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Influence of Temperatures on Creep Behavior of Pt-Al Coated Third-Generation Low-Cost Single Crystal Superalloy
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作者 Zhang Ge tao xipeng +7 位作者 Syed Muhammad Abbas Jafri Wang Xinguang Zhang Song Zhang Chunhua Liang Jingjing Li Jinguo Sun Xiaofeng Zhou Yizhou 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2024年第10期2766-2776,共11页
The influence of applied temperatures on the creep rupture life of the third-generation low-cost single crystal(SX)superalloy with Pt-Al coating was evaluated.The creep damage was observed under the conditions of 1100... The influence of applied temperatures on the creep rupture life of the third-generation low-cost single crystal(SX)superalloy with Pt-Al coating was evaluated.The creep damage was observed under the conditions of 1100℃/137 MPa,1120℃/137 MPa,and 1140℃/137 MPa.Results show that the properties of bare superalloy outperform those of coated superalloy under all test conditions.The most significant reduction in creep life reaches 50%when the test condition is 1100℃/137 MPa.At higher temperatures(1120 and 1140℃),the crack propagation rate in Pt-Al coatings to SX superalloy substrate decreases,thereby reducing the degradation degree of mechanical properties.Instead of the penetration into SX substrate,tip oxidation and Al diffusion of the coating cracks cause the formation of oxides,therefore leading to the slow degradation in microstructures of the substrate beneath the coating.At 1100℃,however,the microstructure of coating/SX superalloy substrate degrades due to the Al internal diffusion.This diffusion mechanism promotes the formation of harmful topologically close packed phases around 1100℃.At 1120 and 1140℃,the dislocation of SX superalloy substrate beneath the coating is relatively unchanged,compared to that in the inner superalloy.In contrast,the dislocation network of the substrate beneath the coating becomes sparse,and the number of superdislocations cutting intoγ′phases increases at 1100℃. 展开更多
关键词 Pt-Al coating high-temperature creep single crystal superalloy crack oxidation microstructure evolution
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层错能和温度对不同Co含量的镍基高温合金蠕变性能的影响 被引量:3
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作者 田成刚 陶稀鹏 +2 位作者 徐玲 崔传勇 孙晓峰 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2021年第10期3532-3537,共6页
研究了2种不同Co含量的镍基高温合金分别在650℃/630 MPa,725℃/630 MPa和760℃/630 MPa条件下的蠕变变形组织。通过透射电镜分析了温度和层错能对蠕变变形机制的影响。结果表明,对于所选取的高温合金来说,温度的提升可以有效促使蠕变... 研究了2种不同Co含量的镍基高温合金分别在650℃/630 MPa,725℃/630 MPa和760℃/630 MPa条件下的蠕变变形组织。通过透射电镜分析了温度和层错能对蠕变变形机制的影响。结果表明,对于所选取的高温合金来说,温度的提升可以有效促使蠕变变形机制由层错转变为孪晶。这表明孪晶的形成更大程度上取决于温度。此外,合金Co含量的提升以及层错能的下降都会使层错和孪晶延伸并穿过γ基体和γ’析出相,该方式提升了材料的蠕变抗力以及蠕变寿命。 展开更多
关键词 高温合金 层错 层错能 孪晶
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