Cyanuric acid drying device

By designing a cyanuric acid drying device with anti-blocking loading mechanism and stir-frying drying structure, the problem of easy blockage of wet cyanuric acid materials is solved, and uniform drying and convenient cutting of wet cyanuric acid materials is achieved, which improves drying efficiency and cutting speed.

CN223228702UActive Publication Date: 2025-08-15SHANDONG WO LAN BIOLOGICAL GRP CO LTD
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Patent Information

Application Number
CN202422540851.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-08-15
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

The cyanuric acid drying device is prone to clogging when loading, affecting the drying efficiency, making it difficult to achieve uniform drying and convenient extraction of wet cyanuric acid materials.

Method used

A cyanuric acid drying device including an anti-blocking loading mechanism and a stir-frying drying structure is designed. Through spiral loading, blade agitation, rake arm frying and feeding shaft, the wet cyanuric acid material is anti-blocking, uniform drying and convenient discharge.

Benefits of technology

It effectively prevents the blockage of wet cyanuric acid materials during the loading process, realizes uniform drying and convenient discharge of wet cyanuric acid materials, and improves the drying efficiency and discharge speed.

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Abstract

The utility model relates to the technical field of cyanuric acid production and processing, and discloses a cyanuric acid drying device which comprises a drying box, and a top cover is fixedly installed at the top end of the drying box. When the cyanuric acid drying device is used, after wet cyanuric acid materials are guided into the storage box, a first driving motor can be controlled to start to drive a first rotating shaft to rotate during feeding, and the first rotating shaft can drive a conveying shaft to rotate while rotating; a conveying shaft rotates, meanwhile, wet cyanuric acid materials in a storage box can be spirally conveyed downwards through a feeding pipe and fed into a drying box, a spiral feeding mode is adopted, the situation that the wet cyanuric acid materials are blocked in the feeding process can be reduced, meanwhile, a first rotating shaft can drive multiple sets of blades to rotate in the rotating process, and the conveying efficiency is improved. And wet cyanuric acid materials in the storage box are stirred in an auxiliary mode, the wet cyanuric acid materials are prevented from caking, and the problem that when the wet cyanuric acid materials are fed into the device to be dried, anti-blocking feeding is inconvenient is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of cyanuric acid production and processing, in particular to a cyanuric acid drying device. Background Art

[0002] Cyanuric acid is an organic compound, also known as cyanuric acid. It is a white crystalline powder and is widely used in chemical, pharmaceutical, agricultural and environmental protection fields. During the production and processing of solid cyanuric acid compounds, a cyanuric acid drying device is required to remove excess water and impurities in the cyanuric acid mixture to obtain solid cyanuric acid materials.

[0003] However, when the cyanuric acid drying device is used to dry the produced wet cyanuric acid material, due to the poor fluidity of the wet cyanuric acid material, it is very easy to get blocked at the feeding port when the material is fed into the drying device for drying, affecting the drying processing efficiency of the drying device. There are deficiencies, and it is not convenient to prevent the wet cyanuric acid material from being blocked when it is fed into the device for drying.

[0004] Now, a novel cyanuric acid drying device is proposed to solve the above-mentioned shortcomings. Utility Model Content

[0005] The purpose of the present utility model is to provide a cyanuric acid drying device to solve the problem in the above background art that it is inconvenient to prevent blocking when feeding wet cyanuric acid materials into the device for drying.

[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a cyanuric acid drying device, comprising a drying box, a top cover being fixedly mounted on the top of the drying box, a material storage box being fixedly mounted on the left side of the top of the top cover, and an anti-blocking feeding mechanism being provided inside the material storage box for preventing blockage when feeding wet cyanuric acid material;

[0007] The anti-blocking feeding mechanism includes a mounting frame, a driving motor, a reducer, a rotating shaft, blades, a conveying shaft, a feeding tube and a bracket. The mounting frame is fixed horizontally on the top of the material storage box, a rotating shaft is vertically arranged inside the material storage box, and blades are fixed on both sides of the rotating shaft, a feeding tube is fixed at the bottom end of the material storage box, and the bottom end of the feeding tube passes through the interior of the top cover, a conveying shaft is vertically arranged inside the feeding tube, a bracket is fixed to the left side of the bottom end of the top cover, a reducer is fixed to the top of the mounting frame, and a driving motor is fixed to the left side of the reducer.

