Full-automatic collecting and packaging system for die cutting operation excess materials of packaging box
By designing a fully automatic collection and packaging system for die-cutting homemade materials in the packaging box, the misalignment guidance and blowing components on the conveyor belt are used to separate the residual material from the cardboard, and automatically packaged through the conveyor belt and blocking components, the problem of incomplete separation of residual material is solved and the collection efficiency is improved.
Patent Information
- Application Number
- CN202422412152.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-08
AI Technical Summary
In the prior art, the residual material from the cardboard is not completely separated from the packaging box after die-cutting, resulting in the problem of incomplete collection of residual material.
A fully automatic collection and packaging system for die-cutting homemade materials in the packaging box is designed, including a conveyor belt, a misaligned guide assembly, a blowing assembly, an inclined hopper, a conveyor belt and a block assembly. The residual material is separated from the cardboard through the misaligned guide and blowing assembly on the conveyor belt, and conveyed to the temporary storage box through the conveyor belt. The briquetting assembly presses the residual material into blocks and then packs it.
The complete separation and automatic collection and packaging of residual materials from cardboard is achieved, which improves the efficiency and integrity of residual materials collection.
Smart Images

Figure CN223147885U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of packaging carton processing, in particular to a full-automatic collecting and packing system for waste materials generated in the die-cutting operation of packaging boxes. Background Art
[0002] In the production process of the paper packaging industry, a die-cutting machine will continuously generate waste materials, scraps and other surplus materials, which generally need to be processed by a collecting and packing device.
[0003] For example, Chinese Patent CN213860854U discloses a die-cutting and corner waste recycling system for corrugated paper packaging boxes, which relates to corrugated paper recycling and reuse equipment, including a die-cutting mechanism and a die-cutting corner waste collecting and packing mechanism. The die-cutting mechanism can be conveniently adjusted continuously axially to adjust the length, and the supporting die-cutting corner waste collecting and packing recycling device can greatly compress the volume. During use, by axially moving the pressure-deformed rubber roller, the damaged part can be avoided, and there is no need to disassemble and assemble the rubber roller, which is convenient and fast, and greatly prolongs the service life of the rubber roller; the die-cutting corner waste collecting and packing mechanism is set in a horizontal extrusion mode. Compared with vertical pressing, it is easier to collect and stack waste paper, and there is no need to disassemble the front and rear doors to form a bin. Moreover, such a design facilitates the installation and arrangement of the hydraulic driving device, can obtain a greater extrusion force, and obtains good results compared with the traditional method of setting the hydraulic power on the upper part and extruding downward.
[0004] However, its technology has the following problems. The auxiliary structure for separating the surplus materials from the packaging box cardboard is likely to cause incomplete separation of the surplus materials from the packaging box cardboard, which is not conducive to the collection of surplus materials.
[0005] Based on this, the utility model designs a full-automatic collecting and packing system for waste materials generated in the die-cutting operation of packaging boxes to solve the above problems. Content of the Utility Model
[0006] In view of the above-mentioned shortcomings of the prior art, the utility model provides a full-automatic collecting and packing system for waste materials generated in the die-cutting operation of packaging boxes.
[0007] To achieve the above purposes, the utility model is realized through the following technical solutions:
[0008] A full-automatic collecting and packing system for waste materials generated in the die-cutting operation of packaging boxes includes a material collecting box located at the discharge end of a packaging box die-cutting machine:
[0009] A conveyor belt for horizontally moving the packaging box cardboard is installed at equal intervals from front to back in the material collecting box;
[0010] The material collecting box is connected with a misalignment guiding component for adjusting the relative position of the packaging box cardboard and the conveyor belt in the front-rear direction, and the misalignment guiding component is located above the conveyor belt;
[0011] A blowing component for blowing the remaining materials off the packaging box cardboard is installed in the receiving box, and the air outlet end of the blowing component is arranged downward, and the air outlet end of the blowing component is above the conveyor belt;
[0012] The bottom of the receiving box is connected with an inclined hopper;
[0013] A horizontal conveyor belt for conveying the remaining materials is arranged below the inclined hopper;
[0014] A lifting conveyor belt for lifting the remaining materials is arranged below the discharge end of the horizontal conveyor belt;
[0015] A temporary storage box for temporarily storing the remaining materials is arranged at the discharge end of the lifting conveyor belt, and the discharge end of the lifting conveyor belt is located inside the temporary storage box;
[0016] A briquetting component for briquetting and discharging the remaining materials as a whole is connected below the temporary storage box;
[0017] A packing machine for winding and packaging the briquetted remaining materials is connected to the discharge end of the briquetting component;
[0018] A conveying roller component for conveying the wound briquetted remaining materials is arranged at the discharge end of the packing machine far away from the briquetting component.
