Cleaning device for hot melt adhesive aluminum pot production

The cleaning device addresses vapor dispersal and humidity issues by separating and treating vapor, ensuring effective cleaning and drying of aluminum cans, improving worker safety and equipment longevity.

CN120306353AActive Publication Date: 2025-07-15WUXI XINRUN PACKAGING MASCH TECH CO LTD
View PDF 9 Cites 0 Cited by

Patent Information

Application Number
CN202510765729.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-07-15
Estimated Expiration
2045-06-10

AI Technical Summary

Technical Problem

The existing cleaning device for hot melt aluminum can production water mist generated during the cleaning process drifts into the environment, affecting the health of staff, resulting in excessive environmental humidity and rust of metal equipment.

Method used

A treatment mechanism including a water mist separator, a treatment box and a liquid collecting box is designed to separate gas and water and adsorb harmful gases through centrifugal force and active material layer, and to recover cleaning water and discharge the treated gas.

Benefits of technology

Effectively prevent water mist from drifting, reduce environmental humidity, reduce mold growth and metal rust, and improve the use effect of cleaning devices and the working environment quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120306353A_ABST
    Figure CN120306353A_ABST
Patent Text Reader

Abstract

The invention discloses a cleaning device for hot melt adhesive aluminum pot production, and relates to the technical field of aluminum pot cleaning devices.The cleaning device comprises a cleaning mechanism, the cleaning mechanism is provided with a processing mechanism, the processing mechanism comprises a rectangular block, a disc with holes, a liquid collecting box, a processing box and a round pipe, and a water mist separator is additionally arranged at the top of the rectangular block; a first treatment layer used for removing oil in water is placed in the perforated disc, a second treatment layer used for treating gas is placed in the treatment box, and a plurality of exhaust holes are formed in the outer wall of the round pipe in advance. Therefore, water mist containing the cleaning agent is prevented from floating into the environment and being inhaled by workers to affect the health of the workers, meanwhile, too high local humidity in the environment and mold breeding caused by the water mist can be avoided, the rusting speed of metal equipment can be reduced, and the use efficiency of the cleaning device is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of aluminum can cleaning devices, and particularly to a cleaning device for the production of hot melt adhesive aluminum cans. Background Art

[0002] A hot melt adhesive aluminum can is a metal container used for containing hot melt adhesive and is widely used in the packaging field. During the production process of hot melt adhesive aluminum cans, aluminum sheets need to go through multiple processes such as stretching, stamping, and welding to be made into aluminum cans. When the aluminum cans are manufactured, there will be impurities such as oil and metal chips remaining on the surface of the aluminum cans. At this time, in order to ensure the appearance quality of the aluminum cans and prevent impurities from affecting the performance of the hot melt adhesive, the staff generally directly uses a cleaning device to clean and dry them when the aluminum cans are made to ensure the product quality.

[0003] However, the existing cleaning devices for the production of hot melt adhesive aluminum cans have the following deficiencies: During the cleaning process of the manufactured aluminum cans by the cleaning device, water mist containing cleaning agents will be generated. This water mist containing cleaning agents will float from the cleaning device into the environment. If inhaled by the staff, it will affect the health of the staff. At the same time, the water mist floating into the environment will also cause the local humidity in the environment to be too high, leading to the growth of mold, and at the same time, it will also increase the rusting speed of metal equipment.

[0004] Therefore, we propose a cleaning device for the production of hot melt adhesive aluminum cans to solve the problems raised in the above background art. Summary of the Invention

