Novel carton manufacturing and processing equipment
By setting up an indentation structure and hydraulic device in the carton manufacturing and processing equipment, the problem of skewed cardboard grooves is solved, and the rapid folding and cutting quality of cardboard is achieved, while protecting the cardboard from damage.
Patent Information
- Application Number
- CN202422040700.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-22
AI Technical Summary
When the existing carton manufacturing and processing equipment performs groove processing on the cardboard, due to the thick thickness of the support plate, it is easy to shift and cause the groove skew, which affects the folding and forming of the cardboard.
A new type of carton manufacturing and processing equipment is designed. By setting up an indentation structure, the cut support plate is transported to the indentation structure, the surface of the carton is indented, and the hydraulic device is used to drive the hydraulic rod downward, disperse the pressure through the hydraulic support, so that the pressure on the upper indentation plate is more uniform, and the limiting plate and buffer spring are used to prevent damage to the cardboard.
The rapid folding and forming of the cardboard is achieved, preventing groove skew, improving cutting quality, and protecting the cardboard from damage through the buffer structure.
Smart Images

Figure CN223131495U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carton manufacturing and processing, in particular to a new type of carton manufacturing and processing equipment. Background Technique
[0002] Carton manufacturing and processing refers to the production process of converting cardboard into finished cartons through a series of mechanical processing steps such as cutting, die-cutting and slotting, printing, and gluing the box. It is necessary to accurately cut the cardboard according to the production size.
[0003] During the use of existing carton manufacturing and processing equipment, by performing slotting on the cardboard to form each panel and folding line of the carton, due to the relatively thick thickness of the support plate, it is easy to shift when applying pressure to the cutting tool to slot the cardboard, resulting in skewed slotting and affecting the subsequent folding and forming of the cardboard.
[0004] Therefore, in view of the problem that the cardboard is prone to skew during the slotting process, a new type of carton manufacturing and processing equipment can be designed. By setting an indentation structure, the cut support plate is transported under the indentation structure to perform indentation processing on the surface of the carton, and then slotting is performed on the carton at the indentation, so that the cardboard after indentation and slotting can be quickly folded into a carton. Content of the Utility Model
[0005] In order to overcome the problem that during the use of carton manufacturing and processing equipment, by performing slotting on the cardboard to form each panel and folding line of the carton, due to the relatively thick thickness of the support plate, it is easy to shift when applying pressure to the cutting tool to slot the cardboard, resulting in skewed slotting and affecting the subsequent folding and forming of the cardboard.
[0006] The technical solution of the utility model is: a new type of carton manufacturing and processing equipment, including a cutting bracket, a support assembly, a sliding assembly, a cutting assembly, a clamping assembly, a transportation assembly, an indentation bracket, a hydraulic device, a hydraulic rod, a hydraulic bracket, an upper indentation plate, a buffer frame, a telescopic rod, a buffer spring, a lower indentation plate and a limiting plate; a support assembly is arranged at the bottom surface of the cutting bracket, a sliding assembly is arranged at the side surface of the cutting bracket, a cutting assembly is arranged inside the sliding assembly, a clamping assembly is arranged at the side surface of the cutting bracket, a transportation assembly is arranged at the top surface of the cutting bracket, an indentation bracket is arranged at the top surface of the support assembly, a hydraulic device is arranged at the top surface of the indentation bracket, a hydraulic rod is arranged at the output end of the hydraulic device, a hydraulic bracket is arranged at the bottom surface of the hydraulic rod, an upper indentation plate is arranged at the bottom surface of the hydraulic bracket, a buffer frame is arranged at the bottom surface of the support assembly, a telescopic rod is arranged at the top surface of the buffer frame, a buffer spring is arranged on the outer side of the telescopic rod, a lower indentation plate is arranged at the top surface of the telescopic rod, and a limiting plate is arranged at the top surface of the lower indentation plate.