[0019] Furthermore, an air outlet pipe for air extraction is connected to the side wall of the receiving box below the conveyor belt, and the air outlet pipe is connected to an external dust collector through a fan.
[0020] Furthermore, the dislocation guiding component includes a first cross plate, side support plates, inclined guide plates and a second cross plate. There are two groups of the second cross plates, which are arranged parallel to each other front and back. The left and right ends of the second cross plates are fixedly connected with inclined guide plates. The outer ends of the inclined guide plates far away from the second cross plates are fixedly connected with the first cross plate. The outer wall of the first cross plate is fixedly connected with side support plates, and the outer ends of the side support plates are fixedly connected with the inner wall of the receiving box.
[0021] Furthermore, the blowing component includes a spray head, an air inlet pipe and a cross pipe. The air inlet pipe is connected to the output end of an external fan. The air inlet pipe is connected with cross pipes at equal intervals. The bottom of the cross pipes is connected with spray heads at equal intervals. The air outlet end of the spray head is arranged downward, and the cross pipe is fixedly installed in the installation holes opened on the side wall of the receiving box.
[0022] Furthermore, the briquetting component includes a horizontal box body, a discharge port, a horizontal briquetting component, a side baffle component and a pushing and discharging component. A discharge port is opened at the front end of the right side of the horizontal box body. The horizontal box body is fixedly installed at the bottom of the discharge end of the temporary storage box. A horizontal briquetting component for briquetting is fixedly connected to the left side of the horizontal box body. The front and rear ends of the right side of the horizontal box body are respectively connected with a side baffle component for opening and closing the discharge port and a pushing and discharging component for pushing the briquetted remaining materials out of the horizontal box body. The side baffle component is in sliding fit with the discharge port.
[0023] Further, the horizontal pressing assembly includes a first hydraulic cylinder and an L-shaped push plate. The left side wall of the horizontal box body is fixedly connected to the first hydraulic cylinder. The driving end of the first hydraulic cylinder is fixedly connected to the L-shaped push plate. The outer wall of the L-shaped push plate is in sliding fit with the inner wall of the horizontal box body. After the vertical part of the L-shaped push plate moves past the right side of the discharge end of the temporary storage box, the horizontal part of the L-shaped push plate always blocks the discharge end of the temporary storage box.
[0024] Further, the side blocking assembly includes a second hydraulic cylinder and a side door panel. The second hydraulic cylinder is fixedly installed at the top right end of the horizontal box body. The driving end of the second hydraulic cylinder is connected to the second hydraulic cylinder, and the side door panel moves within the discharge port. When the L-shaped push plate moves, the side door panel blocks the discharge port. When pushing the discharging assembly, the side door panel opens the discharge port.
[0025] Further, the discharging assembly for pushing includes a straight push plate, a third hydraulic cylinder, and a groove. The third hydraulic cylinder is fixedly installed at the rear right side of the horizontal box body. The driving end of the third hydraulic cylinder is fixedly connected to the straight push plate. A groove is formed in the right inner wall of the horizontal box body. The straight push plate is in sliding fit with the groove. When the L-shaped push plate moves, the straight push plate is inserted into the groove.
