奥斯特瓦尔德成熟
材料科学
旋节分解
沉淀硬化
奥氏体
合金
硬化(计算)
透射电子显微镜
降水
冶金
微观结构
旋节
结晶学
相(物质)
复合材料
纳米技术
图层(电子)
化学
物理
气象学
有机化学
作者
Xue Ma,Zhijun Wang,Xuezhu Tong,Xaoming Du,Tianfu Li,Rong-Deng Liu,Yuntao Liu,Dongfeng Chen
标识
DOI:10.17222/mit.2021.336
摘要
Microstructure evolution and mechanical properties in an Fe-17Cr-4Ni-4Cu alloy aged at 475 °C after different aging times were studied. Conventional transmission electron microscopy (TEM) and high-resolution electron microscopy (HREM) studies revealed the formation of 9R-structure Cu-rich precipitates and Cr-rich α’ phase by spinodal decomposition in the samples aged at 475 °C after 100–1000 h. The fine Cu-rich precipitates and Cr-rich α’ phase by spinodal decomposition lead to a significant increase in the hardness, together in the early stages (100 h). Continued aging to 500 h leads to increased precipitation of the Cr-rich α’, which provides significant strengthening, reaching maximum hardening, despite the continued loss of hardening by weakening by the Ostwald ripening of the Cu-rich precipitates. Extending the aging time to 1000 h leads to substantial reversed austenite transformation and a large number of ripening -copper precipitates that causes softening. The results of the impact tests showed that the major fracture mode was cleavage and/or quasi-cleavage.
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