A hot melt adhesive aluminum can production line
By setting up a processing mechanism on the hot-melt adhesive aluminum can production line and using electric push rods and fans to separate and collect the waste and dust generated by trimming, the problems of scattered waste and flying dust are solved, and production efficiency and environmental safety are improved.
Patent Information
- Application Number
- CN202511028952.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-07-25
Smart Images

Figure CN120532973B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of hot melt adhesive aluminum can production, in particular to a hot melt adhesive aluminum can production line. Background Art
[0002] Hot melt adhesive aluminum cans are containers specifically used for storing and transporting hot melt adhesive. They have excellent thermal conductivity, corrosion resistance, and sealing properties, and can effectively maintain the quality and stability of the hot melt adhesive during storage and transportation. As the market demand for hot melt adhesive aluminum cans continues to rise, people are mostly producing them using continuous production lines to fully meet this growth trend while ensuring that each aluminum can meets strict quality standards.
[0003] In the existing technology, the existing hot melt adhesive aluminum can production line has achieved seamless connection from raw material processing to finished product output by relying on advanced technology, which has significantly improved production efficiency. However, when trimming the hot melt adhesive aluminum can, the aluminum can waste generated by trimming is generally discharged directly onto the ground, causing the waste to be scattered on the ground and mixed with dust and debris. This will not only increase the difficulty of subsequent recycling of the aluminum can waste, but also easily cause waste dust to fly in the production workshop, affecting the health of the staff, reducing the use effect of the hot melt adhesive aluminum can production line, but also reducing the use efficiency of the hot melt adhesive aluminum can production line.
[0004] Therefore, we propose a hot melt adhesive aluminum can production line to solve the problems raised in the above background technology. Summary of the Invention
[0005] The purpose of the present invention is to provide a hot melt adhesive aluminum can production line to solve the problem that when the existing hot melt adhesive aluminum can production line performs the trimming operation on the hot melt adhesive aluminum can, the aluminum can waste generated by trimming will generally be discharged directly onto the ground, causing the waste to be scattered on the ground and mixed with dust and debris. This will not only increase the difficulty of subsequent recycling of the aluminum can waste, but also easily cause the waste dust to fly in the production workshop, affecting the health of the staff, reducing the use effect of the hot melt adhesive aluminum can production line, and also reducing the use efficiency of the hot melt adhesive aluminum can production line.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: a hot melt adhesive aluminum can production line, comprising a production mechanism, wherein the production mechanism is provided with a processing mechanism;
[0007] The processing mechanism includes a flat plate, a shell is fixed on the top of the flat plate, a first electric push rod is installed on the surface of the shell, a rectangular plate is installed at one end of the telescopic end of the first electric push rod, a U-shaped frame is fixed on the top of the shell, a second electric push rod is installed on the top of the U-shaped frame, and a plug plate is installed at one end of the telescopic end of the second electric push rod, rectangular grooves are provided on both sides of the inner wall of the shell, a first rectangular hole is provided between the top of the inner wall of the two rectangular grooves and the top of the inner wall of the shell, two round rods are fixed on the top of the plug plate, an auxiliary hole is provided on the lower side of the U-shaped frame, a second rectangular hole is provided on the inner wall of the shell, a round tube is fixedly passed through the outer wall of the feed end of the shell, a fan is installed on the top of the shell, a hose is installed at the air inlet end of the fan, a dust bag is installed at the air outlet end of the fan through a clamp, and an auxiliary plate is movably sleeved inside the second rectangular hole.
[0008] Preferably, one end of the telescopic end of the first electric push rod movably penetrates the surface of the shell, the rectangular plate movably sleeves inside the shell, and one end of the telescopic end of the second electric push rod movably sleeves inside the auxiliary hole.
[0009] Preferably, the inserting plate is movably sleeved between the insides of the two rectangular grooves and the inside of the first rectangular hole, and the side of the auxiliary plate away from the first electric push rod is in contact with the inner wall of the shell.
[0010] Preferably, the top end of each round rod is movable through the lower side of the U-shaped frame, the air inlet end of the hose is installed with the air outlet end of the round tube, and the front surface of the auxiliary plate is fixed to the side of the rectangular plate away from the plug plate.
