研究目的
Exploring the Ti-5553 phase transformations utilizing in-situ high-temperature laser-scanning confocal microscopy to understand the phase transformations in the Ti-5553 alloy.
研究成果
The HT-LSCM technique proved effective for in-situ observation of phase transformations in the Ti-5553 alloy, revealing details about α phase precipitation and dissolution. However, the technique's limitations include the persistence of thermal etching grooves and the need for a controlled atmosphere due to titanium's high oxygen affinity.
研究不足
The study was limited by the persistence of thermal etching grooves after phase dissolution, which hindered clear observation of phase transformations. Additionally, the high oxygen affinity of titanium required a highly controlled atmosphere, and minor oxygen contamination could affect the results.