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Grain refining of a Ti-6Al-4V alloy by high-pressure torsion and low temperature superplasticity

机译:高压扭转和低温超塑性对Ti-6Al-4V合金的晶粒细化

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A cold-rolled Ti-6Al-4V sheet was subjected to heat treatmentprior to processing by high-pressure torsion (HPT). Quantitative measurements revealed that the volume fractions were 25% equiaxed α phase and 75% lamellar (α+β). The grain size of the α phase was 9.5±1.5 μm. The processing by HPT was performed at room temperature with a pressure of 6.0 GPa and a rotation speed of 1 rpm. Processing of the material was conducted through a total number of revolutions, N, of 1/4, 1, 5, 10 and 20. After 1 turn in HPT, the traces of shear deformation appeared. When the turns increased to 5, shear deformation was more severe. After 10 turns, the fibrous structure basically disappeared and ultrafine equiaxed grains were formed. When the deformation proceeded to 20 turns, a series ofhigh-angle boundaries were formed in the sample and the average size of equiaxed grains was 77±15 nm.After HPT processing, the microhardness increased as the numbers of HPT turns increased and the distribution of hardness tended to be relatively homogeneous when the HPT continued to 20 turns.Superplastic deformation tests were performed at 873K at different strain rates in the material processed by HPT and an elongation of 790% was achieved when deforming at 873K and 10-4 s-1.
机译:在通过高压扭转(HPT)进行加工之前,对冷轧的Ti-6Al-4V薄板进行热处理。定量测量表明,体积分数为25%等轴α相和75%层状(α+β)。 α相的晶粒尺寸为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1 / 4、1、5、10和20的总转数N对材料进行处理。在HPT中旋转1圈后,会出现剪切变形的痕迹。当匝数增加到5时,剪切变形会更严重。 10转后,纤维结构基本消失,形成超细等轴晶。当变形进行到20转时,样品中形成了一系列高角度边界,等轴晶粒的平均尺寸为77±15 nm.HPT处理后,显微硬度随HPT转数的增加而增加。当HPT持续旋转20圈时,硬度趋于相对均匀。在873K下以不同应变率对HPT加工的材料进行了超塑性变形测试,在873K和10-4 s-1变形时获得了790%的伸长。

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