冷却速率导致的薄壁效应对K465合金显微组织和持久性能的影响
郭小童1,2, 郑为为1, 李龙飞1, 冯强1()
Cooling Rate Driven Thin-Wall Effects on the Microstructures and Stress Rupture Properties of K465 Superalloy
GUO Xiaotong1,2, ZHENG Weiwei1, LI Longfei1, FENG Qiang1()

图6. K465合金管材经不同热暴露处理后晶界的SEM像

Fig.6. SEM-BSE images showing the two-dimentional morphologies of grain boundaries in the K465 alloy tube after thermal exposure conditions of 900 ℃, 1000 h (a), 1000 ℃, 1000 h (b) and 1050 ℃, 1000 h (c), and SEM-SE image showing the corresponding three-dimentional morphology after thermal exposure at 1050 ℃for 1000 h (d)