Rotary paper blanking machine

By designing a rotary feeder with paper materials, the high cost and environmental protection problems of traditional feeder are solved, and a low-cost and biodegradable feeder structure is achieved to meet the needs of green manufacturing.

CN223239219UActive Publication Date: 2025-08-19嘉兴紫泉包装科技有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422609615.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-19
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Traditional cutting machines use metal and plastic materials with high cost, difficulty in maintaining and high quality, making it difficult to meet green manufacturing and environmental protection needs.

Method used

The rotary feeder is designed using paper materials. By optimizing the structural design, the low-cost and degradable characteristics of corrugated paper materials are used to achieve the functional requirements of the feeder.

Benefits of technology

It reduces the production and transportation costs of the feeding machine, while ensuring the stability of the structure and the realization of functions, and complies with the requirements of green manufacturing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223239219U_ABST
    Figure CN223239219U_ABST
Patent Text Reader

Abstract

A rotary type paper blanking machine comprises a blanking machine body, a material storage area, a discharging area and an operation device. The discharging machine body comprises a machine body and an upper cover plate. And the blanking machine main body is made of a first paperboard. The first paperboard comprises a first side plate, a second side plate, a third side plate, a fourth side plate and a sticking strip which are stuck and folded to form the machine body, and a material control plate which is arranged at one end of the machine body and is folded to form the upper cover plate. The material storage area comprises a side wall and a bottom plate. The side wall is composed of the machine body and the material control plate connected with the first side plate and the third side plate. The material control plate comprises a top face and a material control face which are sequentially connected in the same direction. The rotary paper blanking machine is made of a paper material, so that the quality and the cost of the used material are reduced while the smooth implementation of functions is ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of blanking machines, in particular to a rotary paper blanking machine. Background Art

[0002] A feeder is an automated device used to rotate and remove materials from storage, containers, or stockpiles and transport or deposit them according to predetermined requirements. Traditional feeders are mostly made of metal and plastic materials. These materials have high strength and durability, and can adapt to the high-intensity operations required in large-scale industrial production. However, these materials are expensive to manufacture, process, and maintain, and are heavy and difficult to transport.

[0003] In recent years, with the development of green manufacturing and environmental protection technologies, paper materials have gradually attracted attention from the industrial field due to their low cost, recyclability and biodegradability.

[0004] In response to the shortcomings of the existing technology, this patent proposes a technical solution for making a blanking machine using paper materials. The blanking machine realizes the function of a blanking machine by optimizing the structural design and selecting paper materials, taking advantage of their low cost and biodegradable environmental protection. Utility Model Content

[0005] In view of this, the utility model provides a rotary paper blanking machine to solve the above problems.

[0006] A rotary paper feeder comprises a feeder body, a material storage area disposed within the feeder body, a material discharge area disposed below the material storage area, and an operating device disposed within the material discharge area. The feeder body comprises a main body and an upper cover plate covering the opening of the main body. The feeder body is made of a first cardboard. The first cardboard comprises a first side panel, a second side panel, a third side panel, and a fourth side panel, which are glued and folded to form the main body, a first adhesive strip, and a material control plate, which is folded to form the upper cover plate. The second side panel is provided with a first mounting hole located below the material storage area. The third side panel is provided with a material removal opening located below the material storage area. The second, third, and fourth side panels of the main body are provided with a viewing opening. The material storage area comprises a side wall below the upper cover plate and at least one material storage box disposed below the material storage area. The side wall is composed of the main body and the material control plate. The material control plate comprises a top surface, a material control surface, a support surface, and a second adhesive strip, which are sequentially connected in the same direction. The top surface is positioned against the upper cover, the material control surface is perpendicular to the top surface, the support surface is perpendicular to the material control surface, and the second adhesive strip is adhered to the second side panel perpendicular to the support surface. A discharge port is provided on the side of the material control surface facing away from the upper cover, the length and height of the discharge port being greater than the size of a single item. The top cover of the storage box serves as the bottom surface of the storage area. The discharge area comprises a box body and a bottom plate connected to the box body. The discharge area is made of a second cardboard. The box body is positioned below the storage area. The bottom plate is positioned on the side of the box body where the storage box is adhered, with its sides adhered at an angle to the first and third side panels. The bottom plate forms the bottom surface of the storage area. The operating device comprises a long rod positioned within the discharge area and a discharge plate mounted on the long rod. The long rod passes through the center of the discharge plate, and one end of the long rod is positioned outside the feeder body. The discharge plate is affixed to the second side panel and positioned on the side of the material control surface facing the second side panel. A movable discharge port is provided on the outer edge of the discharge plate. The rotation path of the discharge plate overlaps with the discharge port. The rotation path of the movable discharge port partially overlaps with the discharge port. The movable discharge port can accommodate a single material.

