A seed paper rapid air drying device and method

The wind force and airflow formed by the deflection of the clamping components of the seed paper rapid air drying equipment and the pressure difference are solved, and the problem of poor ventilation of the seed paper surface and inability to discharge internal moisture in time is achieved, and the rapid and efficient air drying of the seed paper is achieved.

CN117190671BActive Publication Date: 2025-08-26LAIYANG YINTONG PAPERMAKING CO LTD
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Patent Information

Application Number
CN202311176679.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-13
Publication Date
2025-08-26
Estimated Expiration
2043-09-13

AI Technical Summary

Technical Problem

When existing air-drying equipment air-drying equipment, the surface of the seed paper has poor ventilation and the internal moisture cannot be discharged in time, resulting in low air-drying efficiency.

Method used

A seed paper rapid air-drying device is adopted, including a base, a conveying assembly, an air-drying assembly and a transfer assembly. The wind force is formed by deflection and pressure difference of the clamping member, combined with airflow and extrusion, and the ventilation and moisture discharge efficiency of the seed paper are enhanced.

Benefits of technology

The air-drying efficiency of seed paper is improved, and the wind force and air flow formed by the deflection of the clamping parts and the pressure difference is formed, which enhances the ventilation of the seed paper surface and the extrusion effect of moisture, achieving a fast and efficient air-drying process.

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Abstract

The present invention discloses a rapid air-drying device and method for seed paper, which belongs to the technical field of paper air-drying. It comprises: a base, a conveying component, an air-drying component and a transfer component. The air-drying component comprises a main shaft, a disc and multiple groups of clamping components. The main shaft is vertically rotatably mounted on the base, the disc is fixedly sleeved on the top of the main shaft, and the multiple groups of clamping components are horizontally arranged on the outside of the disc and evenly distributed in a ring shape. The clamping components comprise a bottom plate, a pressure plate, a telescopic cylinder and two connecting parts. The bottom plate and the pressure plate are both provided with multiple air holes. The disc is rotatably provided with multiple rotating shafts. A power device is provided in the base, and a driving component is provided at the bottom of the main shaft. The multiple rotating shafts are deflected under the drive of the driving component. The present invention effectively solves the problem that the ventilation of the seed paper surface is poor and the moisture inside the seed paper cannot be discharged in time when air is blown to the paper by ventilation equipment for air drying, resulting in low air-drying efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of paper air-drying, and in particular to a rapid air-drying device and method for seed paper. Background Art

[0002] During the papermaking process, seeds are added to the wood pulp to dye it with various colors, thus producing paper containing seeds, which is called seed paper. After use, this kind of paper can be discarded in the soil. Under the right time, temperature and humidity, the seeds in the paper can germinate and grow small seedlings. After the seed paper is completed, it needs to be air-dried.

[0003] Existing air-drying equipment mostly blows air to the paper through ventilation equipment to achieve the effect of air drying. For example, the utility model patent with announcement number CN203876377U discloses a paper air-drying device, which clamps the paper vertically on the air-drying paper air-drying device for air drying, and installs an air blowing fan at the bottom to air-dry the paper. When air is blown to the paper through ventilation equipment to dry it, the ventilation of the seed paper surface is poor, and the moisture inside it cannot be discharged in time, resulting in low air-drying efficiency. Summary of the Invention

[0004] The purpose of the present invention is to provide a seed paper rapid air-drying device and method to solve the problem proposed in the above background technology that the seed paper is dried by blowing air through ventilation equipment, the ventilation of the seed paper surface is poor, and the moisture inside the seed paper cannot be discharged in time, resulting in low drying efficiency.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A seed paper rapid air-drying device comprises: a base, a conveying component, an air-drying component and a transfer component, wherein the conveying component, the air-drying component and the transfer component are all arranged on the base, and the air-drying component is located between the conveying component and the air-drying component;

[0007] The air-drying assembly includes a main shaft, a disc body and multiple groups of clamping parts. The main shaft is vertically rotatably mounted on the base, the disc body is fixedly sleeved on the top of the main shaft, and multiple groups of clamping parts are horizontally arranged on the outside of the disc body and are evenly distributed in a ring shape. The clamping part includes a bottom plate, a pressure plate, a telescopic cylinder and two connecting parts. One end of the pressure plate is hinged to the bottom plate, and the two connecting parts are respectively fixedly mounted on the bottom plate and the pressure plate. The two ends of the telescopic cylinder are respectively hinged to the two connecting parts, and the bottom plate and the pressure plate are provided with multiple air holes.

