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低溫下Fe-69.7%Cr合金α'相的穆斯堡爾譜

M?ssbauer Spectroscopy of α'-Phase of Fe- 69.7%Cr Alloy at Low Temperature

  • 摘要: Fe-69.7%(atom)Cr合金經500℃時效4年后,獲得單一α'相結構,并測定了它在低溫下合金的穆斯堡爾譜。結果表明:在室溫300K穆斯堡爾譜為一單線洛侖茲線型,降低溫度其半寬度也隨著展寬,在77K時超精細場達3072.20kA/m;超精細場數值隨溫度降低而增大,其變化規律與順磁體模型理論值變化曲線相似,說明α'相在77K以上為一順磁質,從1200℃至室溫通過變溫熱循環加速了Cr句晶界擴散以及順磁α'相在Fe-24.6%Cr-5.0%Al合金中析出,并導致合金脆化。

     

    Abstract: A α'-phase structure is got after Fe-69.7%(atom)Cr alloy aging for four years at 500℃. Its M?ssbauer spectrum characteristic is determined. The results indicate the M?ssbauer spectrum obtained at 300 K is a pure Lorentzian lineshape, the overall width of composite absorbed spectrum increases considerable with temperature droping, and the range of superfine field reaches about 3 072.20kA/m at 77 K. The behaviour of superfine field is similar to that of ideal paramagnetic model. This phenomenon demonstrates that the α'-phase is a paramagnet above 77K. By thermal cycling treatment from 1200℃ to room temperature, a considerable acceleration of Cr atom diffusion to grain boundaries and α'-phase precipitation in Fe-24.6%Cr-5%Al alloy occurres, and which cause the alloy embrittlement.

     

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