Multilevel quenching collecting device for producing NdFeB magnetic powder
A collection device, NdFeB technology, applied in the direction of magnetic materials, magnetic objects, electrical components, etc., can solve problems such as poor performance and consistency, inability to carry out long-term continuous production, etc., to improve production efficiency and profitability, Suppression of the formation of unfavorable phases and the effect of fine grain size
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Embodiment 1
[0018] Embodiment 1, the present invention comprises nozzle 1, molybdenum wheel 2, feed barrel 3, primary cooling plate 4, secondary cooling plate 5, tertiary cooling plate 6, after incoming material enters material barrel 3, in primary cooling plate 4, The flow between the secondary cooling plate 5, the tertiary cooling plate 6 and the barrel wall of the barrel 3, the molybdenum wheel 2 is installed under the nozzle 1, and the incoming material is sprayed downward from the nozzle 1 to the molybdenum wheel 2, and the incoming material is generally 1300°C The rotating molybdenum wheel 2 continuously throws the incoming material sprayed from above, and the incoming material will infiltrate a small amount of molybdenum Mo when it comes into contact with the molybdenum wheel 2. Adding molybdenum to the material can improve the elastic limit, corrosion resistance and maintain Permanent magnetism, the incoming material is initially cooled down during this process to form a high-tempe...
Embodiment 2
[0019] Embodiment 2, the inside of the first-stage cooling plate 4 is provided with a cavity for heat exchange and a cooling plate water outlet 41 and a cooling plate water inlet 42 communicating with the cavity, and continuously circulates and injects cooling water for heat exchange. The cooling plate 4 is maintained at a lower temperature. refer to Figure 1 to Figure 5 , all the other are with embodiment 1.
Embodiment 3
[0020] Embodiment 3, in the present invention, a cavity for heat exchange and a water inlet and a water outlet of the cooling plate communicated with the cavity can also be respectively provided inside the secondary cooling plate 5 and the tertiary cooling plate 6, and the cooling water can be continuously circulated and injected. Heat exchange is performed to maintain the primary cooling plate 4 at a lower temperature. refer to Figure 1 to Figure 5 , and the rest are the same as the above-mentioned embodiment.
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