Drying ramp paper feeder

By designing a drying ramp paper feeder, the paperboard is automatically transferred and dried using a lifting mechanism and heating components. This solves the problem of manual handling between the printing press and the die-cutting machine, improves production efficiency and drying efficiency, and meets the high-speed production needs of modern printing production lines.

CN224590291UActive Publication Date: 2026-08-04CANGZHOU TONGBAO CARTON MASCH CO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CANGZHOU TONGBAO CARTON MASCH CO
Filing Date
2025-08-18
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In the printing and post-processing industry, the connection between printing presses and flatbed die-cutting machines is characterized by high labor intensity, low production efficiency, and high safety hazards due to manual handling, making it difficult to meet the high-speed and continuous production requirements of modern printing production lines.

Method used

A paper drying and inclined feeding machine was designed to achieve automated paperboard conveying and drying through a lifting mechanism and a heating component. The machine includes a base, a support frame, a Y-shaped frame, a lifting mechanism, a heating component, a motor, and other components. The motor drives the Y-shaped frame to rotate and the belt conveys the paperboard. Combined with the heating component, the paperboard is dried, achieving automated conveying and efficient drying of the paperboard.

Benefits of technology

The manual conveying method was eliminated, which improved work efficiency, realized the automated transfer and efficient drying of cardboard, met the high-speed production needs of modern printing production lines, and reduced safety hazards and production costs.

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Abstract

The utility model relates to the technical fields of paper feeding machine that climbs, especially to drying paper feeding machine that climbs, its realization paperboard that printing is completed is transferred to the feeding table of die -cutting machine one by one, cancelled the mode of manual delivery, improved work efficiency, through hot air to heat the paperboard on Y type frame and dry, improved paperboard drying efficiency, including base and support frame, support frame rotation is installed on the base inner side wall, still include lifting mechanism, heating component, Y type frame, first motor, roll axle, first support, first belt pulley and first belt, a plurality of groups Y type frame are all circumferential installation on the support frame outer side wall, first motor is installed on the base outer side wall, and first motor output is connected with the support frame, and roll axle rotation is installed on the base, and first support is installed on the base outer side wall, a plurality of groups first belt pulley are all rotationally installed on the first support, and a plurality of groups first belt are sleeved between a plurality of groups first belt pulley and roll axle.
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Description

Technical Field

[0001] This utility model relates to the technical field of inclined paper feeders, and in particular to a drying inclined paper feeder. Background Technology

[0002] In the printing and post-processing industry, printing presses and flatbed die-cutting machines are key pieces of equipment, undertaking important tasks in paperboard printing and die-cutting respectively. However, there are significant problems in the connection between the two, which seriously restricts the improvement of production efficiency and quality.

[0003] In traditional production processes, after the printing press completes the printing of cardboard, the entire stack of cardboard needs to be manually moved to the feeding port of the flatbed die-cutting machine. This operating mode has many drawbacks: on the one hand, manual handling is extremely labor-intensive, especially in large-scale, high-frequency production scenarios, workers are prone to fatigue, which not only affects work efficiency but may also lead to operational errors due to physical exhaustion, causing safety accidents; on the other hand, the speed of manual handling is limited, making it difficult to meet the high-speed, continuous production needs of modern printing production lines, resulting in a slow overall production pace, extended production cycles, and increased production and time costs for enterprises. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a drying inclined paper feeder that enables printed paperboards to be transferred one by one to the loading table of a die-cutting machine, eliminating the manual conveying method and improving work efficiency. The paperboards on the Y-shaped frame are heated and dried by hot air, which improves the drying efficiency of the paperboards.