[0007] Furthermore, the first paperboard further includes a first upper cover plate, a second upper cover plate, and a first upper flap which are folded to form the upper cover plate, and the first and second upper cover plates of the upper cover plate are provided with double tongues.

[0008] Furthermore, the blanking machine body also includes a lower cover plate arranged at the opening of the fuselage relative to the upper cover plate, and the first paperboard also includes four plug-in plates folded to form the lower cover plate.

[0009] Furthermore, the shape of the discharge port is a trapezoid with two opposite short sides being arc-shaped, and the centers of the two arcs are the same.

[0010] Furthermore, the discharge port is arranged toward the third side plate.

[0011] Furthermore, a second mounting hole is provided on the side panel of the storage box facing the discharge port, and the center of the second mounting hole and the center of the first mounting hole are arranged on the same straight line.

[0012] Furthermore, the discharge area also includes a supporting plate connected to the box body, and the supporting plate is arranged on the side of the box body bonded with the first side plate facing the lower cover plate, and a support block is provided below the supporting plate.

[0013] Furthermore, the height at which the bottom plate is adhered to one side of the storage box is lower than the height of the top cover of the storage box. On the side of the bottom plate facing the material extraction port, the height at which a corner of the first side panel is adhered is higher than the height at which the bottom plate is adhered to one side of the storage box, and the height at which a corner of the third side panel is adhered is lower than the height at which the bottom plate is adhered to one side of the storage box.

[0014] Furthermore, the operating device also includes an operating button bonded to one end of the long rod, the operating button is arranged on the outside of the fuselage and is attached to the second side panel, and one end of the long rod is sleeved in the first and second mounting holes in the blanking machine body.

[0015] Furthermore, the arc diameter of the discharge plate is greater than or equal to the diameter of the outer contour of the discharge port, the center of the discharge plate is set below the center of the short side, and the gap between the discharge plate and the discharge port is smaller than the diameter of a single material.

[0016] Compared with the prior art, the utility model provides a rotary paper blanking machine that uses paper materials to complete the production of the rotary paper materials. The blanking machine body is formed by folding the first cardboard. The discharge area is formed by folding the second cardboard. The side wall is composed of the fuselage and the control plate. The control surface is provided with a discharge port, and the shape of the discharge port is a trapezoid with two opposite short sides that are arc-shaped, and the centers of the two arcs are the same. The arc diameter of the discharge plate is greater than or equal to the diameter of the outer contour of the discharge port, and the center of the discharge plate is set below the center of the short side. The gap between the discharge plate and the discharge port is less than the diameter of a single material, so as to prevent the material from falling from the outside of the movable discharge port. The rotation path of the discharge plate overlaps with the discharge port, and the rotation path of the movable discharge port partially overlaps with the discharge port. The diameter of the movable discharge port is greater than or equal to the diameter of a single material in the storage area, and the thickness of the discharge plate is greater than or equal to the diameter of the material in the storage area, so that when the movable discharge port coincides with the discharge port, the material can leave the storage area through the movable discharge port. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 The utility model provides a structural schematic diagram of a rotary paper blanking machine.

[0018] Figure 2 for Figure 1 A schematic structural diagram of the first paperboard of the rotary paper blanking machine.