[0026] Further, when the length of the remaining material is greater than two centimeters, a stretch film packing machine, a steel belt packing machine, or a cable tie packing machine is selected for the packing machine.
[0027] Further, when the length of the remaining material is less than two centimeters, the packing machine includes a stretch film packing machine and a cable tie packing machine. The stretch film packing machine winds the film first, and then the cable tie packing machine ties the cable tie.
[0028] Compared with the prior art, the beneficial effects of the present utility model are as follows: After the packaging box cardboard is die-cut by the packaging box die-cutting machine, the packaging box cardboard moves onto the conveyor belt and simultaneously enters the receiving box. The conveyor belt drives the movement of the packaging box cardboard. The misalignment guiding assembly comes into contact with the packaging box cardboard. The remaining material at the part of the packaging box cardboard that is not in contact with the conveyor belt falls into the receiving box under the action of the gas blown by the blowing assembly. Then, the misalignment guiding assembly adjusts the relative position of the packaging box cardboard and the conveyor belt in the front-rear direction. The misalignment guiding assembly adjusts the part of the packaging box cardboard in contact with the conveyor belt to be not in contact with the conveyor belt, and adjusts the part of the packaging box cardboard in contact with the conveyor belt to be in a suspended state, and falls into the receiving box under the action of the gas blown by the blowing assembly, realizing that all the remaining material on the packaging box cardboard falls, which is beneficial to the complete separation of the remaining material from the packaging box cardboard. The inclined hopper collects the remaining material and transports it to the temporary storage box through the horizontal conveyor belt and the lifting conveyor belt. The pressing block assembly pushes the remaining material for pressing. The pressing block assembly pushes the pressed block-shaped remaining material to the packing machine. The packing machine wraps it, and then discharges it from the conveyor roller assembly, realizing the automatic collection and packing of the remaining material in the packaging box die-cutting operation, which is beneficial to actual use. Description of the Drawings
[0029] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0030] Figure 1 The front view of a fully automatic collecting and packing system for the waste materials of the die-cutting operation of a packing box of the present invention;
[0031] Figure 2 The top view of the hidden conveying device of a fully automatic collecting and packing system for the waste materials of the die-cutting operation of a packing box of the present invention.
[0032] The labels in the figure respectively represent:
[0033] 1. Material receiving box 2. Conveyor belt 3. Misalignment guiding component 31. First cross plate 32. Side support plate 33. Inclined guide plate 34. Second cross plate 4. Blowing component 41. Sprayer 42. Air inlet pipe 43. Horizontal pipe 5. Air outlet pipe 6. Horizontal conveyor belt 7. Lifting conveyor belt 8. Temporary storage box 9. Pressing block component 91. First hydraulic cylinder 92. Horizontal box body 93. L-shaped pushing plate 94. Straight pushing plate 95. Second hydraulic cylinder 96. Third hydraulic cylinder 97. Groove 98. Side door panel 99. Discharge port 10. Packing machine 11. Conveyor roller component 12. Inclined hopper. Detailed implementation manners
[0034] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the protection scope of the present invention.
[0035] The "left", "right", "front", "rear", "upper", and "lower" mentioned in the following description are oriented in the Figure 1 viewing direction.
[0036] In some embodiments, please refer to Figures 1 - 2 of the specification drawings. A fully automatic collecting and packing system for the waste materials of the die-cutting operation of a packing box includes a material receiving box 1 located at the discharge end of the packing box die-cutting machine:
[0037] Inside the material receiving box 1, conveyor belts 2 for the horizontal movement of the packing box cardboard are installed at equal intervals from front to back;
[0038] The receiving bin 1 is connected with a misalignment guiding component 3 for adjusting the relative position of the packing box cardboard and the conveyor belt 2 in the front-rear direction, and the misalignment guiding component 3 is located above the conveyor belt 2;
[0039] A blowing component 4 for blowing the surplus material off the packing box cardboard is installed in the receiving bin 1, and the air outlet end of the blowing component 4 is arranged downward, and the air outlet end of the blowing component 4 is above the conveyor belt 2;
[0040] The bottom of the receiving bin 1 is connected with an inclined hopper 12;
[0041] A horizontal conveyor belt 6 for conveying the surplus material is arranged below the inclined hopper 12;
[0042] A lifting conveyor belt 7 for lifting the surplus material is arranged below the discharge end of the horizontal conveyor belt 6;
[0043] A temporary storage box 8 for temporarily storing the surplus material is arranged at the discharge end of the lifting conveyor belt 7, and the discharge end of the lifting conveyor belt 7 is located inside the temporary storage box 8.
