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Gradient Microstructures and Mechanical Properties of Ti-6Al-4V/Zn Composite Prepared by Friction Stir Processing

机译:摩擦搅拌加工制备Ti-6Al-4V / Zn复合材料的梯度微结构和力学性能

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摘要

In this work, a biomedical Ti-6Al-4V (TC4)/Zn composite with gradient microstructures was successfully prepared by friction stir processing (FSP). The microstructures and mechanical properties of the composite were systematically studied using scanning electron microscope (SEM), X-ray diffractometer (XRD), transmission electron microscope (TEM), atom probe tomography (APT), and microhardness test. The results show that TC4/Zn composite can be successfully prepared, and gradient microstructures varying from coarse grain to nanocrystalline is formed from the bottom to the upper surface. During FSP, adding Zn can accelerate the growth of β phase region, and the grain size significantly increases with the increasing rotation rate. The grain combination is the main mechanism for grain growth of β phase region. The deformation mechanisms gradually change from dislocation accumulations and rearrangement to dynamic recrystallization from the bottom to the upper surface (1.5 mm−150 μm from the upper surface). The composite exhibits slightly higher microhardness compared with the matrix. This paper provides a new method to obtain a TC4/Zn composite with gradient surface microstructures for potential applications in the biomedical field.
机译:在这项工作中,通过摩擦搅拌加工(FSP)成功地制备了具有梯度微结构的生物医学Ti-6Al-4V(TC4)/ Zn复合物。使用扫描电子显微镜(SEM),X射线衍射仪(XRD),透射电子显微镜(TEM),原子探测断层扫描(APT)和微硬度试验系统地研究了复合材料的微观结构和机械性能。结果表明,可以成功制备TC4 / Zn复合材料,并且从底部到上表面形成从粗粒到纳米晶的梯度微结构。在FSP期间,添加Zn可以加速β相位区域的生长,并且晶粒尺寸随着旋转速率的增加而显着增加。晶粒组合是β相位区域的晶粒生长的主要机制。变形机制从位错累积和重新排列到从底部到上表面的动态重结晶(从上表面1.5mm-150μm)逐渐变化。与基质相比,复合材料表现出略高的微硬度。本文提供了一种新方法,用于获得具有梯度表面微结构的TC4 / Zn复合物,用于生物医学领域的潜在应用。

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