[0005] This utility model discloses a drying and inclined paper feeding machine, comprising a base and a support frame, with the support frame rotatably mounted on the inner wall of the base; it also includes a lifting mechanism, a heating assembly, a Y-shaped frame, a first motor, a roller shaft, a first support, first pulleys, and first belts. Multiple sets of Y-shaped frames are circumferentially mounted on the outer wall of the support frame. The first motor is mounted on the outer wall of the base, with its output end connected to the support frame. The roller shaft is rotatably mounted on the base. The first support is mounted on the outer wall of the base. Multiple sets of first pulleys are rotatably mounted on the first support. Multiple sets of first belts are fitted between the multiple sets of first pulleys and the roller shaft, with the positions of the multiple sets of first belts and the multiple sets of Y-shaped frames intersecting. The lifting mechanism is located on the side of the roller shaft. A heating assembly is provided on the base, and the heating assembly is used for... The cardboard is heated and dried. The printing press distributes the printed cardboard onto multiple sets of Y-shaped frames. The first motor drives the support frame to rotate, causing the support frame to move the multiple sets of Y-shaped frames circumferentially. This allows the multiple sets of Y-shaped frames to place the cardboard on top of multiple sets of first belts. By rotating the roller, the roller drives the multiple sets of first belts to rotate, which in turn transport the cardboard to the lifting mechanism. The lifting mechanism then continues to feed the cardboard, allowing the printed cardboard to be transferred one by one to the loading table of the die-cutting machine. This eliminates the need for manual conveying and improves work efficiency. When the cardboard is distributed onto the multiple sets of Y-shaped frames, the heating component blows air above the multiple sets of Y-shaped frames, which heats and dries the cardboard on the Y-shaped frames, improving the drying efficiency of the cardboard.

[0006] Preferably, the lifting mechanism includes an inclined frame, a second pulley, a second belt, a third pulley, and a third belt. The inclined frame is mounted on the outer wall of the base. The second pulley is rotatably mounted on the inclined frame. Multiple sets of second belts are fitted between the second pulley and the roller. The multiple sets of second belts are intersected with multiple sets of first belts and are inclined upwards. The third pulley is rotatably mounted on the outer wall of the inclined frame. Multiple sets of third belts are fitted between the second pulley and the third pulley and are intersected with multiple sets of second belts. The multiple sets of third belts are set at a horizontal angle. The multiple sets of first belts transport the cardboard onto the multiple sets of second belts. The rotation of the roller drives the multiple sets of second belts to rotate, causing the multiple sets of second belts to lift and transport the cardboard upwards. Then, the cardboard is transported to the upper part of the multiple sets of third belts. The rotation of the second belt drives the rotation of the second pulley, and the rotation of the second pulley drives the rotation of the third belt, so that the third belt continues to transport the cardboard to the loading platform of the die-cutting machine, realizing the effect of incline feeding and conveying of the cardboard.

[0007] Preferably, the heating assembly includes an electric heating tube, a cylinder, and a fan. The electric heating tube is installed on the upper part of the outer wall of the base, the cylinder is installed on the top of the base, and the fan is installed inside the cylinder. By turning on the fan to blow air onto multiple sets of Y-shaped frames, the flowing air is heated by the electric heating tube, thereby heating and drying the cardboard on the Y-shaped frames.

[0008] Preferably, it also includes a second motor, sprockets, and a chain. The second motor is mounted on the outer wall of the base, the first set of sprockets is concentrically connected to the roller shaft, the second set of sprockets is mounted on the output end of the second motor, and the chain is mounted on the two sets of sprockets. After the second motor is started, it drives the roller shaft to rotate through the sprockets and the chain, thereby improving the convenience of transporting the cardboard by the first belt, the second belt, and the third belt.

[0009] Preferably, it also includes a second support, which is installed on the outer wall of the inclined frame, and the top of the second support contacts multiple sets of second pulleys; the upper part of the second belt is supported by multiple sets of second supports, thereby improving the convenience of the second belt for conveying cardboard.

[0010] Preferably, it also includes an elastic steel sheet, which is installed on the outer wall of the inclined frame; when the cardboard is conveyed at the top of the second belt, the elastic steel sheet presses the cardboard, thereby increasing the friction between the cardboard and the second belt and improving the ease of lifting and conveying the cardboard by the second belt.

[0011] Preferably, the outer surfaces of the first belt, the second belt, and the third belt are provided with anti-slip textures to improve the anti-slip effect during cardboard conveying.

[0012] Preferably, it also includes a cylinder and a push plate. The cylinder is mounted on the outer wall of the tilting frame, and the push plate is mounted on the moving end of the cylinder. The cylinder drives the push plate to move, so that the push plate pushes the cardboard.