[0008] Furthermore, the output shaft of the driving motor 1 is fixedly connected to the input shaft of the reducer 1, the top end of the rotating shaft 1 passes through the interior of the mounting frame and is fixedly connected to the output shaft of the reducer 1, the top end of the conveying shaft passes through the bottom end of the material storage box and is fixedly connected to the bottom end of the rotating shaft 1, and the bottom end of the conveying shaft is movably connected to the top end of the bracket.

[0009] Furthermore, three groups of blades are fixed on both sides of the rotating shaft, and the material storage box is connected to the interior of the drying box through a feeding pipe.

[0010] Preferably, an upper drying plate is fixed to the top of the drying box, a lower drying plate is fixed to the bottom of the drying box, a second rotating shaft is vertically provided inside the drying box, and a material guide cover is fixed at the middle position outside the second rotating shaft, support rods are welded and fixed to the top and bottom ends of both sides of the second rotating shaft, and a rake arm is welded and fixed to one side of the support rod, and a rake blade is fixed to the bottom end of the rake arm, a second reducer is mounted and fixed to the top of the top cover, and a second drive motor is mounted and fixed to the front end of the second reducer, and openings are respectively provided inside the bottom ends of the upper drying plate and the lower drying plate.

[0011] Furthermore, the output shaft of the second reducer is fixedly connected to the input shaft of the second drive motor, the top end of the second rotating shaft passes through the interior of the top cover and is fixedly connected to the output shaft of the second reducer, the second rotating shaft passes through the interior of the opening, the support rod and the rake arm are symmetrically arranged about the vertical center line of the second rotating shaft, and the rake leaves are arranged in multiple groups at equal intervals at the bottom end of the rake arm.

[0012] Preferably, a discharge port is fixed at the bottom end of the drying box, and a discharge barrel is fixed at the bottom end of the discharge port, a driving motor 3 is installed and fixed on the left side of the discharge barrel, a feed shaft is movably connected to the inside of the discharge barrel laterally, and a discharge port is fixed on the right side of the bottom end of the discharge barrel.

[0013] Furthermore, the output shaft of the driving motor three is fixedly connected to the left side of the feed shaft through a pulley structure, the discharge port is connected to the interior of the discharge barrel, and the discharge barrel is connected to the interior of the discharge port.

[0014] Preferably, support legs are vertically fixed to both ends of both sides of the bottom of the drying box, a heating box is installed and fixed on the right side of the top of the drying box, and an air outlet pipe is fixed to the front end of the heating box, the bottom end of the air outlet pipe passes through the interior of the top cover and is connected to the interior of the drying box, a blower is installed and fixed at the rear end of the right side of the top of the top cover, and the output end of the blower is fixedly connected to the rear end of the heating box, and an electric heating component is installed and fixed inside the heating box.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: the cyanuric acid drying device not only facilitates the anti-blocking loading of wet cyanuric acid materials when they are loaded into the device for drying, facilitates the uniform heating and drying of the wet cyanuric acid materials inside the device, but also facilitates the convenient discharge and unloading of the dried cyanuric acid materials;

[0016] (1) A drying box, a top cover, a storage box, a mounting frame, a driving motor, a speed reducer, a rotating shaft, blades, a conveying shaft, a feeding pipe and a bracket are provided. When the wet cyanuric acid material is dried and processed, the wet cyanuric acid material is introduced into the interior of the storage box. When loading, the driving motor can be controlled to start and the speed reducer can be used to drive the rotating shaft to rotate. The rotating shaft can also drive the conveying shaft to rotate. The rotating conveying shaft can also convey the wet cyanuric acid material in the storage box downward through the feeding pipe and feed it into the drying box. The spiral feeding method can reduce the blockage of the wet cyanuric acid material when feeding. At the same time, the rotating shaft can also drive multiple groups of blades to rotate during the rotation process, and assist in stirring the wet cyanuric acid material in the storage box to prevent the wet cyanuric acid material from agglomerating and improve the feeding efficiency.