[0011] Preferably, the production mechanism includes an aluminum sheet elevator, a punching machine, a trimming machine and a cleaning machine, the output end of the aluminum sheet elevator is equipped with a first conveyor, the outer surface of the aluminum sheet elevator is equipped with a support frame, and the output end of the punching machine is equipped with a second conveyor.
[0012] Preferably, a third conveyor is installed at the output end of the trimmer, an auxiliary frame is provided on the front surface of the cleaning machine, a controller is installed on the front surface of the trimmer, and a protective shell is fixed on the front surface of the trimmer.
[0013] Preferably, the output end of the first conveyor is installed with the input end of the punch press, the aluminum sheet elevator, punch press, trimmer and cleaning machine are all electrically connected to the controller, and the first conveyor, the second conveyor and the third conveyor are all electrically connected to the controller.
[0014] Preferably, the output end of the second conveyor is installed with the input end of the trimmer, the output end of the third conveyor is installed with the input end of the cleaning machine, the surface of the support frame is installed with the surface of the first conveyor, and the controller is inside the protective shell.
[0015] Preferably, one side of the trimmer is fixed to a side of the flat plate close to the trimmer, the first electric push rod is electrically connected to the controller, and the second electric push rod is electrically connected to the controller.
[0016] Preferably, the fan is electrically connected to the controller, the feed end of the housing is mounted on one side of the trimmer, and the interior of the housing is communicated with the interior of the discharge end of the trimmer.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] By setting a processing mechanism, the present invention can enable the hot melt adhesive aluminum can production line to extrude and shape the aluminum can waste generated by trimming when the hot melt adhesive aluminum can is trimmed, so that the staff can recycle it later. This not only reduces the difficulty of subsequent recycling of the aluminum can waste, but also avoids the situation where waste dust is flying in the production workshop and affects the health of the staff. It not only improves the use effect of the hot melt adhesive aluminum can production line, but also improves the use efficiency of the hot melt adhesive aluminum can production line. When the trimmer directly transports the aluminum can waste generated by trimming to the feed end of the shell, the controller, fan, hose, round tube, shell feed end and trimmer discharge end are first used in conjunction to transport the air inside the trimmer and the dust generated by trimming to the inside of the dust collecting bag. Then, the started fan, clamp and dust collecting bag are used in conjunction to keep the dust inside the dust collecting bag and transport the air to the environment.
[0019] When the aluminum can waste accumulated inside the shell reaches a certain amount, the controller, the first electric push rod, the shell and the flat plate are first used to cooperate to drive the rectangular plate to move horizontally, and then the horizontally movable rectangular plate and the second rectangular plate are used to cooperate to drive the auxiliary plate to move horizontally, and then the shell, the horizontally movable rectangular plate, the two rectangular slots, the first rectangular hole and the plugging plate are used to cooperate to extrude the aluminum can waste inside the shell, and then the controller, the U-shaped frame, the second electric push rod, the two rectangular slots, the first rectangular hole and the auxiliary hole are used to drive the plugging plate to move vertically upward, and then the controller, the first electric push rod, the shell and the rectangular plate are used to cooperate to move the extruded aluminum can waste out of the shell, and then the controller, the first electric push rod and the shell are used to cooperate to drive the rectangular plate to reset and move, and then the controller, the U-shaped frame, the auxiliary hole, the first rectangular hole, the two rectangular slots and the second electric push rod are used to drive the plugging plate to reset and move, and then the above-mentioned operation steps are followed to operate.
[0020] 3. The present invention can achieve seamless connection from raw material processing to finished product output by setting up a production mechanism, thereby improving the production efficiency of hot melt adhesive aluminum cans. When hot melt adhesive aluminum cans need to be produced, the controller can be connected to the external power supply by first using the cooperation of the protective shell, and then the aluminum sheet elevator can be used to transport the aluminum sheets inside the aluminum sheet elevator to the inside of the first conveyor, and then the controller, the first conveyor and the support frame can be used to transport the aluminum sheets inside the first conveyor to the inside of the punch press, and then the controller and the punch press can be used to punch the aluminum sheets inside the punch press into aluminum cans, and the aluminum cans can be transported to the inside of the second conveyor.
