首页> 外文会议>Eco-Materials Processing and Design VIII; Materials Science Forum; vols.544-545 >Effect of Thermo-Mechanical Processing on Microstructure and Elastic Modulus of Metastable Ti-Nb-Si Alloys for Biomedical Application
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Effect of Thermo-Mechanical Processing on Microstructure and Elastic Modulus of Metastable Ti-Nb-Si Alloys for Biomedical Application

机译:热机械加工对生物医学用亚稳Ti-Nb-Si合金的组织和弹性模量的影响

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This work describes the effect of microstructures on elastic modulus in Ti-26Nb-xSi alloy (x=0.5~1.5at.%) prepared by arc melting, cold rolling and recrystallization heat treatment. OM observation and x-ray diffraction analysis revealed that the microstructure of as-quenched sample appeared to mixture appearance consisting of mostly bcc-structured β phase and small amount of orthorhombic-structured α' phase. After cold rolling, elongated structure parallel to the rolling direction was observed, and equiaxed structure with the average grain size of about 20~30μm was developed for the sample after recrystallization heat treatment. In as-quenched sample randomly distributed feature of pole figure was characterized without showing a specific texture component. In cold-rolled sample α-fiber, γ-fiber and rotated cube texture components were detected. After recrystallization heat treatment the intensity of α-fiber texture component was markedly decreased, while the rotated cube component becomes sharpened and γ-fiber component remains relatively unchanged. The elastic modulus increased by cold rolling and then decreased by recrystallization over the entire chemical composition range investigated. The variation of elastic modulus values was interpreted in terms of changes in texture components depending on thermomechanical processing.
机译:该工作描述了通过电弧熔化,冷轧和再结晶热处理制备的Ti-26Nb-xSi合金(x = 0.5〜1.5at。%)的微观结构对弹性模量的影响。 OM观察和X射线衍射分析表明,淬火后的样品的微观结构呈现出混合外观,主要由bcc结构的β相和少量的正交晶结构的α'相组成。冷轧后,观察到平行于轧制方向的拉长组织,再结晶热处理后的试样形成了平均晶粒尺寸约为20〜30μm的等轴组织。在淬火后的样品中,极图的随机分布特征没有显示特定的纹理成分。在冷轧样品中,检测到了α-纤维,γ-纤维和旋转的立方织构。在再结晶热处理之后,α-纤维织构成分的强度显着降低,而旋转的立方成分变尖并且γ-纤维成分保持相对不变。在整个研究的化学成分范围内,弹性模量通过冷轧而增加,然后通过重结晶而降低。弹性模量值的变化是根据依赖于热机械加工的织构成分的变化来解释的。

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