Die-cutting machine with various paper collecting structures
By designing a die-cutting machine with diverse paper collection structures, and employing a combination of a moving paper feeding mechanism, a raised counting paper feeding mechanism, and a stacking paper collection mechanism, the problem of existing die-cutting machines being unable to count paper individually has been solved. This enables rapid stacking and collection of cardboard and switching between counting output, thereby improving production efficiency.
Patent Information
- Application Number
- CN202520545406.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-03-26
AI Technical Summary
The existing die-cutting machine's paper receiving mechanism has a simple structure, which cannot count each piece of cardboard individually, resulting in cumbersome operation steps and affecting production efficiency.
A die-cutting machine with a variety of paper collection structures was designed, including a moving paper feeding mechanism, a raised counting paper feeding mechanism, and a stacking paper collection mechanism. Through the cooperation of hydraulic cylinders, Z-shaped hanging plates, and support mechanisms, the machine can achieve rapid stacking and collection of cardboard and switching between counting output.
It enables rapid switching between cardboard stacking and counting output, improving the functionality and production efficiency of the paper receiving structure.
Smart Images

Figure CN223972204U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of paper receiving structure technology, and specifically to a die-cutting machine with various paper receiving structures. Background Technology
[0002] A paper collection and die-cutting machine is a specialized piece of equipment used in the cardboard box forming process. It is primarily used for die-cutting cardboard. Its working principle involves using steel blades, metal molds, or steel wire to apply pressure through an impression plate, cutting the printed material or cardboard into a specific shape. The paper is then collected and stacked using a paper collection mechanism. The existing technology suffers from the following problems:
[0003] Because the existing die-cutting machine has a relatively simple paper collection mechanism, it can only perform simple stacking and collection functions and remove the whole stack after collection. However, it cannot perform individual counting when it is necessary to remove the whole stack of cardboard and then use a die-cutting counting machine to count them. The operation steps are relatively cumbersome and affect the production efficiency of cardboard. Utility Model Content
[0004] This invention provides a die-cutting machine with diverse paper receiving structures to solve the problems mentioned in the background art.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0006] A die-cutting machine with a variety of paper receiving structures includes a die-cutting machine body. Four die-cutting machine support legs are fixedly installed in a rectangular array at the bottom of the die-cutting machine body. A reinforcing connecting plate is fixedly installed between the opposing surfaces of the two rear die-cutting machine support legs. A stacking paper receiving mechanism is provided on the front side of the reinforcing connecting plate. A moving paper feeding mechanism is provided above the stacking paper receiving mechanism. A height-counting paper feeding mechanism is provided on the front side of the moving paper feeding mechanism. The moving paper feeding mechanism includes a frame. Four medium-sized support legs are fixedly installed in a rectangular array at the bottom of the frame. Side beams are fixedly installed on both the left and right sides of the top of the frame. A motor sprocket is located on the right side of the right side beam. A sprocket roller and a roller are movably installed between the opposing surfaces of the two side beams. The sprocket roller is located in front of the roller. A belt is fitted around the outer wall of the sprocket roller and the roller. A stainless steel plate is fixedly installed between the opposing surfaces of the two side beams and between the sprocket roller and the roller.
[0007] A further improvement of this utility model is that: the elevated paper feeding mechanism includes a frame two, and side beams two are fixedly installed on the top left and right sides of the frame two. A motor sprocket two is provided on the right side of the side beam two. A sprocket roller two and a roller two are movably installed between the opposite surfaces of the two side beams two. The sprocket roller two is located in front of the roller two. A belt two is fitted on the outer wall of the sprocket roller two and the roller two. A stainless steel plate two is fixedly installed between the opposite surfaces of the two side beams two. The stainless steel plate two is located between the sprocket roller two and the roller two.
[0008] A further improvement of this utility model is that: a number of driven rollers are evenly and movably installed between the opposing surfaces of the two side beams, the number of driven rollers are located on the front side of the belt, and a support plate is fixedly installed on the front side of the opposing surfaces of the two side beams, the support plate being located on the front side of the number of driven rollers.
[0009] A further improvement of the present invention is that a connecting plate is fixedly installed between the opposing surfaces of the two side beams, the connecting plate being located below two adjacent driven rollers, and an infrared counter is fixedly installed on the top of the connecting plate, the infrared counter being located between two adjacent driven rollers.
