Effects of Al on Microstructure and High-Temperature Wear Properties of Austenitic Heat-Resistant Steel

被引:0
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作者
Yan Zhang
Yu-fu Sun
Jing-yu Zhao
Shao-kang Guan
机构
[1] Nanjing Institute of Technology,School of Materials Engineering
[2] Zhengzhou University,School of Materials Science and Engineering
关键词
austenitic heat-resistant steels Al; microstructure; high-temperature sliding wear; mechanism;
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学科分类号
摘要
Microstructure and high-temperature dry sliding wear at 600 ’C in ambient air of austenitic heat-resistant steel ZG40Cr25Ni20 with different contents (mass percent) of Al (0 to 7.10%) have been investigated. The results show that microstructures of 4.68% and 7.10% Al addition content consist of the matrix and reinforcement of inter-metallic compound γ′ and carbide, while microstructures of ZG40Cr25Ni20 without Al and with Al of 1. 68% are absent of γ′. Higher wear resistance than the original ZG40Cr25Ni20 alloy is achieved in alloys with higher content of Al under the same high-temperature wear test condition. The wear rates of Fe-25Cr-20Ni-7. 10A1 and Fe-25Cr-20Ni-4. 68Al are only 20.83% and 45.83% of that of Fe-25Cr-20Ni, respectively. Heat-resistant steels with higher contents of Al (4.72% and 7.10%) have higher hardness than those with lower contents of Al (1.68% and 0). Wear mechanisms of ZG40Cr25Ni20 are considered as severe plough plastic deformation and slight adhesive. However, wear mechanisms of Fe-25Cr-20Ni-4. 68Al are light micro-cutting and oxidation-wear, while that of Fe-25Cr-20Ni-7. 10Al are severe adhesive transfer and oxidation-wear.
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页码:62 / 66
页数:4
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