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Effect of Deformation Temperature on the Microstructure of Hard Magnetic Fecr22co15 Alloy Subjected to Tension Combined with Torsion Deformation Modes

机译:变形温度对FeCr22co15硬磁合金拉伸-扭转变形模式组织的影响

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The paper presents the results of microstructure evolution studies of hard magnetic FeCr22Co15 alloy deformed until destruction by tension and torsion in the temperature range 725-850oC. The temperatures and deformation rates resulted from the condition of superplasticity occurrence in the Fe-Cr-Co alloys. Observations of the longitudinal sections of the deformed samples in the scanning electron microscope showed the formation of a weak gradient microstructure with the highest grain refinement in the surface layer of the material. Increasing the deformation temperature from 725 to 850_C increased the homogeneity of the deformation along the tensile axis of the sample. It also brought about the increase of grain size and slight increase of the thickness of fine grains in the surface layer. The precipitation of the intermetallic σ-phase was also observed with its maximum amount in the zones of the highest deformation.
机译:本文介绍了在725-850oC的温度范围内变形的硬磁性FeCr22Co15合金直至拉伸和扭转破坏为止的显微组织演变研究的结果。温度和变形速率是由Fe-Cr-Co合金中超塑性发生的条件引起的。在扫描电子显微镜中对变形样品的纵向截面的观察表明,在材料的表面层中形成了具有最高晶粒细化度的弱梯度微观结构。将变形温度从725增加到850_C会增加沿样品拉伸轴变形的均匀性。这也导致了表面层中晶粒尺寸的增加和细晶粒厚度的轻微增加。还观察到金属间σ相的析出,在最大变形区域中析出量最大。

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