[0005] The purpose of the present invention is to provide a cleaning device for the production of hot melt adhesive aluminum cans. By setting a treatment mechanism, the water mist generated during the cleaning process of the aluminum cans can be treated to prevent it from floating into the environment. At the same time, the water mist can be separated into water and gas, and the water can be recycled to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the present invention provides the following technical solution: A cleaning device for the production of hot melt adhesive aluminum cans, including a cleaning mechanism, and a treatment mechanism is provided on the cleaning mechanism, and the treatment mechanism is used to treat the water mist generated when the aluminum cans are cleaned; The treatment mechanism includes a rectangular block, a perforated disk, a liquid collecting box, a treatment box, and a round tube. A water mist separator is additionally installed on the top of the rectangular block, and the water mist separator is used for separating water mist into water and gas. A first treatment layer for removing oil from water is placed inside the perforated disk. The liquid collecting box can store the water after removing oil. A second treatment layer for treating gas is placed inside the treatment box. A plurality of exhaust holes are preset on the outer wall of the round tube, and the treated gas can be transported into the inside of the round tube. The round tube is used to discharge the treated gas into the environment.

[0007] Preferably, the air inlet end of the water mist separator is communicated with a conveying pipe, the air inlet end of the conveying pipe is communicated with an air collecting pipe, the air outlet end of the water mist separator is communicated with a connecting pipe, a first placement groove is formed on the surface of the rectangular block, and a second placement groove is formed on the surface of the rectangular block.

[0008] Preferably, a liquid inlet pipe is fixedly penetrated through the top of the inner wall of the first placement groove, the liquid inlet end of the liquid inlet pipe is communicated with the liquid discharge end of the water mist separator, an air inlet pipe is fixedly penetrated through the top of the inner wall of the second placement groove, the air inlet end of the air inlet pipe is communicated with the air outlet end of the connecting pipe, and the perforated disk is placed on the top end of the liquid collecting box.

[0009] Preferably, the top of the perforated disk is in contact with the top of the inner wall of the first placement groove, the bottom of the liquid collecting box is in contact with the top of the inner wall of the first placement groove, the liquid outlet end of the liquid inlet pipe is directly above the perforated disk, and a U-shaped block is installed on the surface of the liquid collecting box.

[0010] Preferably, the treatment box is inside the second placement groove, a rectangular plate is installed on the surface of the rectangular block, the rectangular plate is fixed to the treatment box, the circular pipe is wrapped inside the second treatment layer, and an annular groove is preset on the top of the treatment box.

[0011] Preferably, a sealing ring is placed inside the annular groove, the top of the sealing ring is in contact with the top of the inner wall of the second placement groove, the air outlet end of the circular pipe fixedly penetrates through the inner wall of the treatment box and the surface of the rectangular plate, and the end face of the air inlet end of the circular pipe is in contact with the inner wall of the treatment box.

[0012] Preferably, the cleaning mechanism includes a cleaning assembly, a first placement rack and a second placement rack, and the bottoms of the cleaning assembly, the first placement rack and the rectangular block are on the same horizontal plane.

[0013] Preferably, both air inlet ends of the air collecting pipe fixedly penetrate through the top of the cleaning assembly, and both air inlet ends of the air collecting pipe are in the cleaning area inside the cleaning assembly. A drying assembly is installed on the top of the first placement rack, a controller is installed at a position near the bottom on the surface of the cleaning assembly, and a placement table is fixed on the top of the second placement rack.

[0014] Preferably, a turning conveying assembly is installed on the top of the placement table, the feed inlet of the turning conveying assembly is communicated with the discharge outlet of the cleaning assembly, the discharge outlet of the turning conveying assembly is communicated with the feed inlet of the drying assembly, and the turning conveying assembly is used to convey the cleaned aluminum cans into the drying assembly for drying.

[0015] Preferably, a plurality of bases are fixed to the bottom of the cleaning mechanism, and the bottoms of the plurality of bases, the bottom of the second placement rack, and the bottom of the first placement rack are on the same horizontal plane, and the rectangular block is between the first placement rack and the second placement rack.

