Circulating type cleaning device for CIP goat milk powder production line

By designing a circulating CIP goat milk powder production line cleaning device with conveying, flushing and drying mechanisms, the problems of water stains and dumping in bottle containers are solved, and efficient cleaning and fixing effects are achieved.

CN223325188UActive Publication Date: 2025-09-12ZHONGSHI BIOTECHNOLOGY (SHANDONG) CO LTD
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Patent Information

Application Number
CN202422704423.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-09-12
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

The existing goat milk powder production line cleaning device easily causes water stains to remain after cleaning the bottle containers and is difficult to completely drain. In addition, the bottles are easily tipped over during transportation, affecting the cleaning effect.

Method used

A circulating CIP goat milk powder production line cleaning device is designed, which includes a conveying mechanism, a flushing mechanism, a pressing mechanism and a drying mechanism. The conveying mechanism drives the bottle containers to be transported, the flushing mechanism performs high-pressure spray cleaning on the bottles and drains water stains, the pressing mechanism prevents the bottles from tipping over, and the drying mechanism dries the bottles.

Benefits of technology

It effectively avoids water stains in the bottles, improves the bottle fixing effect, ensures the cleaning effect and prevents the bottles from tipping over during the conveying process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of milk powder production, in particular to a circulating type cleaning device for a CIP goat milk powder production line, which not only facilitates the washing of bottle containers and avoids the residual water spots in the bottle containers, but also improves the fixing effect of the bottle containers and avoids the toppling of the bottle containers. Comprising a working box; the device further comprises a conveying mechanism, a washing mechanism, a pressing mechanism and a drying mechanism, the conveying mechanism is installed on the working box and drives bottle containers to be conveyed, the washing mechanism is installed on the conveying mechanism and washes the bottle containers, and the pressing mechanism is installed on the working box and prevents bottles from falling off from the conveying mechanism. And the drying mechanism is mounted on the working box and is used for drying the bottles.
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Description

Technical Field

[0001] The utility model relates to the technical field of milk powder production, in particular to a circulating CIP goat milk powder production line cleaning device. Background Art

[0002] The circulating CIP goat milk powder production line cleaning device is an automated cleaning system designed specifically for goat milk powder production lines. The system can perform comprehensive and efficient cleaning of various equipment, pipelines, containers, etc. on the production line without dismantling the equipment or pipelines, thereby ensuring the hygiene standards of the production line and product quality.

[0003] The existing goat milk powder production line cleaning device, for example, a production line cleaning device disclosed in the utility model patent application number 201820629679.4, has a main structure including a conveyor, a cleaning box arranged on the conveyor, a water tank arranged on the top of the cleaning box, the water inlet of the booster pump is connected to the inner cavity of the water tank through a water pipe, the water outlet of the booster pump is connected to the liquid separation pipe through a water pipe, and at least fifteen groups of water spray heads are evenly installed on the liquid separation pipe. The drying box is arranged on the conveyor, and the hot air blower is fixedly installed on the top of the drying box. The air outlet of the hot air blower is connected to the ventilation pipe through an air pipe. At least fifteen groups of nozzles are evenly spaced and installed on the ventilation pipe; when in use, the conveyor is moved to the required production line through the roller and connected to the production line, so that the items on the production line can be conveyed to the conveyor, and then conveyed to the bottom of the cleaning mechanism, the cleaning water in the water tank is pressurized by the booster pump and pumped into the liquid separation pipe, and sprayed out through the water spray head for cleaning operation, and then conveyed to the bottom of the drying mechanism, and hot air is generated by the hot air blower, and then conveyed to the ventilation pipe and sprayed out through the nozzle for drying operation. The cleaned and dried items are then conveyed to the next section of the production line.

[0004] However, in goat milk powder production lines, it is often necessary to clean some bottle containers. After the bottles are cleaned, the existing cleaning device easily leaves water stains in the bottles that are difficult to drain out. In addition, it is difficult to fix the bottles using a conveyor belt, which easily causes the bottles to fall over and affects the cleaning effect. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides a circulating CIP goat milk powder production line cleaning device which not only facilitates the flushing of bottle containers and avoids residual water stains in the bottle containers, but also improves the fixing effect of the bottle containers and prevents the bottle containers from tipping over.