[0019] Figure 3 for Figure 1 A schematic structural diagram of the second paperboard of the rotary paper blanking machine.

[0020] Figure 4 It is a cross-sectional view of the rotary paper blanking machine.

[0021] Figure 5 for Figure 1 A schematic structural diagram of the operating device of the rotary paper blanking machine. DETAILED DESCRIPTION

[0022] The following is a further detailed description of specific embodiments of the present invention. It should be understood that the description of the embodiments of the present invention herein is not intended to limit the scope of protection of the present invention.

[0023] The terms used herein are intended to explain the embodiments and are not intended to limit and / or define the present invention. It should be understood that the terms "front", "back", "left", "right", "up", "down", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, or are the directions or positional relationships in which the product of the utility model is usually placed when in use, or are the directions or positional relationships commonly understood by those skilled in the art. They are only for the convenience of describing the present invention and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific direction, be constructed and operate in a specific direction, and therefore should not be understood as limiting the present invention.

[0024] See also Figures 1 to 5 , which is a schematic structural diagram of a rotary paper blanking machine provided by the present invention. The rotary paper blanking machine includes a blanking machine body 10, a material storage area 20 disposed in the blanking machine body 10, a material discharge area 30 disposed below the material storage area 20, and an operating device 40 disposed in the material discharge area 30. It is conceivable that the rotary paper blanking machine also includes other functional modules, such as adhesive reinforcement plates, folding, etc., which are well known to those skilled in the art and will not be described in detail here.

[0025] The blanking machine body 10 includes a body 11, an upper cover 12 covering the opening of the body 11, and a lower cover 13 covering the opening of the body 11 opposite the upper cover 12. The blanking machine body 10 is made of a first cardboard 500. The first cardboard 500 includes a first side panel 510, a second side panel 520, a third side panel 530, a fourth side panel 540, and a first adhesive strip 550, which are glued and folded to form the body 11; a first upper cover 560, a material control panel 570, a second upper cover 580, and a first upper flap 590, which are folded to form the upper cover 12; and four plug-in boards, which are folded to form the lower cover 13. The first adhesive strip 550 is disposed on the side of the first side panel 510 opposite the second side panel 520 and is affixed to the fourth side panel 540. The blanking machine body 10 is made of paper material, preferably corrugated paper. The corrugated paper material is low in cost, has certain structural strength, good molding effect, is not easy to be damaged, and is convenient for composite processing. At the same time, the corrugated paper material is light in weight and easy to transport, and will not cause damage to the environment when recycled.

[0026] The body 11 is a box-shaped structure with U-shaped openings at the upper and lower ends. The second, third, and fourth side panels 520, 530, and 540 of the body 11 are each provided with a viewing port 111, which is covered with a transparent plastic cover to provide visibility into the material storage area 20. The second side panel 520 is provided with a first mounting hole 112 located below the material storage area 20, for inserting the operating device 40. The third side panel 530 is provided with a material removal port 113 located below the material storage area 20, for assisting in removing materials.

[0027] The first and second upper cover plates 560 and 580 of the upper cover plate 12 are provided with double tongues for free opening and closing, for replenishing the material in the material storage area 20. The lower cover plate 13 is composed of four plug-in plates fixed together. The lower cover plate 13 is of conventional technology and will not be described in detail here.

[0028] The material storage area 20 is disposed inside the viewing opening 111. The material storage area 20 includes a side wall 21 below the upper cover 12 and at least one material storage box 22 disposed below the material storage area 20.

[0029] The side wall 21 is composed of the body 11 and the material control plate 570 .

[0030] The material control panel 570 includes a top surface 571, a material control surface 572, a support surface 573, and a second adhesive strip 574, all connected in the same direction. Folds are defined between the various areas of the material control panel 570. The material control panel 570 is folded to form a rectangular shape with the second side panel 520 and is then attached to the main body of the material control panel 570.