[0021] 4. The present invention then utilizes the cooperation of the controller and the second conveyor to transport the aluminum cans inside the second conveyor to the inside of the trimming machine, and then utilizes the cooperation of the controller and the trimming machine to trim the aluminum cans inside the trimming machine, and transports the aluminum cans that have completed the trimming operation to the inside of the third conveyor, and then utilizes the cooperation of the controller and the third conveyor to transport the aluminum cans inside the third conveyor to the inside of the cleaning machine, and then utilizes the cooperation of the controller and the cleaning machine to clean and dry the aluminum cans inside the cleaning machine, and then utilizes the cooperation of the auxiliary rack to take out the aluminum cans that have completed the drying operation, and finally operates according to the above steps. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a three-dimensional diagram of a hot melt adhesive aluminum can production line of the present invention;
[0023] Figure 2 This is a partial perspective view of a hot melt adhesive aluminum can production line of the present invention;
[0024] Figure 3 This is a schematic diagram of the structure of a production line for hot melt adhesive aluminum cans according to the present invention;
[0025] Figure 4 This is a partial perspective view from another angle of a hot melt adhesive aluminum can production line of the present invention;
[0026] Figure 5 This is a partial structural diagram of a hot melt adhesive aluminum can production line of the present invention;
[0027] Figure 6 This is a partially cutaway perspective view of a processing mechanism of a hot melt adhesive aluminum can production line according to the present invention;
[0028] Figure 7 This is a partial perspective view of the processing mechanism of a hot melt adhesive aluminum can production line of the present invention;
[0029] Figure 8This is a partial three-dimensional view from another angle of the processing mechanism of the hot melt adhesive aluminum can production line of the present invention.
[0030] In the figure: 1. Production mechanism; 101. Aluminum sheet elevator; 102. Punch press; 103. Trimmer; 104. Cleaning machine; 105. First conveyor; 106. Support frame; 107. Second conveyor; 108. Third conveyor; 109. Auxiliary frame; 110. Controller; 111. Protective shell; 2. Processing mechanism; 201. Flat plate; 202. Shell; 203. First electric push rod; 204. Rectangular plate; 205. U-shaped frame; 206. Second electric push rod; 207. Insert plate; 208. First rectangular hole; 209. Rectangular slot; 210. Round rod; 211. Auxiliary hole; 212. Second rectangular hole; 213. Round tube; 214. Fan; 215. Hose; 216. Dust bag; 217. Auxiliary plate. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0032] Example 1: Please refer to Figures 1-8 As shown, the present invention provides a technical solution: a hot melt adhesive aluminum can production line, comprising a production mechanism 1, on which a processing mechanism 2 is provided;
[0033] The processing mechanism 2 includes a flat plate 201, a housing 202 is fixed on the top of the flat plate 201, a first electric push rod 203 is installed on the surface of the housing 202, a rectangular plate 204 is installed at one end of the telescopic end of the first electric push rod 203, a U-shaped frame 205 is fixed on the top of the housing 202, a second electric push rod 206 is installed on the top of the U-shaped frame 205, a plug-in plate 207 is installed at one end of the telescopic end of the second electric push rod 206, rectangular grooves 209 are opened on both sides of the inner wall of the housing 202, and a first rectangular hole is opened between the top of the inner wall of the two rectangular grooves 209 and the top of the inner wall of the housing 202 208, two round rods 210 are fixed on the top of the plug board 207, an auxiliary hole 211 is opened on the lower side of the U-shaped frame 205, a second rectangular hole 212 is opened on the inner wall of the shell 202, a round tube 213 is fixedly passed through the outer wall of the feed end of the shell 202, a fan 214 is installed on the top of the shell 202, a hose 215 is installed on the air inlet end of the fan 214, and a dust bag 216 is installed on the air outlet end of the fan 214 through a hoop. The interior of the second rectangular hole 212 is movably connected with an auxiliary plate 217, and one end of the telescopic end of the first electric push rod 203 is movable through the surface of the shell 202. The plate 204 is movably sleeved inside the housing 202, one end of the telescopic end of the second electric push rod 206 is movably sleeved inside the auxiliary hole 211, and the insert plate 207 is movably sleeved between the inside of the two rectangular grooves 209 and the inside of the first rectangular hole 208. The side of the auxiliary plate 217 away from the first electric push rod 203 contacts the inner wall of the housing 202, and the top of each round rod 210 is movably passed through the lower side of the U-shaped frame 205. The air inlet end of the hose 215 is installed with the air outlet end of the round tube 213, and the front surface of the auxiliary plate 217 is fixed to the side of the rectangular plate 204 away from the insert plate 207. The production mechanism 1 includes an aluminum sheet elevator 101, a punching machine 102, a trimming machine 103 and a cleaning machine 104. A controller 110 is installed on the front surface of the trimming machine 103. One side of the trimming machine 103 is fixed to the side of the flat plate 201 close to the trimming machine 103. The first electric push rod 203 is electrically connected to the controller 110, the second electric push rod 206 is electrically connected to the controller 110, and the fan 214 is electrically connected to the controller 110. The feeding end of the shell 202 is installed on one side of the trimming machine 103, and the interior of the shell 202 is connected to the interior of the discharge end of the trimming machine 103.