[0016] Compared with the prior art, the beneficial effects of the present invention are: 1. By setting up the processing mechanism, the present invention can handle the water mist generated during the aluminum can cleaning process due to collision with water, thereby avoiding the water mist containing cleaning agent from floating into the environment and being inhaled by the staff, which affects their physical health. At the same time, it can also prevent the local humidity in the environment from being too high due to water mist, causing mold growth, and can also reduce the rusting speed of metal equipment, increasing the use effect of the cleaning device to a certain extent and improving the working environment of the staff, that is, improving the cleaning device. When the cleaning components in the cleaning mechanism start to clean the aluminum cans entering the cleaning area, at this time, by using the cooperation of the controller, the water mist separator, the conveying pipe, and the gas collecting pipe, the water mist generated in the cleaning area of the cleaning components can be pumped away and gas-water separation can be achieved.

[0017] 2. Subsequently, by using the cooperation of the liquid inlet pipe, the perforated disk, the first treatment layer, and the liquid collecting box, the oil contained in the water after gas-water separation can be adsorbed and treated, and the treated water can be collected. At the same time, by using the cooperation of the connecting pipe, the air inlet pipe, the sealing ring, the treatment box, the exhaust hole, the round pipe, and the second treatment layer, the harmful gases contained in the gas after gas-water separation can be adsorbed and treated, and the treated gas can be discharged into the environment.

[0018] 3. By setting up the cleaning mechanism, the present invention can clean and dry the hot melt adhesive aluminum cans produced, thereby ensuring the appearance quality of the aluminum cans and the performance of the hot melt adhesive placed inside them. When the aluminum cans enter from the feed port of the cleaning components, at this time, by directly using the cooperation of the cleaning components, the aluminum cans can be moved and cleaned, and the generated wastewater can be transported to the wastewater collection tank for collection. At the same time, the cleaned aluminum cans are transported into the internal of the turning conveying component. Subsequently, by using the cooperation of the turning conveying component, the aluminum cans that have been transported and completed the cleaning operation can be transported into the internal of the drying component. Then, by using the cooperation of the drying component, the aluminum cans can be moved and dried, that is, the obtained aluminum cans will be clean again. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is the main view structure three-dimensional diagram of a cleaning device for producing hot melt adhesive aluminum cans of the present invention; Figure 2 It is the side view structure three-dimensional diagram of a cleaning device for producing hot melt adhesive aluminum cans of the present invention; Figure 3It is a top - view structural three - dimensional diagram of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention; Figure 4 It is a partial - cross - section three - dimensional diagram of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention; Figure 5 It is a partial - cross - section three - dimensional diagram of the treatment mechanism of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention; Figure 6 It is a three - dimensional diagram of the gas - collecting pipe of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention; Figure 7 It is a partial - cross - section three - dimensional diagram of the treatment mechanism of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention from another angle; Figure 8 It is a partial - cross - section three - dimensional diagram of the treatment mechanism of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention from the upward - view angle; Figure 9 It is a partial three - dimensional diagram of the treatment mechanism of a cleaning device for the production of hot - melt - adhesive aluminum cans of the present invention from another angle.

[0020] In the figure: 1. Cleaning mechanism; 101. Cleaning component; 102. First placement rack; 103. Drying component; 104. Controller; 105. Second placement rack; 106. Placement table; 107. Turning conveying component; 108. Base; 2. Treatment mechanism; 201. Rectangular block; 202. Gas - collecting pipe; 203. Delivery pipe; 204. Water - mist separator; 205. Connecting pipe; 206. First placement groove; 207. Second placement groove; 208. Liquid inlet pipe; 209. Air inlet pipe; 210. Perforated plate; 211. First treatment layer; 212. Liquid - collecting box; 213. U - shaped block; 214. Treatment box; 215. Rectangular plate; 216. Second treatment layer; 217. Circular pipe; 218. Exhaust hole; 219. Annular groove; 220. Sealing ring. Detailed implementation manners

