Powder particle sorting device and sorting method
A sorting device and particle technology, used in solid separation, chemical instruments and methods, classification, etc., can solve the problems of small investment, large processing capacity, poor sanitary conditions, etc., and achieve the advantages of reducing friction, efficient separation, and equipment protection. Effect
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Embodiment 1
[0067] This embodiment relates to the sorting of glass microsphere particles:
[0068] In this example, two kinds of glass beads with different particle sizes (>148μm and figure 1 The device shown performs particle sorting. The structure of the sorting device adopted is as follows: the storage bin 1 is a conical structure with a height of 120mm, a half top angle of 30°, and an outlet diameter of 10mm. Inclined plate 2 is 478mm in length and 15mm in width, and the angle between it and the horizontal plane (inclination angle of inclined plate ) is 15°, and the internal friction angle of glass beads is 23.2°. The mixed particles (powder particles 9) flow out from the storage bin 1, and first form an accumulation layer 5 on the swash plate 2, and then the powder particles flowing out flow on the accumulation layer 5, and form a fluidized layer 4 with a thickness of 7.0 mm. The surface velocity of the fluidized layer 4 is 1.296m / s, gradually decreasing to the bottom surface velo...
Embodiment 2
[0071] This embodiment relates to the separation of pulverized coal particles:
[0072] In this example, two coal powders with different particle sizes (>258μm and figure 1 The device shown performs particle sorting. The structure of the sorting device adopted is as follows: the storage bin 1 is a conical structure with a height of 120mm, a half top angle of 30°, and an outlet diameter of 10mm. The slant plate 2 is 478mm long and 15mm wide, and the angle between it and the horizontal plane (the inclination angle of the slant plate ) is 25°, and the internal friction angle of coal powder particles is 33°. The mixed particles (powder particles 9) flow out from the storage bin 1, and firstly form an accumulation layer 5 on the inclined plate 2, and the powder particles flowing out subsequently flow on the accumulation layer 5, forming an upper layer dominated by large particles and a lower layer composed of small particles. A fluidized bed 4 with a thickness of about 6.0 mm ma...
Embodiment 3
[0075] This embodiment relates to the secondary sorting of pulverized coal particles:
[0076] The powder particle that obtains in receiving bin A, B in embodiment 2 adopts such as figure 2 The schematic flow chart shown is for secondary sorting to obtain products with better sorting effects.
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