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Densification of Nd-Fe-B Powders by Hydrostatic Extrusion

机译:静压挤压致密钕铁硼粉末

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Hydrostatic extrusion is a modern method of densifying materials. This method is rapid and permits extruding materials of various properties. In the present experiments, Nd-Fe-B powder, provided by Magnequench, was subjected to densification by hot pressing and subsequent hydrostatic extrusion. The powder was initially pressed mechanically and subsequently placed in a copper capsule. The densification was conducted at room temperature and at temperatures above and below the melting point of the Nd-rich phase (T (_{Nd}) ), respectively. When densified at a temperature below T (_{Nd}) , the sample was strongly porous and the powder particles were not well bonded, whereas at the temperature above T (_{Nd}) the interparticle bonds were good. In scanning electron microscopy images we can see solid regions which are fragments of the starting powder particles and, between them, porous regions which also contain small fragments of the powder particles. It seems that, during the deformation, the surface layer of the polycrystalline powder particles is segmented into smaller particles. After the extrusion new regions appear, containing the Nd-rich phase which has been forced out from the intergranular spaces just as it is the case of die-upset forging. The extrusion, even at room temperature, affects the magnetic properties of the material, whereas when conducted at higher temperatures, it resulted in a slight decrease of the coercivity. This can be due to the grains growth when the powder is heated prior to extrusion. No anisotropy of the magnetic properties was observed in the extruded materials.
机译:静液压挤出是一种致密化材料的现代方法。该方法是快速的并且允许挤出各种性质的材料。在本实验中,由Magnequench提供的Nd-Fe-B粉末通过热压和随后的静液压挤出进行致密化。首先将粉末机械挤压,然后放入铜胶囊中。致密化是在室温下以及在富Nd相的熔点以上和以下的温度下进行的(T (_ {Nd}) )。当在低于T (_ {Nd}) 的温度下致密时,样品具有很强的多孔性,并且粉末颗粒它们之间的键合不好,而在高于T (_ {Nd}) 的温度下,粒子间键良好。在扫描电子显微镜图像中,我们可以看到作为起始粉末颗粒碎片的固体区域,以及在它们之间的多孔区域,其中也包含粉末粉末的小碎片。似乎在变形期间,多晶粉末颗粒的表面层被分割成较小的颗粒。挤出后出现新区域,其中包含富Nd相,它已从模间锻造中被迫从晶间空间中挤出。即使在室温下,挤出也会影响材料的磁性能,而在较高温度下进行挤出,则会导致矫顽力略有下降。这可能是由于在挤出前加热粉末时晶粒长大所致。在挤压材料中没有观察到磁性能的各向异性。

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