[0010] A further improvement of this utility model is that: the stacking and receiving paper mechanism includes an L-shaped mounting plate, and bolt holes are provided at the vertical position of the L-shaped mounting plate. The L-shaped mounting plate is fixedly installed on the front side of the reinforcing connecting plate by bolts passing through the bolt holes. A hydraulic cylinder is fixedly installed at the top of the horizontal position of the L-shaped mounting plate. A Z-shaped hanging plate is fixedly installed at the top of the output end of the hydraulic cylinder. A support mechanism is provided at the front side of the horizontal position below the Z-shaped hanging plate. The support mechanism is located below the moving paper feeding mechanism.
[0011] A further improvement of this utility model is that: the supporting mechanism includes a fixed back plate, the rear side of the fixed back plate is fixedly connected to the front end of the horizontal part below the Z-shaped hanging plate, L-shaped side plates are fixedly installed on both the left and right ends of the fixed back plate, limit horizontal plates are fixedly installed on the front and rear sides of the top of the vertical part of the two L-shaped side plates, and a paper receiving plate is provided on the top of the horizontal part of the two L-shaped side plates. The frame is placed above the paper receiving plate using four medium-sized support legs, and the paper receiving plate is located below the bottom discharge end of the die-cutting machine body.
[0012] Due to the adoption of the above technical solution, the technological progress achieved by this utility model compared to the prior art is as follows:
[0013] 1. This utility model provides a die-cutting machine with a variety of paper collection structures. Through the cooperation between the moving paper feeding mechanism, the elevated counting paper feeding mechanism, and the stacking paper collection mechanism, the cardboard processed by the die-cutting machine can be quickly switched between two states: direct stacking collection and counting output. This facilitates adaptation to different needs and improves the functionality of the paper collection structure.
[0014] 2. This utility model provides a die-cutting machine with a variety of paper receiving structures. Through the cooperation between hydraulic cylinders, Z-shaped hanging plates, and supporting mechanisms, the moving paper feeding mechanism and the elevated counting paper feeding mechanism can be quickly aligned horizontally without affecting the removal of the stacked paperboards on the receiving board by the trolley, thus saving time and improving production efficiency. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the moving paper feeding mechanism of this utility model.
[0017] Figure 3 This is a schematic diagram of the elevated paper feeding mechanism of this utility model.
[0018] Figure 4 This utility model Figure 3 Enlarged schematic diagram of point A in the middle;
[0019] Figure 5 This is a schematic diagram of the stacking and collecting mechanism of this utility model.
[0020] Figure 6 This is a schematic diagram of the support mechanism of the present utility model.
[0021] In the diagram: 1. Die-cutting machine body; 2. Die-cutting machine support leg; 21. Reinforcing connecting plate; 3. Moving paper feeding mechanism; 31. Frame 1; 32. Medium-sized support leg; 33. Side beam 1; 34. Motor sprocket 1; 35. Sprocket roller 1; 36. Roller 1; 37. Belt 1; 38. Stainless steel plate 1; 4. Elevated counting paper feeding mechanism; 41. Frame 2; 42. Side beam 2; 421. Connecting plate; 422. Infrared meter 43. Counter; 44. Motor sprocket two; 45. Sprocket roller two; 46. Roller two; 47. Belt two; 48. Stainless steel plate two; 49. Driven roller; 50. Paper tray; 51. Stacking and collecting mechanism; 52. L-shaped mounting plate; 53. Bolt hole; 54. Hydraulic cylinder; 55. Z-shaped hanging plate; 56. Supporting mechanism; 57. Fixed back plate; 58. L-shaped side plate; 59. Limiting horizontal plate; 50. Paper tray. Detailed Implementation
[0022] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0023] like Figure 1 , Figure 2 As shown, this utility model provides a die-cutting machine with a variety of paper receiving structures, including a die-cutting machine body 1. Four die-cutting machine support legs 2 are fixedly installed in a rectangular array at the bottom of the die-cutting machine body 1. A reinforcing connecting plate 21 is fixedly installed between the opposite faces of the two rear die-cutting machine support legs 2. A stacking paper receiving mechanism 5 is provided on the front side of the reinforcing connecting plate 21. A moving paper feeding mechanism 3 is provided above the stacking paper receiving mechanism 5. A height-based paper feeding mechanism 4 is provided on the front side of the moving paper feeding mechanism 3. The moving paper feeding mechanism 3 includes a frame 31, and the bottom rectangular array of the frame 31... Four medium-sized support legs 32 are fixedly installed. Side beams 33 are fixedly installed on the top left and right sides of the frame 31. A motor sprocket 34 is set on the right side of the right side beam 33. Sprocket rollers 35 and rollers 36 are movably installed between the opposite faces of the two side beams 33. Sprocket roller 35 is located in front of roller 36. A belt 37 is fitted on the outer wall of sprocket roller 35 and roller 36. A stainless steel plate 38 is fixedly installed between the opposite faces of the two side beams 33. The stainless steel plate 38 is located between sprocket roller 35 and roller 36.