[0008] The disk body is rotatably mounted with a plurality of rotating shafts, which are evenly distributed in a ring shape, and have ends that are far away from each other fixedly connected to ends of the plurality of base plates that are close to each other;

[0009] A power device is provided in the base, and the main shaft rotates under the drive of the power device. A driving assembly is provided at the bottom of the main shaft, and the multiple rotating shafts deflect under the drive of the driving assembly.

[0010] Preferably, the driving assembly includes a pushing component and multiple groups of transmission components, the transmission components include gears, racks and sliding rods, a placement cavity is opened in the disk body, the end of the rotating shaft passes through the placement cavity, the gear is fixedly sleeved on the end of the rotating shaft passing through the placement cavity, the sliding rod is vertically slidably installed in the disk body, and the top end passes through the placement cavity, the rack is fixedly installed on the top end of the sliding rod and is meshed with the gear, and the pushing component is installed at the bottom of multiple sliding rods.

[0011] Preferably, the pushing component includes a turbine and two limit blocks, the two limit blocks are symmetrically and vertically fixed on the outside of the main shaft, the turbine is slidably installed on the main shaft through the two limit blocks, and the bottom ends of multiple sliding rods are fixedly connected to the upper side of the turbine.

[0012] Preferably, a floating plate is installed in the pressing plate, and the floating plate is vertically slidably installed in the pressing plate. A plurality of guide holes are vertically opened in the floating plate, and the plurality of guide holes are staggered with the air holes on the pressing plate.

[0013] Preferably, the bottom of the base plate is an arc-shaped surface, and the upper side of the pressing plate is a flat surface.

[0014] Preferably, the conveying assembly includes a body, a first conveyor belt mechanism and a second conveyor belt mechanism, the body is fixedly mounted on the base, the first conveyor belt mechanism and the second conveyor belt mechanism are both fixedly mounted in the body, and the sides close to each other form a conveying channel, the first conveyor belt mechanism is located on the lower side, and both ends pass through the body, a plurality of through holes are opened on the first conveyor belt mechanism, a frame is horizontally fixedly mounted in the body, a plurality of fans are fixedly mounted in the frame, a power roller conveying mechanism is fixedly mounted on the base, the input end of the power roller conveying mechanism and the output end of the first conveyor belt mechanism are connected by a connecting plate, and the upper surface of the connecting plate is a smooth surface.

[0015] Preferably, the transfer assembly includes a box body, a third conveyor belt mechanism, a support frame, a guide rail, a moving mechanism and a suction cup mechanism. The box body is fixedly mounted on the base, the third conveyor belt mechanism is horizontally arranged in the box body, the guide rail is horizontally fixedly mounted on the top of the box body through the support frame, the moving mechanism is slidably embedded on the guide rail, the suction cup mechanism is fixedly mounted on the bottom side of the moving mechanism, and a frame body is fixedly mounted on the base, and the frame body is located at the output end of the third conveyor belt mechanism.

[0016] Preferably, a rolling component is provided in the box body, and the rolling component includes a support plate, two transverse rails, a reciprocating mechanism and a plurality of elastic rollers. The support plate is horizontally fixedly installed in the box body and is located in the third conveyor belt mechanism. The two transverse rails are horizontally fixedly installed on the inner walls on both sides of the box body respectively. The reciprocating mechanism is slidably embedded in the two transverse rails. The plurality of elastic rollers are rotatably installed in the reciprocating mechanism and are in rolling contact with the upper side of the third conveyor belt mechanism.

[0017] A method for air-drying seed paper using the above-mentioned rapid air-drying equipment comprises:

[0018] S1: Place the seed paper to be air-dried into the conveying assembly for conveying;

[0019] S2: Extrusion: When the conveying component is conveying the seed paper, it squeezes the seed paper to perform preliminary water filtering. At the same time, multiple fans are running to guide the squeezed water downward;

[0020] S3: Air drying: the seed paper output by the conveying component is transferred to the air drying component and falls into the clamping component. The main shaft 2 rotates, driving the multiple seed papers to rotate and air dry;

[0021] S4: Transferring the air-dried seed paper to the transfer assembly;

[0022] S5: Flattening: The transfer component transfers the air-dried seed paper, flattens the seed paper, and finally sends it into the frame.