[0044] A briquetting component 9 for briquetting and discharging the surplus material as a whole is connected below the temporary storage box 8;
[0045] The discharge end of the briquetting component 9 is connected with a packing machine 10 for winding and packaging the briquetted surplus material;
[0046] A conveying roller component 11 for conveying the wound briquetted surplus material is arranged at the discharge end of the packing machine 10 far away from the briquetting component 9.
[0047] After the packing box die cutter die-cuts the packing box cardboard, the packing box cardboard moves onto the conveyor belt 2 and at the same time enters the receiving bin 1. The conveyor belt 2 drives the packing box cardboard to move. The misalignment guiding component 3 contacts the packing box cardboard. The surplus material at the part of the packing box cardboard that does not contact the conveyor belt 2 falls into the receiving bin 1 under the action of the gas blown out by the blowing component 4. Then the misalignment guiding component 3 adjusts the relative position of the packing box cardboard and the conveyor belt 2 in the front-rear direction. The misalignment guiding component 3 adjusts the part of the packing box cardboard in contact with the conveyor belt 2 to not contact the conveyor belt 2 and adjusts the part of the packing box cardboard in contact with the conveyor belt 2 to a suspended state. Under the action of the gas blown out by the blowing component 4, it falls into the receiving bin 1, realizing that all the surplus material on the packing box cardboard falls, which is beneficial to the complete separation of the surplus material from the packing box cardboard. The inclined hopper 12 collects the surplus material and conveys it to the temporary storage box 8 through the horizontal conveyor belt 6 and the lifting conveyor belt 7. The briquetting component 9 pushes the surplus material for briquetting. The briquetting component 9 pushes the briquetted surplus material to the packing machine 10. The packing machine 10 winds and packages it, and then discharges it from the conveying roller component 11, realizing the automatic collection and packing of the surplus material in the packing box die-cutting operation, which is beneficial to actual use.
[0048] An air outlet pipe 5 for air extraction is connected to the side wall of the receiving bin 1 below the conveyor belt 2, and the air outlet pipe 5 is connected to an external dust collector through a fan;
[0049] The dislocation guiding assembly 3 includes a first cross plate 31, side support plates 32, inclined guide plates 33 and second cross plates 34. There are two groups of second cross plates 34, which are arranged in parallel front and back. Both the left and right ends of the second cross plates 34 are fixedly connected with inclined guide plates 33. The outer ends of the inclined guide plates 33 away from the second cross plates 34 are fixedly connected with a first cross plate 31. The outer wall of the first cross plate 31 is fixedly connected with side support plates 32, and the outer ends of the side support plates 32 are fixedly connected with the inner wall of the material receiving box 1.
[0050] After the packaging box die-cutting machine die-cuts the packaging box cardboard, the packaging box cardboard moves onto the conveyor belt 2 and simultaneously enters the material receiving box 1. The conveyor belt 2 drives the movement of the packaging box cardboard. The first cross plate 31 of the dislocation guiding assembly 3 contacts the packaging box cardboard. The remaining material of the part of the packaging box cardboard that is not in contact with the conveyor belt 2 falls into the material receiving box 1 under the action of the gas blown by the blowing assembly 4. Then, the inclined guide plates 33 of the dislocation guiding assembly 3 adjust the relative position of the packaging box cardboard and the conveyor belt 2 in the front-back direction. The dislocation guiding assembly 3 adjusts the contact part of the packaging box cardboard and the conveyor belt 2 to be not in contact with the conveyor belt 2. The conveyor belt 2 continues to drive the movement of the packaging box cardboard. The packaging box cardboard contacts the second cross plate 34, and the contact part of the packaging box cardboard and the conveyor belt 2 is adjusted to a suspended state and falls into the material receiving box 1 under the action of the gas blown by the blowing assembly 4, realizing that all the remaining material on the packaging box cardboard falls.
