Discharging structure of printing die-cutting machine

By designing the discharge structure in the die-cutter and using the cooperation of pneumatic jaws and support columns, the automatic storage of die-cutter products is achieved, solving the problem of manual storage of traditional die-cutters and improving storage efficiency.

CN222858225UActive Publication Date: 2025-05-13NANJING YUANCHUANG PACKING DESIGN IND CO LTD
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Patent Information

Application Number
CN202421883477.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-05-13
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

Traditional die-cutters lack a feeding mechanism, which requires manual storage and organization, which reduces the product storage efficiency.

Method used

A discharge structure of a printing die cutting machine is designed, including a conveyor belt, support column, pneumatic jaws and collection frames. By driving the pneumatic jaws to clamp the product, and using the rotation of the support column to rotate, the pneumatic jaws drive the product into the collection frame, achieving automatic storage.

Benefits of technology

There is no need for manual storage and sorting, which significantly improves the product storage efficiency and improves the automation level of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a discharging structure of a printing die-cutting machine, which belongs to the technical field of die-cutting machines and comprises a conveying belt for conveying products, a storage mechanism is arranged beside the conveying belt and comprises a supporting column rotatably arranged beside the conveying belt, a pneumatic clamping jaw horizontally and slidably arranged on the supporting column and a collecting frame arranged beside the supporting column, and the collecting frame is arranged on the conveying belt. The pneumatic clamping jaw is located at an outlet of the conveying belt, a sliding hole is formed in the side face, close to the supporting column, of the collecting frame and communicates with an opening in the top face of the collecting frame, and the pneumatic clamping jaw can be vertically arranged in the sliding hole in a sliding mode. The product storage device has the effects that manual storage and arrangement are not needed, and the product storage efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of die-cutting machines, in particular to a material discharging structure of a printing die-cutting machine. Background Art

[0002] Die-cutting machine, also known as CNC punching machine, is mainly used for die-cutting, creasing and hot stamping operations of some corresponding non-metallic materials, self-adhesive stickers, EVA, double-sided tape, electronics, mobile phone pads, etc. The die-cutting machine uses steel knives, hardware molds, and steel wires to apply a certain pressure through the stamping plate to roll and cut the printed products or cardboard into a certain shape. It is an important equipment for post-printing packaging processing and molding. After the die-cutting machine completes the processing of the printed products or cardboard, it is transported to the designated location via a conveyor belt. The printed products or cardboard need to be stored and sorted. Traditional die-cutting machines do not have a discharge mechanism and need to be stored and sorted manually, which reduces the storage efficiency of the product.

[0003] In view of the above-mentioned related technologies, it is urgent to design and develop a discharging structure of a printing die-cutting machine, which does not require manual storage and sorting, thereby improving the storage efficiency of the product. Utility Model Content

[0004] In order to improve the storage efficiency of products, the present application provides a material discharging structure of a printing die-cutting machine.

[0005] The discharging structure of a printing die-cutting machine provided in the present application adopts the following technical solution:

[0006] A discharging structure of a printing die-cutting machine includes a conveyor belt for conveying products, a storage mechanism is arranged next to the conveyor belt, the storage mechanism includes a support column rotatably arranged next to the conveyor belt, a pneumatic clamp horizontally slidably arranged on the support column, and a collection frame arranged next to the support column, the pneumatic clamp is located at the outlet of the conveyor belt, a sliding hole is opened on the side of the collection frame close to the support column, the sliding hole is connected to the opening of the top surface of the collection frame, and the pneumatic clamp can be vertically slidably arranged in the sliding hole.

[0007] By adopting the above technical solution, the support column is rotatably arranged beside the conveyor belt, the collection frame is arranged beside the support column, a sliding hole is opened on the side of the collection frame close to the support column, the sliding hole is communicated with the opening on the top surface of the collection frame, the pneumatic clamp is horizontally slidably arranged on the support column, the pneumatic clamp is located at the outlet of the conveyor belt, the pneumatic clamp can be vertically slidably arranged in the sliding hole, when it is necessary to organize and collect the products, the pneumatic clamp is driven to clamp the products, and the support column is driven to rotate, so that the pneumatic clamp drives the products into the collection frame, and there is no need for manual storage and sorting, thereby improving the storage efficiency of the products.