[0023] Preferably, the S3 includes:

[0024] S301: Clamping: The bottom plate and the pressing plate cooperate to clamp and fix the seed paper to be air-dried;

[0025] S302: Ventilation: The main shaft rotates, driving the clamping parts to rotate, and air flows through the pores to dry the seed paper;

[0026] S303: Pressurization. As the main shaft rotates, the clamping part tilts, causing a pressure difference between the upper and lower sides, further allowing the airflow to dry the moisture. At the same time, the float plate applies pressure to the seed paper, which can further squeeze out the moisture, making the drying faster and more efficient.

[0027] The beneficial effects of the present invention are as follows:

[0028] 1. The present invention forms paddles by deflecting the clamping components, and the bottom plate, pressure plate and seed paper are tilted. During the rotation process, wind force is generated, and the airflow directly acts on the seed paper, which can enhance the ventilation of the seed paper surface and strengthen the air-drying effect.

[0029] 2. In the process of generating wind power, a downward pressure difference is formed between the upper and lower sides of the pressure plate and the bottom plate. Under the action of the pressure difference, the seed paper can be dried while the moisture is squeezed out, further enhancing the drying effect and improving efficiency;

[0030] 3. The seed paper goes through dehydration and pre-drying, fast and efficient air drying and leveling in sequence. While air drying, the seed paper can be pressurized and dehydrated to facilitate the discharge of moisture inside the seed paper to the surface, thereby improving the air drying efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 This is a schematic diagram of the three-dimensional structure of a seed paper rapid air-drying device proposed by the present invention;

[0032] Figure 2 This is a schematic diagram of a partial cross-sectional structure of a seed paper rapid air-drying device proposed by the present invention;

[0033] Figure 3 This is a schematic diagram of a partial cross-sectional structure of a clamping component in a seed paper rapid air-drying device proposed by the present invention;

[0034] Figure 4 for Figure 1 A magnified view of the structure at point A;

[0035] Figure 5 for Figure 2 A magnified view of the structure at point B in FIG;

[0036] Figure 6 for Figure 2 A magnified view of the structure at C;

[0037] Figure 7 for Figure 3 A magnified view of the structure at point D in the figure.

[0038] In the figure: 1. base; 2. main shaft; 3. disc; 4. bottom plate; 5. pressure plate; 6. telescopic cylinder; 7. connecting piece; 8. air hole; 9. rotating shaft; 10. power device; 11. gear; 12. rack; 13. slide bar; 14. placement chamber; 15. turbine; 16. limit block; 17. floating plate; 18. guide hole; 19. body; 20. first conveyor belt mechanism; 21. second conveyor belt mechanism; 22. through hole; 23. frame; 24. fan; 25. power roller conveying mechanism; 26. connecting plate; 27. box body; 28. third conveyor belt mechanism; 29. ​​support frame; 30. guide rail; 31. moving mechanism; 32. suction cup mechanism; 33. support plate; 34. cross rail; 35. reciprocating mechanism; 36. elastic roller; 37. frame. DETAILED DESCRIPTION

[0039] The following will clearly and completely describe the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, what is described is only a part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0040] See Figure 1-7 A seed paper rapid air-drying device comprises: a base 1, a conveying component, an air-drying component and a transfer component, wherein the conveying component, the air-drying component and the transfer component are all arranged on the base 1, and the air-drying component is located between the conveying component and the air-drying component;

[0041] The air-drying assembly includes a main shaft 2, a disc 3 and multiple groups of clamping parts. The main shaft 2 is vertically rotatably mounted on the base 1. The main shaft 2 and the base 1 are connected by a bearing. The disc 3 is fixedly sleeved on the top of the main shaft 2. The multiple groups of clamping parts are horizontally arranged on the outside of the disc 3 and are evenly distributed in a ring shape. The clamping parts include a bottom plate 4, a pressure plate 5, a telescopic cylinder 6 and two connecting parts 7. One end of the pressure plate 5 is hinged to the bottom plate 4. The two connecting parts 7 are fixedly mounted on the bottom plate 4 and the pressure plate 5 respectively. The two ends of the telescopic cylinder 6 are respectively hinged to the two connecting parts 7. A plurality of air holes 8 are opened on the bottom plate 4 and the pressure plate 5.

