Carton indentation die-cutting machine
By designing the moving structure and clamping components in the carton indentation die cutting machine, the automatic sliding and fixing of the workpiece is achieved, and the accidental injury and inconvenience caused by manual placement of the workpiece in the prior art is solved, and processing efficiency and safety are improved.
Patent Information
- Application Number
- CN202422193278.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-09-09
AI Technical Summary
The existing carton indentation die cutting machines require manual placement of workpieces during processing, which can easily lead to accidental injury and inconvenient operation.
A carton indentation die-cutting machine is designed, which adopts a moving structure and clamping assembly. The die-cutting plate is driven down through an electric telescopic rod. Combined with long plates, long rods, L-shaped plates and other components, the workpiece automatically slides under the die-cutting plate for processing, and fixes the workpiece through the clamping assembly to prevent position deviation.
It effectively prevents accidental injuries from workers during processing, improves processing efficiency and safety, and saves labor costs.
Smart Images

Figure CN222972875U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carton processing, and specifically relates to a carton indentation and die-cutting machine. Background Technique
[0002] The predecessor of the carton indentation and die-cutting machine can be traced back to the early die-pressing machine, which was invented in the mid-19th century and was mainly used to produce various film, cardboard and paper products. With the continuous progress of technology and the needs of industrial production, the die-pressing machine has gradually evolved into the modern carton indentation and die-cutting machine.
[0003] The carton indentation and die-cutting machine is one of the indispensable equipment in the carton manufacturing industry. It is widely used in the production of cartons of various specifications and shapes, such as home appliance packaging boxes, food packaging boxes, etc. These cartons not only facilitate handling and storage, but also improve the overall aesthetics of the products.
[0004] However, in the actual use process of the above-mentioned equipment, many devices need to be manually placed under the machine, which is very easy to cause accidental injuries during processing. Therefore, we have proposed a carton indentation and die-cutting machine. Content of the Utility Model
[0005] The purpose of the utility model is to provide a carton indentation and die-cutting machine to solve the problems raised in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A carton indentation and die-cutting machine includes a main body, a bracket is fixedly installed on the main body, an electric telescopic rod is fixedly installed on the bracket, a die-cutting plate is fixedly connected to the piston end of the electric telescopic rod, a moving structure is arranged on the main body, and the moving structure includes:
[0007] A long board, the piston end of the electric telescopic rod is fixedly connected to the long board, a long rod is slidably connected to the long board, an L-shaped board is fixedly connected to the long board, and a support board is fixedly connected to the main body;
[0008] A fixed rod, a fixed rod is fixedly connected to the support board, a torsion spring is sleeved on the fixed rod, an L-shaped small block is sleeved on the fixed rod, a pulley is arranged on the L-shaped small block, a limiting plate is fixedly connected to the L-shaped small block, and a sliding rod is slidably connected to the L-shaped small block;
[0009] A slider, a slider is fixedly connected to the sliding rod, a chute board is slidably connected to the slider, a sliding block is fixedly connected to the chute board, a slide rail is slidably connected to the sliding block, and the slide rail is fixedly installed on the main body.
[0010] Preferably, there are two sets of the long rods and L-shaped plates, and the two sets of long rods and L-shaped plates are mirror-symmetrically arranged at the left and right ends of the main body with the vertical center line in the front-back direction of the main body as the mirror axis, so as to move more stably.
[0011] Preferably, there are two sets of the support plates, fixed rods, torsion springs, L-shaped small blocks, pulleys and limit plates, and the two sets of support plates, fixed rods, torsion springs, L-shaped small blocks, pulleys and limit plates are mirror-symmetrically arranged at the left and right ends of the main body with the vertical center line in the front-back direction of the main body as the mirror axis.
[0012] Preferably, there are two sets of the sliding rods and sliders, and the two sets of long rods and L-shaped plates are mirror-symmetrically arranged at the left and right ends of the main body with the vertical center line in the front-back direction of the main body as the mirror axis.
[0013] Preferably, a clamping assembly is arranged on the main body. A top plate is fixedly connected to the chute plate. A motor is fixedly installed on the top plate. The output end of the motor is fixedly connected to a lead screw. A clamping block is threadedly connected to the lead screw. A notch is formed in the clamping block. A guide rail is slidably connected to the clamping block, and the guide rail is fixedly installed on the top plate.
[0014] Preferably, there are two sets of the clamping blocks and notches, and the two sets of clamping blocks and notches are mirror-symmetrically arranged at the left and right ends of the main body with the vertical center line in the front-back direction of the main body as the mirror axis, so as to better fix the workpiece.
[0015] Compared with the prior art, the present utility model provides a carton indentation and die-cutting machine, which has the following beneficial effects:
[0016] 1. For this carton indentation and die-cutting machine, in order to prevent workers from being accidentally injured during processing, by providing a moving structure, cooperating with the long board, long rods, L-shaped plates, support plates, fixed rods, torsion springs, L-shaped small blocks, pulleys, limit plates, sliding rods, sliders, chute plates, sliding blocks and slide rails, when the die-cutting plate presses down on the workpiece for processing, the workpiece can be driven to slide to the directly below the die-cutting plate for processing, so that while preventing workers from being accidentally injured, it is more energy-saving, thereby improving work efficiency.
