Raspberry pie control based management system for medical waste temporary storage site
A technology of medical waste and management system, which is applied in the field of temporary storage management of medical waste, can solve the problems of inconvenient medical waste traceability inquiry, affecting the efficiency of recycling work, and cross-infection of viruses in departments, so as to improve the efficiency of recycling work, avoid cross-infection of viruses, The effect of preventing cross-infection
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Embodiment 1
[0064]Example 1, based on the specific step of printing and posted label 4, in order to adsorb the label 4 on the lower side of the push block 1054, the operation of the label 4 has better stability;
[0065]Such asFigure 9-10As shown, the inside of the push block 1054 is provided with a vacuum chamber 7, a piston head 8, a piston rod 9, a wedge block 10, a hole groove 11, a first spring 12, and a piston head 8 drives sliding through the piston rod 9. The inside of the vacuum chamber 7, the bottom of the vacuum chamber 7 is provided with a through hole for adsorbing the label 4, the hole groove 11 is opened on the upper end of the piston rod 9, and the wedge block 10 is slid in the push block 1054 in the push block 1054 (wedge shape) The upper plane of the block 10 is coupled to the side wall of the hole groove 11, and the wedge block 10 is fixed), at which time the wedge block 10 drives the piston rod 9 to slide up, causing the lower vacuum cavity 7 of the piston head 8 to produce a p...
Embodiment 2
[0066]Example 2, on the basis of Example 1, in order to make the label 4 stabilized in the surface of irregular (uneven) medical waste;
[0067]The apparatus also has a telescopic rod 14, a chute, a drive rod 16, and a second spring 17; the telescoping rod 14 is slidably coupled to the lower side of the piston head 8 through the second spring 17, and the number of telescopic rods 14 is plural. The slant groove 15 is opened on the side wall of the wedge block 10, and the drive rod 16 is slidably coupled to the inside of the push block 1054, and the upper end of the drive rod 16 is slidably coupled to the inside of the chute 15, and the lower end of the drive rod 16 penetrates the push block 1054. Side wall, when the cylinder 1053 drives the push block 1054 to slide down, the wedge block 10 is in the state within the indent push block 1054 (egFigure 11 As shown, at this time, the upper end of the drive rod 16 is in the lower end of the chute tank 15, the lower end of the drive rod 16 is ...
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