[0042] The disc body 3 is rotatably mounted with a plurality of rotating shafts 9, which are rotatably connected to the disc body 3 via two bearings. The plurality of rotating shafts 9 are evenly distributed in a ring shape, and their ends that are far away from each other are fixedly connected to the ends of the plurality of base plates 4 that are close to each other.

[0043] A power device 10 is provided in the base 1 , and the main shaft 2 rotates under the drive of the power device 10 . A driving assembly is provided at the bottom of the main shaft 2 , and the multiple rotating shafts 9 deflect under the drive of the driving assembly.

[0044] The driving assembly includes a pushing component and multiple groups of transmission components. The transmission components include a gear 11, a rack 12 and a slide rod 13. A placement cavity 14 is opened in the disk body 3. The end of the rotating shaft 9 passes through the placement cavity 14. The gear 11 is fixedly sleeved on the end of the rotating shaft 9 passing through the placement cavity 14. The slide rod 13 is vertically slidably installed in the disk body 3, and the top end passes through the placement cavity 14. The rack 12 is fixedly installed on the top of the slide rod 13 and is meshed with the gear 11. The pushing component is installed at the bottom of multiple slide rods 13.

[0045] The thrust component includes a turbine 15 and two limit blocks 16. The two limit blocks 16 are symmetrically and vertically fixed on the outside of the main shaft 2. The turbine 15 is slidably installed on the main shaft 2 through the two limit blocks 16. The bottom ends of multiple sliding rods 13 are fixedly connected to the upper side of the turbine 15.

[0046] A floating plate 17 is installed in the pressing plate 5 , and the floating plate 17 is vertically slidably installed in the pressing plate 5 . A plurality of guide holes 18 are vertically opened in the floating plate 17 , and the plurality of guide holes 18 are staggered with the air holes 8 on the pressing plate 5 .

[0047] The bottom of the bottom plate 4 is an arc-shaped curved surface, and the upper side of the pressing plate 5 is a flat surface.

[0048] The conveying assembly includes a body 19, a first conveyor belt mechanism 20 and a second conveyor belt mechanism 21. The body 19 is fixedly mounted on the base 1. The first conveyor belt mechanism 20 and the second conveyor belt mechanism 21 are both fixedly mounted in the body 19, and the sides close to each other form a conveying channel. The first conveyor belt mechanism 20 is located on the lower side, and both ends pass through the body 19. A plurality of through holes 22 are provided on the first conveyor belt mechanism 20. A frame 23 is horizontally fixedly mounted in the body 19, and a plurality of fans 24 are fixedly mounted in the frame 23. A power roller conveying mechanism 25 is fixedly mounted on the base 1, and the input end of the power roller conveying mechanism 25 is connected to the output end of the first conveyor belt mechanism 20 by a connecting plate 26, and the upper surface of the connecting plate 26 is a smooth surface.

[0049] The transfer assembly includes a box body 27, a third conveyor belt mechanism 28, a support frame 29, a guide rail 30, a moving mechanism 31 and a suction cup mechanism 32. The box body 27 is fixedly mounted on the base 1. The third conveyor belt mechanism 28 is horizontally arranged in the box body 27. The guide rail 30 is horizontally fixedly mounted on the top of the box body 27 through the support frame 29. The moving mechanism 31 is slidably embedded on the guide rail 30. The suction cup mechanism 32 is fixedly mounted on the bottom side of the moving mechanism 31. A frame body 37 is fixedly mounted on the base 1. The frame body 37 is located at the output end of the third conveyor belt mechanism 28.