[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0022] Embodiment 1: Please refer to Figures 1 - 4As shown in the figure, the present invention provides a technical solution: a cleaning device for the production of hot melt adhesive aluminum cans, including a cleaning mechanism 1, on which a processing mechanism 2 is provided. The cleaning mechanism 1 includes a cleaning component 101, a first placement rack 102, and a second placement rack 105. A drying component 103 is installed on the top of the first placement rack 102. A controller 104 is installed on the surface of the cleaning component 101 near the bottom. A placement table 106 is fixed on the top of the second placement rack 105. A turning conveyor component 107 is installed on the top of the placement table 106. The feed inlet of the turning conveyor component 107 is communicated with the discharge outlet of the cleaning component 101, and the discharge outlet of the turning conveyor component 107 is communicated with the feed inlet of the drying component 103. The turning conveyor component 107 is used to convey the cleaned aluminum cans into the drying component 103 for drying. A plurality of bases 108 are fixed at the bottom of the cleaning mechanism 1. The bottoms of the plurality of bases 108, the bottom of the second placement rack 105, and the bottom of the first placement rack 102 are on the same horizontal plane.

[0023] In this embodiment, when the aluminum can enters from the feed inlet of the cleaning component 101, the controller 104 is directly used to turn on all the water pumps on the cleaning component 101, the motor on the turning conveyor component 107, the dryer and the motor on the drying component 103. At this time, the started water pump will, through the cooperation of the components on the cleaning component 101, convey the cleaning water transported by the water supply pipe to the nozzles in the cleaning area of the cleaning component 101, and then perform a cleaning operation on the aluminum cans conveyed on the conveyor belt of the cleaning component 101. After that, the cleaned aluminum cans will move out from the discharge outlet of the cleaning component 101 and then enter the inside of the turning conveyor component 107. At this time, the started turning conveyor component 107 will use the conveyor belt rotating inside it to convey the aluminum cans entering its inside towards the drying component 103. Then, the aluminum cans entering the inside of the drying component 103 will be conveyed by the conveyor belt rotating inside it and at the same time be dried by the dryer inside it. Finally, they will move out from the discharge outlet of the drying component 103, that is, the cleaning operation is completed. At the same time, the impurities (oil, metal debris, and cleaning agent) washed off from the aluminum cans will flow into the waste water collection tank of the cleaning component 101 along with the water for collection. When it is observed through the observation hole on the cleaning component 101 that the waste water in the waste water collection tank inside the cleaning component 101 needs to be drained away, only the valve on the cleaning component 101 needs to be opened at this time.

[0024] Embodiment Two: According to Figures 1 - 9As shown, the processing mechanism 2 is used to process the water mist generated during the cleaning of aluminum cans. The processing mechanism 2 includes a rectangular block 201, a perforated disc 210, a liquid collection box 212, a processing box 214, and a circular tube 217. A water mist separator 204 is installed on the top of the rectangular block 201, and the water mist separator 204 is used for water mist and water separation. A first processing layer 211 for removing oil in water is placed inside the perforated disc 210. The liquid collection box 212 can store the water after oil removal. A second processing layer 216 for processing gas is placed inside the processing box 214. A plurality of exhaust holes 218 are preset on the outer wall of the circular tube 217, and the processed gas can be transported to the inside of the circular tube 217. The circular tube 217 is used to discharge the processed gas into the environment. The intake end of the water mist separator 204 is connected to a delivery pipe 203, and the intake end of the delivery pipe 203 is connected to a gas collecting pipe 202. The outlet end of the water mist separator 204 is connected to a connecting pipe 205. A first placement groove 206 is formed on the surface of the rectangular block 201, and a second placement groove 207 is formed on the surface of the rectangular block 201. The top of the inner wall of the first placement groove 206 is fixedly penetrated by a liquid inlet pipe 208, and the liquid inlet end of the liquid inlet pipe 208 is connected to the liquid discharge end of the water mist separator 204. The top of the inner wall of the second placement groove 207 is fixedly penetrated by a gas inlet pipe 209, and the gas inlet end of the gas inlet pipe 209 is connected to the outlet end of the connecting pipe 205. The perforated disc 210 is placed on the top of the liquid collection box 212, the top of the perforated disc 210 is in contact with the top of the inner wall of the first placement groove 206, and the bottom of the liquid collection box 212 is in contact with the top of the inner wall of the first placement groove 206. The liquid outlet end of the liquid inlet pipe 208 is directly above the perforated disc 210. A U-shaped block 213 is installed on the surface of the liquid collection box 212. The processing box 214 is inside the second placement groove 207. A rectangular plate 215 is installed on the surface of the rectangular block 201, and the rectangular plate 215 is fixed to the processing box 214. The circular tube 217 is wrapped inside the second processing layer 216. A circular groove 219 is preset on the top of the processing box 214, and a sealing ring 220 is placed inside the circular groove 219. The top of the sealing ring 220 is in contact with the top of the inner wall of the second placement groove 207. The outlet end of the circular tube 217 fixedly penetrates the inner wall of the processing box 214 and the surface of the rectangular plate 215, and the inlet end face of the circular tube 217 is in contact with the inner wall of the processing box 214. The cleaning mechanism 1 includes a cleaning assembly 101, a first placement rack 102, and a second placement rack 105. A controller 104 is installed at a position near the bottom of the surface of the cleaning assembly 101. The bottom of the cleaning assembly 101, the bottom of the first placement rack 102, and the bottom of the rectangular block 201 are on the same horizontal plane. Both intake ends of the gas collecting pipe 202 fixedly penetrate the top of the cleaning assembly 101, and both intake ends of the gas collecting pipe 202 are in the cleaning area inside the cleaning assembly 101. The rectangular block 201 is between the first placement rack 102 and the second placement rack 105.