[0017] 2. For this carton indentation and die-cutting machine, in order to better process the workpiece, by providing a clamping assembly, cooperating with the top plate, motor, lead screw, clamping block, notch and guide rail, the workpiece can be better processed, preventing the workpiece from shifting in position during processing and causing damage to the workpiece, thereby improving work efficiency and saving labor costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic structural diagram of the whole of the present utility model;
[0019] Figure 2This is a schematic side view of the structure of the utility model;
[0020] Figure 3 This is a schematic left view of the cross-section of the structure of the utility model;
[0021] Figure 4 This is a schematic front view of the cross-section of the structure of the utility model.
[0022] In the figure: 1. Main body; 2. Bracket; 3. Electric telescopic rod; 4. Die-cutting plate; 5. Moving structure; 51. Long plate; 52. Long rod; 53. L-shaped plate; 54. Support plate; 55. Fixed rod; 56. Torsion spring; 57. Small L-shaped block; 58. Pulley; 59. Limiting plate; 510. Slide bar; 511. Slide block; 512. Chute plate; 513. Sliding block; 514. Slide rail; 6. Clamping assembly; 61. Top plate; 62. Motor; 63. Lead screw; 64. Clamping block; 65. Notch; 66. Guide rail. Specific implementation mode
[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0024] Please refer to Figures 1-4 , the present utility model provides a technical solution: A carton indentation and die-cutting machine includes a main body 1, a bracket 2 is fixedly installed on the main body 1, an electric telescopic rod 3 is fixedly installed on the bracket 2, the piston end of the electric telescopic rod 3 is fixedly connected to a die-cutting plate 4, so as to start the electric telescopic rod 3, and drive the die-cutting plate 4 to move downward, and a moving structure 5 is arranged on the main body 1.
[0025] In an embodiment of the present utility model, the moving structure 5 includes a long board 51. The piston end of the electric telescopic rod 3 is fixedly connected to the long board 51. A long rod 52 is slidably connected to the long board 51. An L-shaped board 53 is fixedly connected to the long board 51. There are two groups of the long rod 52 and the L-shaped board 53, and the two groups of the long rod 52 and the L-shaped board 53 are mirror-symmetrically arranged at the left and right ends of the main body 1 with the vertical midline in the front and rear direction of the main body 1 as the mirror axis. Due to the movement of the electric telescopic rod 3, the long board 51 is driven to slide on the long rod 52, thereby driving the L-shaped board 53 to move downward. A support board 54 is fixedly connected to the main body 1. A fixed rod 55 is fixedly connected to the support board 54. A torsion spring 56 is sleeved on the fixed rod 55. An L-shaped small block 57 is sleeved on the fixed rod 55. A pulley 58 is arranged on the L-shaped small block 57. A limiting plate 59 is fixedly connected to the L-shaped small block 57. There are two groups of the support board 54, the fixed rod 55, the torsion spring 56, the L-shaped small block 57, the pulley 58 and the limiting plate 59, and the two groups of the support board 54, the fixed rod 55, the torsion spring 56, the L-shaped small block 57, the pulley 58 and the limiting plate 59 are mirror-symmetrically arranged at the left and right ends of the main body 1 with the vertical midline in the front and rear direction of the main body 1 as the mirror axis, so as to squeeze the pulley 58 downward, thereby driving the L-shaped small block 57 to rotate on the fixed rod 55, thereby driving the limiting plate 59 to move, thereby driving the torsion spring 56 to be squeezed. A sliding rod 510 is slidably connected to the L-shaped small block 57. A slider 511 is fixedly connected to the sliding rod 510. There are two groups of the sliding rod 510 and the slider 511, and the two groups of the long rod 52 and the L-shaped board 53 are mirror-symmetrically arranged at the left and right ends of the main body 1 with the vertical midline in the front and rear direction of the main body 1 as the mirror axis. The slider 511 is slidably connected to a chute board 512. A sliding block 513 is fixedly connected to the chute board 512. The sliding block 513 is slidably connected to a slide rail 514. The slide rail 514 is fixedly installed on the main body 1, so as to drive the sliding rod 510 to slide on the L-shaped small block 57, thereby driving the slider 511 to slide. Thus, when the slider 511 slides to one end of the chute board 512, the sliding block 513 is pulled to slide on the slide rail 514, and thus moves to directly below the die-cutting board 4 for processing.