[0007] Preferably, the support component can provide stable support for the entire device. The sliding component can drive the cutting component to move. The cutting component facilitates the cutting process of the cardboard. The clamping component can prevent the cardboard from shifting during cutting. The transportation component can transport the cut cardboard. The indentation bracket provides support for the hydraulic device. The indentation device drives the hydraulic rod to move downward, and then the hydraulic bracket pushes the upper indentation plate to indent the cardboard. The buffer frame provides support for the telescopic rod. The limiting plate limits the cardboard on the lower indentation plate. During the indentation process, the elastic force of the buffer spring provides buffering for the cardboard to prevent damage to the cardboard caused by excessive pressure.
[0008] Preferably, the support component includes a support bottom plate, support columns, anti-slip pads, and a cutting groove. The bottom surface of the cutting bracket is provided with a support bottom plate. The bottom surface of the support bottom plate is provided with support columns. There are four groups of support columns. The bottom surface of the support columns is provided with anti-slip pads. The top surface of the support bottom plate is provided with a cutting groove. The support bottom plate and the support columns provide support for the entire device. The anti-slip pads prevent the device from shifting and sliding during operation. The cutting groove facilitates the cutting of the cardboard.
[0009] Preferably, the sliding component includes a sliding motor, a threaded rod, a sliding rod, and a support slider. The side of the cutting bracket is provided with a sliding motor. The output end of the sliding motor is provided with a threaded rod. The side of the cutting bracket is provided with a sliding rod. The outside of the threaded rod is provided with a support slider. The support slider is slidably connected to the sliding rod. The sliding motor drives the threaded rod to rotate, thereby driving the support slider to slide on the sliding rod and driving the cutting knife to move.
[0010] Preferably, the cutting component includes an electric push rod, a cutting frame, a cutting motor, and a cutting knife. The top surface of the support slider is provided with electric push rods. There are two groups of electric push rods. The bottom surface of the electric push rods is provided with a cutting frame. The side of the cutting frame is provided with a cutting motor. The output end of the cutting motor is provided with a cutting knife. The cutting knife is arranged inside the cutting frame. The cutting motor drives the cutting knife to rotate. Then, the electric push rod pushes the cutting frame downward, so that the cardboard can be cut during the movement.
[0011] Preferably, the clamping component includes a clamping push rod, a clamping plate, and a clamping sliding rod. The side of the cutting bracket is provided with clamping push rods. There are two groups of clamping push rods. The side of the clamping push rods is provided with clamping plates. The side of the clamping plates is provided with clamping sliding rods. There are two groups of clamping sliding rods. The clamping sliding rods are slidably connected to the cutting bracket. The clamping push rods push the clamping plates to move. The cardboard is clamped and fixed by two groups of clamping plates moving towards each other to prevent the cardboard from shifting during cutting and affecting the cutting quality.
[0012] Preferably, the transportation component includes a transportation bracket, a transportation motor, transportation rollers, and clamping plates; a transportation bracket is provided on the top surface of the cutting bracket, the transportation bracket is provided on the top surface of the indentation bracket, a transportation motor is provided on the side surface of the transportation bracket, the output end of the transportation motor is provided with transportation rollers, clamping plates are provided on the top surface of the supporting bottom plate, and there are two groups of clamping plates. The transportation rollers are driven to rotate by the transportation motor to transport the cut support plates to the lower indentation plate, and the cardboard is prevented from shifting during transportation by the clamping plates.
[0013] Preferably, an indentation bracket is provided on the top surface of the supporting bottom plate, a buffer frame is provided on the bottom surface of the supporting bottom plate, a telescopic rod is provided on the inner top surface of the buffer frame, there are four groups of telescopic rods, and there are two groups of limiting plates. The hydraulic rod is driven to move downward by a hydraulic device, and the pressure is dispersed through the hydraulic bracket, so that the pressure acting on the upper indentation plate is more uniform. The upper indentation plate is pushed to indent the cardboard on the lower indentation plate. During the indentation process, the cardboard is limited by the limiting plates, and part of the pressure of the upper indentation plate is absorbed and offset by the elastic force of the buffer spring to provide buffering for the cardboard and prevent the cardboard from being damaged due to excessive pressure.