[0050] A rolling component is provided in the box body 27, and the rolling component includes a support plate 33, two transverse rails 34, a reciprocating mechanism 35 and multiple elastic rollers 36. The support plate 33 is horizontally fixedly installed in the box body 27 and is located in the third conveyor belt mechanism 28. The two transverse rails 34 are horizontally fixedly installed on the inner walls on both sides of the box body 27. The reciprocating mechanism 35 is slidably embedded in the two transverse rails 34. Multiple elastic rollers 36 are all rotatably installed in the reciprocating mechanism 35 and are in rolling contact with the upper side of the third conveyor belt mechanism 28.

[0051] When using this device to air-dry seed paper, first turn on the device, feed the seed paper to be air-dried into the input end of the conveying component, and operate the first conveyor belt mechanism 20 and the second conveyor belt mechanism 21 to transfer the seed paper. During the transfer process, the first conveyor belt mechanism 20 and the second conveyor belt mechanism 21 squeeze the seed paper to squeeze out the moisture therein, thereby achieving preliminary dehydration of the seed paper. During the extrusion and dehydration process, the fan 24 operates at the same time to drive the air flow for preliminary air drying. At the same time, the squeezed moisture leaks out from the through hole 22 and is finally discharged from the bottom of the machine body 19.

[0052] After being outputted by the first conveyor belt mechanism 20 and the second conveyor belt mechanism 21 , the seed paper is introduced into the power roller conveyor mechanism 25 from the connecting plate 26 and transferred to the air-drying assembly through the power roller conveyor mechanism 25 for air-drying.

[0053] When the air-drying component is in the initial state, the turbine 15 is located at the bottom, the bottom plate 4 is in a horizontal state, and the pressure plate 5 is in a tilted open state under the control of the telescopic cylinder 6. The seed paper is transferred through the powered roller conveying mechanism 25 and falls on the bottom plate 4. Then the telescopic cylinder 6 extends, so that the pressure plate 5 covers the seed paper. At the same time, the power device 10 rotates, so that the next group of clamping components corresponds to the powered roller conveying mechanism 25 and operates step by step until multiple sheets of seed paper enter multiple groups of clamping components respectively, and then the air-drying operation is carried out.

[0054] During air drying, the power device 10 drives the main shaft 2 to rotate, the main shaft 2 drives the disk body 3 located thereon to rotate, and the disk body 3 drives the multiple groups of clamping components located thereon to rotate to air-dry the seed paper. At the same time, the turbine 15 rotates. The turbine 15 rotates. Under the thrust of the airflow, the turbine 15 moves upward, driving the slide bar 13 to move upward, the slide bar 13 drives the rack 12 to move upward, and the rack 12 drives the gear 11 to drive the rotating shaft 9 to deflect, thereby causing the clamping components to deflect. The bottom plate 4, the pressure plate 5 and the seed paper are tilted to form blades. During the rotation process, wind force is generated, and the airflow directly acts on the seed paper. Compared with using air-drying equipment to ventilate the seed paper, the ventilation of the seed paper surface can be enhanced, thereby enhancing the air-drying effect.

[0055] In the process of generating wind force, since the upper side of the pressure plate 5 is flat and the bottom of the bottom plate 4 is curved, a downward pressure difference is formed during the rotation process. While drying, the pressure difference applies pressure to the seed paper through the air holes 8, squeezing out the moisture therein, thereby further enhancing the air-drying effect. Since the guide holes 18 are misaligned with the air holes 8, the airflow formed by the pressure difference impacts the float plate 17, and the float plate 17 can further apply pressure to the seed paper to squeeze out the moisture therein. Under the action of the pressure difference, the moisture of the seed paper can be squeezed out while it is drying, thereby enhancing the air-drying effect and improving efficiency.

[0056] After the seed paper has been processed by the air-drying component, the power device 10 stops running, the air-drying component stops running, the telescopic cylinder 6 shortens, the pressure plate 5 opens, the suction cup mechanism 32 operates, and the air-dried seed paper is adsorbed. The moving mechanism 31 drives the suction cup mechanism 32 to move to the upper side of the third conveyor belt mechanism 28, and the seed paper is transferred to the third conveyor belt mechanism 28 for transportation. During the transportation process, the reciprocating mechanism 35 moves, driving the elastic roller 36 to move back and forth, repeatedly rolling the seed paper, and cooperating with the support plate 33 to make the seed paper flat, and finally transported to the frame 37 to complete the air-drying operation.