[0034] In this embodiment, when the trimmer 103 directly transports the aluminum can waste generated by trimming to the inside of the feed end of the shell 202, the controller 110 is directly used to start the fan 214. At this time, the started fan 214 will, with the cooperation of the hose 215, enable the air inlet end of the circular tube 213 to obtain suction, and the air inlet end of the circular tube 213 that obtains suction will, with the cooperation of the feed end of the shell 202 and the discharge end of the trimmer 103, suck in the air inside the trimmer 103 and the dust generated by trimming, and transport them to the inside of the hose 215. Finally, the air and dust transported to the inside of the hose 215 will be directly transported to the inside of the dust collecting bag 216 with the cooperation of the fan 214. When the air and dust inside the hose 215 enter the dust collecting bag 216, When inside, the air will be directly transported to the environment with the cooperation of the dust bag 216, and the dust will directly remain in the dust bag 216. When the aluminum can waste accumulated inside the shell 202 reaches a certain amount, the controller 110 is used to start the first electric push rod 203. The first electric push rod 203 started at this time will drive the rectangular plate 204 to move horizontally with the cooperation of the shell 202 and the flat plate 201. At this time, the horizontally moving rectangular plate 204 will drive the auxiliary plate 217 to move horizontally with the cooperation of the second rectangular hole 212. At the same time, the horizontally moving rectangular plate 204 will drive the aluminum can waste inside the shell 202 to move together with the cooperation of the shell 202, and then the aluminum can waste inside the shell 202 will be moved. The shell 202, the inserting plate 207, the two rectangular slots 209, the first rectangular hole 208 and the rectangular plate 204 that continues to move horizontally are squeezed together. When the aluminum can waste inside the shell 202 completes the squeezing operation, the controller 110 is used to first close the first electric push rod 203 and then start the second electric push rod 206. At this time, the closed first electric push rod 203 will stop the rectangular plate 204 and the auxiliary plate 217 from moving. At the same time, the started second electric push rod 206 will drive the inserting plate 207 to move vertically upward in cooperation with the U-shaped frame 205, the two rectangular slots 209, the first rectangular hole 208 and the auxiliary hole 211. The inserting plate 207 that moves vertically upward will drive the two round rods 210 to move vertically together. When the plug plate 207 moves to the point where it can no longer move, the bottom of the plug plate 207 is exactly in the same plane as the top of the inner wall of the shell 202. At the same time, the controller 110 is used to first close the second electric push rod 206, and then the first electric push rod 203 is started. At this time, the closed second electric push rod 206 will stop the plug plate 207 from moving. At the same time, the started first electric push rod 203 will, with the cooperation of the rectangular plate 204, push the extruded aluminum can waste out of the shell 202. When the extruded aluminum can waste is moved out of the shell 202, the controller 110, the shell 202 and the first electric push rod 203 are used to cooperate to make the rectangular plate 204 reset and move until the rectangular plate 204 is reset to its original position.Then, the controller 110, the second electric push rod 206, the U-shaped frame 205, the two rectangular slots 209, the first rectangular hole 208 and the auxiliary hole 211 cooperate to make the plugboard 207 reset and move until the plugboard 207 returns to its original position. Then, the above steps can be followed.