[0014] Advantages of the present utility model:
[0015] 1. Compared with traditional carton manufacturing and processing equipment, during use, by grooving the cardboard to form each panel and folding line of the carton, since the thickness of the support plate is relatively thick, it is easy to shift when grooving the cardboard by applying pressure to the cutting tool, resulting in skewed grooving, which affects the subsequent folding and forming of the cardboard. By setting an indentation structure, after cutting the cardboard according to the size, the cut support plates are transported under the indentation structure to indent the surface of the carton. During subsequent processing, the carton is grooved at the indentation, so that the cardboard after indentation and grooving can be quickly folded into a carton;
[0016] 2. The hydraulic rod is driven to move downward by a hydraulic device, and the pressure is dispersed through the hydraulic bracket, so that the pressure acting on the upper indentation plate is more uniform. The upper indentation plate is pushed to indent the cardboard on the lower indentation plate. During the indentation process, the cardboard is limited by the limiting plates, and part of the pressure of the upper indentation plate is absorbed and offset by the elastic force of the buffer spring to provide buffering for the cardboard and prevent the cardboard from being damaged due to excessive pressure;
[0017] 3. Use the clamping push rod to push the clamping plate to clamp and fix the cardboard, preventing the support plate from shifting during the cutting process and affecting the cutting quality. Use the cutting motor to drive the cutting knife to rotate, and then use the electric push rod to push the cutting frame downward. Use the sliding motor to drive the threaded rod to rotate, driving the support slider to slide on the sliding rod, so that the cardboard can be cut during the movement. Use the transport motor to drive the transport roller to rotate, transporting the cut support plate to the lower indentation plate, and preventing the cardboard from shifting during the transportation through the positioning plate. Description of the Drawings
[0018] Figure 1 Shown is a three-dimensional structural schematic diagram of a support assembly of a new type of carton manufacturing and processing equipment of the present utility model;
[0019] Figure 2 Shown is a three-dimensional structural schematic diagram of a cutting assembly of a new type of carton manufacturing and processing equipment of the present utility model;
[0020] Figure 3 Shown is a three-dimensional structural schematic diagram of a transport assembly of a new type of carton manufacturing and processing equipment of the present utility model;
[0021] Figure 4 Shown is a first three-dimensional structural schematic diagram of an indentation structure of a new type of carton manufacturing and processing equipment of the present utility model;
[0022] Figure 5 Shown is a second structural schematic diagram of an indentation structure of a new type of carton manufacturing and processing equipment of the present utility model;
[0023] Description of the reference numerals: 1. Cutting bracket; 201. Support bottom plate; 202. Support column; 203. Anti-slip pad; 204. Cutting groove; 301. Sliding motor; 302. Threaded rod; 303. Sliding rod; 304. Support slider; 401. Electric push rod; 402. Cutting frame; 403. Cutting motor; 404. Cutting knife; 501. Clamping push rod; 502. Clamping plate; 503. Clamping slide rod; 601. Transport bracket; 602. Transport motor; 603. Transport roller; 604. Positioning plate; 7. Indentation bracket; 71. Hydraulic device; 72. Hydraulic rod; 73. Hydraulic bracket; 74. Upper indentation plate; 75. Buffer frame; 76. Expansion rod; 77. Buffer spring; 78. Lower indentation plate; 79. Limiting plate. Detailed Implementation Manner
[0024] The present utility model will be further described below with reference to the drawings and embodiments.