[0008] Preferably, a sliding groove is provided on the side of the support column, and the storage mechanism includes a first driving component, the first driving component includes a motor arranged on the support column, a screw fixed on the output shaft of the motor, and a slider threadedly sleeved on the screw, the screw is rotatably arranged in the sliding groove, the slider is vertically slidably arranged in the sliding groove, and the pneumatic clamp is horizontally slidably arranged on the slider.

[0009] By adopting the above technical scheme, a sliding groove is opened on the side of the support column, a motor is arranged on the support column, a screw is fixed on the output shaft of the motor, the screw is rotatably arranged in the sliding groove, the slider is threadedly sleeved on the screw, the slider is vertically slidably arranged in the sliding groove, and the pneumatic clamp is horizontally slidably arranged on the slider. When it is necessary to drive the pneumatic clamp to move vertically, the driving motor drives the screw to rotate forward or reversely, the screw drives the slider to slide up or down, and the slider drives the pneumatic clamp to slide up or down, so as to facilitate the adjustment of the vertical position of the pneumatic clamp.

[0010] Preferably, the storage mechanism includes a second drive component, which includes a mounting bar arranged on the slider, a second motor arranged on the mounting bar, a second screw fixed on the output shaft of the second motor, and a slide bar threadedly sleeved on the second screw, a second slide groove is opened on the side of the mounting bar, the second screw is rotatably arranged in the second slide groove, the slide bar is horizontally slidably arranged in the second slide groove, and the pneumatic clamp is slidably arranged on the slide bar.

[0011] By adopting the above technical scheme, the mounting bar is arranged on the slider, and a sliding groove 2 is opened on the side of the mounting bar, the motor 2 is arranged on the mounting bar, the screw rod 2 is fixed on the output shaft of the motor 2, the screw rod 2 is rotatably arranged in the sliding groove 2, the sliding bar threaded sleeve is arranged on the screw rod 2, the sliding bar is horizontally slidably arranged in the sliding groove 2, and the pneumatic clamp is slidably arranged on the sliding bar. When it is necessary to adjust the distance between the pneumatic clamp and the conveyor belt, the driving motor 2 drives the screw rod 2 to rotate in the forward and reverse directions, the screw rod 2 drives the sliding bar to slide in the direction close to or away from the conveyor belt, and the sliding bar drives the pneumatic clamp to slide in the direction close to or away from the conveyor belt, so as to facilitate the adjustment of the distance between the pneumatic clamp and the conveyor belt.

[0012] Preferably, a cylinder 1 is arranged in the slide bar, and the pneumatic clamp is arranged on the output shaft of the cylinder 1.

[0013] By adopting the above technical solution, a cylinder 1 is provided in the slide bar, and the pneumatic clamp is provided on the output shaft of the cylinder 1. When it is necessary to adjust the distance between the pneumatic clamp and the mounting bar in order to better clamp the product, the cylinder 1 is driven to drive the pneumatic clamp closer to or away from the mounting bar, so as to facilitate the adjustment of the distance between the pneumatic clamp and the mounting bar.

[0014] Preferably, a positioning seat is provided beside the conveyor belt, a rotating column is provided on the bottom surface of the support column, the rotating column is rotatably inserted in the positioning seat, a motor three is provided in the positioning seat, and the rotating column is fixed on the output shaft of the positioning seat.

[0015] By adopting the above technical solution, a positioning seat is arranged next to the conveyor belt, a rotating column is arranged on the bottom surface of the support column, the rotating column is rotatably inserted in the positioning seat, a motor three is arranged in the positioning seat, and the rotating column is fixed on the output shaft of the positioning seat, so as to drive the support column to rotate, thereby facilitating the driving of the pneumatic clamp to rotate and facilitate the storage of products.

[0016] Preferably, a drying mechanism is provided on the conveyor belt, and the drying mechanism comprises a rack provided on the conveyor belt and a drying lamp provided on the rack, and the drying lamp is located directly above the conveyor belt.

[0017] By adopting the above technical solution, the storage rack is arranged on the conveyor belt, the drying lamp is arranged on the storage rack, and the drying lamp is located directly above the conveyor belt, so as to facilitate drying of the printed products.

[0018] Preferably, a holding mechanism is provided on the conveyor belt, and the holding mechanism includes a placement rack arranged on the conveyor belt and a positioning wheel that can abut against the top surface of the product, the positioning wheel is arranged in the placement rack, and the positioning wheel is located directly above the conveyor belt.