[0025] In this embodiment, when the cleaning component 101 in the cleaning mechanism 1 starts to clean the aluminum cans entering the cleaning area, the controller 104 is directly used to start the water mist separator 204 (centrifugal type). At this time, suction will be generated at the air inlet end of the started water mist separator 204. Subsequently, the air inlet end of the water mist separator 204 that generates suction will, with the cooperation of the connected conveying pipe 203 and the gas collecting pipe 202, suck away the water mist floating to both ends of the cleaning area of the cleaning component 101 (the inlet and outlet of the cleaning component 101). Then, the sucked-away water mist will first enter the inside of the gas collecting pipe 202 to gather, and then be conveyed into the inside of the conveying pipe 203 together, and then enter the inside of the water mist separator 204. When the water mist enters the inside of the water mist separator 204, the water mist separator 204 will separate the water mist into gas and water. Subsequently, the generated water will be discharged from the liquid discharge end of the water mist separator 204, enter the inside of the liquid inlet pipe 208, and then enter the inside of the perforated disk 210, and come into contact with the first treatment layer 211 (composed of activated alumina particles, pre-filled before using the treatment mechanism 2). When the water passes through the first treatment layer 211, the oil contained in the water will be adsorbed and removed. Subsequently, the treated water will pass through the round holes at the bottom of the inner wall of the perforated disk 210 and fall into the liquid collecting box 212 for collection. At the same time, the gas (low-humidity air) discharged from the exhaust end of the water mist separator 204 will enter the inside of the connecting pipe 205, then enter the inside of the air inlet pipe 209, and then enter the inside of the treatment box 214, and come into contact with the second treatment layer 216 (composed of activated carbon particles, pre-filled before using the treatment mechanism 2). When the gas passes through the second treatment layer 216, the harmful gas (contained in the cleaning agent) contained in the gas will be adsorbed and removed. Subsequently, the treated gas will pass through the through holes of the exhaust holes 218, gather in the inside of the round pipe 217, and then be discharged from the air outlet end of the round pipe 217 and enter the environment. That is, through this method, the water mist generated in the cleaning area of the cleaning component 101 can be treated.

