材料科学
硼化物
高温合金
等温过程
微晶
冶金
分解
热力学
微观结构
生态学
生物
物理
作者
Hiroto Kitaguchi,Luke Small,I.P. Jones,Yu‐Lung Chiu,Mark Hardy,P. Bowen
标识
DOI:10.1016/j.matchar.2024.113721
摘要
Detailed microstructural characterisation of phases present in a next generation polycrystalline Ni based superalloy after thermal exposure at 900 °C was carried out, focusing on carbides and borides. Metastable M5B3 precipitated after 32 h had a stoichiometry of (Cr0.7Mo0.2W0.1)5B3 with substitutions with Ni, Co, Nb and Ta. Fine M23C6 (a = 10.62 Å) was overgrown by metastable M5B3, as shown by rigorous TEM-SAD pattern investigation. The borides were eventually dominated by Mo rich M3B2, at the apparent expense of MC. Decomposition of MC was confirmed; it transformed sequentially to γ and then γ΄. The primary driving force for the MC decomposition was attributed to γ΄ precipitation, increasing its fraction to the thermodynamic equilibrium at 900 °C.
科研通智能强力驱动
Strongly Powered by AbleSci AI