[0013] Preferably, it also includes a jack and a support arm. The bottom of the jack is slidably mounted on the base via a support seat. The moving end of the jack is connected to the support arm, and the upper part of the support arm is rotatably connected to the tilting frame. By adjusting the extension and retraction of the moving end of the jack, the height of the tilting frame can be adjusted by the jack via the support arm.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: The printing machine arranges the printed cardboard onto multiple sets of Y-shaped frames. The first motor drives the support frame to rotate, causing the support frame to move the multiple sets of Y-shaped frames circumferentially. This allows the multiple sets of Y-shaped frames to place the cardboard on top of multiple sets of first belts. By rotating the roller, the roller drives the multiple sets of first belts to rotate, causing the multiple sets of first belts to transport the cardboard to the lifting mechanism. The lifting mechanism then continues to feed the cardboard, enabling the printed cardboard to be transferred one by one to the loading table of the die-cutting machine. This eliminates the manual conveying method and improves work efficiency. When the cardboard is arranged onto the multiple sets of Y-shaped frames, the heating component blows air above the multiple sets of Y-shaped frames, thereby heating and drying the cardboard on the Y-shaped frames with hot air, improving the drying efficiency of the cardboard. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the isometric structure of this utility model; Figure 2This is a partial isometric structural diagram of the connection between the roller shaft and the first belt, etc. Figure 3 This is a partial isometric structural diagram showing the connection between the support frame and the Y-shaped frame, etc. Figure 4 This is a partial isometric structural diagram showing the connection between the base and the heating element, etc. Figure 5 This is a partial isometric structural diagram showing the connection between the tilting frame and the second support, etc. Figure 6 This is an isometric structural diagram of the connection between the third pulley and the third belt.

[0016] The following are labels in the attached diagram: 1. Base; 2. Support frame; 3. Y-shaped frame; 4. First motor; 5. Roller shaft; 6. First bracket; 7. First pulley; 8. First belt; 9. Inclined frame; 10. Second pulley; 11. Second belt; 12. Third pulley; 13. Third belt; 14. Heating element; 15. Cylinder; 16. Fan; 17. Second motor; 18. Sprocket; 19. Chain; 20. Second bracket; 21. Elastic steel sheet; 22. Push plate; 23. Jack; 24. Support arm; 25. Cylinder. Detailed Implementation

[0017] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example 1

[0018] like Figures 1 to 6 As shown, the paper drying and climbing feeder of this utility model includes a base 1 and a support frame 2. The support frame 2 is rotatably mounted on the inner side wall of the base 1. It also includes a lifting mechanism, a heating component, a Y-shaped frame 3, a first motor 4, a roller 5, a first bracket 6, a first pulley 7, and a first belt 8. Multiple sets of Y-shaped frames 3 are circumferentially mounted on the outer side wall of the support frame 2. The first motor 4 is mounted on the outer side wall of the base 1, and the output end of the first motor 4 is connected to the support frame 2. The roller 5 is rotatably mounted on the base 1. The first bracket 6 is mounted on the outer side wall of the base 1. Multiple sets of first pulleys 7 are rotatably mounted on the first bracket 6. Multiple sets of first belts 8 are fitted between the multiple sets of first pulleys 7 and the roller 5, and the positions of the multiple sets of first belts 8 and the multiple sets of Y-shaped frames 3 are intersected. The lifting mechanism is located on the side of the roller 5. A heating component is provided on the base 1. The heating component is used to heat and dry the paperboard. like Figure 3As shown, the lifting mechanism includes an inclined frame 9, a second pulley 10, a second belt 11, a third pulley 12, and a third belt 13. The inclined frame 9 is mounted on the outer wall of the base 1. The second pulley 10 is rotatably mounted on the inclined frame 9. Multiple sets of second belts 11 are fitted between the second pulley 10 and the roller 5. The multiple sets of second belts 11 are arranged crosswise with multiple sets of first belts 8, and the multiple sets of second belts 11 are inclined upwards. The third pulley 12 is rotatably mounted on the outer wall of the inclined frame 9. Multiple sets of third belts 13 are fitted between the second pulley 10 and the third pulley 12. The multiple sets of third belts 13 are arranged crosswise with multiple sets of second belts 11, and the multiple sets of third belts 13 are set at a horizontal angle. In this embodiment, the printing press distributes the printed cardboard onto multiple sets of Y-shaped frames 3. The first motor 4 drives the support frame 2 to rotate, causing the support frame 2 to move the multiple sets of Y-shaped frames 3 circumferentially. This allows the multiple sets of Y-shaped frames 3 to place the cardboard on top of multiple sets of first belts 8. By rotating the roller 5, the roller 5 drives the multiple sets of first belts 8 to rotate, causing the multiple sets of first belts 8 to transport the cardboard to the lifting mechanism. The lifting mechanism then continues to feed the cardboard, enabling the printed cardboard to be transferred one by one to the loading table of the die-cutting machine. This eliminates the need for manual conveying and improves work efficiency. When the cardboard is distributed onto the multiple sets of Y-shaped frames 3, the heating component blows air above the multiple sets of Y-shaped frames 3, causing the hot air to heat and dry the cardboard on the Y-shaped frames 3, thus improving the drying efficiency of the cardboard. Example 2