[0025] Please refer to Figures 1-5, the present utility model provides an embodiment: a new carton manufacturing and processing device, including a cutting bracket 1, a support assembly, a sliding assembly, a cutting assembly, a clamping assembly, a transportation assembly, a scoring bracket 7, a hydraulic device 71, a hydraulic rod 72, a hydraulic bracket 73, an upper scoring plate 74, a buffer frame 75, a telescopic rod 76, a buffer spring 77, a lower scoring plate 78 and a limiting plate 79; a support assembly is arranged on the bottom surface of the cutting bracket 1, a sliding assembly is arranged on the side surface of the cutting bracket 1, a cutting assembly is arranged inside the sliding assembly, a clamping assembly is arranged on the side surface of the cutting bracket 1, a transportation assembly is arranged on the top surface of the cutting bracket 1, a scoring bracket 7 is arranged on the top surface of the support assembly, a hydraulic device 71 is arranged on the top surface of the scoring bracket 7, an output end of the hydraulic device 71 is provided with a hydraulic rod 72, a bottom surface of the hydraulic rod 72 is provided with a hydraulic bracket 73, a bottom surface of the hydraulic bracket 73 is provided with an upper scoring plate 74, a buffer frame 75 is arranged on the bottom surface of the support assembly, a telescopic rod 76 is arranged on the top surface of the buffer frame 75, a buffer spring 77 is arranged on the outer side of the telescopic rod 76, a top surface of the telescopic rod 76 is provided with a lower scoring plate 78, and a limiting plate 79 is arranged on the top surface of the lower scoring plate 78. The support assembly can provide a stable supporting effect for the whole device. The sliding assembly can drive the cutting assembly to move. The cutting assembly is convenient for cutting the cardboard. The clamping assembly can prevent the cardboard from shifting during the cutting process. The transportation assembly can transport the cut cardboard. The scoring bracket 7 provides support for the hydraulic device 71. The hydraulic device 71 drives the hydraulic rod 72 to move downward. The hydraulic bracket 73 pushes the upper scoring plate 74 to score the cardboard. The buffer frame 75 provides support for the telescopic rod 76. The limiting plate 79 limits the cardboard on the lower scoring plate 78. During the scoring process, the elastic force of the buffer spring 77 provides buffering for the cardboard to prevent the cardboard from being damaged due to excessive pressure.
[0026] Please refer to Figures 1-5, in this embodiment, the support assembly includes a support base plate 201, support columns 202, anti-slip pads 203 and cutting grooves 204; a support base plate 201 is provided on the bottom surface of the cutting bracket 1, support columns 202 are provided on the bottom surface of the support base plate 201, there are four groups of support columns 202, anti-slip pads 203 are provided on the bottom surfaces of the support columns 202, and cutting grooves 204 are formed on the top surface of the support base plate 201. The support base plate 201 and the support columns 202 are used to support the entire device. The anti-slip pads 203 prevent the device from shifting and sliding during operation. The cutting grooves 204 facilitate cutting the cardboard. The sliding assembly includes a sliding motor 301, a threaded rod 302, a sliding rod 303 and a support slider 304; a sliding motor 301 is provided on the side surface of the cutting bracket 1, the output end of the sliding motor 301 is provided with a threaded rod 302, a sliding rod 303 is provided on the side surface of the cutting bracket 1, a support slider 304 is provided on the outer side of the threaded rod 302, and the support slider 304 is slidably connected to the sliding rod 303. The sliding motor 301 is used to drive the threaded rod 302 to rotate, thereby driving the support slider 304 to slide on the sliding rod 303 and driving the cutting knife 404 to move. The cutting assembly includes an electric push rod 401, a cutting frame 402, a cutting motor 403 and a cutting knife 404; electric push rods 401 are provided on the top surface of the support slider 304, there are two groups of electric push rods 401, a cutting frame 402 is provided on the bottom surface of the electric push rod 401, a cutting motor 403 is provided on the side surface of the cutting frame 402, the output end of the cutting motor 403 is provided with a cutting knife 404, and the cutting knife 404 is arranged inside the cutting frame 402. The cutting motor 403 is used to drive the cutting knife 404 to rotate, and the electric push rod 401 is used to push the cutting frame 402 downward, so that the cardboard can be cut during the movement process.