[0024] When it is necessary to count the cardboard, simply place the entire moving paper feeding mechanism 3 on the receiving cardboard 554 using the medium-sized support legs 32, so that the frame 31 is below the discharge end of the die-cutting machine body 1. Then, place the entire raised counting paper feeding mechanism 4 in front of the moving paper feeding mechanism 3, and start the hydraulic cylinder 53 to drive the entire moving paper feeding mechanism 3 to rise until the belt 37 and belt 46 are level and stop. At this time, the motor sprocket 34 can control the sprocket rollers 35 and 36 to rotate, driving the belt 37 to move and convey, so that the cardboard on the top of the die-cutting machine body 1 is conveyed forward. At the same time, the stainless steel plate 38 can provide support for the belt 37 to ensure the horizontal movement stability of the belt 37.
[0025] like Figure 3 , Figure 4As shown, the elevated paper feeding mechanism 4 includes a frame 41. Side beams 42 are fixedly installed on the top left and right sides of the frame 41. A motor sprocket 43 is located on the right side of the right side beam 42. A sprocket roller 44 and a roller 45 are movably installed between the opposing surfaces of the two side beams 42. The sprocket roller 44 is located in front of the roller 45. A belt 46 is fitted onto the outer walls of the sprocket roller 44 and the roller 45. A stainless steel plate 47 is fixedly installed between the opposing surfaces of the two side beams 42 and between the sprocket roller 44 and the roller 45. A number of driven rollers 48 are evenly and movably installed between the opposing surfaces of the two side beams 42. The driven rollers 48 are located in front of the belt 46. A support plate 49 is fixedly installed on the opposing surface of the two side beams 42. The support plate 49 is located in front of the driven rollers 48. A connecting plate 421 is fixedly installed between the opposing surfaces of the two side beams 42. The connecting plate 421 is located below two adjacent driven rollers 48. An infrared counter 422 is fixedly installed on the top of the connecting plate 421. The infrared counter 422 is located between two adjacent driven rollers 48.
[0026] After being conveyed forward by the moving paper feeding mechanism 3, the cardboard falls directly onto the top of the second belt 46. The motor sprocket 43 drives the sprocket rollers 44 and 45, as well as several driven rollers 48, to rotate. The rotation of the sprocket rollers 44 and 45 drives the belt 46 to rotate and convey the cardboard stably onto the driven rollers 48. The rotation of the driven rollers 48 then conveys the cardboard onto the cardboard tray 49. As the cardboard passes through the driven rollers 48, the infrared rays emitted upward by the infrared counter 422 on the top of the connecting plate 421 can pass through the gap between the two driven rollers 48 and extend upward, thus counting the cardboard that passes through the driven rollers 48. This allows for the counting output of the cardboard and enables quick switching between the cardboard and the direct stacking collection state, improving the functionality of the overall paper receiving structure.
