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The Effect of Hot Working on the Mechanical Properties of High Strength Biomedical Ti-Nb-Ta-Zr-O Alloy

机译:热加工对高强度生物医学Ti-Nb-Ta-Zr-O合金力学性能的影响

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摘要

Beta titanium alloy Ti-35Nb-6Ta-7Zr-0.7O (wt%) was developed as a material intended for the manufacturing of a stem of a hip joint replacement. This alloy contains only biocompatible elements and possesses a very high yield strength already in the cast condition (900 MPa). However, the porosity, large grain size and chemical inhomogeneity reduce the fatigue performance below the limits required for utilization in the desired application. Two methods of hot working, die forging and hot rolling, were used for processing of this alloy. Microstructural evolution, tensile properties and fatigue performance of the hot worked material were investigated and compared to the cast material. Microstructural observations revealed that porosity is removed in all hot-worked conditions and the grain size is significantly reduced when the area reduction exceeds 70%. Static tensile properties were improved by both processing methods and ultimate tensile strength (UTS) of 1200 MPa was achieved. Fatigue results were more reproducible in the hot rolled material due to better microstructural homogeneity, but forging leads to an improved fatigue performance. Fatigue limit of 400 MPa was achieved in the die-forged condition after 70% of area reduction and in the hot rolled condition after 86% of area reduction.
机译:Beta钛合金Ti-35Nb-6Ta-7Zr-0.7O(wt%)被开发为用于制造髋关节置换物茎的材料。该合金仅包含生物相容性元素,并且在铸造条件下(900 MPa)已具有很高的屈服强度。然而,孔隙率,大晶粒尺寸和化学不均匀性将疲劳性能降低到低于在所需应用中使用所需的极限。该合金采用两种热加工方法:模锻和热轧。研究了热加工材料的微观组织演变,拉伸性能和疲劳性能,并将其与铸造材料进行了比较。显微组织观察表明,在所有热加工条件下,孔隙率均被消除,并且当面积减小率超过70%时,晶粒尺寸显着减小。通过两种加工方法均可改善静态拉伸性能,并获得了1200 MPa的极限拉伸强度(UTS)。由于更好的微观结构均匀性,热轧材料的疲劳结果更可重现,但锻造可改善疲劳性能。在面积减少70%之后的模锻条件下和在面积减少86%之后的热轧条件下,疲劳极限达到400 MPa。

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