[0019] By adopting the above technical solution, the placement rack is set on the conveyor belt, the positioning wheel is set in the placement rack, and the positioning wheel is located directly above the conveyor belt. When the product slides toward the pneumatic clamp via the conveyor belt, the positioning wheel can abut against the top surface of the product, thereby improving the stability of product transmission.

[0020] Preferably, the holding mechanism comprises a second cylinder, the second cylinder is arranged in the placement frame, and the positioning wheel is arranged on the output shaft of the second cylinder.

[0021] By adopting the above technical solution, the holding mechanism includes cylinder 2, which is arranged in the placement rack, and the positioning wheel is arranged on the output shaft of cylinder 2, so as to facilitate the adjustment of the distance between the positioning wheel and the conveyor belt, thereby facilitating the adjustment of the distance between the positioning wheel and the product.

[0022] In summary, the present application includes at least one of the following beneficial technical effects:

[0023] 1. The support column is rotatably arranged beside the conveyor belt, and the collection frame is arranged beside the support column. A sliding hole is provided on the side of the collection frame close to the support column, and the sliding hole is communicated with the opening on the top surface of the collection frame. The pneumatic clamp is horizontally slidably arranged on the support column, and the pneumatic clamp is located at the outlet of the conveyor belt. The pneumatic clamp can be vertically slidably arranged in the sliding hole. When it is necessary to sort and collect the products, the pneumatic clamp is driven to clamp the products, and the support column is driven to rotate, so that the pneumatic clamp drives the products to be put into the collection frame, and there is no need for manual storage and sorting, thereby improving the storage efficiency of the products;

[0024] 2. A motor is arranged on the support column, a screw is fixed on the output shaft of the motor, the screw is rotatably arranged in the sliding groove, a slider is threadedly sleeved on the screw, the slider is vertically slidably arranged in the sliding groove, and the pneumatic clamp is horizontally slidably arranged on the slider. When the pneumatic clamp needs to be driven to move vertically, the driving motor drives the screw to rotate forward or reversely, the screw drives the slider to slide up or down, and the slider drives the pneumatic clamp to slide up or down, so as to facilitate the adjustment of the vertical position of the pneumatic clamp;

[0025] 3. The placement rack is set on the conveyor belt, and the positioning wheel is set in the placement rack. The positioning wheel is located directly above the conveyor belt. When the product slides toward the pneumatic clamp via the conveyor belt, the positioning wheel can abut against the top surface of the product to improve the stability of product transmission. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of the discharging structure in the embodiment of the present application.

[0027] Figure 2 It is a structural schematic diagram of the first drive component in an embodiment of the present application.

[0028] Description of reference numerals:

[0029] 1. Printing machine; 2. Conveyor belt; 21. Positioning seat; 3. Storage mechanism; 31. Support column; 311. Slide groove one; 32. Pneumatic clamp; 33. Collection frame; 34. Conveyor belt; 35. First drive assembly; 351. Motor one; 352. Screw one; 353. Sliding block; 36. Second drive assembly; 361. Mounting bar; 3611. Slide groove two; 362. Motor two; 363. Screw two; 364. Sliding bar; 4. Drying mechanism; 41. Storage rack; 42. Drying lamp; 5. Pressing mechanism; 51. Storage rack; 52. Positioning wheel; 53. Cylinder two. DETAILED DESCRIPTION

[0030] The following is combined with Figure 1-2 This application is described in further detail.

[0031] The present application embodiment discloses a discharging structure of a printing die-cutting machine, referring to Figure 1 As shown, the discharging structure includes a printing machine 1, a conveyor belt 2, a storage mechanism 3, a drying mechanism 4 and a pressing mechanism 5. The printing machine 1 is set on the ground, the conveyor belt 2 is horizontally set at the output end of the printing machine 1, and the length direction of the conveyor belt 2 is parallel to the ground.

[0032] Reference Figure 1 As shown, the drying mechanism 4 includes a rack 41 and a drying lamp 42. The rack 41 is arranged on the conveyor belt 2, and the drying lamp 42 is arranged in the rack 41. The drying lamp 42 is located directly above the conveyor belt 2 to facilitate drying of the printed products.

