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On The Creep And Phase Stability Of Advanced Ni-base Singlerncrystal Superalloys

机译:先进的镍基单晶高温合金的蠕变和相稳定性的研究

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摘要

The present article examines microstructure stability and creep resistance of a 5th generation superalloy, which has Cr content at 4.6 wt%, 6.4 wt% Re and 5.0 wt% Ru, in comparison with that of a 4th generation superalloy (3.2 wt% Cr, 5.8 wt% Re and 3.6 wt% Ru). The aim is to elucidate the implication of increasing Cr, Re and Ru contents for future alloy developments. Experimental results have concluded that high Re + Ru content could promote formation of hexagonal 8 phase at 900℃; additional Cr and Re could enhance the precipitation of TCP phase at 1100℃. Although an increase in lattice misfit between γ and γ' in the 5th generation superalloy could strengthen the alloy against creep deformation under conditions at high temperatures (≥ 1000 ℃) and low stresses (≤ 245 MPa) whilst the microstructural stability remained, the tendency to raft should be avoided during creep at lower temperatures and higher stresses.
机译:本文研究了第五代高温合金的显微结构稳定性和抗蠕变性,与第四代高温合金(3.2 wt%Cr,5.8)相比,铬含量为4.6 wt%,Re为6.4 wt%Re和Ru为5.0 wt%Ru。重量%的Re和3.6重量%的Ru)。目的是阐明增加Cr,Re和Ru含量对未来合金开发的影响。实验结果表明,较高的Re + Ru含量可促进900℃六角形8相的形成。额外的Cr和Re可增强1100℃下TCP相的析出。尽管第5代高温合金中γ和γ'之间晶格失配的增加可以增强合金抵抗高温(≥1000℃)和低应力(≤245 MPa)条件下的蠕变变形,同时仍保持显微组织稳定性,但这种趋势倾向于在较低温度和较高应力下的蠕变过程中,应避免使用木筏。

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