[0026] The effects and working principle achieved by the entire mechanism are as follows: In the preparation stage, first move the entire cleaning device to the place where it is needed. After the movement is completed, install and fix the first placement rack 102, the second placement rack 105, and the rectangular block 201 on the ground. Then, dock the feed inlet of the cleaning mechanism 1 of the cleaning device with the discharge end of the conveyor (used to convey the freshly made aluminum cans that need to be cleaned). Next, connect the controller 104 to the external power supply through the prepared power cord. At the same time, electrically connect the components that need to be controlled on the cleaning assembly 101, the drying assembly 103, and the turning conveyor assembly 107 to the controller 104. After that, connect all the components that need to be powered on the cleaning assembly 101, the drying assembly 103, and the turning conveyor assembly 107 to the external power supply through the prepared power cord. Then, turn on the controller 104 and set various parameters (motor speed, drying temperature, etc.). After that, connect the water supply end of the cleaning assembly 101 to the outlet end of the water supply pipe (water containing cleaning agent). In the cleaning stage, when the aluminum cans enter from the feed inlet of the cleaning assembly 101, directly use the controller 104 to turn on all the water pumps on the cleaning assembly 101, the motors on the turning conveyor assembly 107, the dryers and motors on the drying assembly 103. At this time, the started water pumps will, through the cooperation of the components on the cleaning assembly 101, convey the cleaning water transported by the water supply pipe to the nozzles in the cleaning area of the cleaning assembly 101, and then carry out cleaning operations on the aluminum cans conveyed on the conveyor belt of the cleaning assembly 101. After that, the cleaned aluminum cans will move out from the discharge outlet of the cleaning assembly 101 and then enter the inside of the turning conveyor assembly 107. At this time, the started turning conveyor assembly 107 will use the conveyor belt rotating inside it to convey the aluminum cans entering its inside in the direction of the drying assembly 103. Then, the aluminum cans entering the inside of the drying assembly 103 will be conveyed by the conveyor belt rotating inside it and dried by the dryer inside it at the same time, and finally move out from the discharge outlet of the drying assembly 103, that is, the cleaning operation is completed. At the same time, the impurities (oil, metal debris, and cleaning agent) washed off from the aluminum cans will flow into the waste water collection tank of the cleaning assembly 101 together with the water for collection. When it is observed through the observation hole on the cleaning assembly 101 that the waste water inside the waste water collection tank of the cleaning assembly 101 needs to be drained away, just open the valve on the cleaning assembly 101 at this time; During the processing stage, when the cleaning component 101 in the cleaning mechanism 1 starts to clean the aluminum cans entering the cleaning area, the controller 104 is directly used to start the water mist separator 204 (centrifugal type). At this time, suction is generated at the air inlet end of the started water mist separator 204. Subsequently, the air inlet end of the water mist separator 204 with suction will, under the cooperation of the connected conveying pipe 203 and the gas collecting pipe 202, suck away the water mist floating to both ends of the cleaning area of the cleaning component 101 (the inlet and outlet of the cleaning component 101). Then, the sucked-away water mist will first enter the inside of the gas collecting pipe 202 to gather, and then be conveyed to the inside of the conveying pipe 203 together, and then enter the inside of the water mist separator 204. When the water mist enters the inside of the water mist separator 204, the water mist separator 204 will separate the water mist into gas and water. Subsequently, the generated water will be discharged from the liquid discharge end of the water mist separator 204, enter the inside of the liquid inlet pipe 208, and then enter the inside of the perforated disk 210, and come into contact with the first treatment layer 211 (composed of activated alumina particles, pre-filled before using the treatment mechanism 2). When the water passes through the first treatment layer 211, the oil contained in the water will be adsorbed and removed. Subsequently, the treated water will pass through the round holes at the bottom of the inner wall of the perforated disk 210 and fall into the liquid collecting box 212 for collection. At the same time, the gas (low-humidity air) discharged from the exhaust end of the water mist separator 204 will enter the inside of the connecting pipe 205, then enter the inside of the air inlet pipe 209, and then enter the inside of the treatment box 214, and come into contact with the second treatment layer 216 (composed of activated carbon particles, pre-filled before using the treatment mechanism 2). When the gas passes through the second treatment layer 216, the harmful gas (contained in the cleaning agent) contained in the gas will be adsorbed and removed. Subsequently, the treated gas will pass through the through holes of the exhaust holes 218, gather in the inside of the round pipe 217, and then be discharged from the air outlet end of the round pipe 217 into the environment. That is, through this method, the water mist generated in the cleaning area of the cleaning component 101 can be treated.