[0035] Example 2: According to Figure 1-Figure 5 As shown, the production mechanism 1 includes an aluminum sheet elevator 101, a punching machine 102, a trimming machine 103 and a cleaning machine 104. The output end of the aluminum sheet elevator 101 is installed with a first conveyor 105, the outer surface of the aluminum sheet elevator 101 is installed with a support frame 106, the output end of the punching machine 102 is installed with a second conveyor 107, the output end of the trimming machine 103 is installed with a third conveyor 108, the front surface of the cleaning machine 104 is provided with an auxiliary frame 109, the front surface of the trimming machine 103 is installed with a controller 110, the front surface of the trimming machine 103 is fixed with a protective shell 111, the first conveyor 105 is installed with a first conveyor 107, the outer surface of the aluminum sheet elevator 101 is installed with a support frame 106, the output end of the punching machine 102 is installed with a second conveyor 107, the output end of the trimming machine 103 is installed with a third conveyor 108, the front surface of the cleaning machine 104 is provided with an auxiliary frame 109, the front surface of the trimming machine 103 is installed with a controller 110, the front surface of the trimming machine 103 is fixed with a protective shell 111, and the first conveyor 105 is installed with a first conveyor 106. 5 is installed with the input end of the punching machine 102, the aluminum sheet elevator 101, the punching machine 102, the trimming machine 103 and the cleaning machine 104 are all electrically connected to the controller 110, the first conveyor 105, the second conveyor 107 and the third conveyor 108 are all electrically connected to the controller 110, the output end of the second conveyor 107 is installed with the input end of the trimming machine 103, the output end of the third conveyor 108 is installed with the input end of the cleaning machine 104, the surface of the support frame 106 is installed with the surface of the first conveyor 105, and the controller 110 is inside the protective shell 111.
[0036] In this embodiment, when hot melt adhesive aluminum cans need to be produced, the protective shell 111 is opened first, and then the controller 110 is connected to the external power supply, and then the prepared aluminum sheet is placed inside the aluminum sheet elevator 101, and then the controller 110 will start the aluminum sheet elevator 101. At this time, the started aluminum sheet elevator 101 will convey the aluminum sheet inside it to the inside of the first conveyor 105, and then the controller 110 will start the first conveyor 105. At this time, the started first conveyor 105 will, with the cooperation of the support frame 106, convey the aluminum sheet inside it to the inside of the punch press 102, and then the controller 110 will start the punch press 102. At this time, the started punch press 102 will punch the aluminum sheet inside it into an aluminum can, and convey the stamped aluminum can to the inside of the second conveyor 107, and then the controller 110 will start the second conveyor 107. 07 will convey the aluminum cans inside it to the inside of the trimming machine 103, and then the controller 110 will start the trimming machine 103. At this time, the started trimming machine 103 will trim the aluminum cans inside it and convey the aluminum cans that have completed the trimming operation to the inside of the third conveyor 108. When the aluminum cans that have completed the trimming operation are conveyed to the inside of the third conveyor 108, the controller 110 will start the third conveyor 108. At this time, the started third conveyor 108 will convey the aluminum cans inside it to the inside of the cleaning machine 104. Then the controller 110 will start the cleaning machine 104. At this time, the started cleaning machine 104 will clean and dry the aluminum cans inside it. When the cleaning machine 104 completes the drying operation of the aluminum cans inside it, the staff can take out the aluminum cans inside the cleaning machine 104 with the cooperation of the auxiliary rack 109, and then follow the above-mentioned operating steps.