[0027] like Figure 5 , Figure 6As shown, the stacking and receiving mechanism 5 includes an L-shaped mounting plate 51. Bolt holes 52 are provided at the vertical position of the L-shaped mounting plate 51. The L-shaped mounting plate 51 is fixedly installed on the front side of the reinforcing connecting plate 21 using bolts passing through the bolt holes 52. A hydraulic cylinder 53 is fixedly installed at the top horizontal position of the L-shaped mounting plate 51. A Z-shaped hanging plate 54 is fixedly installed at the top of the output end of the hydraulic cylinder 53. A support mechanism 55 is provided at the front horizontal position below the Z-shaped hanging plate 54. The support mechanism 55 is located below the moving paper feeding mechanism 3 and includes... There is a fixed back plate 551. The rear side of the fixed back plate 551 is fixedly connected to the front end of the horizontal part below the Z-shaped hanging plate 54. L-shaped side plates 552 are fixedly installed on both the left and right ends of the fixed back plate 551. Limiting horizontal plates 553 are fixedly installed on the front and rear sides of the top of the vertical part of the two L-shaped side plates 552. A paper receiving plate 554 is set on the top of the horizontal part of the two L-shaped side plates 552. The frame 1 31 is placed on the paper receiving plate 554 using four medium-sized support legs 32. The paper receiving plate 554 is located below the bottom discharge end of the die-cutting machine body 1.
[0028] When only cardboard stacking is needed, simply align the cardboard receiver 554 between the two L-shaped side plates 552 and insert it. Use the horizontal position of the two L-shaped side plates 552 for stable placement and use the limiting plate 553 for limiting. The cardboard can fall directly onto the cardboard receiver 554 from below the die-cutting machine body 1. When the stack is high, simply activate the hydraulic cylinder 53 at the horizontal position of the L-shaped mounting plate 51 to drive the Z-shaped hanging plate 54 and the fixed rear plate 551 to rise, thereby suspending the bottom of the cardboard receiver 554. Then, the cardboard receiver 554 along with the stacked cardboard can be pulled out directly using a pallet trolley.
[0029] The working principle of this die-cutting machine with its diverse paper receiving structure will be explained in detail below.
[0030] like Figure 1-6As shown, when only cardboard stacking is needed, simply align the cardboard receiver 554 between the two L-shaped side plates 552 and insert it. The horizontal position of the two L-shaped side plates 552 provides stability, and the limiting plate 553 provides further control. The cardboard can then fall directly onto the cardboard receiver 554 from below the die-cutting machine body 1. When the stack is high, simply activate the hydraulic cylinder 53 at the horizontal position of the L-shaped mounting plate 51 to raise the Z-shaped hanging plate 54 and the fixed rear plate 551, thus suspending the bottom of the cardboard receiver 554. Then, a pallet jack can be used to... The machine directly pulls out the cardboard receiving board 554 along with the stacked cardboard. When it is necessary to count the cardboard, simply place the entire moving paper feeding mechanism 3 on the cardboard receiving board 554 using the medium-sized support legs 32, so that the frame 31 is below the discharge end of the die-cutting machine body 1. Then, place the entire raised counting paper feeding mechanism 4 in front of the moving paper feeding mechanism 3, and start the hydraulic cylinder 53 to drive the entire moving paper feeding mechanism 3 to rise until the belt 37 is level with the belt 46 and stops. At this time, the motor sprocket 34 can control the sprocket roller 3. 5. The rotation of roller 36 drives belt 37 to move forward, thus conveying the cardboard on top of belt 37 to the die-cutting machine body 1. Stainless steel plate 38 provides support for belt 37, ensuring its horizontal stability. After being conveyed forward, the cardboard falls directly onto belt 46. Motor sprocket 43 drives sprocket rollers 44 and 45, as well as several driven rollers 48, to rotate. The rotation of sprocket rollers 44 and 45 then drives belt 46 to rotate. The conveying system stably transports the cardboard to several driven rollers 48, and then uses the rotation of the driven rollers 48 to transport the cardboard to the cardboard support 49. When the cardboard passes through the driven rollers 48, the infrared rays emitted upward by the infrared counter 422 on the top of the connecting plate 421 can pass through the gap between two driven rollers 48 and extend upward, thereby counting the cardboard that passes through the driven rollers 48, thus realizing the counting output of the cardboard. It can also quickly switch between the direct stacking and collection state of the cardboard, improving the functionality of the overall paper receiving structure.
[0031] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.
