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Characteristics of the allotropic phase transformation in titanium processed by high-pressure torsion using different rotation speeds

机译:采用不同转速的高压扭转加工钛的各向同性相变特征

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摘要

An investigation was initiated to examine the effect of rotation speed on the allotropic ? to ?-phase transformation in titanium. A grade 2 commercial purity titanium was processed by high-pressure torsion (HPT) at room temperature up to a maximum of 10 turns using a pressure of 5.0 GPa and different rotation speeds from 0.5 to 2 rpm. It is shown that the allotropic phase transformation occurs during HPT at different rotation speeds but the volume fraction of the ?-phase decreases when the rotation speed is increased. The results indicate that the hardness and strength are decreased by processing the specimens at higher rotation speeds. Additional annealing for 15 min at 423 and 473 K after HPT processing is also effective in changing the volume fractions of the ?-phase and producing an ? to ? reverse phase transformation. The results are interpreted in terms of the temperature rise during HPT processing.
机译:开始进行调查以研究转速对同素异形体的影响。钛的α相转变。通过使用5.0 GPa的压力和0.5至2 rpm的不同转速,在室温下通过高压扭力(HPT)将最大2等级的商品级纯钛加工成最大10圈。可以看出,在HPT期间,在不同的转速下发生了同素异相转变,但是当转速增加时,α相的体积分数减小。结果表明,以更高的转速处理样品会降低硬度和强度。 HPT处理后在423和473 K处额外退火15分钟,同样有效地改变了α相的体积分数并产生了α相。至 ?反相转换。结果是根据HPT处理过程中的温度升高来解释的。

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