[0037] The effect and working principle of the entire mechanism are as follows: when hot melt adhesive aluminum cans need to be produced, the protective shell 111 is opened first, and then the controller 110 is connected to the external power supply, and then the prepared aluminum sheet is placed inside the aluminum sheet elevator 101, and then the controller 110 starts the aluminum sheet elevator 101, and the started aluminum sheet elevator 101 at this time will convey the aluminum sheet inside it to the inside of the first conveyor 105, and then the controller 110 will start the first conveyor 105, and the started first conveyor 105 will, with the cooperation of the support frame 106, convey the aluminum sheet inside it to the inside of the punch press 102, and then the controller 110 will start the punch press 102, and the started punch press 102 will punch the aluminum sheet inside it into The shape is an aluminum can, and the stamped aluminum can is conveyed to the inside of the second conveyor 107. Then the controller 110 will start the second conveyor 107. The second conveyor 107 that is started at this time will convey the aluminum can inside it to the inside of the trimmer 103. Then the controller 110 will start the trimmer 103. The trimmer 103 that is started at this time will trim the aluminum can inside it and convey the aluminum can that has completed the trimming operation to the inside of the third conveyor 108. At the same time, the trimmer 103 will directly convey the aluminum can waste generated by trimming to the inside of the feeding end of the shell 202. At the same time, the controller 110 will directly start the fan 214. The fan 214 that is started at this time will cooperate with the hose 215 to make the air intake of the round tube 213 The air inlet end of the round tube 213 obtains suction, and the air inlet end of the round tube 213 that obtains suction will, under the cooperation of the feeding end of the shell 202 and the discharging end of the trimmer 103, suck in the air inside the trimmer 103 and the dust generated by trimming, and transport them to the inside of the hose 215. Finally, the air and dust transported to the inside of the hose 215 will be directly transported to the inside of the dust collecting bag 216 with the cooperation of the fan 214. When the air and dust inside the hose 215 enter the inside of the dust collecting bag 216, the air will be directly transported to the environment with the cooperation of the dust collecting bag 216, and the dust will directly remain in the inside of the dust collecting bag 216. When the aluminum cans that have completed the trimming operation are transported to the inside of the third conveyor 108, the controller 110 will start the third conveyor 108. At this time, the started third conveyor 108 will convey the aluminum cans inside it to the inside of the cleaning machine 104, and then the controller 110 will start the cleaning machine 104. The started cleaning machine 104 will clean and dry the aluminum cans inside it. When the cleaning machine 104 completes the drying operation of the aluminum cans inside it, the staff can take out the aluminum cans inside the cleaning machine 104 with the cooperation of the auxiliary rack 109, and then operate according to the above steps. When the aluminum can waste accumulated inside the shell 202 reaches a certain amount, the controller 110 is used to start the first electric push rod 203. The started first electric push rod 203 will drive the rectangular plate 204 to move horizontally with the cooperation of the shell 202 and the flat plate 201.At this time, the rectangular plate 204 that moves horizontally will drive the auxiliary plate 217 to move horizontally with the cooperation of the second rectangular hole 212. At the same time, the rectangular plate 204 that moves horizontally will drive the aluminum can waste inside the shell 202 to move together with the cooperation of the shell 202. Subsequently, the aluminum can waste inside the shell 202 will be squeezed together with the cooperation of the shell 202, the inserting plate 207, the two rectangular grooves 209, the first rectangular hole 208 and the rectangular plate 204 that continues to move horizontally. When the waste material is squeezed out, the controller 110 is used to first turn off the first electric push rod 203 and then start the second electric push rod 206. At this time, the closed first electric push rod 203 will stop the rectangular plate 204 and the auxiliary plate 217 from moving. At the same time, the started second electric push rod 206 will drive the inserting plate 207 to move vertically upwards under the cooperation of the U-shaped frame 205, the two rectangular slots 209, the first rectangular hole 208 and the auxiliary hole 211. The inserting plate 207 that moves vertically upwards will drive the two round rods 210 to move together. The plug plate 207 moves vertically upward. When the plug plate 207 moves to the point where it can no longer move, the bottom of the plug plate 207 is just in the same plane as the top of the inner wall of the shell 202. At the same time, the controller 110 is used to first turn off the second electric push rod 206 and then start the first electric push rod 203. At this time, the second electric push rod 206 that is turned off will stop the plug plate 207 from moving. At the same time, the first electric push rod 203 that is started will push the extruded aluminum can waste out of the interior of the shell 202 with the cooperation of the rectangular plate 204. When the material is removed from the interior of the housing 202, the controller 110, the housing 202, and the first electric push rod 203 cooperate to make the rectangular plate 204 reset and move until the rectangular plate 204 returns to its original position. Then, the controller 110, the second electric push rod 206, the U-shaped frame 205, the two rectangular slots 209, the first rectangular hole 208, and the auxiliary hole 211 cooperate to make the inserting plate 207 reset and move until the inserting plate 207 returns to its original position. Then, the above steps can be followed.
[0038] Among them, the clamp is a common part in real life.
[0039] Among them, the controller 110 (PLC controller), the aluminum sheet elevator 101, the punching machine 102, the trimming machine 103, the cleaning machine 104, the first conveyor 105, the second conveyor 107, the third conveyor 108, the first electric push rod 203, the second electric push rod 206 and the fan 214 are all existing technologies, and their working principles are all public technologies. Their models can be selected according to actual conditions and will not be explained in detail here.
