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Structural and Mechanical Properties of Ti–Co Alloys Treated by High Pressure Torsion

机译:高压扭转处理的Ti-Co合金的结构和力学性能

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摘要

The microstructure and properties of titanium-based alloys can be tailored using severe plastic deformation. The structure and microhardness of Ti–4 wt.% Co alloy have been studied after preliminary annealing and following high pressure torsion (HPT). The Ti–4 wt.% Co alloy has been annealed at 400, 500, and 600 °C, i.e., below the temperature of eutectoid transformation in the Ti–4 wt.% Co system. The amount of Co dissolved in α-Ti increased with increasing annealing temperature. HPT led to the transformation of α-Ti in ω-Ti. After HPT, the amount of ω-phase in the sample annealed at 400 °C was about 80­85%, i.e., higher than in pure titanium (about 40%). However, with increasing temperature of pre-annealing, the portion of ω-phase decreased (60–65% at 500 °C and about 5% at 600 °C). The microhardness of all investigated samples increased with increasing temperature of pre-annealing.
机译:钛基合金的微观结构和性能可以通过剧烈的塑性变形来调整。经过初步退火和高压扭转(HPT)后,已研究了Ti-4 wt%Co合金的组织和显微硬度。 Ti–4 wt。%Co合金已在400、500和600°C退火,即低于Ti–4 wt。%Co系统中共析转变温度。随着退火温度的升高,溶解在α-Ti中的Co的量增加。 HPT导致了α-Ti在ω-Ti中的转变。 HPT之后,在400℃下退火的样品中的ω相的量为约80-85%,即高于纯钛中的约40%。但是,随着预退火温度的升高,ω相的比例下降(在500°C时为60–65%,在600°C时为5%)。所有研究样品的显微硬度都随着预退火温度的升高而增加。

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