详细信息

800H合金“异常”蠕变行为及影响研究    

Study on anomalous creep behavior of 800H alloy and its influence

文献类型:期刊文献

中文题名:800H合金“异常”蠕变行为及影响研究

英文题名:Study on anomalous creep behavior of 800H alloy and its influence

作者:王庆武[1];李旭[1,2];王苗苗[1];刘协文[3];吕典[3];詹英杰[1];魏文斌[1];杨鹏[1];朱武军[3];赵鹏[3];项延训[3]

机构:[1]华能核能技术研究院有限公司,上海200126;[2]四川大学原子核科学技术研究所辐射物理及技术教育部重点实验室,四川成都610064;[3]华东理工大学机械与动力工程学院,上海200237

年份:2026

卷号:55

期号:4

起止页码:183

中文期刊名:热力发电

外文期刊名:Thermal Power Generation

收录:;北大核心:【北大核心2023】;

基金:国家重点研发计划项目(2022YFB3707204)。

语种:中文

中文关键词:800H合金;蠕变速率;Monkman-Grant关系;应力指数

外文关键词:800H alloy;creep rate;Monkman-Grant relationship;stress exponent

摘要:800H合金是高温气冷堆蒸汽发生器主蒸汽联箱的关键材料,在高温高压的长期服役条件下易发生蠕变损伤与失效。通过在不同温度与应力条件下进行800H合金的拉伸与蠕变试验,系统获取了其力学性能参数及蠕变曲线。结果表明,该合金在蠕变初期存在蠕变速率先减小后增大的“异常”行为,且该现象在低应力条件下更明显。通过Monkman-Grant关系与应力指数法,确定了考虑“异常”蠕变行为后的真实稳态蠕变速率。进一步研究发现,该“异常”蠕变行为显著降低了蠕变速率,并影响后续蠕变过程。通过定量分析发现,异常点蠕变速率随温度升高和应力增大而升高,异常持续时间占比则随应力增大而增加。研究结果为深入理解800H合金的蠕变行为与强化机理提供了重要依据。
The 800H alloy is a critical high-temperature material used for the main steam header of high-temperature gas-cooled reactor steam generators and is prone to creep damage and failure under prolonged high-temperature and high-pressure service conditions.In this study,tensile and creep tests were systematically performed on 800H alloy under various temperatures and stress levels to obtain its mechanical properties and detailed creep curves.The results indicate that the alloy exhibits an anomalous creep behavior in the early stage of creep,characterized by an initial decrease followed by an increase in creep rate,which is more pronounced under lower stress conditions.The true steady-state creep rate,accounting for this anomalous behavior,was determined using the Monkman-Grant relationship in combination with stress exponent analysis.Further investigation shows that this anomalous creep behavior significantly reduces the creep rate and influences the subsequent creep process.Quantitative analysis reveals that the creep rate at the anomalous point increases with increasing temperature and stress,while the duration of the anomalous stage increases with applied stress.These findings provide valuable insights into the creep behavior and strengthening mechanisms of the 800H alloy.

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