[0031] The length of the material control surface 572 is equal to the width of the second side panel 520, and is used to assist the material storage area 20 in preventing materials from falling. A discharge port 5721 is provided on the side of the material control surface 572 away from the upper cover plate 12. The material control surface 572 is used to prevent materials from falling out of the material storage area 20. The discharge port 5721 is used to provide an outlet for materials to leave the material storage area 20. The length and height of the discharge port 5721 are greater than the diameter of a single material, so that a single material can leave the material storage area 20 through the discharge port 5721. In this embodiment, the shape of the discharge port 5721 is a trapezoid with two opposite short sides in the shape of circular arcs, and the centers of the two arcs are the same.

[0032] Since the discharge port 5721, that is, the support surface 573, is cut out from the material control surface 572, the support surface 573 is connected to the discharge port 5721 and is provided with an extension portion, so that the width of the support surface 573 is equal to the width of the top surface 571, which is used to assist the material control surface 572 to be perpendicular to the top plate.

[0033] Bend the fold so that the top surface 571 is placed against the upper cover plate 12, the material control surface 572 is perpendicular to the top surface 571, the support surface 573 is perpendicular to the material control surface 572, and the second adhesive strip 574 is perpendicular to the support surface 573 and adhered to the second side panel 520, thereby fixing the shape of the material control plate 570 in the blanking machine body 10.

[0034] The storage box 22 is used to support the materials arranged in the storage area 20, and plays a supporting role for the storage area 20. The storage box 22 is arranged in a rectangular parallelepiped. The top cover of the storage box 22 is the bottom surface of the storage area 20. The side panel of the storage box 22 facing the discharge port 5721 is provided with a second mounting hole 221, and the center of the second mounting hole 221 and the first mounting hole 112 are arranged in the same straight line. The second mounting hole 221 is used to assist the operating device 40 to be arranged in the blanking machine. The storage box 22 can be opened and has a storage function. The storage box 22 is glued and fixed to the first, third and fourth side panels 510, 530, 540 and the lower cover plate 13. The folding structure of the storage box 22 is a general technology and will not be described here.

[0035] The discharge area 30 includes a box body 31, a support plate 32 connected to the box body 31, and a bottom plate 33 connected to the box body 31. The discharge area 30 is made of a second cardboard 600 and is used to store materials dropped from the storage area 20. The box body 31 is bonded to the storage box 22, the second side panel 520, the first side panel 510, and the third side panel 530. The box body 31 is arranged below the storage area 20, and the support plate 32 is arranged on the side of the box body 31 bonded to the first side panel 510 facing the lower cover 13. A support block for supporting the support plate 32 is provided below the support plate 32, so that the height of the support plate 32 is the same as the lowest height of the material removal port 113, which is convenient for users to pick up materials dropped into the material removal port 113. The bottom plate 33 is positioned on the side of the housing 31 where the material storage box 22 is attached. Two sides of the bottom plate 33 are attached at an angle to the first and third side panels 510 and 530. The height of the bottom plate 33 attached to the material storage box 22 is lower than the height of the top cover of the material storage box 22. On the side of the bottom plate 33 facing the material dispensing opening 113, a corner of the bottom plate 33 attached to the first side panel 510 is higher than the height of the bottom plate 33 attached to the material storage box 22, while a corner of the bottom plate 33 attached to the third side panel 530 is lower than the height of the bottom plate 33 attached to the material storage box 22, thereby causing materials to accumulate near the material dispensing opening 113. Below the bottom plate 33, multiple support blocks are attached to the first and third side panels 510 and 530 to maintain the tilt angle of the bottom plate 33. The bottom plate 33 forms the bottom surface of the material storage area 22, helping the material storage box 22 support materials and also allowing materials to accumulate near the discharge opening 5721, preventing them from falling during use.

[0036] The operating device 40 includes a long rod 41 disposed in the discharge area 30 , an operating button 42 bonded to one end of the long rod 41 , and a discharge plate 43 sleeved on the long rod 41 .