[0019] Based on Example 1, such as Figure 2 As shown, the drying and climbing paper feeding machine of this utility model includes a heating component comprising an electric heating tube 14, a cylinder 15 and a fan 16. The electric heating tube 14 is installed on the upper part of the outer wall of the base 1, the cylinder 15 is installed on the top of the base 1, and the fan 16 is installed inside the cylinder 15. like Figure 2 As shown, it also includes a second motor 17, a sprocket 18 and a chain 19. The second motor 17 is mounted on the outer wall of the base 1. The first set of sprockets 18 is concentrically connected to the roller shaft 5. The second set of sprockets 18 is mounted on the output end of the second motor 17. The chain 19 is mounted on the two sets of sprockets 18. like Figure 5 As shown, it also includes a second bracket 20, which is installed on the outer wall of the inclined frame 9, and the top of the second bracket 20 contacts multiple sets of second belts 11. like Figure 5 As shown, it also includes an elastic steel sheet 21, which is installed on the outer wall of the inclined frame 9; like Figure 3 As shown, the outer surfaces of the first belt 8, the second belt 11, and the third belt 13 are provided with anti-slip textures; like Figure 6As shown, it also includes a cylinder 25 and a push plate 22. The cylinder 25 is mounted on the outer wall of the tilting frame 9, and the push plate 22 is mounted on the moving end of the cylinder 25.

[0020] like Figure 6 As shown, it also includes a jack 23 and a support arm 24. The bottom of the jack 23 is slidably mounted on the base 1 through a support seat. The moving end of the jack 23 is connected to the support arm 24, and the upper part of the support arm 24 is rotatably connected to the tilting frame 9. In this embodiment, multiple sets of first belts 8 transport cardboard to multiple sets of second belts 11. While the roller 5 rotates, it drives the multiple sets of second belts 11 to rotate, causing the multiple sets of second belts 11 to lift and transport the cardboard upwards. Then, the cardboard is transported to the upper part of multiple sets of third belts 13. After the second belts 11 rotate, they drive the second pulleys 10 to rotate. After the second pulleys 10 rotate, they drive the third belts 13 to rotate, so that the third belts 13 continue to transport the cardboard to the loading platform of the die-cutting machine, realizing the effect of cardboard climbing and loading. By turning on the fan 16 to blow air onto the multiple sets of Y-shaped frames 3, the flowing air is heated by the electric heating tube 14, so that the hot air heats and dries the cardboard on the Y-shaped frames 3.

[0021] In operation, the drying and inclined paper feeding machine of this utility model discharges the printed cardboard onto multiple sets of Y-shaped frames 3. The first motor 4 drives the support frame 2 to rotate, which in turn drives the multiple sets of Y-shaped frames 3 to move circumferentially. This allows the multiple sets of Y-shaped frames 3 to place the cardboard on top of multiple sets of first belts 8. By rotating the roller 5, the roller 5 drives the multiple sets of first belts 8 to rotate, which in turn transports the cardboard to the lifting mechanism. The lifting mechanism then continues to feed the cardboard, thus transferring the printed cardboard one by one to the loading table of the die-cutting machine. When the cardboard is discharged onto the multiple sets of Y-shaped frames 3, the heating component blows air above the multiple sets of Y-shaped frames 3, thereby heating and drying the cardboard on the Y-shaped frames 3.