[0027] Please refer to Figures 1-5, in this embodiment, the clamping assembly includes a clamping push rod 501, a clamping plate 502 and a clamping slide rod 503; the clamping push rod 501 is arranged on the side of the cutting bracket 1, and there are two groups of clamping push rods 501. The clamping plate 502 is arranged on the side of the clamping push rod 501, and the clamping slide rod 503 is arranged on the side of the clamping plate 502. There are two groups of clamping slide rods 503, and the clamping slide rods 503 are slidably connected to the cutting bracket 1. The clamping plate 502 is pushed to move by the clamping push rod 501, and the cardboard is clamped and fixed by two groups of clamping plates 502 moving towards each other, preventing the support plate from shifting during cutting and affecting the cutting quality. The transportation assembly includes a transportation bracket 601, a transportation motor 602, a transportation roller 603 and a positioning plate 604; the transportation bracket 601 is arranged on the top surface of the cutting bracket 1, and the transportation bracket 601 is arranged on the top surface of the indentation bracket 7. The transportation motor 602 is arranged on the side of the transportation bracket 601, and the output end of the transportation motor 602 is provided with the transportation roller 603. The positioning plate 604 is arranged on the top surface of the support bottom plate 201, and there are two groups of positioning plates 604. The transportation roller 603 is driven to rotate by the transportation motor 602, and the cut support plate is transported to the lower indentation plate 78. The cardboard is prevented from shifting during transportation by the positioning plate 604. The indentation bracket 7 is arranged on the top surface of the support bottom plate 201, and the buffer frame 75 is arranged on the bottom surface of the support bottom plate 201. The telescopic rod 76 is arranged on the inner top surface of the buffer frame 75, and there are four groups of telescopic rods 76. There are two groups of limiting plates 79. The hydraulic rod 72 is driven to move downward by the hydraulic device 71, and the pressure is dispersed by the hydraulic bracket 73, making the pressure acting on the upper indentation plate 74 more uniform. The cardboard on the lower indentation plate 78 is subjected to indentation treatment by pushing the upper indentation plate 74. During the indentation process, the cardboard is limited by the limiting plate 79, and part of the pressure of the upper indentation plate 74 is absorbed and offset by the elastic force of the buffer spring 77, providing buffering for the cardboard and preventing the cardboard from being damaged due to excessive pressure.
[0028] When working, the clamping plate 502 is pushed to move by the clamping push rod 501, and the cardboard is clamped and fixed by two groups of clamping plates 502 moving towards each other, preventing the support plate from shifting during cutting and affecting the cutting quality;
[0029] The cutting knife 404 is driven to rotate by the cutting motor 403, the cutting frame 402 is pushed downward by the electric push rod 401, and the threaded rod 302 is driven to rotate by the sliding motor 301, so as to drive the support slider 304 to slide on the sliding rod 303, and the cardboard can be cut during the movement;
[0030] The transportation roller 603 is driven to rotate by the transportation motor 602, and the cut support plate is transported to the lower indentation plate 78. The cardboard is prevented from shifting during transportation by the positioning plate 604;
[0031] The hydraulic device 71 is used to drive the hydraulic rod 72 to move downward, and the pressure is dispersed through the hydraulic support 73, making the pressure acting on the upper indentation plate 74 more uniform. By pushing the upper indentation plate 74, indentation processing is performed on the cardboard on the lower indentation plate 78. During the indentation process, the cardboard is limited by the limiting plate 79. Part of the pressure of the upper indentation plate 74 is absorbed and offset by the elastic force of the buffer spring 77 to provide buffering for the cardboard and prevent the cardboard from being damaged due to excessive pressure.
[0032] Through the above steps, the support component provides a stable support for the entire device. The sliding component is used to drive the cutting component to move, and it is convenient to cut the cardboard through the cutting component. The clamping component is used to prevent the cardboard from shifting during the cutting process. The transportation component transports the cut cardboard. The hydraulic device 71 is used to drive the hydraulic rod 72 to move downward, and then the upper indentation plate 74 is pushed through the hydraulic support 73 to perform indentation processing on the cardboard. During the indentation process, the cardboard on the lower indentation plate 78 is limited by the limiting plate 79. The elastic force of the buffer spring 77 provides buffering for the cardboard to prevent the cardboard from being damaged due to excessive pressure.
[0033] The above has described in detail the embodiments of the present invention in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.