[0026] In an embodiment of the present utility model, a clamping assembly 6 is arranged on the main body 1. A top board 61 is fixedly connected to the chute board 512. A motor 62 is fixedly installed on the top board 61. The output end of the motor 62 is fixedly connected to a lead screw 63. A clamping block 64 is threadedly connected to the lead screw 63. A notch 65 is formed on the clamping block 64. There are two groups of the clamping block 64 and the notch 65, and the two groups of the clamping block 64 and the notch 65 are mirror-symmetrically arranged at the left and right ends of the main body 1 with the vertical midline in the front and rear direction of the main body 1 as the mirror axis. A guide rail 66 is slidably connected to the clamping block 64. The guide rail 66 is fixedly installed on the top board 61. When the staff needs to process a workpiece, the workpiece is placed on the top board 61, and then the motor 62 is started, thereby driving the lead screw 63 to rotate, thereby driving the two groups of clamping blocks 64 to slide on the guide rail 66, so as to clamp the workpiece.
[0027] Working principle: When the staff needs to process a workpiece, the workpiece is placed on the top plate 61, then the motor 62 is started, which drives the lead screw 63 to rotate, driving two groups of clamping blocks 64 to slide on the guide rail 66 to clamp the workpiece. Then the electric telescopic rod 3 is started, driving the die-cutting plate 4 to move downward. Due to the movement of the electric telescopic rod 3, the long plate 51 slides on the long rod 52, driving the L-shaped plate 53 to move downward, squeezing the pulley 58 downward, driving the L-shaped small block 57 to rotate on the fixed rod 55, driving the limit plate 59 to move, squeezing the torsion spring 56, driving the slide bar 510 to slide on the L-shaped small block 57, driving the slider 511 to slide. When the slider 511 slides to one end of the chute plate 512, the sliding block 513 is pulled to slide on the slide rail 514 and move to directly below the die-cutting plate 4 for processing.
[0028] The above has generally described the present utility model in detail. However, based on the present utility model, some modifications or improvements can be made, which are obvious to those of ordinary skill in the technical field. Therefore, modifications or improvements made without departing from the spirit and idea of the present utility model are within the protection scope of the present utility model.
Claims
1. A carton creasing and die-cutting machine, comprising a main body (1), characterized in that: The main body (1) is fixedly mounted with a bracket (2), the bracket (2) is fixedly mounted with an electric telescopic rod (3), the piston end of the electric telescopic rod (3) is fixedly connected with a die-cutting plate (4), and the main body (1) is provided with a moving structure (5), and the moving structure (5) comprises: A long plate (51), the piston end of the electric telescopic rod (3) is fixedly connected to the long plate (51), a long rod (52) is slidably connected to the long plate (51), an L-shaped plate (53) is fixedly connected to the long plate (51), and a support plate (54) is fixedly connected to the main body (1); A fixed rod (55), the support plate (54) is fixedly connected to the fixed rod (55), a torsion spring (56) is sleeved on the fixed rod (55), an L-shaped block (57) is sleeved on the fixed rod (55), a pulley (58) is arranged on the L-shaped block (57), a limiting plate (59) is fixedly connected to the L-shaped block (57), and a sliding rod (510) is slidably connected to the L-shaped block (57); A slider (511), the slider (511) is fixedly connected to the slider bar (510), the slider (511) is slidably connected to a slide plate (512), the slide plate (512) is fixedly connected to a sliding block (513), the sliding block (513) is slidably connected to a slide rail (514), and the slide rail (514) is fixedly mounted on the main body (1).
2. A carton creasing die-cutting machine according to claim 1, characterized in that: Two groups of the long rods (52) and L-shaped plates (53) are provided, and the two groups of the long rods (52) and L-shaped plates (53) are mirrored at the left and right ends of the main body (1) with the vertical midline in the front-to-back direction of the main body (1) as the mirror axis.
3. A carton creasing die-cutting machine according to claim 1, characterized in that: The support plate (54), the fixing rod (55), the torsion spring (56), the L-shaped block (57), the pulley (58) and the limit plate (59) are provided in two groups, and the two groups of the support plate (54), the fixing rod (55), the torsion spring (56), the L-shaped block (57), the pulley (58) and the limit plate (59) are mirror-imaged at the left and right ends of the main body (1) with the vertical center line in the front-back direction of the main body (1) as the mirror axis.
4. A carton creasing die-cutting machine according to claim 1, characterized in that: Two groups of the sliding rods (510) and the sliding blocks (511) are provided, and the two groups of the long rods (52) and the L-shaped plates (53) are mirror-arranged at the left and right ends of the main body (1) with the vertical midline in the front-rear direction of the main body (1) as the mirror axis.
5. The carton creasing die-cutting machine according to claim 1, characterized in that: The main body (1) is provided with a clamping assembly (6), the slide plate (512) is fixedly connected to a top plate (61), a motor (62) is fixedly mounted on the top plate (61), a lead screw (63) is fixedly connected to an output end of the motor (62), a clamping block (64) is threadedly connected to the lead screw (63), a notch (65) is formed on the clamping block (64), a guide rail (66) is slidably connected to the clamping block (64), and the guide rail (66) is fixedly mounted on the top plate (61).
6. A carton creasing die-cutting machine according to claim 5, characterized in that: Two groups of the clamping blocks (64) and the notches (65) are provided, and the two groups of the clamping blocks (64) and the notches (65) are mirrored at the left and right ends of the main body (1) with the vertical midline in the front-to-back direction of the main body (1) as the mirror axis.