[0037] One end of the long rod 41 is sleeved in the first and second mounting holes 112 and 221 in the blanking machine body 10, and the other end is arranged on the outside of the blanking machine body 10 for user operation. The long rod 41 passes through the center of the discharge plate 43 and is used to control the rotation trajectory of the discharge plate 43 to assist materials in leaving the storage area 20. In this embodiment, the radial surface of the long rod 41 is square, which is convenient for processing and also for the rotation of the long rod 41. The operating button 42 is arranged on the outside of the fuselage 11 and is attached to the second side panel 520. The operating button 42 is arranged in an 8-shape to facilitate the user to operate the rotation of the long rod 41.

[0038] The discharge plate 43 is abutted against the second side plate 520 and is positioned on the side of the material control surface 572 facing the second side plate 520. The discharge plate 43 has a circular outer contour, with a movable discharge port 431 defined on its outer edge. The rotational path of the discharge plate 43 overlaps with the discharge port 5721, and the rotational path of the movable discharge port 431 partially overlaps with the discharge port 5721. The diameter of the movable discharge port 431 is greater than or equal to the diameter of a single object in the storage area 20, and the thickness of the discharge plate 43 is greater than or equal to the diameter of a single object in the storage area 20, enabling the movable discharge port 431 to accommodate a single object. The arc diameter of the discharge plate 43 is greater than or equal to the outer contour diameter of the discharge port 5721. The center of the discharge plate 43 is positioned below the center of the short side. The gap between the discharge plate 43 and the discharge port 5721 is less than the diameter of a single object, preventing objects from falling out of the movable discharge port 431. The discharge port 5721 is arranged toward the third side plate 530 , and cooperates with the inclined bottom plate 33 to facilitate the movable discharge port 431 to take out the balls.

[0039] During use, because the bottom plate 33 tilts downward toward the viewing port 111 and the discharge port 5721, the materials in the storage area 20 gather at the viewing port 111 and the discharge port 5721. Holding the operating button 42 and rotating the operating device 40, the discharge plate 43 and the movable discharge port 431 rotate as the operating device 40 rotates. When the movable discharge port 431 coincides with the discharge port 5721, the materials flow into the movable discharge port 431, which is filled with materials. When the movable discharge port 431 rotates to the discharge area 30, the materials fall out of the discharge area 30. If there is insufficient material in the storage area 20, the materials can be replenished by opening the upper cover 12.

[0040] Compared with the prior art, the utility model provides a rotary paper blanking machine that uses paper materials to complete the production of the rotary paper materials. The blanking machine body 10 is formed by folding the first cardboard 500. The discharge area 30 is formed by folding the second cardboard 600. The side wall 21 is composed of the fuselage 11 and the control plate 570. The control surface 572 is provided with a discharge port 5721, and the shape of the discharge port 5721 is a trapezoid with two opposite short sides that are arc-shaped, and the centers of the two arcs are the same. The arc diameter of the discharge plate 43 is greater than or equal to the diameter of the outer contour of the discharge port 5721, and the center of the discharge plate 43 is set below the center of the short side. The gap between the discharge plate 43 and the discharge port 5721 is less than the diameter of a single material, preventing the material from falling out of the movable discharge 431. The rotation path of the discharge plate 43 overlaps with the discharge port 5721, and the rotation path of the movable discharge port 431 partially overlaps with the discharge port 5721. The diameter of the movable discharge port 431 is greater than or equal to the diameter of a single material in the storage area 20, and the thickness of the discharge plate 43 is greater than or equal to the diameter of the material in the storage area 20, so that when the movable discharge port 431 overlaps with the discharge port 5721, the material can leave the storage area 20 through the movable discharge port 431.

[0041] The above are only preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Any modifications, equivalent replacements or improvements within the spirit of the present invention are included in the scope of the claims of the present invention.