[0051] The blowing assembly 4 includes spray heads 41, an air inlet pipe 42 and a cross pipe 43. The air inlet pipe 42 is connected to the output end of an external fan. The air inlet pipe 42 is equidistantly connected with cross pipes 43. The bottom of the cross pipes 43 is equidistantly connected with spray heads 41, and the air outlet ends of the spray heads 41 are arranged downward. The cross pipes 43 are fixedly installed in the installation holes opened on the side wall of the material receiving box 1.
[0052] The external fan pumps high-pressure gas into the air inlet pipe 42, and then enters the spray heads 41 through the cross pipes 43. The high-pressure gas sprays out from the spray heads 41. The high-pressure gas contacts the remaining material of the packaging box die-cutting operation and gives the remaining material of the packaging box die-cutting operation a downward force, facilitating the separation of the remaining material of the packaging box die-cutting operation from the packaging box cardboard.
[0053] The pressing block assembly 9 includes a horizontal box body 92, a discharge port 99, a horizontal pressing assembly, a side blocking assembly and a pushing and discharging assembly. A discharge port 99 is opened at the front end of the right side of the horizontal box body 92. The horizontal box body 92 is fixedly installed at the bottom of the discharge end of the temporary storage box 8. The left side of the horizontal box body 92 is fixedly connected with a horizontal pressing assembly for pressing blocks. The front and rear ends of the right side of the horizontal box body 92 are respectively connected with a side blocking assembly for opening and closing the discharge port 99 and a pushing and discharging assembly for pushing the block-shaped remaining material out of the horizontal box body 92. The side blocking assembly is in sliding connection with the discharge port 99 in a fitting manner.
[0054] The horizontal pressing assembly includes a first hydraulic cylinder 91 and an L-shaped push plate 93. The first hydraulic cylinder 91 is fixedly connected to the left side wall of the horizontal box body 92. The driving end of the first hydraulic cylinder 91 is fixedly connected with the L-shaped push plate 93. The outer wall of the L-shaped push plate 93 is in sliding fit with the inner wall of the horizontal box body 92. After the vertical part of the L-shaped push plate 93 moves past the right side of the discharge end of the temporary storage box 8, the horizontal part of the L-shaped push plate 93 always blocks the discharge end of the temporary storage box 8.
[0055] The side blocking assembly includes a second hydraulic cylinder 95 and a side door plate 98. The second hydraulic cylinder 95 is fixedly installed at the top right end of the horizontal box body 92. The driving end of the second hydraulic cylinder 95 is connected to the second hydraulic cylinder 95, and the side door plate 98 moves in the discharge port 99. When the L-shaped push plate 93 moves, the side door plate 98 blocks the discharge port 99, and when pushing the discharge component, the side door plate 98 opens the discharge port 99.
[0056] The pushing discharge assembly includes a straight push plate 94, a third hydraulic cylinder 96 and a groove 97. The third hydraulic cylinder 96 is fixedly installed at the rear right side of the horizontal box body 92. The driving end of the third hydraulic cylinder 96 is fixedly connected with the straight push plate 94. A groove 97 is formed in the right inner wall of the horizontal box body 92. The straight push plate 94 is in sliding fit with the groove 97. When the L-shaped push plate 93 moves, the straight push plate 94 is inserted into the groove 97.