[0017] (2) The drying box, the lower drying plate, the material guide cover, the upper drying plate, the second rotating shaft, the top cover, the second reducer, the second driving motor, the support rod, the rake arm, the rake leaves and the opening are provided. When the drying device is used, when the wet cyanuric acid material is loaded into the left side of the upper drying plate through the loading pipe, the second rotating shaft driven by the second driving motor can drive the rake arm and the rake leaves to stir-fry the wet cyanuric acid material inside the upper drying plate. The granular cyanuric acid material after heat drying can be guided downward from the opening inside the bottom end of the upper drying plate to the outer surface of the material guide cover. The cyanuric acid can be dispersed downward to the interior of the lower drying plate through the material guide cover for secondary stir-frying and drying treatment. The wet cyanuric acid material can be evenly heated and dried inside the device, thereby improving the drying effect. After the secondary drying treatment, the material is guided downward from the opening inside the bottom end of the lower drying plate to wait for unloading.

[0018] (3) By providing a drying box, a discharge port, a discharge barrel, a discharge port, a drive motor and a feed shaft, after the cyanuric acid material is dried, when the dried cyanuric acid material collected at the bottom of the drying box is discharged, the drive motor can be controlled to start driving the feed shaft to rotate. When the feed shaft rotates, the cyanuric acid material introduced through the discharge port can be transported to the right, and can be quickly discharged from the discharge port, thereby reducing the discharge time and improving the discharge efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present utility model;

[0020] Figure 2This is a schematic diagram of the enlarged front view of the conveying shaft of the present invention;

[0021] Figure 3 This is a schematic diagram of a partial cross-sectional structure of the material guide cover of the present invention;

[0022] Figure 4 This is a schematic diagram of an enlarged partial cross-section of the front view of the discharge barrel of the utility model;

[0023] Figure 5 It is a schematic diagram of an enlarged partial cross-section of the side view of the heating box of the present invention.

[0024] In the figure: 1. Support legs; 2. Drying box; 3. Lower drying plate; 4. Material guide cover; 5. Upper drying plate; 6. Second rotating shaft; 7. Top cover; 8. Material storage box; 9. Mounting frame; 10. Drive motor 1; 11. Reducer 1; 12. Rotating shaft 1; 13. Blades; 14. Second reducer; 15. Drive motor 2; 16. Heating box; 17. Air outlet pipe; 18. Discharge port; 19. Unloading barrel; 20. Unloading port; 21. Conveying shaft; 22. Loading pipe; 23. Bracket; 24. Support rod; 25. Rake arm; 26. Rake blades; 27. Opening; 28. Drive motor 3; 29. Conveying shaft; 30. Blower; 31. Electric heating component. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. 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.

[0026] See also Figure 1-5 The utility model provides an embodiment: a cyanuric acid drying device, comprising a drying box 2, a top cover 7 is fixedly mounted on the top of the drying box 2, a material storage box 8 is fixedly mounted on the left side of the top of the top cover 7, and an anti-blocking feeding mechanism is provided inside the material storage box 8 for preventing blocking when feeding the wet cyanuric acid material;

[0027] The anti-blocking feeding mechanism includes a mounting frame 9, a driving motor 10, a reducer 11, a rotating shaft 12, blades 13, a conveying shaft 21, a feeding pipe 22 and a bracket 23. The mounting frame 9 is fixed horizontally to the top of the storage box 8, a rotating shaft 12 is vertically arranged inside the storage box 8, and blades 13 are respectively fixed on both sides of the rotating shaft 12. A feeding pipe 22 is fixed to the bottom end of the storage box 8, and the bottom end of the feeding pipe 22 passes through the interior of the top cover 7. A conveying shaft 21 is vertically arranged inside the feeding pipe 22, and a bracket 23 is fixed to the left side of the bottom end of the top cover 7. A reducer 11 is fixed to the top of the mounting frame 9, and a driving motor 10 is fixed to the left side of the reducer 11;

