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Microstructure Evolution and Some Properties of Hard Magnetic FeCr30Co8 Alloy Subjected to Torsion Combined with Tension

机译:FeCr30Co8硬磁合金扭转拉伸微观组织演变及其性能。

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摘要

The hard magnetic alloy FeCr30Co8 alloy was subjected to severe plastic deformation (SPD) by torsion combined with tension in the temperature range of 750 °C to 850 °C. This range of deformation temperatures corresponds to the α solid solution on the Fe–Cr–Co phase diagram. The study of the alloy after SPD by means of X-ray diffraction (XRD) and scanning and transmission electron microscopy techniques showed the formation of a gradient microstructure with fine grain size in the surface layer and precipitation of the hard intermetallic σ-phase. Next, the magnetic and mechanical properties of the deformed alloy after short annealing at 1000 °C and magnetic treatment were studied. A slight decrease in coercive force was found, along with a significant gain in plasticity and strength. The effective deformation temperature was determined to obtain the optimal magnetic and mechanical characteristics of the alloy. This method of deformation can be applied for the improvement of the mechanical properties of some magnets (high-speed rotors) which should have good magnetic properties within their volume while maintaining good mechanical properties on the surface.
机译:硬磁性合金FeCr30Co8合金在750°C至850°C的温度范围内,通过扭力和张力经受严重的塑性变形(SPD)。此变形温度范围对应于Fe–Cr–Co相图上的α固溶体。通过X射线衍射(XRD)以及扫描和透射电子显微镜技术对SPD之后的合金进行的研究表明,在表面层中形成了具有细晶粒尺寸的梯度微观结构,并且析出了硬金属间σ相。接下来,研究了在1000°C短时间退火和磁化处理后的变形合金的磁性和机械性能。发现矫顽力略有下降,同时塑性和强度也显着提高。确定有效变形温度以获得合金的最佳磁性和机械特性。这种变形方法可用于改善某些磁体(高速转子)的机械性能,这些磁体应在其体积内具有良好的磁性,同时在表面上保持良好的机械性能。

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