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铼在镍基单晶高温合金中的作用 被引量:4

Nickel-Based Single Crystal Superalloys with Different Rhenium Contents
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摘要 镍基单晶高温合金因其优异的高温强度和良好的组织稳定性,广泛应用于航空航天领域。为了提高其承温能力,自第二代开始镍基单晶高温合金中便加入了铼(Re)。经过几十年的发展,镍基单晶高温合金已经发展到第七代,Re已经成为了先进镍基单晶高温合金中不可缺少的元素。简述了镍基单晶高温合金的发展历程,综述了Re对镍基单晶高温合金显微组织、蠕变性能、高温氧化性能和热腐蚀性能的影响,分别从直接作用和间接作用两个角度对Re作用机制进行了着重探讨,并分析了Re在γ基体中的分布形式、Re对γ/γ’两相界面错配度的影响、Re对合金元素分配比的影响以及氧化热腐蚀环境下Re对氧化膜粘附性、氧化膜致密性以及元素活度的影响。最后,对镍基单晶高温合金的成分优化、新材料研发手段等进行了展望,以期为新型镍基单晶高温合金的研发以及含Re镍基单晶高温合金的应用提供理论依据。 Nickel-based single crystal superalloys were widely used in modern aero-engine turbines and large industrial gas turbins due to their excellent mechanical properties and outstanding oxidation and hot corrosion resistance. The continuous demand of the gas turbine engine manufacturers for an increasing turbine inlet temperature had pushed the alloy designers to develop superalloys with higher mechanical strength. Re was a crucial element in the history of single crystal superalloy development. In this article,the development history of nickel-based single crystal superalloys was briefly described,the role of Re in nickel-based single crystal superalloys,including its directly and indirectly effects on the microstructure,creep property,high temperature oxidation and hot corrosion behavior were reviewed. It was found that Re addition gathered mainly in the γ matrix and its solubility in the γ’ phase was very low,in spite of that there was still controversy on Re distribution in γ:in the form of Re-clusters,or in the γ/γ’ interface,or distributed uniformly in γ. The addition of Re had two main influences on the alloy microstructure. On the one hand,Re addition affected the growth rate and morphology evolution of γ’ phase at high temperature. The addition of a certain amount of Re delayed the coarsening of γ’ and maintained the cubic morphology of them. On the other hand,Re addition changed the distribution ratio of other elements in γ phase and γ’ phase. Re promoted the distribution of Al into the γ’ phase,and the distribution of Cr,Ta and W into the γ matrix. The altered distribution ratio also affected the morphology of γ’. Re addition significantly improved the creep performance of single crystal superalloys. The size,shape and morphology of γ’ phase during long-term service were the main factors that influenced the mechanical property of nickel-based superalloys. The following mechanisms were put forward to explaining the improved creep performance by Re addition:(1)distribution of Re in γ phase caused solid solution strengthening of the substrate,(2)Re changed the γ/γ’ lattice misfit to more negative value,(3)large atomic radius of Re lowered down the diffusion rate of other elements,retarded the dislocation motion and coarsening of γ’,(4)Re clusters acted as obstacles of dislocation movement and put off the γ’ rafting,(5)Re segregation strengthened the γ/γ’ interface. The interfaces decorated with higher Re concentration had higher density of dislocation network and could effectively prevent the shearing of the dislocations. The mechanisms,however,still remained controversial. For coatings,the oxidation rate constant was reduced and the oxidation resistance was significantly improved with an appropriate amount of Re addition.The possible mechanisms were reduced depletion rate of β-NiAl,improved stability of α-Cr and subsequent increased adhesion between the protective α-Al2O3 scale and the substrate,and enhanced transformation rate from θ-Al2O3 to α-Al2O3. For bare superalloys,beneficial and deteriorated effects of Re addition were both reported. The deteriorated effect was supported by observation of discontinuous or porous α-Al2O3 scale caused by aggravated micro-segregation of Al elements or formation of volatile Re2O7 raised by Re addition. The opposite results,however,were reported by other researchers. It was probably because Re could slow down the diffusion rate of Cr in the alloy,promote the formation of continuous α-Al2O3 scale,and inhibit the formation of nitrides in the alloy. The Cr2O3 scale formed on alloys with high Re content was denser than that on Re-free alloys. Moreover,Re promoted the formation of TiO2 and NiTiO3. The reason was probably attributed to the increased activities of elements Cr and Ti caused by the Re addition,which allowed more Cr to diffuse outward to heal the cracks in the protective scale. However,the distribution of Re in the alloys and its mechanisms on the properties still requires in-depth research. The effect of Re addition,the optimization of Re alloying,the interaction of Re and other elements and the development of new Re-bearing alloys were still the direction of numerous researchers.Computer-assisted method and high-throughput method were prospected to provide more effective ways for single crystal superalloy research and development.
作者 冯文昊 常剑秀 朱世东 Feng Wenhao;Chang Jianxiu;Zhu Shidong(College of Materials Science and Engineering,Xi'an Shiyou University,Xi'an 710065,China;Shaanxi Key Lab-oratory.of Environmental Plluion Control Technology and Reseroir Protection of Oil Field,Xi'an 710065,China)
出处 《稀有金属》 EI CAS CSCD 北大核心 2021年第3期353-362,共10页 Chinese Journal of Rare Metals
基金 国家自然科学基金项目(51901179,51974245,21808182) 国家科技重大专项(2017-VI-0019-0019) 陕西省重点研发项目(2020GY234) 陕西省自然科学基金项目(2018JQ5198,2019JM472,2019JM506) 研究生创新与实践能力培养计划项目(YCS20113055)资助。
关键词 镍基高温合金 蠕变性能 高温氧化 热腐蚀 nickel-based single crystal superalloys rhenium creep property high temperature oxidation hot corrosion
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