Claims

1. A rotary paper blanking machine, characterized by: The rotary paper blanking machine includes a blanking machine main body, a storage area arranged in the blanking machine main body, a discharge area arranged below the storage area, and an operating device arranged in the discharge area. The blanking machine main body includes a fuselage and an upper cover plate arranged at the opening of the fuselage. The blanking machine main body is made of a first cardboard, and the first cardboard includes a first side plate, a second side plate, a third side plate, a fourth side plate, a first adhesive strip, and a material control plate folded to form the upper cover plate. The second side plate is provided with a position The first mounting hole is located below the material storage area, the third side panel is provided with a material taking port located below the material storage area, the second, third and fourth side panels of the fuselage are provided with a viewing port, the material storage area includes a side wall below the upper cover plate, and at least one material storage box arranged below the material storage area, the side wall is composed of the fuselage and the material control plate, the material control plate includes a top surface, a material control surface, a support surface, and a second adhesive strip connected in the same direction in sequence, the top surface is arranged in contact with the upper cover plate, the material control surface is perpendicular to the top surface, and the support surface The second adhesive strip is perpendicular to the material control surface and is adhered to the second side panel perpendicular to the supporting surface. A discharge port is provided on the side of the material control surface away from the upper cover plate. The length and height of the discharge port are greater than the size of a single material. The top cover of the storage box is the bottom surface of the storage area. The discharge area includes a box body and a bottom plate connected to the box body. The discharge area is made of a second cardboard. The box body is arranged below the storage area. The bottom plate is arranged on the side of the box body pasted with the storage box. Both sides of the bottom plate are obliquely adhered to the first and third side panels. The bottom plate forms the bottom surface of the storage area, and the operating device includes a long rod arranged in the discharging area, and a discharging plate sleeved on the long rod, the long rod passes through the center of the discharging plate, and one end of the long rod is arranged on the outside of the discharge machine body, the discharging plate is attached to the second side plate and is arranged on the side of the material control surface facing the second side plate, a movable discharging port is provided on the outer edge of the discharging plate, the rotation path of the discharging plate overlaps with the discharging port, the rotation path of the movable discharging port partially overlaps with the discharging port, and the movable discharging port can accommodate materials individually.

2. The rotary paper blanking machine according to claim 1, characterized in that: The first paperboard further includes a first upper cover plate, a second upper cover plate, and a first upper flap which are folded to form the upper cover plate. The first and second upper cover plates of the upper cover plate are provided with double inserting tongues.

3. The rotary paper blanking machine according to claim 1, characterized in that: The blanking machine body further comprises a lower cover plate which is arranged at the opening of the machine body relative to the upper cover plate, and the first paperboard further comprises four plug-in plates which are folded to form the lower cover plate.

4. The rotary paper blanking machine according to claim 1, characterized in that: The shape of the discharge port is a trapezoid with two opposite short sides being arc-shaped, and the centers of the two arcs are the same.

5. The rotary paper blanking machine according to claim 1, characterized in that: The discharge port is arranged toward the third side plate.

6. The rotary paper blanking machine according to claim 1, characterized in that: A second mounting hole is provided on the side plate of the material storage box facing the material discharge port, and the center of the second mounting hole and the center of the first mounting hole are arranged in the same straight line.

7. The rotary paper blanking machine according to claim 3, characterized in that: The discharging area further comprises a supporting plate connected to the box body, the supporting plate is arranged on the side of the box body bonded with the first side plate facing the lower cover plate, and a supporting block is provided below the supporting plate.

8. The rotary paper blanking machine according to claim 1, characterized in that: The height at which the bottom plate is adhered to one side of the storage box is lower than the height of the top cover of the storage box. On the side of the bottom plate facing the material extraction port, the corner of the first side plate is adhered to a higher height than the bottom plate is adhered to one side of the storage box, and the corner of the third side plate is adhered to a lower height than the bottom plate is adhered to one side of the storage box.

9. The rotary paper blanking machine according to claim 6, characterized in that: The operating device also includes an operating button bonded to one end of the long rod. The operating button is arranged on the outside of the fuselage and is attached to the second side panel. One end of the long rod is sleeved in the first and second mounting holes in the blanking machine body.

10. The rotary paper blanking machine according to claim 4, characterized in that: The arc diameter of the discharge plate is greater than or equal to the diameter of the outer contour of the discharge port, the center of the discharge plate is set below the center of the short side, and the gap between the discharge plate and the discharge port is smaller than the diameter of a single material.