hardness testing,compression deformation and transmission electron microscopy observations were carried out to reveal and analyze the corresponding property and microstructure.The results showed that the precipitation of α-and ω-phases could lead to significant variations of hardness,strength,elastic modulus for the Ti-25.6Nb-19.4Ta alloy subjected to aging treatment at 400 ℃.The close relationship between the properties and microstructures could be revealed from these variations.

【关键词】 β型钛合金Ti-Nb-Ta时效处理微观结构
【Key words】 β-type alloyTi-Ni-Taaging treatmentmicrostructure
【基金】 北京市教育委员会科技计划面上项目(KM200810005029)资助
  • 【文献出处】 稀有金属 ,Chinese Journal of Rare Metals , 编辑部邮箱 ,2010年02期
  • 【分类号】TG146.23
  • 【被引频次】10
  • 【下载频次】198
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