[0006] The utility model discloses a circulating CIP goat milk powder production line cleaning device, which comprises a working box; a conveying mechanism, a flushing mechanism, a pressing mechanism and a drying mechanism. The conveying mechanism is installed on the working box and drives the bottle container to be conveyed; the flushing mechanism is installed on the conveying mechanism and flushes the bottle container; the pressing mechanism is installed on the working box and prevents the bottle from falling from the conveying mechanism; the drying mechanism is installed on the working box and dries the bottle; a worker turns the bottle container upside down on the conveying mechanism, the conveying mechanism drives the bottle container to be conveyed forward, the flushing mechanism flushes the bottle container and facilitates the discharge of water stains in the bottle; the pressing mechanism is provided to prevent the bottle from falling from the conveying mechanism when flushing the inside of the bottle; and the drying mechanism dries the bottle after flushing is completed.

[0007] Preferably, the working box includes a box body, a water collecting hopper, a filter plate and a return pipe. The bottom end of the box body is connected to the ground, an inner cavity is provided inside the box body, the top end of the water collecting hopper is communicated with the bottom end of the box body, the filter plate is installed in the water collecting hopper, and the top end of the return pipe is communicated with the bottom end of the filter plate. The waste water used for washing the bottle container drips into the water collecting hopper, the filter plate filters the waste water, and the filtered clean water is returned to the washing mechanism through the return pipe for recycling. The splashing of washing water is avoided by setting up the box body.

[0008] Preferably, the transmission mechanism includes a motor, two sets of transmission shafts, two sets of pulleys, belts, conveyor belts, multiple sets of support rods and multiple sets of pad balls. The motor is installed on the box body, and the two sets of transmission shafts are rotatably installed in the inner cavity of the box body, and one set of transmission shafts is connected to the motor for transmission, and the two sets of pulleys are respectively installed on the two sets of transmission shafts. The belt tensioning is installed between the two sets of pulleys, and the conveyor belt tensioning is installed between the two sets of transmission shafts. Multiple sets of drainage grooves are opened on the conveyor belt, and multiple sets of support rods are installed on the conveyor belt, and multiple sets of pad balls are respectively installed on the top ends of the multiple sets of support rods; the staff inserts the bottle container into the support rod, and avoids collision between the bottle and the support rod by setting the pad balls, and then starts the motor. The motor drives the transmission shaft connected to it to rotate, and the transmission shaft drives another set of transmission shafts and pulleys to rotate through the pulleys and belts connected to it. The two sets of transmission shafts drive the conveyor belt and multiple sets of support rods to transport forward, and the support rods drive the bottle container to transport forward.

[0009] Preferably, the flushing mechanism includes a water pump, a water suction pipe, a valve, two sets of water supply pipes and multiple sets of high-pressure nozzles. The bottom end of the water pump is connected to the top end of the box body, the water suction pipe is installed on the water pump and communicated with the inside of the return pipe, the valve is installed on the water suction pipe, the two sets of water supply pipes are both installed in the cavity of the box body and are both communicated with the inside of the drain outlet of the water pump, and the multiple sets of high-pressure nozzles are respectively installed on the two sets of water supply pipes; the water suction pipe is connected to the water source and the valve is opened to start the water pump, the water pump draws in cleaning water through the water suction pipe, and then transports the cleaning water to the multiple sets of high-pressure nozzles through the two sets of water supply pipes. The high-pressure nozzles located above the bottle container spray the cleaning water to rinse the outer wall of the bottle container, and the high-pressure nozzles located between the conveyor belts spray the cleaning water so that it is sprayed into the bottle container through the drainage groove of the conveyor belt to rinse the inner wall of the bottle container, and then the cleaning water inside the bottle is naturally discharged to avoid water accumulation inside the bottle container.

