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Influence of phase volume fractions on the processing of a Ti-6Al-4V alloy by high-pressure torsion

机译:相体积分数对高压扭转Ti-6Al-4V合金加工的影响

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Using appropriate heat treatments, different volume fractions of the constituent phases were produced in a Ti-6Al-4V alloy. Thus, in Ti64-1 there was ~ 85% of an equiaxed α-phase and ~ 15% of a lamellar (α+β) microstructure and in Ti64-2 there was ~48% of the α-phase and -52% of the (α+β) microstructure. These two alloys were processed by high-pressure torsion (HPT) at room temperature under an applied pressure of 6.0 GPa. Both materials showed increases in the microhardness and decreases in the grain size after HPT with a stabilization after about 10 turns. Higher hardness values and smaller grain sizes were attained in Ti64-2 thereby demonstrating that greater grain refinement is achieved when processing an alloy with approximately equal volume fractions of the constituent phases. In these experiments, the measured equilibrium grain sizes after 20 turns of HPT were ~130 nm in Ti64-1 and ~70 nm in Ti64-2.
机译:使用适当的热处理,在Ti-6Al-4V合金中产生了不同体积分数的组成相。因此,在Ti64-1中,等轴α相的〜85%和层状(α+β)微结构的〜15%;在Ti64-2中,α相的〜48%和-52%的-52% (α+β)微观结构。这两种合金在室温下于6.0 GPa的施加压力下通过高压扭转(HPT)进行处理。两种材料均显示出HPT后的显微硬度增加和晶粒尺寸减小,约10圈后稳定。在Ti64-2中获得了更高的硬度值和更小的晶粒尺寸,从而表明在加工具有近似相等体积分数的组成相的合金时,可以实现更大的晶粒细化。在这些实验中,HPT 20转后测得的平衡晶粒尺寸在Ti64-1中约为130 nm,在Ti64-2中约为70 nm。

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