[0027] Among them, the cleaning component 101 is composed of components such as a cleaning tank (cleaning area), spray heads, a shunt pipe, a hose, a water pump, a valve, a waste water collection tank, an observation hole, a conveyor belt, a driving roller, and a motor. The motor, the driving roller, and the conveyor belt cooperate to drive the aluminum cans placed on the conveyor belt to move. The spray heads, the shunt pipe, the hose, the water pump, and the valve can spray the water containing the cleaning agent conveyed by the water supply pipe onto the aluminum cans to clean the aluminum cans. The observation hole is used to observe the amount of waste water inside the waste water collection tank, and the waste water collection tank is used to collect the waste water generated after cleaning the aluminum cans.

[0028] The drying component 103 is composed of components such as a dryer, a conveyor belt, a motor, a driving pipe, a housing, and a heat preservation cloth (used to prevent heat loss at both ends of the housing). The motor, the conveyor belt, and the driving roller cooperate to allow the aluminum cans placed on the conveyor belt to move. The dryer can perform a drying operation on the aluminum cans.

[0029] The turning conveyor assembly 107 is composed of components such as a bracket, a driving roller, a motor, a housing, and a conveyor belt. The cooperation of the motor, the driving roller, and the conveyor belt enables the aluminum cans placed on the conveyor belt to move, and the housing can protect the conveyor belt.

[0030] The water mist separator 204 mainly uses centrifugal force to achieve gas-liquid separation, remove the water mist in the air, and realize gas-liquid separation. The simple principle is as follows: When the air containing water mist enters the inside of the centrifugal water mist separator 204 from the air inlet, the air will pass through a specially designed air inlet structure or a guide vane, causing the air flow to start rotating (this process is similar to giving an object a tangential force when it is moving in a circular motion, so that it moves along a circular trajectory). At this time, under the action of centrifugal force, the water droplets will be thrown towards the outer wall of the separator, just like on a rotating umbrella, the water droplets will be thrown out along the tangent direction of the umbrella surface. And the air, due to its relatively small density and relatively small centrifugal force received, will continue to rotate in the separator and gather towards the central area, and then the water droplets thrown to the outer wall of the separator will, under the action of gravity and the separator wall surface, gradually flow downward along the wall surface, finally converging at the bottom of the separator and discharging from its drain port, while the relatively dry air separated will be discharged from the central area or a specific air outlet of the separator, that is, the separation of water and air is achieved.

[0031] Among them, the sealing ring 220 is mainly used to improve the sealing performance between the top of the processing box 214 and the top inner wall of the second placement groove 207, ensuring that all the gas transported into the inside of the processing box 214 comes into contact with the second processing layer 216 and is processed.

[0032] Among them, the cleaning assembly 101, the drying assembly 103, the turning conveyor assembly 107, the water mist separator 204, the perforated disk 210, and the controller 104 are all prior arts, and their models can be selected according to the actual situation and will not be elaborated here.

[0033] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A cleaning device for the production of hot melt adhesive aluminum cans, including a cleaning mechanism (1), characterized in that: A treatment mechanism (2) is provided on the cleaning mechanism (1), and the treatment mechanism (2) is used for treating the water mist generated during the cleaning of aluminum cans; The treatment mechanism (2) includes a rectangular block (201), a perforated disc (210), a liquid collection box (212), a treatment box (214), and a circular tube (217). A water mist separator (204) is additionally installed on the top of the rectangular block (201), and the water mist separator (204) is used for water mist and water separation. A first treatment layer (211) for removing oil in water is placed inside the perforated disc (210). The liquid collection box (212) can store the water after oil removal. A second treatment layer (216) for treating gas is placed inside the treatment box (214). A plurality of exhaust holes (218) are preset on the outer wall of the circular tube (217), and the treated gas can be transported into the circular tube (217). The circular tube (217) is used for discharging the treated gas into the environment.

2. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 1, wherein: The air inlet end of the water mist separator (204) is communicated with a delivery pipe (203), the air inlet end of the delivery pipe (203) is communicated with a gas collecting pipe (202), the air outlet end of the water mist separator (204) is communicated with a connecting pipe (205), a first placement groove (206) is formed on the surface of the rectangular block (201), and a second placement groove (207) is formed on the surface of the rectangular block (201).

3. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 2, characterized in that: A liquid inlet pipe (208) is fixedly penetrated through the top of the inner wall of the first placement groove (206), and the liquid inlet end of the liquid inlet pipe (208) is communicated with the liquid discharge end of the water mist separator (204). An air inlet pipe (209) is fixedly penetrated through the top of the inner wall of the second placement groove (207), and the air inlet end of the air inlet pipe (209) is communicated with the air outlet end of the connecting pipe (205). The perforated disc (210) is placed on the top of the liquid collection box (212).

4. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 3, characterized in that: The top of the perforated disc (210) is in contact with the top of the inner wall of the first placement groove (206), the bottom of the liquid collection box (212) is in contact with the top of the inner wall of the first placement groove (206), the liquid outlet end of the liquid inlet pipe (208) is directly above the perforated disc (210), and a U-shaped block (213) is installed on the surface of the liquid collection box (212).

5. The cleaning device for hot melt adhesive aluminum can production according to claim 2, characterized in that: The treatment box (214) is inside the second placement groove (207). A rectangular plate (215) is installed on the surface of the rectangular block (201), and the rectangular plate (215) is fixed to the treatment box (214). The circular tube (217) is wrapped inside the second treatment layer (216), and an annular groove (219) is preset on the top of the treatment box (214).

6. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 5, characterized in that: A sealing ring (220) is placed inside the annular groove (219), the top of the sealing ring (220) is in contact with the top of the inner wall of the second placement groove (207), the air outlet end of the circular tube (217) is fixedly penetrated through the inner wall of the treatment box (214) and the surface of the rectangular plate (215), and the end face of the air inlet end of the circular tube (217) is in contact with the inner wall of the treatment box (214).

7. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 2, characterized in that: The cleaning mechanism (1) includes a cleaning component (101), a first placement rack (102), and a second placement rack (105). The bottom of the cleaning component (101), the bottom of the first placement rack (102), and the bottom of the rectangular block (201) are on the same horizontal plane.

8. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 7, characterized in that: Both air inlet ends of the air collecting pipe (202) are fixedly penetrated through the top of the cleaning component (101), and the two air inlet ends of the air collecting pipe (202) are in the cleaning area inside the cleaning component (101). A drying component (103) is installed on the top of the first placement rack (102). A controller (104) is installed on the surface of the cleaning component (101) near the bottom. A placement table (106) is fixed on the top of the second placement rack (105).

9. The cleaning device for hot melt adhesive aluminum can production according to claim 8, characterized in that: A turning conveyor component (107) is installed on the top of the placement table (106). The feeding port of the turning conveyor component (107) is communicated with the discharging port of the cleaning component (101). The discharging port of the turning conveyor component (107) is communicated with the feeding port of the drying component (103). The turning conveyor component (107) is used to convey the cleaned aluminum cans into the drying component (103) for drying.

10. The cleaning device for the production of hot melt adhesive aluminum cans according to claim 7, characterized in that: A plurality of bases (108) are fixed to the bottom of the cleaning mechanism (1). The bottoms of the plurality of bases (108), the bottom of the second placement rack (105), and the bottom of the first placement rack (102) are on the same horizontal plane. The rectangular block (201) is between the first placement rack (102) and the second placement rack (105).

Citation Information

Patent Citations

  • Instrument cleaning equipment for plastic surgery and beauty

    CN110404859A

  • Air purification environmental protection device

    CN113531719A

  • Cable cleaning device for power supply company

    CN116393421A

  • Integrated device and method for recycling solid wastes

    CN116753725A

  • Rotary plastic extrusion device

    CN117464952A