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Effects of Solution Treating on Microstructural and Mechanical Properties of a Heavily Deformed New Biocompatible Ti–Nb–Zr–Fe Alloy

机译:溶液治疗沉重变形新型生物相容性Ti-Nb-Zr-Fe合金微观结构和力学性能的影响

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摘要

The effects of heavy cold plastic deformation by rolling on microstructural features and mechanical properties of Ti–25Nb–6Zr–1.7Fe (wt %) biocompatible alloy (TNZF) were studied. After a preliminary alloy processing, a heavy plastic deformation by cold-rolling (CR) with a total relative degree of plastic deformation of 90% (equivalent plastic strain, ε = 2.42) and a subsequent solution heat treatment (CR+ST) at 900 °C for 0.6 ks/water quenching were applied and then investigated. The CR and CR+ST states have microstructures consisting of mixtures of β-Ti phases and α″-Ti. The alloy in CR state shows a pronounced deformation texture, with highly deformed and elongated β-Ti grains, exhibiting internal highly fragmented areas, with shear lines at about 45° and a sub-micron/nanocrystalline fine dispersed α″-Ti phase. The alloy in CR+ST state has completely recrystallized equiaxed polyhedral β-Ti grains, with average grain size close to 52 μm and a sub-micron/nanocrystalline fine dispersed α″-Ti phase. Recorded mechanical properties, for both CR and CR+ST states, show quite similar values for the yield strength (σ0.2), ultimate tensile strength (σUTS) and Vickers microhardness (HV0.1) for CR state (σ0.2 = 603 MPa, σUTS = 1282 MPa and 287 HV0.1) in comparison with CR+ST state (σ0.2 = 598 MPa, σUTS = 1256 MPa and 256 HV0.1). Values for the modulus of elasticity (E) are lower (E = 72 GPa for CR state and E = 61 GPa for CR+ST state) than those for conventional biocompatible alloys (E ~ 110 GPa).
机译:研究了通过轧制对Ti-25NB-6ZR-1.7FE(WT%)生物相容性合金(TNZF)进行微观结构特征和机械性能的轧制。在初步合金加工后,冷轧(Cr)的重塑性变形,具有90%(等效塑性菌株,ε= 2.42)的总塑性变形的总相对程度(ε= 2.42)和900时的后续溶液热处理(Cr + St)施加0.6ks /水猝灭,然后研究。 Cr和Cr + St州具有由β-Ti阶段和α“-ti的混合物组成的微观结构。 Cr状态下的合金显示出明显的变形纹理,具有高变形和细长的β-Ti晶粒,具有剪切线,剪切线在约45°和亚微米/纳米晶体细分散α“-ti相。 Cr + ST状态的合金具有完全重结晶的等轴多面体β-Ti晶粒,平均晶粒尺寸接近52μm和亚微米/纳米晶体细分散α“-ti相。对于Cr和Cr + St州的Cr和Cr + St州的录制机械性能显示出相似的屈服强度(σ0.2),最终拉伸强度(ΣUts)和Cr状态的微硬度(HV0.1)(Σ0.2= 603与Cr + ST状态相比,MPA,ΣUts= 1282MPa和287 HV0.1)(Σ0.2= 598MPa,ΣUts= 1256MPa和256 HV0.1)。弹性模量(E)的值较低(E = 72GPa对于Cr状态,Cr + St态的E = 61GPa)比常规生物相容性合金(E〜110GPa)的较低(Cr + St态)。

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