[0057] A method for air-drying seed paper using the above-mentioned rapid air-drying equipment comprises:

[0058] S1: Place the seed paper to be air-dried into the conveying assembly for conveying;

[0059] S2: Extrusion: When the conveying component is conveying the seed paper, the seed paper is squeezed to perform preliminary water filtering. At the same time, multiple fans 24 are running to guide the squeezed water downward;

[0060] S3: Air drying: the seed paper output by the conveying component is transferred to the air drying component and falls into the clamping component. The main shaft 2 rotates, driving the multiple seed papers to rotate and air dry;

[0061] S301: Clamping: the bottom plate 4 and the pressing plate 5 cooperate to clamp and fix the seed paper to be air-dried;

[0062] S302: Ventilation: the main shaft 2 rotates, driving the clamping component to rotate, and air flows through the air holes 8 to dry the seed paper;

[0063] S303: Pressurization: As the main shaft 2 rotates, the clamping member tilts, creating a pressure difference between the upper and lower sides, further allowing the airflow to dry out the moisture. At the same time, the floating plate 17 applies pressure to the seed paper, further squeezing out the moisture, making the drying process faster and more efficient.

[0064] S4: Transferring the air-dried seed paper to the transfer assembly;

[0065] S5: Flattening: The transfer component transfers the air-dried seed paper and flattens the seed paper, and finally sends it into the frame 37.

[0066] Through the above method, the seed paper goes through the following steps in sequence: dehydration and pre-drying - rapid and efficient drying - leveling, which improves the drying efficiency.

[0067] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A seed paper rapid air drying device, comprising: A base (1), a conveying component, an air-drying component, and a transfer component, wherein the conveying component, the air-drying component, and the transfer component are all arranged on the base (1), and the air-drying component is located between the conveying component and the air-drying component; The invention is characterized in that: the air-drying component comprises a main shaft (2), a disk body (3) and a plurality of clamping parts, the main shaft (2) is vertically rotatably mounted on the base (1), the disk body (3) is fixedly sleeved on the top of the main shaft (2), the plurality of clamping parts are horizontally arranged on the outside of the disk body (3) and are evenly distributed in a ring shape, the clamping parts comprise a bottom plate (4), a pressure plate (5), a telescopic cylinder (6) and two connecting parts (7), one end of the pressure plate (5) is hinged to the bottom plate (4), the two connecting parts (7) are respectively fixedly mounted on the bottom plate (4) and the pressure plate (5), the two ends of the telescopic cylinder (6) are respectively hinged to the two connecting parts (7), and a plurality of air holes (8) are provided on the bottom plate (4) and the pressure plate (5); The disk body (3) is rotatably mounted with a plurality of rotating shafts (9), the plurality of rotating shafts (9) being evenly distributed in a ring shape, and having ends that are far from each other fixedly connected to ends of the plurality of bottom plates (4) that are close to each other; A power device (10) is provided in the base (1), the main shaft (2) rotates under the drive of the power device (10), a driving assembly is provided at the bottom of the main shaft (2), and the plurality of rotating shafts (9) deflect under the drive of the driving assembly; A floating plate (17) is installed in the pressing plate (5), and the floating plate (17) is vertically slidably installed in the pressing plate (5). A plurality of guide holes (18) are vertically opened in the floating plate (17), and the plurality of guide holes (18) are staggered with the air holes (8) on the pressing plate (5); The conveying assembly includes a body (19), a first conveyor belt mechanism (20) and a second conveyor belt mechanism (21), the body (19) is fixedly mounted on the base (1), the first conveyor belt mechanism (20) and the second conveyor belt mechanism (21) are both fixedly mounted in the body (19), and a conveying channel is formed on a side close to each other, the first conveyor belt mechanism (20) is located at the lower side, and both ends pass through the body (19), a plurality of through holes (22) are opened on the first conveyor belt mechanism (20), a frame (23) is fixedly mounted horizontally in the body (19), a plurality of fans (24) are fixedly mounted in the frame (23), a power roller conveying mechanism (25) is fixedly mounted on the base (1), the input end of the power roller conveying mechanism (25) is connected to the output end of the first conveyor belt mechanism (20) by a connecting plate (26), and the upper surface of the connecting plate (26) is a smooth surface; The transfer assembly includes a box body (27), a third conveyor belt mechanism (28), a support frame (29), a guide rail (30), a moving mechanism (31) and a suction cup mechanism (32), wherein the box body (27) is fixedly mounted on the base (1), the third conveyor belt mechanism (28) is horizontally arranged in the box body (27), the guide rail (30) is horizontally fixedly mounted on the top of the box body (27) through the support frame (29), the moving mechanism (31) is slidably embedded on the guide rail (30), the suction cup mechanism (32) is fixedly mounted on the bottom side of the moving mechanism (31), and a frame body (37) is fixedly mounted on the base (1), and the frame body (37) is located at the output end of the third conveyor belt mechanism (28).