[0010] Preferably, the pressing mechanism includes two groups of telescopic rods, two groups of springs, a support frame and a pressing roller. The top ends of the two groups of telescopic rods are connected to the top end of the inner cavity of the box body. The two groups of springs are respectively mounted on the two groups of telescopic rods. The top end of the support frame is connected to the bottom ends of the two groups of telescopic rods. The pressing roller is rotatably installed on the support frame. When the cleaning water rinses the inside of the bottle container, the telescopic rods and the springs generate downward pressure on the support frame and the pressing roller to prevent the bottle container from falling off the support rod under the impact force of the water. When the support rod drives the bottle container forward, it drives the pressing roller to rotate and pushes the pressing roller upward.

[0011] Preferably, the drying mechanism includes two groups of electric cylinders, a connecting frame, two groups of micro motors, two groups of rotating shafts, a water-absorbing sponge, multiple groups of resistance wires and a heat-conducting plate. The top ends of the two groups of electric cylinders are connected to the top end of the inner cavity of the box, and the top end of the connecting frame is connected to the bottom ends of the two groups of electric cylinders. The two groups of micro motors are installed on the connecting frame, and the two groups of rotating shafts are rotatably installed on the connecting frame and are respectively connected to the two groups of micro motors. The water-absorbing sponge is tensioned between the two groups of rotating shafts, and the multiple groups of resistance wires are installed in the cavity of the box and located in the conveyor belt. The heat-conducting plate is installed in the cavity of the box and above the multiple groups of resistance wires. Start the two groups of electric cylinders to push the connecting frame downward so that the water-absorbing sponge contacts the surface of the bottle container, start the two groups of micro motors, and the two groups of micro motors drive the two groups of rotating shafts to rotate. The two groups of rotating shafts drive the water-absorbing sponge to rotate to clean the water stains remaining on the surface of the bottle container, and drive the bottle to rotate to facilitate cleaning the water stains. At the same time, the multiple groups of resistance wires heat the heat-conducting plate, and the heat-conducting plate conducts heat to the bottle container to accelerate the evaporation of water stains.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: the staff turns the bottle container upside down on the conveying mechanism, the conveying mechanism drives the bottle container forward, the flushing mechanism flushes the bottle container and facilitates the drainage of water stains in the bottle, and a pressing mechanism is provided to prevent the bottle from falling from the conveying mechanism when flushing the inside of the bottle, and the drying mechanism dries the bottle after flushing is completed. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the cross-section axonometric structure of the utility model;

[0014] Figure 2 This is a schematic diagram of the cross-section axonometric structure of the working box of the utility model;

[0015] Figure 3 This is an axonometric structural diagram of the transmission mechanism and flushing mechanism of the utility model;

[0016] Figure 4 It is a partially enlarged cross-sectional isometric structural diagram of the flushing mechanism and the pressing mechanism of the utility model;

[0017] Figure 5 It is a partially enlarged sectional axonometric structural diagram of the drying mechanism of the utility model.

[0018] Markings in the accompanying drawings: 01, working box; 11, box body; 12, water collecting bucket; 13, filter plate; 14, return pipe; 02, transmission mechanism; 21, motor; 22, transmission shaft; 23, pulley; 24, belt; 25, conveyor belt; 26, support rod; 27, pad ball; 03, flushing mechanism; 31, water pump; 32, suction pipe; 33, valve; 34, water pipe; 35, high-pressure nozzle; 04, pressing mechanism; 41, telescopic rod; 42, spring; 43, support frame; 44, pressing stick; 05, drying mechanism; 51, electric cylinder; 52, connecting frame; 53, micro motor; 54, rotating shaft; 55, water-absorbing sponge; 56, resistance wire; 57, heat conduction plate. DETAILED DESCRIPTION

[0019] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.