[0040] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A hot melt adhesive aluminum can production line, characterized by: It comprises a production mechanism (1), wherein a processing mechanism (2) is provided on the production mechanism (1); The processing mechanism (2) comprises a flat plate (201), a shell (202) is fixed on the top of the flat plate (201), a first electric push rod (203) is installed on the surface of the shell (202), a rectangular plate (204) is installed on one end of the telescopic end of the first electric push rod (203), a U-shaped frame (205) is fixed on the top of the shell (202), a second electric push rod (206) is installed on the top of the U-shaped frame (205), a plug-in plate (207) is installed on one end of the telescopic end of the second electric push rod (206), and rectangular grooves (209) are provided on both sides of the inner wall of the shell (202), and the inner wall tops of the two rectangular grooves (209) and the shell (20 2) is provided with a first rectangular hole (208) between the tops of the inner walls, two round rods (210) are fixed on the top of the inserting plate (207), an auxiliary hole (211) is provided on the lower side of the U-shaped frame (205), a second rectangular hole (212) is provided on the inner wall of the shell (202), a round tube (213) is fixedly passed through the outer wall of the feed end of the shell (202), a fan (214) is installed on the top of the shell (202), a hose (215) is installed on the air inlet end of the fan (214), a dust bag (216) is installed on the air outlet end of the fan (214) through a clamp, and an auxiliary plate (217) is movably sleeved inside the second rectangular hole (212); The production mechanism (1) comprises an aluminum sheet elevator (101), a punching machine (102), a trimming machine (103) and a cleaning machine (104); a first conveyor (105) is installed at the output end of the aluminum sheet elevator (101); a support frame (106) is installed on the outer surface of the aluminum sheet elevator (101); a second conveyor (107) is installed at the output end of the punching machine (102); a third conveyor (108) is installed at the output end of the trimming machine (103); an auxiliary frame (109) is provided on the front surface of the cleaning machine (104); a controller (110) is installed on the front surface of the trimming machine (103); and a protective shell (111) is fixed on the front surface of the trimming machine (103).
2. The hot melt adhesive aluminum can production line according to claim 1, characterized in that: One end of the telescopic end of the first electric push rod (203) movably penetrates the surface of the shell (202), the rectangular plate (204) is movably sleeved inside the shell (202), and one end of the telescopic end of the second electric push rod (206) is movably sleeved inside the auxiliary hole (211).
3. The hot melt adhesive aluminum can production line according to claim 1, characterized in that: The inserting plate (207) is movably sleeved between the interior of the two rectangular slots (209) and the interior of the first rectangular hole (208), and the side of the auxiliary plate (217) away from the first electric push rod (203) contacts the inner wall of the housing (202).
4. The hot melt adhesive aluminum can production line according to claim 1, characterized in that: The top end of each round rod (210) is movable through the lower side of the U-shaped frame (205), the air inlet end of the hose (215) is installed with the air outlet end of the round tube (213), and the front surface of the auxiliary plate (217) is fixed to the side of the rectangular plate (204) away from the plug plate (207).
5. The hot melt adhesive aluminum can production line according to claim 1 is characterized by: The output end of the first conveyor (105) is installed with the input end of the punching machine (102), the aluminum sheet elevator (101), the punching machine (102), the trimming machine (103) and the cleaning machine (104) are all electrically connected to the controller (110), and the first conveyor (105), the second conveyor (107) and the third conveyor (108) are all electrically connected to the controller (110).
6. The hot melt adhesive aluminum can production line according to claim 1, characterized in that: The output end of the second conveyor (107) is mounted on the input end of the trimmer (103), the output end of the third conveyor (108) is mounted on the input end of the cleaning machine (104), the surface of the support frame (106) is mounted on the surface of the first conveyor (105), and the controller (110) is located inside the protective shell (111).
7. The hot melt adhesive aluminum can production line according to claim 1, characterized in that: One side of the trimmer (103) is fixed to a side of the flat plate (201) close to the trimmer (103), the first electric push rod (203) is electrically connected to the controller (110), and the second electric push rod (206) is electrically connected to the controller (110).
8. The hot melt adhesive aluminum can production line according to claim 1, characterized in that: The fan (214) is electrically connected to the controller (110), the feed end of the housing (202) is mounted on one side of the trimmer (103), and the interior of the housing (202) is connected to the interior of the discharge end of the trimmer (103).
Citation Information
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