首页> 外文期刊>Journal of Materials Engineering and Performance >Effects of Ce on DO3-Ordered Phase, Coincident Site Lattice Grain Boundary and Plastic Deformation of Fe-6.9 Wt.%Si Alloy
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Effects of Ce on DO3-Ordered Phase, Coincident Site Lattice Grain Boundary and Plastic Deformation of Fe-6.9 Wt.%Si Alloy

机译:Ce对DO3订购相,巧合的Fe-6.9重量晶格晶界和塑性变形的影响。%Si合金

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摘要

Fe-6.9 wt.%Si steel sheets with different Ce doping were prepared by warm rolling and annealing. Fe-6.9 wt.%Si alloys' poor plasticity was mainly caused by the large amount of highly brittle DO3-ordered structure, and the significant improvement in their plastic deformation ability was found after adding rare earth Ce. The results reveal that the solid drag effect of Ce on the enhancement of dislocation slip reduces the difference of energy between antiphase boundaries and matrix and affects diffusion of Fe and Si atoms in DO3-ordered structure, hindering the nucleation and growth of DO3-ordered phases. lambda-fiber textures are transformed into stable gamma-fiber textures related to more frequency of n-ary sumation CSL boundaries because of an increment on Ce addition. The transgranular and intragranular cracks form in non-Ce-doped alloy with coarse DO3-ordered phases, and the ductile fracture zone characterized with some dimples occurs on the surface of 0.024 wt.% Ce-doped alloy, which indicates that the plastic deformation ability of Fe-6.9 wt.%Si alloy is significantly improved by rare earth Ce doping.
机译:Fe-6.9重量。通过温暖的轧制和退火制备具有不同CE掺杂的%Si钢板。 Fe-6.9重量%Si合金的可塑性主要是由大量高脆性Do3订购的结构引起的,并且在添加稀土Ce后发现了它们的塑性变形能力的显着改善。结果表明,CE对脱位率增强的固体阻力效应降低了抗血液界限和基质之间的能量差异,并影响了在DO3订购的结构中Fe和Si原子的扩散,阻碍了DO3订购阶段的成核和生长。 λ-纤维纹理被转变为与更多频率的N-ARY SUMATION CSL边界相关的稳定伽马光纤纹理,因为CE添加增加。在非Ce掺杂合金中形成具有粗DO3的阶段的晶状体和腔内裂缝,以及具有一些凹坑的延性裂缝区在0.024重量%的表面上发生。%Ce掺杂合金,这表明塑性变形能力Fe-6.9重量%。%Si合金通过稀土CE掺杂显着改善。

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