[0020] Example 1

[0021] The utility model discloses a circulating CIP goat milk powder production line cleaning device, comprising a working box 01; a conveying mechanism 02, a flushing mechanism 03, a pressing mechanism 04 and a drying mechanism 05, wherein the conveying mechanism 02 is mounted on the working box 01 and drives the bottle container to be transported, the flushing mechanism 03 is mounted on the conveying mechanism 02 and flushes the bottle container, the pressing mechanism 04 is mounted on the working box 01 and prevents the bottle from falling from the conveying mechanism 02, and the drying mechanism 05 is mounted on the working box 01 and dries the bottle; the working box 01 comprises a box body 11, a water collecting hopper 12, a filter plate 13 and a return water The bottom end of the box body 11 is connected to the ground, the interior of the box body 11 is provided with an inner cavity, the top end of the water collecting bucket 12 is connected to the bottom end of the box body 11, the filter plate 13 is installed in the water collecting bucket 12, and the top end of the return pipe 14 is connected to the bottom end of the filter plate 13; the transmission mechanism 02 includes a motor 21, two sets of transmission shafts 22, two sets of pulleys 23, a belt 24, a conveyor belt 25, multiple sets of support rods 26 and multiple sets of pads 27, the motor 21 is installed on the box body 11, the two sets of transmission shafts 22 are rotatably installed in the inner cavity of the box body 11, and one set of transmission shafts 22 is connected to the motor 21 Transmission connection, two sets of pulleys 23 are respectively installed on two sets of transmission shafts 22, the belt 24 is tensioned and installed between the two sets of pulleys 23, the conveyor belt 25 is tensioned and installed between the two sets of transmission shafts 22, and multiple sets of drainage grooves are opened on the conveyor belt 25, multiple sets of support rods 26 are installed on the conveyor belt 25, and multiple sets of pads 27 are respectively installed on the top of the multiple sets of support rods 26; the flushing mechanism 03 includes a water pump 31, a water suction pipe 32, a valve 33, two sets of water pipes 34 and multiple sets of high-pressure nozzles 35, the bottom end of the water pump 31 is connected to the top of the box body 11, the water suction pipe 32 is installed on the water pump 31 and connected to the return pipe 14 is internally connected, a valve 33 is installed on the water pump 32, two sets of water pipes 34 are installed in the cavity of the box body 11 and are connected to the drain outlet of the water pump 31, and multiple sets of high-pressure nozzles 35 are respectively installed on the two sets of water pipes 34; the pressing mechanism 04 includes two sets of telescopic rods 41, two sets of springs 42, a support frame 43 and a pressing roller 44, the top ends of the two sets of telescopic rods 41 are connected to the top end of the inner cavity of the box body 11, the two sets of springs 42 are respectively mounted on the two sets of telescopic rods 41, the top end of the support frame 43 is connected to the bottom end of the two sets of telescopic rods 41, and the pressing roller 44 is rotatably mounted on the support frame 43;During operation, first, the staff inserts the bottle container onto the support rod 26, and sets the cushion ball 27 to prevent the bottle from colliding with the support rod 26. Then, the motor 21 is started, and the motor 21 drives the transmission shaft 22 connected thereto to rotate. The transmission shaft 22 drives another set of transmission shafts 22 and pulleys 23 to rotate through the pulley 23 and belt 24 connected thereto. The two sets of transmission shafts 22 drive the conveyor belt 25 and multiple sets of support rods 26 to transport them forward, and the support rods 26 drive the bottle container to transport it forward. The water pump 32 is connected to the water source and the valve 33 is opened. The water pump 31 is started, and the water pump 31 draws in cleaning water through the water pump 32. The cleaning water is then transported to the multiple sets of high-pressure nozzles 35 through the two sets of water pipes 34. The high-pressure nozzles 35 located above the bottle container spray the cleaning water onto the outer wall of the bottle container and During flushing, high-pressure nozzles 35 located between conveyor belts 25 spray cleaning water through the drainage troughs of conveyor belts 25 into the interior of the bottle containers, flushing the inner walls. The cleaning water then drains naturally, preventing water accumulation inside the bottles. As the cleaning water flushes the interior of the bottles, telescopic rods 41 and springs 42 exert downward pressure on support frames 43 and pressing rollers 44, preventing the bottles from falling off support rods 26 under the impact of the water. As support rods 26 transport the bottles forward, they rotate pressing rollers 44 and push them upward. Wastewater used for flushing the bottles drips into a water collection hopper 12, where it is filtered by filter plates 13. The filtered clean water is then returned to the flushing mechanism 03 through a return pipe 14 for recycling. The housing 11 prevents splashing of the cleaning water.