Claims
1. A die cutting machine of a multiple gatherer configuration, comprising a die cutting machine body (1), characterized in that: The bottom rectangular array of the die cutting machine body (1) is fixedly installed with four die cutting machine supporting legs (2), the opposite surfaces of the rear two die cutting machine supporting legs (2) are fixedly installed with reinforcing connecting plates (21), the front side of the reinforcing connecting plate (21) is provided with a stacking paper collecting mechanism (5), the upper side of the stacking paper collecting mechanism (5) is provided with a moving paper feeding mechanism (3), the front side of the moving paper feeding mechanism (3) is provided with a high shelf point paper feeding mechanism (4), the moving paper feeding mechanism (3) comprises a rack one (31), the bottom rectangular array of the rack one (31) is fixedly installed with four medium-sized supporting legs (32), the top left and right sides of the rack one (31) are fixedly installed with side beams one (33), the right side of the right side beam one (33) is provided with a motor chain wheel one (34), the opposite surfaces of the two side beams one (33) are movably installed with a chain wheel roller one (35) and a roller one (36), the chain wheel roller one (35) is located in front of the roller one (36), the outer walls of the chain wheel roller one (35) and the roller one (36) are sleeved with a belt one (37), the opposite surfaces of the two side beams one (33) are fixedly installed with stainless steel plates one (38), and the stainless steel plates one (38) are located between the chain wheel roller one (35) and the roller one (36).
2. A die cutting machine with a multi-format delivery configuration according to claim 1, characterized in that: The high shelf point paper feeding mechanism (4) comprises a rack two (41), the top left and right sides of the rack two (41) are fixedly installed with side beams two (42), the right side of the right side beam two (42) is provided with a motor chain wheel two (43), the opposite surfaces of the two side beams two (42) are movably installed with a chain wheel roller two (44) and a roller two (45) at the rear, the chain wheel roller two (44) is located in front of the roller two (45), the outer walls of the chain wheel roller two (44) and the roller two (45) are sleeved with a belt two (46), the opposite surfaces of the two side beams two (42) are fixedly installed with stainless steel plates two (47), and the stainless steel plates two (47) are located between the chain wheel roller two (44) and the roller two (45).
3. A die cutting machine with a multiple delivery configuration according to claim 2, wherein: The opposite surfaces of the two side beams two (42) are movably installed with a plurality of driven rollers (48), the plurality of driven rollers (48) are located in front of the belt two (46), the opposite surfaces of the two side beams two (42) are fixedly installed with paper supporting plates (49), and the paper supporting plates (49) are located in front of the plurality of driven rollers (48).
4. A die cutting machine with a multiple delivery configuration according to claim 3 wherein: The opposite surfaces of the two side beams two (42) are fixedly installed with connecting plates (421), the connecting plates (421) are located below adjacent two of the plurality of driven rollers (48), the top of the connecting plate (421) is fixedly installed with an infrared counter (422), and the infrared counter (422) is located between the adjacent two driven rollers (48).
5. A die cutting machine with a multiple delivery configuration according to claim 1 wherein: The stacking paper receiving mechanism (5) comprises an L-shaped mounting plate (51), a bolt hole (52) is arranged on the vertical portion of the L-shaped mounting plate (51), the L-shaped mounting plate (51) is fixedly installed on the front side of the reinforcing connecting plate (21) by bolts penetrating through the bolt hole (52), a hydraulic cylinder (53) is fixedly installed on the top of the horizontal portion of the L-shaped mounting plate (51), a Z-shaped hanging plate (54) is fixedly installed on the top of the output end of the hydraulic cylinder (53), a supporting mechanism (55) is arranged on the front side of the lower horizontal portion of the Z-shaped hanging plate (54), and the supporting mechanism (55) is located below the moving paper conveying mechanism (3).
6. A die cutting machine with a multiple delivery configuration according to claim 5 wherein: The supporting mechanism (55) comprises a fixed rear plate (551), the rear side of the fixed rear plate (551) is fixedly connected with the front end of the lower horizontal portion of the Z-shaped hanging plate (54), L-shaped side plates (552) are fixedly installed on the left and right ends of the fixed rear plate (551), limiting transverse plates (553) are fixedly installed on the top of the vertical portion of the two L-shaped side plates (552), paper receiving plates (554) are arranged on the top of the horizontal portion of the two L-shaped side plates (552), the rack one (31) is placed above the paper receiving plates (554) by four medium-sized supporting legs (32), and the paper receiving plates (554) are located below the bottom discharging end of the die-cutting machine body (1).