[0033] Reference Figure 1 As shown, the storage mechanism 3 includes a support column 31, a pneumatic clamp 32, a collection frame 33, a conveyor belt 34, a first drive assembly 35 and a second drive assembly 36. A positioning seat 21 is arranged next to the conveyor belt 2. The positioning seat 21 is arranged horizontally. A rotating column is arranged on the bottom surface of the support column 31. The rotating column is rotatably inserted in the positioning seat 21. A motor three is arranged in the positioning seat 21. The rotating column is fixed on the output shaft of the positioning seat 21 to facilitate driving the support column 31 to rotate.

[0034] Reference Figure 1 and Figure 2 As shown, the length direction of the support column 31 is perpendicular to the ground, a sliding groove 311 is opened on the side of the support column 31, and the length direction of the sliding groove 311 is the same as the length direction of the support column 31. The first driving component 35 includes a motor 351, a screw 352 and a slider 353. The motor 351 is fixed on the top surface of the support column 31, the screw 352 is welded and fixed on the output shaft of the motor 351, the screw 352 is rotatably inserted in the sliding groove 311, and the length direction of the screw 352 is the same as the length direction of the support column 31.

[0035] Reference Figure 1 and Figure 2 As shown, the slider 353 is threadedly sleeved on the screw rod 1 352, and the slider 353 is vertically slidably arranged in the sliding groove 1 311. The second driving component 36 includes a mounting bar 361, a motor 2 362, a screw rod 2 363 and a sliding bar 364. The mounting bar 361 is horizontally arranged on the slider 353, and the length direction of the mounting bar 361 is parallel to the ground. A sliding groove 2 3611 is opened on the side of the mounting bar 361, and the length direction of the sliding groove 2 3611 is the same as the length direction of the mounting bar 361.

[0036] Reference Figure 1 and Figure 2As shown, the second motor 362 is fixed on the mounting strip 361, the second screw 363 is welded and fixed on the output shaft of the second motor 362, the second screw 363 is rotatably set in the second sliding groove 3611, the length direction of the second screw 363 is the same as the length direction of the second sliding groove 3611, the sliding bar 364 is threadedly sleeved on the second screw 363, the sliding bar 364 is slidably set in the second sliding groove 3611, the length direction of the sliding bar 364 is parallel to the ground, and the length direction of the sliding bar 364 is perpendicular to the length direction of the mounting strip 361.

[0037] Reference Figure 1 and Figure 2 As shown, a cylinder 1 is arranged in the slide bar 364, a pneumatic clamp 32 is arranged on the output shaft of the cylinder 1, a conveyor belt 34 is arranged beside the support column 31, the length direction of the conveyor belt 34 is parallel to the ground, the length direction of the conveyor belt 34 is perpendicular to the length direction of the conveyor belt 2, a collecting frame 33 is horizontally arranged on the conveyor belt 34, a sliding hole is opened on the side of the collecting frame 33 close to the support column 31, the sliding hole is connected with the opening of the top surface of the collecting frame 33, and the pneumatic clamp 32 can be vertically slidably arranged in the sliding hole.

[0038] Reference Figure 1 and Figure 2 As shown, when it is necessary to organize and collect products, the pneumatic clamp 32 is driven to clamp the products, and the driving motor 1 351 is convenient for adjusting the vertical position of the pneumatic clamp 32, and the driving motor 2 362 is convenient for adjusting the distance between the pneumatic clamp 32 and the conveyor belt 2, and the driving support column 31 is driven to rotate, so that the pneumatic clamp 32 drives the products into the collection frame 33, and there is no need for manual storage and sorting, thereby improving the storage efficiency of the products.

[0039] Reference Figure 1 As shown, the holding mechanism 5 includes a placement rack 51, a positioning wheel 52 and a cylinder 53. The placement rack 51 is arranged on the conveyor belt 2. There are two cylinders 53. The two cylinders 53 are both fixed in the placement rack 51. The two cylinders 53 are symmetrical about the center line in the length direction of the top surface of the conveyor belt 2.

[0040] Reference Figure 1 As shown, there are two positioning wheels 52, and the two positioning wheels 52 correspond to the two cylinders 53 one by one. The positioning wheels 52 are fixed to the output ends of the cylinders 53, and the positioning wheels 52 are located directly above the conveyor belt 2. When the product slides toward the pneumatic clamp 32 via the conveyor belt 2, the positioning wheels 52 can abut against the top surface of the product to improve the stability of product transmission.

