A washing and drying equipment for latex pillow production and processing
A technology for drying equipment and latex pillows, applied in lighting and heating equipment, drying, dryers and other directions, can solve problems such as poor effect and high energy consumption, improve treatment quality, improve drying efficiency, and achieve recycling The effect of using
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Embodiment
[0032] refer to Figure 1-6, a kind of cleaning and drying equipment for the production and processing of latex pillows, comprising a cleaning box 1, a dehydration box 2 and a drying box 3, a plurality of brackets 4 are fixed on the bottom of the dehydration box 2, and a base 5 is fixed on the bottom of the plurality of brackets 4 , the upper end of the drying box 3 is provided with a loam cake 6 for sealing, the outer wall of the dehydration box 2 and the drying box 3 is jointly fixed with a heating box 7, the bottom of the dehydration box 2 is fixed with a motor 8, and the output shaft of the motor 8 is fixed with a Drive shaft 9, a rotating plate 10 is fixed on the upper end of the driving shaft 9, and the upper end of the rotating plate 10 is provided with a reverse propulsion mechanism. The upper end of the swivel ring 11 is fixed with a dehydration net 12 and an isolation ring 13, the side wall of the isolation ring 13 is provided with an extrusion mechanism, the inner w...
Embodiment 2
[0043] refer to Figure 7-8 The difference between this embodiment and Embodiment 1 is that an automatic pumping mechanism is added, the lower side wall of the dehydration tank 2 is provided with an automatic pumping mechanism, and the automatic pumping mechanism includes a pumping sleeve inserted through the side wall of the dehydration tank 2 36. The pumping sleeve 36 runs through the side wall of the heating box 7 and communicates with the inside of the heating box 7. The upper end of the pumping sleeve 36 is provided with a plurality of water replenishment holes 40 communicating with the interior of the water storage tank 14. The inner wall of the pumping sleeve 36 passes through the pump Sending spring 37 is connected with push plate 38, and one end of push plate 38 away from pumping spring 37 is fixed with top block 39, and push plate 38 is connected with the inwall seal sliding of pumping sleeve 36, and the circumferential side wall of drive shaft 9 is fixed with two A ...
Embodiment 3
[0046] refer to Figure 7-9 The difference between this embodiment and Embodiment 1 and Embodiment 2 is that a stabilizing mechanism is added and an automatic pumping mechanism is improved. The upper end of the base 5 is provided with a stabilizing mechanism, and the stabilizing mechanism includes a pumping box 42 fixed on the upper end of the base 5 The inner wall of the pump air box 42 is sealed and slidably connected with a piston block 44, and the upper end of the piston block 44 and the inner top of the pump air box 42 are jointly fixed with a return spring 43, and the upper end of the piston block 44 is penetrated with a transfer hole 45, and the pump air box The bottom of 42 is provided with a suction hole 46, and the upper end of the pump air box 42 is provided with a discharge hole 47. The inside of the suction hole 46 and the transfer hole 45 are provided with check valves to ensure effective suction and exhaust. A rotating rod 41 is a permanent magnet, and the top b...
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