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国内外P92钢短时高温拉伸性能及断口形貌分析 被引量:2
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作者 赵勇桃 杜红强 +2 位作者 田钰鹏 鲁海涛 姜亚君 《内蒙古科技大学学报》 CAS 2020年第2期145-148,共4页
P92钢因良好的综合性能常被用于锅炉高温部件,其高温力学性能高低直接影响使用寿命.针对此,对国内外P92钢进行400~650℃短时高温拉伸实验,并分析国内外材料的高温力学性能及断裂机制.结果表明,相同拉伸温度下,国外材料比国内材料的强度... P92钢因良好的综合性能常被用于锅炉高温部件,其高温力学性能高低直接影响使用寿命.针对此,对国内外P92钢进行400~650℃短时高温拉伸实验,并分析国内外材料的高温力学性能及断裂机制.结果表明,相同拉伸温度下,国外材料比国内材料的强度稍高,塑韧性稍低.当拉伸温度为400℃时,国内外P92钢抗拉强度分别为535,573 MPa,屈服强度分别为425,465 MPa.国内外P92钢在高温拉伸时,拉伸断口中存在大量韧窝、塑孔及少量撕裂棱,断裂形式均为韧性断裂. 展开更多
关键词 国内外P92管材 短时高温拉伸 断口形貌 力学性能
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Influence of Pre-Compressive Creep on Internal Friction Stress and Creep Parameters of Nickel-Base Single Crystal Superalloys 被引量:2
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作者 Yu Xingfu Tian Sugui +3 位作者 Zhao Zhonggang du hongqiang Shang Lijuan Cui Shusen 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2009年第A03期28-32,共5页
By means of pre-compressive creep treatment, the cubic γ′ phase in a nickel base single crystal superalloy is transformed into the P-type rafted structure. And the influence of the pre-compressive creep on the inter... By means of pre-compressive creep treatment, the cubic γ′ phase in a nickel base single crystal superalloy is transformed into the P-type rafted structure. And the influence of the pre-compressive creep on the internal friction stress and creep lifetimes of the superalloy are investigated by means of the measurement of the creep curves and microstructure observation. Results show that, compared to the P-type structure alloy, the full heat treated state alloy displays a bigger internal friction stress value of dislocation motion during steady state creep and a longer creep lifetimes. The creep activation energies of the full heat treated and P-type structures alloys are measured to be 462 kJ/mol and 412 kJ/mol, respectively. Thereinto, the P-type rafted γ′ phase in the alloy is transformed into the N-type structure during tensile creep. And the N-type γ′ phase transformed from the P-type structure displays a shorter size in length, this is a main reason of the P-type structure alloy possessing a shorter creep lifetimes due to creep dislocation moving easily over the rafted γ′ phase. 展开更多
关键词 镍基单晶 合金 物理性能 结构分析
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