2. The seed paper rapid air-drying device according to claim 1, characterized in that: The driving assembly includes a pushing component and multiple groups of transmission components, and the transmission components include a gear (11), a rack (12) and a slide bar (13). A placement cavity (14) is provided in the disk body (3), and the end of the rotating shaft (9) penetrates into the placement cavity (14). The gear (11) is fixedly sleeved on the end of the rotating shaft (9) penetrating into the placement cavity (14). The slide bar (13) is vertically slidably installed in the disk body (3), and the top end penetrates into the placement cavity (14). The rack (12) is fixedly installed at the top end of the slide bar (13) and is meshed with the gear (11). The pushing component is installed at the bottom of multiple slide bars (13).

3. The seed paper rapid air-drying device according to claim 2, characterized in that: The pushing component includes a turbine (15) and two limit blocks (16), the two limit blocks (16) are symmetrically and vertically fixedly installed on the outside of the main shaft (2), the turbine (15) is slidably installed on the main shaft (2) through the two limit blocks (16), and the bottom ends of the plurality of sliding rods (13) are fixedly connected to the upper side of the turbine (15).

4. The seed paper rapid air-drying device according to claim 1, characterized in that: The bottom of the base plate (4) is an arc-shaped curved surface, and the upper side of the pressing plate (5) is a flat surface.

5. The seed paper rapid air-drying device according to claim 1, characterized in that: A rolling component is provided in the box (27), and the rolling component includes a support plate (33), two transverse rails (34), a reciprocating mechanism (35) and a plurality of elastic rollers (36). The support plate (33) is fixedly installed horizontally in the box (27) and is located in the third conveyor belt mechanism (28). The two transverse rails (34) are fixedly installed horizontally on the inner walls of both sides of the box (27). The reciprocating mechanism (35) is slidably embedded in the two transverse rails (34). The plurality of elastic rollers (36) are all rotatably installed in the reciprocating mechanism (35) and are in rolling contact with the upper side of the third conveyor belt mechanism (28).

6. A method for air-drying seed paper using the rapid air-drying equipment according to any one of claims 1 to 5, characterized in that: The method comprises: S1: Place the seed paper to be air-dried into the conveying assembly for conveying; S2: Extrusion: When the conveying component is conveying the seed paper, the seed paper is squeezed to perform preliminary filtering of the water, and at the same time, multiple fans (24) are operated to guide the squeezed water downward; S3: air drying, the seed paper output by the conveying component is transferred to the air drying component and falls into the clamping component, the main shaft (2) rotates, driving the plurality of seed papers to rotate and air dry; S4: Transferring the air-dried seed paper to the transfer assembly; S5: Flattening, the transfer component transfers the seed paper after air drying, flattens the seed paper, and finally sends it into the frame (37).

7. The method for rapid air drying of seed paper according to claim 6, characterized in that , said S3 includes: S301: Clamping: the bottom plate (4) and the pressing plate (5) cooperate to clamp and fix the seed paper to be air-dried; S302: Ventilation: the main shaft (2) rotates, driving the clamping component to rotate, and air flows through the air holes (8) to dry the seed paper; S303: Pressurization. As the main shaft (2) rotates, the clamping part tilts, so that there is a pressure difference between the upper and lower sides, which further allows the airflow to dry the moisture. At the same time, the floating plate (17) applies pressure to the seed paper, which can further squeeze out the moisture, making the drying faster and more efficient.

Citation Information

Patent Citations

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    CN203876377U

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    JP2003083679A