[0057] The third hydraulic cylinder 96 of the pushing discharge assembly drives the straight push plate 94 to be inserted into the groove 97. The second hydraulic cylinder 95 drives the discharge port 99 to move downward to block the discharge port 99. The first hydraulic cylinder 91 of the horizontal pressing assembly of the pressing block assembly 9 drives the L-shaped push plate 93 to move leftward. The remaining material in the temporary storage box 8 falls into the horizontal box body 92 by gravity. The first hydraulic cylinder 91 drives the L-shaped push plate 93 to move rightward. The L-shaped push plate 93 pushes the remaining material to move rightward. The L-shaped push plate 93, the horizontal box body 92, the straight push plate 94 and the side door plate 98 cooperate to press the remaining material into a block-shaped remaining material. The second hydraulic cylinder 95 drives the side door plate 98 to move upward. The side door plate 98 opens the discharge port 99. The third hydraulic cylinder 96 drives the straight push plate 94 to move forward. The straight push plate 94 pushes the block-shaped remaining material in the horizontal box body 92 towards the packing machine 10.
[0058] When the length of the remaining material is greater than two centimeters, the packing machine 10 selects a film wrapping packing machine, a steel belt packing machine or a strapping machine. When the length of the remaining material is greater than two centimeters, there is no problem of small remaining material falling.
[0059] When the length of the remaining material is less than two centimeters, the packing machine 10 includes a film wrapping packing machine and a strapping machine. The film wrapping packing machine wraps the film first, and then the strapping machine straps the material, which can avoid the problem of small remaining material falling.
[0060] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A fully automatic collecting and packing system for waste materials in carton die-cutting operation, including a receiving box (1) located at the discharging end of a carton die-cutting machine, characterized in that: In the receiving box (1), a conveyor belt (2) for horizontal movement of carton cardboard is installed at equal intervals from front to back; The receiving box (1) is connected with a dislocation guiding component (3) for adjusting the relative position of the carton cardboard and the conveyor belt (2) in the front-back direction, and the dislocation guiding component (3) is located above the conveyor belt (2); In the receiving box (1), a blowing component (4) for blowing the waste materials off the carton cardboard is installed, and the air outlet end of the blowing component (4) is arranged downward, and the air outlet end of the blowing component (4) is above the conveyor belt (2); The bottom of the receiving box (1) is connected with an inclined hopper (12); Below the inclined hopper (12), a horizontal conveyor belt (6) for conveying waste materials is provided; Below the discharging end of the horizontal conveyor belt (6), a lifting conveyor belt (7) for lifting waste materials is provided; At the discharging end of the lifting conveyor belt (7), a temporary storage box (8) for temporarily storing waste materials is provided, and the discharging end of the lifting conveyor belt (7) is located inside the temporary storage box (8); Below the temporary storage box (8), a briquetting component (9) for pressing the waste materials into blocks and discharging them as a whole is connected; The discharging end of the briquetting component (9) is connected with a packing machine (10) for winding and packing the block-shaped waste materials; At the discharging end of the packing machine (10) far from the briquetting component (9), a conveying roller component (11) for conveying the wound block-shaped waste materials is provided.
2. The full-automatic collection and packing system for the waste materials of the die-cutting operation of the packing box according to claim 1, wherein At the side wall of the receiving box (1) below the conveyor belt (2), an air outlet pipe (5) for air extraction is connected, and the air outlet pipe (5) is connected with an external dust collector through a fan.
3. The full-automatic collecting and packing system for the waste materials of the die-cutting operation of the packing box according to claim 2, wherein, The dislocation guiding component (3) includes a first cross plate (31), side support plates (32), inclined guide plates (33) and a second cross plate (34). There are two groups of the second cross plates (34), and they are arranged parallel to each other in the front-back direction. Both the left and right ends of the second cross plate (34) are fixedly connected with inclined guide plates (33). The outer ends of the inclined guide plates (33) far from the second cross plate (34) are fixedly connected with the first cross plate (31). The outer wall of the first cross plate (31) is fixedly connected with side support plates (32), and the outer ends of the side support plates (32) are fixedly connected with the inner wall of the receiving box (1).
