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超超临界锅炉过热器管材的高温组织稳定性及其改进研究 被引量:14
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作者 赵双群 谢锡善 《材料导报》 EI CAS CSCD 2004年第8期131-133,共3页
采用高温长期时效的方法研究了一种在700℃/375bar蒸气参数条件下作为过热器管材使用的镍基高温合金的组织稳定性,得出合金的组织不稳定性主要体现在γ′的粗化、η相的形成和晶界G相的析出。进而采用Thermo-Calc理论计算和分析,提出了... 采用高温长期时效的方法研究了一种在700℃/375bar蒸气参数条件下作为过热器管材使用的镍基高温合金的组织稳定性,得出合金的组织不稳定性主要体现在γ′的粗化、η相的形成和晶界G相的析出。进而采用Thermo-Calc理论计算和分析,提出了通过调整Al、Ti和Si含量来改善组织稳定性的方法。 展开更多
关键词 超超临界锅炉 过热器管 高温组织稳定性 镍基高温合金 热力学
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Effect of Nb content on microstructure stability and stress rupture properties of single crystal superalloy containing Re and Ru 被引量:1
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作者 史振学 刘世忠 +2 位作者 岳晓岱 王效光 李嘉荣 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第6期1293-1300,共8页
Three experimental single crystal superalloys with 0%Nb,0.5%Nb,1.0%Nb were cast in the directionally solidified furnace,while other alloying element contents were basically kept unchanged.The effect of Nb on the micro... Three experimental single crystal superalloys with 0%Nb,0.5%Nb,1.0%Nb were cast in the directionally solidified furnace,while other alloying element contents were basically kept unchanged.The effect of Nb on the microstructure,stability at1100°C and stress rupture properties at 1070°C and 160 MPa of the single crystal superalloy were investigated.The experiment results show that the primary dendrite arm spacing decreases and the volume fraction ofγ/γ′eutectic of the alloy increases with the increase of Nb content in the as-cast microstructures.The size ofγ′phase particles becomes small and uniform and the cubic shape does not obviously change with the increase of Nb content.The precipitating rate and volume fraction of TCP phases increase significantly with the increase of Nb content in the process of long term aging at 1100°C.The stress rupture lives increase and elongation decreases with increasing Nb content at 1070°C/160 MPa.At last,the relationship between the microstructures stability,stress rupture properties of the alloy and Nb content is discussed based on JMat Pro software and the lastest relevant database for single crystal superalloy. 展开更多
关键词 single crystal superalloy NB microstructure stability long-term aging stress rupture properties
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