[0028] The output shaft of the driving motor 10 is fixedly connected to the input shaft of the reducer 11. The top of the rotating shaft 12 passes through the interior of the mounting frame 9 and is fixedly connected to the output shaft of the reducer 11. The top of the conveying shaft 21 passes through the bottom end of the interior of the material storage box 8 and is fixedly connected to the bottom end of the rotating shaft 12. The bottom end of the conveying shaft 21 is movably connected to the top end of the bracket 23. Three groups of blades 13 are fixed on both sides of the rotating shaft 12. The material storage box 8 is connected to the interior of the drying box 2 through the feeding pipe 22.

[0029] Specifically, if Figure 1 and Figure 2 As shown, after the wet cyanuric acid material is introduced into the interior of the storage box 8, the drive motor 10 can be controlled to start and the reducer 11 can be used to drive the rotating shaft 12 to rotate. The rotation of the rotating shaft 12 can also drive the conveying shaft 21 to rotate. The rotation of the conveying shaft 21 can also convey the wet cyanuric acid material inside the storage box 8 downward through the spiral in the feeding pipe 22 and feed it into the interior of the drying box 2. The spiral feeding method can reduce the blockage of the wet cyanuric acid material during feeding. At the same time, the rotating shaft 12 can also drive multiple sets of blades 13 to rotate during the rotation process, and assist in stirring the wet cyanuric acid material inside the storage box 8 to prevent the wet cyanuric acid material from agglomerating.

[0030] An upper drying plate 5 is fixed to the top of the drying box 2, and a lower drying plate 3 is fixed to the bottom of the drying box 2. A second rotating shaft 6 is vertically provided inside the drying box 2, and a material guide cover 4 is fixed at the middle position outside the second rotating shaft 6. Support rods 24 are welded and fixed to the top and bottom ends of both sides of the second rotating shaft 6, and a rake arm 25 is welded and fixed to one side of the support rod 24. A rake blade 26 is fixed to the bottom end of the rake arm 25. A second reducer 14 is installed and fixed to the top of the top cover 7, and a second drive motor 15 is installed and fixed to the front end of the second reducer 14. Openings 27 are respectively opened inside the bottom ends of the upper drying plate 5 and the lower drying plate 3.

[0031] The output shaft of the second reducer 14 is fixedly connected to the input shaft of the second drive motor 15. The top end of the second rotating shaft 6 passes through the interior of the top cover 7 and is fixedly connected to the output shaft of the second reducer 14. The second rotating shaft 6 passes through the interior of the opening 27. The support rod 24 and the rake arm 25 are symmetrically arranged about the vertical center line of the second rotating shaft 6. Multiple groups of rake blades 26 are evenly spaced at the bottom end of the rake arm 25.

[0032] Specifically, if Figure 1 and Figure 3 As shown, the blower 30 is started to introduce external air into the heating box 16. After being heated by the electric heating component 31, the air is then introduced into the drying box 2 through the air outlet pipe 17 to heat and dry the wet cyanuric acid material. When the drying device is in use, when the wet cyanuric acid material passes through the feeding pipe 22 and is loaded onto the left side of the upper drying plate 5, the rotating shaft 2 6 driven by the driving motor 2 15 can drive the rake arm 25 and the rake blade 26 to stir the wet cyanuric acid material inside the upper drying plate 5. The granular cyanuric acid material after heat and drying can be downwardly guided out of the opening 27 at the bottom end of the upper drying plate 5 to the outer surface of the material guide cover 4. After passing through the material guide cover 4, the cyanuric acid can be dispersed downward into the lower drying plate 3 for secondary stir-frying and drying treatment, so that the wet cyanuric acid material can be evenly heated and dried inside the device, thereby improving the drying effect. After the secondary drying treatment, the material is downwardly guided out of the opening 27 at the bottom end of the lower drying plate 3.