Claims
1. A new type of carton manufacturing and processing equipment, including a cutting bracket (1); characterized in that: It also includes a support component, a sliding component, a cutting component, a clamping component, a transportation component, an indentation bracket (7), a hydraulic device (71), a hydraulic rod (72), a hydraulic support (73), an upper indentation plate (74), a buffer frame (75), a telescopic rod (76), a buffer spring (77), a lower indentation plate (78) and a limit plate (79); a support component is provided on the bottom surface of the cutting bracket (1), a sliding component is provided on the side surface of the cutting bracket (1), a cutting component is provided inside the sliding component, a clamping component is provided on the side surface of the cutting bracket (1), a transportation component is provided on the top surface of the cutting bracket (1), an indentation bracket (7) is provided on the top surface of the support component, a hydraulic device (71) is provided on the top surface of the indentation bracket (7), a hydraulic rod (72) is provided at the output end of the hydraulic device (71), a hydraulic support (73) is provided on the bottom surface of the hydraulic rod (72), an upper indentation plate (74) is provided on the bottom surface of the hydraulic support (73), a buffer frame (75) is provided on the bottom surface of the support component, a telescopic rod (76) is provided on the top surface of the buffer frame (75), a buffer spring (77) is provided on the outer side of the telescopic rod (76), a lower indentation plate (78) is provided on the top surface of the telescopic rod (76), and a limit plate (79) is provided on the top surface of the lower indentation plate (78).
2. The novel carton manufacturing and processing equipment according to claim 1, characterized in that: The support component includes a support bottom plate (201), support columns (202), anti-slip pads (203) and a cutting groove (204); a support bottom plate (201) is provided on the bottom surface of the cutting bracket (1), support columns (202) are provided on the bottom surface of the support bottom plate (201), there are four groups of support columns (202), anti-slip pads (203) are provided on the bottom surfaces of the support columns (202), and a cutting groove (204) is formed on the top surface of the support bottom plate (201).
3. A novel carton manufacturing and processing device according to claim 1, characterized in that: The sliding component includes a sliding motor (301), a threaded rod (302), a sliding rod (303) and a support slider (304); a sliding motor (301) is provided on the side surface of the cutting bracket (1), a threaded rod (302) is provided at the output end of the sliding motor (301), a sliding rod (303) is provided on the side surface of the cutting bracket (1), a support slider (304) is provided on the outer side of the threaded rod (302), and the support slider (304) is slidably connected to the sliding rod (303).
4. A novel carton manufacturing and processing device according to claim 3, characterized in that: The cutting component includes an electric push rod (401), a cutting frame (402), a cutting motor (403) and a cutting knife (404); an electric push rod (401) is provided on the top surface of the support slider (304), there are two groups of electric push rods (401), a cutting frame (402) is provided on the bottom surface of the electric push rod (401), a cutting motor (403) is provided on the side surface of the cutting frame (402), a cutting knife (404) is provided at the output end of the cutting motor (403), and the cutting knife (404) is arranged inside the cutting frame (402).
5. A new carton manufacturing and processing device according to claim 1, characterized in that: The clamping assembly includes a clamping push rod (501), a clamping plate (502) and a clamping slide rod (503); the clamping push rod (501) is arranged on the side of the cutting bracket (1), there are two groups of clamping push rods (501), the clamping plate (502) is arranged on the side of the clamping push rod (501), the clamping slide rod (503) is arranged on the side of the clamping plate (502), there are two groups of clamping slide rods (503), and the clamping slide rod (503) is slidably connected to the cutting bracket (1).
6. A novel carton manufacturing and processing device according to claim 2, characterized in that: The transportation assembly includes a transportation bracket (601), a transportation motor (602), a transportation roller (603) and a clamping plate (604); the transportation bracket (601) is arranged on the top surface of the cutting bracket (1), the transportation bracket (601) is arranged on the top surface of the indentation bracket (7), the transportation motor (602) is arranged on the side of the transportation bracket (601), the output end of the transportation motor (602) is provided with a transportation roller (603), the clamping plate (604) is arranged on the top surface of the support bottom plate (201), and there are two groups of clamping plates (604).
7. A novel carton manufacturing and processing device according to claim 1, characterized in that: The indentation bracket (7) is arranged on the top surface of the support bottom plate (201), a buffer frame (75) is arranged on the bottom surface of the support bottom plate (201), a telescopic rod (76) is arranged on the inner top surface of the buffer frame (75), there are four groups of telescopic rods (76), and there are two groups of limit plates (79).
Citation Information
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