[1]贾丽娜,翁俊飞,沙江波,等.Nb-Si金属间化合物基超高温合金研究进展[J].中国材料进展,2015,(5):036-40.[doi:10.7502/j.issn.1674-3962.2015.05.08]
 JIA Lina,WENG Junfei,SHA Jiangbo,et al.A Review of Ultra High Temperature Nb-Si Based Superalloys[J].MATERIALS CHINA,2015,(5):036-40.[doi:10.7502/j.issn.1674-3962.2015.05.08]
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Nb-Si金属间化合物基超高温合金研究进展()
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中国材料进展[ISSN:1674-3962/CN:61-1473/TG]

卷:
期数:
2015年第5期
页码:
036-40
栏目:
特约研究论文
出版日期:
2015-05-31

文章信息/Info

Title:
A Review of Ultra High Temperature Nb-Si Based Superalloys
作者:
贾丽娜翁俊飞沙江波周春根张虎
北京航空航天大学材料科学与工程学院
Author(s):
JIA Lina WENG Junfei SHA Jiangbo ZHOU Chungen ZHANG Hu
School of Materials Science and Engineering, Beihang University
关键词:
Nb-Si金属间化合物基超高温合金组织特征综合性能
DOI:
10.7502/j.issn.1674-3962.2015.05.08
文献标志码:
A
摘要:
Nb-Si金属间化合物基超高温合金具有熔点高、密度低、高温强度和加工性能良好的优点,被认为是最有希望取代第三代Ni基单晶高温合金的候选材料。本文介绍了Nb-Si金属间化合物基超高温合金的典型组织特征、合金成分优化、组织控制以及组成相的作用等方面的研究进展。目前,室温韧性、高温强度和高温抗氧化性能等单项指标基本达到应用要求,但综合性能指标距航空发动机热端部件的应用要求还有较大差距。未来,在合金优化设计的基础上,如何寻求更合适的组织控制途径,实现室温韧性、高温强度和高温抗氧化性能的综合匹配,是Nb-Si金属间化合物基超高温合金发展的重要研究方向。
Abstract:
With high melting point, low density, and good high-temperature strength and processability, ultra high temperature Nb-Si intermetallic based superalloys are considered as the most promising materials for replacing the third generation of monocrystal Ni-based superalloys. This paper introduced a series of results regarding typical microstructure characteristics, alloys’ compositions optimization, microstructural control, and roles of constituent phases for Nb-Si based superalloys. Recently, some property, such as room-temperature fracture toughness, high-temperature strength, and oxidation resistance, has met the application requirements of turbine airfoil materials. However, there is still a gap between the current comprehensive properties and application requirements. In the future, based on the optimization of alloy design, how to develop a more available process for microstructural control to achieve a comprehensive combination of room-temperature fracture toughness, high-temperature strength, and oxidation resistance, is important for the development of ultra high temperature Nb-Si intermetallic based superalloys.
更新日期/Last Update: 2015-05-04