4. The fully automatic collecting and packing system for the waste materials of the die-cutting operation of the packing box according to claim 3, wherein, The blowing component (4) includes a spray head (41), an air inlet pipe (42) and a cross pipe (43). The air inlet pipe (42) is connected with the output end of an external fan. The air inlet pipe (42) is connected with cross pipes (43) at equal intervals. The bottom of the cross pipe (43) is connected with spray heads (41) at equal intervals, and the air outlet ends of the spray heads (41) are arranged downward, and the cross pipe (43) is fixedly installed in the installation holes opened on the side wall of the receiving box (1).
5. The full-automatic collection and packing system for the waste materials of the die-cutting operation of the packing box according to claim 4, wherein, The briquetting assembly (9) includes a horizontal box body (92), a discharge port (99), a horizontal pressing assembly, a side baffle assembly, and a pushing and discharging assembly. The front end on the right side of the horizontal box body (92) is provided with a discharge port (99). The horizontal box body (92) is fixedly installed at the bottom of the discharge end of the temporary storage box (8). A horizontal pressing assembly for briquetting is fixedly connected to the left side of the horizontal box body (92). The front and rear ends on the right side of the horizontal box body (92) are respectively connected with a side baffle assembly for opening and closing the discharge port (99) and a pushing and discharging assembly for pushing the briquetted residual material out of the horizontal box body (92). The side baffle assembly is in sliding connection with the discharge port (99) in a fitting manner.
6. The full-automatic collecting and packing system for the waste materials of the die-cutting operation of the packing box according to claim 5, characterized in that, The horizontal pressing assembly includes a first hydraulic cylinder (91) and an L-shaped push plate (93). The left side wall of the horizontal box body (92) is fixedly connected with a first hydraulic cylinder (91). The driving end of the first hydraulic cylinder (91) is fixedly connected with an L-shaped push plate (93). The outer wall of the L-shaped push plate (93) is in sliding connection with the inner wall of the horizontal box body (92) in a fitting manner. After the vertical part of the L-shaped push plate (93) moves past the right side of the discharge end of the temporary storage box (8), the horizontal part of the L-shaped push plate (93) always blocks the discharge end of the temporary storage box (8).
7. The fully automatic collection and packing system for the waste materials of the die-cutting operation of the packing box according to claim 6, characterized in that, The side baffle assembly includes a second hydraulic cylinder (95) and a side door plate (98). The second hydraulic cylinder (95) is fixedly installed at the top of the right end of the horizontal box body (92). The driving end of the second hydraulic cylinder (95) is connected with a second hydraulic cylinder (95), and the side door plate (98) moves in the discharge port (99). When the L-shaped push plate (93) moves, the side door plate (98) blocks the discharge port (99), and when the pushing and discharging assembly works, the side door plate (98) opens the discharge port (99).
8. The full-automatic collecting and packing system for the surplus materials of the die-cutting operation of the packing box according to claim 7, characterized in that, The pushing and discharging assembly includes a straight push plate (94), a third hydraulic cylinder (96), and a groove (97). The third hydraulic cylinder (96) is fixedly installed at the rear end on the right side of the horizontal box body (92). The driving end of the third hydraulic cylinder (96) is fixedly connected with a straight push plate (94). A groove (97) is opened on the inner wall on the right side of the horizontal box body (92). The straight push plate (94) is in sliding connection with the groove (97) in a fitting manner. When the L-shaped push plate (93) moves, the straight push plate (94) is inserted into the groove (97).
9. The full-automatic collection and packing system for the waste materials of the die-cutting operation of the packing box according to claim 8, wherein, When the length of the residual material is greater than two centimeters, the packaging machine (10) selects a film winding packaging machine, a steel belt packaging machine, or a strapping machine.
10. The full-automatic collecting and packing system for the waste materials of the die-cutting operation of the packing box according to claim 8, characterized in that, When the length of the residual material is less than two centimeters, the packaging machine (10) includes a film winding packaging machine and a strapping machine. The film winding packaging machine winds the film first, and then the strapping machine straps the material.
Citation Information
Patent Citations
Die cutting and leftover material recycling system for corrugated paper packaging box
CN213860854U