材料科学
结晶
无定形固体
非晶态金属
微观结构
热稳定性
合金
钴
复合材料
冶金
化学工程
结晶学
化学
工程类
标识
DOI:10.2478/msp-2020-0003
摘要
Abstract The aim of this work was to investigate the effects of moderate vacuum conditions (10 Pa, 1 × 10 3 Pa and 2 × 10 4 Pa) on glass forming ability, thermal stability and aging behavior of Co 42 Cu 1 Fe 20 Ta 5:5 B 26:5 Si 5 amorphous samples in terms of size and distribution of crystalline precipitates. The thinnest parts (300 μm) of the wedge-shaped samples were amorphous for all vacuum conditions, and they had similar compositional, structural and thermal characteristics. However, they represented different microstructural features after heat treatments at 950 K and 1100 K. The same phases precipitated in all samples but the amount and the size of the precipitates increased as the pressure was raised to the normal atmospheric value. The differences in the glass forming ability and the microstructure due to aging are considered to originate from lower thermal characteristics, such as relaxation and reduced glass temperature as well as γ parameter, resulting from the poor vacuum pressure used in the production process. The differences in the microstructures and hardness values caused by heat treatments have been observed.
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