Preparation method for cold crucible for directionally solidifying neodymium iron boron cast ingot
A directional solidification, neodymium iron boron technology, applied in the direction of self-solidification, crucible furnace, chemical instruments and methods, etc., can solve the problem of low magnetic properties, achieve the effect of improving performance and reducing melt pollution
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Embodiment 1
[0038] The method of the present invention is completed by an electromagnetic cold crucible constrained forming and directional solidification equipment, which mainly includes the following components: (1) electromagnetic field melting system; (2) motion system; (3) vacuum system; (4) cooling system; (5) Control system. Among them, the electromagnetic field melting system mainly includes water-cooled copper crucible and induction coil. The cooling system mainly includes water cooling of the crucible and furnace body and the cooling of the NdFeB alloy by Ga-In cooling liquid during the solidification process. They and the motion system together constitute the entire equipment The main part is the forming crystal part; the true control system consists of a diffusion pump, a vacuum pump, and a vacuum chamber; the control system is responsible for accurately controlling parameters such as heating power, vacuum degree, and moving speed of the upper and lower rods during the direction...
Embodiment 2
[0068] The difference between this embodiment and the first embodiment is that the water-cooled copper crucible used in the method of this embodiment is provided with a trapezoidal boss 13 on its inner wall, such as Figure 14 As shown, the trapezoidal boss is placed in the induction area of the induction coil, the trapezoidal boss has an upper inclined surface and a lower inclined surface, and the angle between the upper inclined surface, the lower inclined surface and the horizontal plane is 45° Of course, it can also be set to 30 degrees, 45 degrees, 50 degrees or 60 degrees as required, and the inclination of the upper and lower inclined surfaces may be equal or different. The upper inclined surface will generate upward thrust, increase the quality of the melting zone, provide a large volume of melt, reduce the disturbance of the lower liquid hump, and improve the surface quality of the ingot.
[0069] The downward inclined surface will produce downward pressure on the dripp...
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Abstract
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