[0022] Example 2

[0023] like Figures 1 to 5As shown, a circulating CIP goat milk powder production line cleaning device of the utility model is based on Example 1; the drying mechanism 05 includes two groups of electric cylinders 51, a connecting frame 52, two groups of micro motors 53, two groups of rotating shafts 54, a water-absorbing sponge 55, multiple groups of resistance wires 56 and a heat-conducting plate 57. The top ends of the two groups of electric cylinders 51 are connected to the top end of the inner cavity of the box body 11, the top end of the connecting frame 52 is connected to the bottom ends of the two groups of electric cylinders 51, the two groups of micro motors 53 are both installed on the connecting frame 52, the two groups of rotating shafts 54 are rotatably installed on the connecting frame 52 and are respectively connected to the two groups of micro motors 53, the water-absorbing sponge 55 is tensioned between the two groups of rotating shafts 54, and the multiple groups of resistance wires 56 are installed in the cavity of the box body 11 and are located inside the conveyor belt 25. , the heat conducting plate 57 is installed in the cavity of the box body 11 and is located above the multiple groups of resistance wires 56; when it is working, first, the staff inserts the bottle container into the support rod 26, and prevents the bottle from colliding with the support rod 26 by setting the cushion ball 27, and then starts the motor 21, the motor 21 drives the transmission shaft 22 connected thereto to rotate, the transmission shaft 22 drives another set of transmission shafts 22 and pulleys 23 to rotate through the pulley 23 and belt 24 connected thereto, the two sets of transmission shafts 22 drive the conveyor belt 25 and multiple groups of support rods 26 to be transported forward, the support rods 26 drive the bottle container to be transported forward, connect the water pump 32 to the water source and open the valve 33, start the water pump 31, the water pump 31 draws the cleaning water in through the water pump 32, and then The cleaning water is transported to multiple groups of high-pressure nozzles 35 through two groups of water pipes 34. The high-pressure nozzles 35 located above the bottle containers spray the cleaning water to rinse the outer walls of the bottle containers. The high-pressure nozzles 35 located between the conveyor belts 25 spray the cleaning water so that it is sprayed into the bottle containers through the drainage grooves of the conveyor belts 25 to rinse the inner walls of the bottle containers. Then the cleaning water inside the bottles is naturally discharged to avoid water accumulation inside the bottle containers. When the cleaning water rinses the inside of the bottle containers, the telescopic rod 41 and the spring 42 generate downward pressure on the support frame 43 and the pressing roller 44 to prevent the bottle containers from falling off the support rod 26 under the impact of the water. When the support rod 26 drives the bottle containers forward, it drives the pressing roller 44 to rotate and push upward. The pressing roller 44 is raised, and the waste water used for washing the bottle container drips into the water collecting bucket 12. The filter plate 13 filters the waste water, and the filtered clean water is returned to the washing mechanism 03 through the return pipe 14 for recycling. The box 11 is set to avoid splashing of washing water, and the two sets of electric cylinders 51 are started to push the connecting frame 52 downward so that the water-absorbing sponge 55 contacts the surface of the bottle container. The two sets of micro motors 53 are started, and the two sets of micro motors 53 drive the two sets of rotating shafts 54 to rotate. The two sets of rotating shafts 54 drive the water-absorbing sponges 55 to rotate to clean up the water stains remaining on the surface of the bottle container, and drive the bottle to rotate to facilitate cleaning of the water stains. At the same time, multiple sets of resistance wires 56 heat the heat conducting plate 57, and the heat conducting plate 57 conducts heat to the bottle container to accelerate the evaporation of water stains.

[0024] The electric motor 21, water pump 31 and micro motor 53 of the utility model are purchased on the market, and technicians in this industry only need to install and operate them according to the accompanying instruction manuals without the need for creative work by technicians in this field.

[0025] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A circulating CIP goat milk powder production line cleaning device, comprising a working box (01); characterized in that, The invention also includes a conveying mechanism (02), a flushing mechanism (03), a pressing mechanism (04) and a drying mechanism (05). The conveying mechanism (02) is installed on the working box (01) and drives the bottles and containers to be transported. The flushing mechanism (03) is installed on the conveying mechanism (02) and flushes the bottles and containers. The pressing mechanism (04) is installed on the working box (01) and prevents the bottles from falling from the conveying mechanism (02). The drying mechanism (05) is installed on the working box (01) and dries the bottles.

