Dual-power screen-free intelligent nano sand mill
A screenless, dual-power technology, applied in grain processing and other directions, can solve the problems of low production efficiency, easy blockage of the discharge port, and poor separation effect.
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Embodiment 1
[0045] Such as Figure 1-2 As shown, the dual-power non-sieve intelligent nano-sand mill includes: frame 1; Feed port 3;
[0046]The rotary separation assembly includes a first driving mechanism, a main shaft 4, and several first rod pins 5; one end of the main shaft 4 penetrates the grinding cylinder 2 horizontally and one end extends into the grinding cylinder 2 and is driven to rotate by the first driving mechanism; several first pins A rod pin 5 is evenly distributed on the outer wall of the main shaft 4 in the grinding cylinder 2; the rotating discharge assembly includes a second drive mechanism, a discharge shaft 7 with a discharge channel 71 inside, a separator 8, and several second rod pins 9. The end of the discharge shaft 7 away from the grinding cylinder 2 is provided with a discharge port 14, and the discharge port 14 is provided with a mechanical seal 16. The mechanical seal 16 is used to connect the discharge connection port 15, etc., to ensure the sealing effec...
Embodiment 2
[0057] The material is discharged directly without passing the test when it is discharged. Therefore, when the equipment failure or some other reasons cause insufficient grinding of the material, the material that does not meet the grinding requirements will be directly discharged for use, so that it cannot be guaranteed that all discharged materials are qualified. For For this technical problem, the following implementation methods are proposed now;
[0058] Such as image 3 As shown, the grinding cylinder 2 is provided with a processor, and the processor is connected to a particle size detection module and a storage module for communication;
[0059] The particle size detection module is used to detect the particle diameter of the discharged material, randomly select several materials and mark the extracted material as the detection material i, i=1, 2,..., n, obtain the particle diameter value of the detection material i and Marked as LJi; the particle size threshold LJmax ...
Embodiment 3
[0062] In the above-mentioned embodiment, the material particle size detection process is disclosed. When abnormal grinding occurs, maintenance is required. However, during maintenance, it is necessary to troubleshoot the equipment. The troubleshooting process needs to be shut down. Therefore, when a fault occurs, the equipment Being unable to work for a long time affects the processing efficiency of the equipment as a whole.
[0063] Such as Figure 4 As shown, the processor is also connected with an equipment detection module for communication. The equipment detection module includes a grinding time analysis unit and a rotational speed detection unit. After receiving the unqualified grinding signal, the processor sends a detection signal to the equipment detection module, and the equipment detection module receives the detection signal Finally, the running status of the equipment is detected by the grinding time analysis unit and the speed detection unit;
[0064] The rotat...
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