[0041] The implementation principle of the discharge structure of a printing die-cutting machine in the embodiment of the present application is as follows:

[0042] When it is necessary to organize and collect products, the pneumatic clamp 32 is driven to clamp the products. The driving motor 1 351 is convenient for adjusting the vertical position of the pneumatic clamp 32, and the driving motor 2 362 is convenient for adjusting the distance between the pneumatic clamp 32 and the conveyor belt 2. The driving support column 31 is driven to rotate, so that the pneumatic clamp 32 drives the products into the collection frame 33, and there is no need for manual storage and sorting, thereby improving the storage efficiency of the products.

[0043] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A material discharging structure of a printing die-cutting machine, comprising a conveyor belt (2) for conveying products, characterized in that: A storage mechanism (3) is arranged beside the conveyor belt (2), and the storage mechanism (3) comprises a support column (31) rotatably arranged beside the conveyor belt (2), a pneumatic clamp (32) horizontally slidably arranged on the support column (31), and a collection frame (33) arranged beside the support column (31), wherein the pneumatic clamp (32) is located at the outlet of the conveyor belt (2), and a sliding hole is opened on the side of the collection frame (33) close to the support column (31), and the sliding hole is connected with the opening of the top surface of the collection frame (33), and the pneumatic clamp (32) can be vertically slidably arranged in the sliding hole.

2. The material discharging structure of a printing and die-cutting machine according to claim 1, characterized in that: A sliding groove (311) is provided on the side of the support column (31), and the storage mechanism (3) includes a first driving component (35), the first driving component (35) includes a motor (351) arranged on the support column (31), a screw (352) fixed on the output shaft of the motor (351), and a slider (353) threadedly sleeved on the screw (352), the screw (352) is rotatably arranged in the sliding groove (311), the slider (353) is vertically slidably arranged in the sliding groove (311), and the pneumatic clamp (32) is horizontally slidably arranged on the slider (353).

3. The material discharging structure of a printing die-cutting machine according to claim 2, characterized in that: The storage mechanism (3) includes a second driving component (36), which includes a mounting bar (361) arranged on the slider (353), a second motor (362) arranged on the mounting bar (361), a second screw (363) fixed on the output shaft of the second motor (362), and a slide bar (364) threadedly sleeved on the second screw (363), a second sliding groove (3611) is opened on the side surface of the mounting bar (361), the second screw (363) is rotatably arranged in the second sliding groove (3611), the slide bar (364) is horizontally slidably arranged in the second sliding groove (3611), and the pneumatic clamp (32) is slidably arranged on the slide bar (364).

4. The material discharging structure of a printing and die-cutting machine according to claim 3, characterized in that: A cylinder 1 is arranged inside the slide bar (364), and the pneumatic clamp (32) is arranged on the output shaft of the cylinder 1.

5. The material discharging structure of a printing and die-cutting machine according to claim 1, characterized in that: A positioning seat (21) is arranged beside the conveyor belt (2), a rotating column is arranged on the bottom surface of the support column (31), the rotating column is rotatably inserted in the positioning seat (21), a motor 3 is arranged in the positioning seat (21), and the rotating column is fixed on the output shaft of the positioning seat (21).

6. The material discharging structure of a printing and die-cutting machine according to claim 1, characterized in that: A drying mechanism (4) is provided on the conveyor belt (2), and the drying mechanism (4) comprises a storage rack (41) provided on the conveyor belt (2) and a drying lamp (42) provided on the storage rack (41), wherein the drying lamp (42) is located directly above the conveyor belt (2).

7. The material discharging structure of a printing and die-cutting machine according to claim 1, characterized in that: The conveyor belt (2) is provided with a holding mechanism (5), the holding mechanism (5) comprising a placement frame (51) arranged on the conveyor belt (2) and a positioning wheel (52) that can abut against the top surface of the product, the positioning wheel (52) being arranged in the placement frame (51), and the positioning wheel (52) being located directly above the conveyor belt (2).

8. The material discharging structure of a printing and die-cutting machine according to claim 7, characterized in that: The holding mechanism (5) comprises a second cylinder (53), the second cylinder (53) is arranged in the placement frame (51), and the positioning wheel (52) is arranged on the output shaft of the second cylinder (53).