2. A circulating CIP goat milk powder production line cleaning device as claimed in claim 1, characterized in that, The working box (01) comprises a box body (11), a water collecting hopper (12), a filter plate (13) and a return pipe (14). The bottom end of the box body (11) is connected to the ground. An inner cavity is provided inside the box body (11). The top end of the water collecting hopper (12) is communicated with the bottom end of the box body (11). The filter plate (13) is installed in the water collecting hopper (12). The top end of the return pipe (14) is communicated with the bottom end of the filter plate (13).

3. A circulating CIP goat milk powder production line cleaning device as claimed in claim 2, characterized in that, The transmission mechanism (02) comprises a motor (21), two groups of transmission shafts (22), two groups of pulleys (23), a belt (24), a conveyor belt (25), multiple groups of support rods (26) and multiple groups of cushion balls (27). The motor (21) is mounted on a box body (11). The two groups of transmission shafts (22) are both rotatably mounted in the inner cavity of the box body (11), and one group of transmission shafts (22) is transmission-connected with the motor (21). The two groups of pulleys (23) are respectively mounted on the two groups of transmission shafts (22). The belt (24) is tensioned and mounted between the two groups of pulleys (23). The conveyor belt (25) is tensioned and mounted between the two groups of transmission shafts (22). Multiple groups of drainage grooves are opened on the conveyor belt (25). Multiple groups of support rods (26) are all mounted on the conveyor belt (25). Multiple groups of cushion balls (27) are respectively mounted on the top ends of the multiple groups of support rods (26).

4. A circulating CIP goat milk powder production line cleaning device as claimed in claim 2, characterized in that, The flushing mechanism (03) comprises a water pump (31), a water extraction pipe (32), a valve (33), two groups of water delivery pipes (34) and multiple groups of high-pressure nozzles (35). The bottom end of the water pump (31) is connected to the top end of the box (11). The water extraction pipe (32) is installed on the water pump (31) and is communicated with the inside of the return pipe (14). The valve (33) is installed on the water extraction pipe (32). The two groups of water delivery pipes (34) are both installed in the cavity of the box (11) and are both communicated with the inside of the drain port of the water pump (31). The multiple groups of high-pressure nozzles (35) are respectively installed on the two groups of water delivery pipes (34).

5. A circulating CIP goat milk powder production line cleaning device as claimed in claim 2, characterized in that, The pressing mechanism (04) includes two groups of telescopic rods (41), two groups of springs (42), a support frame (43) and a pressing roller (44). The top ends of the two groups of telescopic rods (41) are connected to the top end of the inner cavity of the box body (11). The two groups of springs (42) are respectively mounted on the two groups of telescopic rods (41). The top end of the support frame (43) is connected to the bottom ends of the two groups of telescopic rods (41). The pressing roller (44) is rotatably mounted on the support frame (43).

6. A circulating CIP goat milk powder production line cleaning device as claimed in claim 3, characterized in that, The drying mechanism (05) comprises two groups of electric cylinders (51), a connecting frame (52), two groups of micro motors (53), two groups of rotating shafts (54), a water-absorbing sponge (55), multiple groups of resistance wires (56) and a heat conducting plate (57). The top ends of the two groups of electric cylinders (51) are connected to the top end of the inner cavity of the box (11), the top end of the connecting frame (52) is connected to the bottom ends of the two groups of electric cylinders (51), the two groups of micro motors (53) are both mounted on the connecting frame (52), the two groups of rotating shafts (54) are both rotatably mounted on the connecting frame (52) and respectively connected to the two groups of micro motors (53), the water-absorbing sponge (55) is tensionedly mounted between the two groups of rotating shafts (54), the multiple groups of resistance wires (56) are all mounted in the cavity of the box (11) and located in the conveyor belt (25), and the heat conducting plate (57) is mounted in the cavity of the box (11) and located above the multiple groups of resistance wires (56).

Citation Information

Patent Citations

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