刘新星, 龚巍, 饶立文, 严靖博, 刘鹏, 程义. 长时热暴露对镍铁基高温合金GH2070P组织和性能的影响[J]. 钢管, 2024, 53(3): 19-23. DOI: 10.19938/j.steelpipe.1001-2311.2024.3.19.23
    引用本文: 刘新星, 龚巍, 饶立文, 严靖博, 刘鹏, 程义. 长时热暴露对镍铁基高温合金GH2070P组织和性能的影响[J]. 钢管, 2024, 53(3): 19-23. DOI: 10.19938/j.steelpipe.1001-2311.2024.3.19.23
    LIU Xinxing, GONG Wei, RAO Liwen, YAN Jingbo, LIU Peng, CHENG Yi. Effect of Long-term Thermal Exposure on Microstructure and Performance of GH2070P Ferronickel-based Hi-temperature Alloy[J]. STEEL PIPE, 2024, 53(3): 19-23. DOI: 10.19938/j.steelpipe.1001-2311.2024.3.19.23
    Citation: LIU Xinxing, GONG Wei, RAO Liwen, YAN Jingbo, LIU Peng, CHENG Yi. Effect of Long-term Thermal Exposure on Microstructure and Performance of GH2070P Ferronickel-based Hi-temperature Alloy[J]. STEEL PIPE, 2024, 53(3): 19-23. DOI: 10.19938/j.steelpipe.1001-2311.2024.3.19.23

    长时热暴露对镍铁基高温合金GH2070P组织和性能的影响

    Effect of Long-term Thermal Exposure on Microstructure and Performance of GH2070P Ferronickel-based Hi-temperature Alloy

    • 摘要: 对650℃参数锅炉用关键候选材料GH2070P镍铁基高温合金管在675℃进行1 000、3 000 h和5 000 h的高温热暴露试验,对合金热暴露后的力学性能和微观组织演变情况进行分析。分析发现,GH2070P合金管在675℃高温热暴露1 000 h后,晶内析出γ'相析出物,晶界析出M23C6型碳化物,合金室温拉伸强度、屈服强度和硬度明显增高,冲击韧性下降;随着热暴露时间继续增加至5 000 h,γ'相尺寸发生粗化,γ'相的粗化符合LSW粗化理论,M23C6型碳化物尺寸略有增加,但仍断续分布在晶界处,未形成网状结构,合金室温拉伸强度、屈服强度和硬度稳定保持在较高的水平,冲击韧性下降速度减缓。

       

      Abstract: The thermal exposure tests at 675℃ and for 1 000,3 000 h and 5 000 h respectively are conducted to the GH2070P ferronickel-based hi-temperature alloy tube as key candidate material for the boiler with 675℃ parameter,and the post thermal exposure mechanical properties and microstructure evolutions of the alloy are investigated. The facts as follows are revealed with the alloy tube as thermal exposed at 675℃ and for 1 000 hours. The γ' phase is precipitated in grain and the M23C6 carbide phase is precipitated at grain boundary;the ambient temperature tensile strength,the yield strength and the hardness of the alloy are obviously increased,whereas it’s impact toughness goes down;along with the increase of thermal exposure time going up to 5 000 h,the size of the γ' phase is coarsened,which is in alignment with the LSW coarsening theory;and the size of the M23C6 carbides are increased slightly,but are still presenting an intermittent distribution state at the grain boundary,and no network structure is formed;In general the ambient temperature tensile strength,the yield strength and the hardness of the alloy consistently keep at a rather high level,while its impact toughness reduction speed is getting slow.

       

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