化学成分
材料科学
冶金
作文(语言)
白色(突变)
热力学
化学
艺术
物理
生物化学
基因
文学类
作者
Hee Young Son,In Yong Jung,Baig Gyu Choi,Jong Ho Shin,Chang Yong Jo,Je Hyun Lee
出处
期刊:Metals
[MDPI AG]
日期:2024-02-27
卷期号:14 (3): 276-276
被引量:1
摘要
The effects of chemical composition and solidification rate on the solidification behavior of high-Cr white irons were investigated through directional solidification. Increasing the solidification rate in hypoeutectic alloys caused finer dendrite-arm spacing, as expected. The eutectic structure, which formed in the interdendritic region, was comprised of M7C3 and austenite; however, secondary dendrite arms of hypoeutectic alloys contained a few M7C3 particles that solidified prior to the eutectic structure. The transition from cellular to dendritic solidification occurred at a solidification rate between 50 µm/s and 100 µm/s in a near-eutectic alloy. In the near-eutectic alloy with cellular solidification, a directionally arrayed in-situ composite of M7C3/austenite formed within the cell. Speckle-like features appeared in the intercellular region due to M23C6 carbide precipitation during subsequent cooling after freezing. Like dendrite-arm spacing in hypoeutectic alloys, the inter-speckle spacing and the inter-fiber spacing became finer with an increasing solidification rate in the cellular solidification range.
科研通智能强力驱动
Strongly Powered by AbleSci AI