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Influence of element Re on lattice misfits and stress rupture properties of single crystal nickel-based superalloys

机译:稀土元素对单晶镍基高温合金晶格失配和应力断裂性能的影响

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摘要

By means of the measurement of XRD curves and SEM, TEM observation, an investigation has been made into the influence of the element Re on lattice misfits and stress rupture properties of single crystal nickel-based superalloys. Results show that the bigger lattice parameters and misfit appear in 2% Re as-cast single crystal nickel-based superalloy due to the composition segregation and non-homogeneous distribution of the γ' phase in size. After the alloy is fully heat treated, the cubical γ' phase is coherently precipitated in the γ matrix phase, and the parameters and misfit of γ',γ phases decreases slightly. During the stress/stress-free aging, the coarsening of γ' phase occurs and the dislocation networks appear in the interfaces of theγ'/γ phases, which increases slightly the parameters and misfit of γ',γ phases. Compared to the γ matrix phase, the γ' phase has a smaller thermal dilation coefficient due to the smaller thermal capacity and the stronger combined force between the atoms, which increases the misfit between the parameters of γ' and γ phases in the alloy at the elevated temperature. The parameters of γ',γ phases in the alloys increase with the element Re content, and compared with the parameter of γ phase, the one of γ' phase increases to a bigger extent. Therefore, the misfits and mismatch stress of theγ'/γ interfaces in the alloys decrease with the increase of the element Re content, which reduces the rafted rate of γ' phase during stress aging and improves the stress rupture life of the alloys in the ranges of high temperature.
机译:通过XRD曲线的测量和SEM,TEM的观察,研究了Re元素对单晶镍基高温合金晶格失配和应力断裂性能的影响。结果表明,由于γ'相的成分偏析和非均匀分布,在2%Re铸造的单晶镍基高温合金中出现了较大的晶格参数和失配。合金经过充分热处理后,立方相γ'相在γ基体相中相干地析出,并且γ',γ相的参数和失配略有降低。在无应力/无应力时效过程中,γ'相发生了粗大化,并且在γ'/γ相的界面上出现了位错网络,这稍微增加了γ',γ相的参数和失配。与γ基相相比,由于较小的热容和较强的原子间合力,γ'相的热膨胀系数较小,这会增加合金中γ'和γ相参数之间的失配。高温。合金中γ',γ相的参数随稀土元素Re含量的增加而增加,与γ相的参数相比,γ'相之一的增加幅度更大。因此,随着元素Re含量的增加,合金中γ'/γ界面的失配应力和失配应力减小,从而降低了应力时效过程中γ'相的逸出速率,提高了合金在一定范围内的应力断裂寿命。高温。

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