[0022] The first motor 4, heating element 14, fan 16, and second motor 17 of the drying and climbing paper feeding machine of this utility model are purchased from the market. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.

[0023] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A drying uphill paper feeding machine, comprising a base (1) and a supporting frame (2), the supporting frame (2) being rotatably installed on the inner side wall of the base (1); characterized in that, It also includes a lifting mechanism, a heating component, a Y-shaped frame (3), a first motor (4), a roller (5), a first support (6), a first pulley (7), and a first belt (8). Multiple sets of Y-shaped frames (3) are circumferentially mounted on the outer wall of the support frame (2). The first motor (4) is mounted on the outer wall of the base (1). The output end of the first motor (4) is connected to the support frame (2). The roller (5) is rotatably mounted on the base (1). The first support (6) is mounted on the outer wall of the base (1). Multiple sets of first pulleys (7) are rotatably mounted on the first support (6). Multiple sets of first belts (8) are fitted between the multiple sets of first pulleys (7) and the roller (5). The positions of the multiple sets of first belts (8) and the multiple sets of Y-shaped frames (3) are arranged crosswise. The lifting mechanism is located on the side of the roller (5). A heating component is provided on the base (1). The heating component is used to heat and dry the cardboard.

2. The drying ramp feeder of claim 1, wherein, The lifting mechanism includes an inclined frame (9), a second pulley (10), a second belt (11), a third pulley (12), and a third belt (13). The inclined frame (9) is mounted on the outer wall of the base (1). The second pulley (10) is rotatably mounted on the inclined frame (9). Multiple sets of second belts (11) are fitted between the second pulley (10) and the roller (5). Multiple sets of second belts (11) are intersected with multiple sets of first belts (8), and the multiple sets of second belts (11) are inclined upwards. The third pulley (12) is rotatably mounted on the outer wall of the inclined frame (9). Multiple sets of third belts (13) are fitted between the second pulley (10) and the third pulley (12). Multiple sets of third belts (13) are intersected with multiple sets of second belts (11), and the multiple sets of third belts (13) are set at a horizontal angle.

3. The drying ramp feeder of claim 1, wherein, The heating assembly includes a heating element (14), a cylinder (15), and a fan (16). The heating element (14) is installed on the upper part of the outer wall of the base (1), the cylinder (15) is installed on the top of the base (1), and the fan (16) is installed inside the cylinder (15).

4. The drying ramp feeder of claim 1 wherein, It also includes a second motor (17), sprockets (18) and chain (19). The second motor (17) is mounted on the outer wall of the base (1). The first set of sprockets (18) is concentrically connected to the roller shaft (5). The second set of sprockets (18) is mounted on the output end of the second motor (17). The chain (19) is mounted on the two sets of sprockets (18).

5. The drying ramp feeder of claim 2 wherein, It also includes a second bracket (20), which is mounted on the outer wall of the inclined frame (9), and the top of the second bracket (20) contacts multiple sets of second belts (11).

6. The drying ramp feeder of claim 2 wherein, It also includes an elastic steel sheet (21), which is installed on the outer wall of the tilting frame (9).

7. The drying ramp feeder according to any one of claims 1 or 2, wherein The outer surfaces of the first belt (8), the second belt (11) and the third belt (13) are provided with anti-slip texture.

8. The drying ramp feeder of claim 1 wherein, It also includes a cylinder (25) and a push plate (22), with the cylinder (25) mounted on the outer wall of the tilting frame (9) and the push plate (22) mounted on the moving end of the cylinder (25).

9. The drying ramp feeder of claim 1 wherein, It also includes a jack (23) and a support arm (24). The bottom of the jack (23) is slidably mounted on the base (1) through a support seat. The moving end of the jack (23) is connected to the support arm (24), and the upper part of the support arm (24) is rotatably connected to the tilting frame (9).