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Influence of phase volume fraction on the grain refining of a Ti-6Al-4V alloy by high-pressure torsion

机译:相体积分数对Ti-6Al-4V合金高压扭转晶粒细化的影响

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A cold-rolled Ti-6Al-4V sheet was subjected to three different heat treatments prior to processing by high pressure torsion (HPT). Quantitative measurements revealed that the volume fractions were 70% equiaxed α phase and 30% lamellar (α+β) (Ti64-1), 47% equiaxed α phase and 53% lamellar (α+β) (Ti64-2) and 25% equiaxed α phase and 75% lamellar (α+β) (Ti64-3) and the grain sizes of the α phase were 7.0±2μm, 9.0±1.5μm and 9.5±1.5μm, respectively. The processing by HPT was performed at room temperature with a pressure of 6.0GPa and a rotation speed of 1rpm. Processing of the three heat treatment batches was conducted through a total number of revolutions, N, of 1/4, 1, 5, 10 and 20. The results show that the microhardness increases with increasing numbers of turns in HPT processing and for all three conditions stable microhardness values are reached after about 20 turns. The grain sizes after 20 turns of HPT were 115±30nm in Ti64-1, 85±25nm in Ti64-2 and 75±15nm in Ti64-3 so that the grain size decreases as the volume fraction of α phase decreases and the lamellar (α+β) increases.
机译:冷轧的Ti-6Al-4V钢板在进行高压扭转(HPT)加工之前要经过三种不同的热处理。定量测量表明,体积分数为70%等轴α相和30%层状(α+β)(Ti64-1),47%等轴α相和53%层状(α+β)(Ti64-2)和25%等轴α相和75%层状(α+β)(Ti64-3)的晶粒尺寸分别为7.0±2μm,9.0±1.5μm和9.5±1.5μm。通过HPT进行的处理在室温下以6.0GPa的压力和1rpm的转速进行。通过总共1 / 4、1、5、10和20的转数N对三个热处理批次进行处理。结果表明,在HPT处理过程中,对于所有三个热处理,显微硬度都随转数的增加而增加。在大约20圈后达到稳定的显微硬度值。 HPT 20圈后的晶粒尺寸在Ti64-1中为115±30nm,在Ti64-2中为85±25nm,在Ti64-3中为75±15nm,因此随着α相体积分数的减小和层状( α+β)增加。

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