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Microstructure and texture evolution of Ti-Nb-Si based alloys for biomedical applications

机译:Ti-Nb-Si基合金的微观结构和纹理演化为生物医学应用

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Microstructure and texture of Ti-Nb-Si based alloys, prepared by water quenching from β-phase field, cold rolling and recrystallization heat treatment followed by water quenching, were investigated in terms of optical microstructure and analysis of X-ray pole figure result. In as-quenched sample, relatively random distribution of pole figure was detected without showing a specific texture component. In as-cold rolled sample, however, it is found well-developed several texture components consisting of rotated cube, α-fiber and γ-fiber texture components which are frequently observed in bcc-structured metals and alloys were found. Therefore, texture components developed in the present alloys are closely related to the deformation of β-phase even though small amount of α" phase co-exist in the microstructure. In recrystallized sample, α-fiber texture component is weakly detected while the other texture components, rotated cube and y-fiber components, appears to be relatively unchanged. No additional texture components were detected besides those texture components observed in the cold rolled samples.
机译:基于β相的水猝灭,冷轧和再结晶热处理后,用水淬火制备的Ti-Nb-Si基合金的微观结构和质地,在光学微观结构方面研究了X射线极值图结果。在作为淬火的样品中,检测到杆状图的相对随机分布而不显示特定纹理组分。然而,在冷冻辊样品中,发现均匀开发的若干纹理组分,由旋转立方体,α-纤维和γ-纤维质地组成,在BCC结构的金属和合金中经常观察到。因此,在本合金中开发的质地组分与β相的变形密切相关,即使在微观结构中共存的少量α“相位也存在。在重结晶样品中,α-纤维纹理部件在另一个纹理时弱检测到弱检测。组件,旋转立方体和Y-纤维组分似乎相对不变。除了在冷轧样品中观察到的那些纹理分量之外,没有检测到额外的纹理组件。

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