[0033] A discharge port 18 is fixed to the bottom end of the drying box 2, and a discharge barrel 19 is fixed to the bottom end of the discharge port 18. A drive motor 3 28 is fixed to the left side of the discharge barrel 19. A feed shaft 29 is movably connected to the inside of the discharge barrel 19 in a transverse direction. A discharge port 20 is fixed to the right side of the bottom end of the discharge barrel 19. The output shaft of the drive motor 3 28 is fixedly connected to the left side of the feed shaft 29 through a pulley structure. The discharge port 18 is communicated with the inside of the discharge barrel 19, and the discharge barrel 19 is communicated with the inside of the discharge port 20.

[0034] Specifically, if Figure 1 and Figure 4 As shown, when the dry cyanuric acid material collected at the bottom end of the drying box 2 is discharged, the drive motor 3 28 can be controlled to start driving the feed shaft 29 to rotate. The feed shaft 29 rotates and can simultaneously convey the cyanuric acid material introduced through the discharge port 18 to the right, and can be quickly discharged from the discharge port 20.

[0035] Support legs 1 are vertically fixed to both ends of the bottom of the drying box 2. A heating box 16 is installed and fixed on the right side of the top of the drying box 2, and an air outlet pipe 17 is fixed to the front end of the heating box 16. The bottom end of the air outlet pipe 17 passes through the interior of the top cover 7 and is connected to the interior of the drying box 2. A blower 30 is installed and fixed at the rear end of the right side of the top of the top cover 7, and the output end of the blower 30 is fixedly connected to the rear end of the heating box 16. An electric heating component 31 is installed and fixed inside the heating box 16.

[0036] Working principle: When the cyanuric acid drying device of the present invention is in use, the blower 30 can be controlled to start to introduce external air into the heating box 16, and after being heated by the electric heating component 31, the air is introduced into the interior of the drying box 2 through the air outlet pipe 17 to perform hot air heating and drying on the wet cyanuric acid material. After the wet cyanuric acid material is introduced into the interior of the storage box 8, the drive motor 10 can be controlled to start and the reducer 11 can be used to drive the rotating shaft 12 to rotate during loading. The rotation of the rotating shaft 12 can also drive the conveying shaft 21 to rotate. The rotation of the conveying shaft 21 can also convey the wet cyanuric acid material inside the storage box 8 downward through the spiral in the feeding pipe 22 and load it into the interior of the drying box 2. At the same time, the rotating shaft 12 can also drive the multiple sets of blades 13 to rotate during the rotation process, so as to assist in stirring the wet cyanuric acid material inside the storage box 8 to prevent the wet cyanuric acid material from agglomerating. The wet cyanuric acid material is loaded into the left upper drying plate 5 through the feeding pipe 22. When the upper drying tray 5 is on the lower side, the rotating shaft 6 driven by the driving motor 2 15 can drive the rake arm 25 and the rake blade 26 to stir-fry the wet cyanuric acid material inside the upper drying tray 5. The heat-dried granular cyanuric acid material can be downwardly discharged from the opening 27 inside the bottom end of the upper drying tray 5 to the outer surface of the material guide cover 4. After passing through the material guide cover 4, the cyanuric acid can be dispersed downward to the interior of the lower drying tray 3 for secondary stir-frying and drying treatment, so that the wet cyanuric acid material can be uniformly heat-dried inside the device. After the secondary drying treatment, it is downwardly discharged from the opening 27 inside the bottom end of the lower drying tray 3 and waits for unloading. After the cyanuric acid material is dried, when the dry cyanuric acid material collected at the bottom end of the drying box 2 is discharged and unloaded, the driving motor 3 28 can be controlled to start driving the feed shaft 29 to rotate. The feed shaft 29 rotates and the cyanuric acid material introduced through the discharge port 18 is transported to the right, and can be quickly discharged and unloaded from the discharge port 20.

[0037] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. A cyanuric acid drying device, comprising a drying oven (2), characterized in that: A top cover (7) is fixedly mounted on the top of the drying box (2), a material storage box (8) is fixedly mounted on the left side of the top of the top cover (7), and an anti-blocking feeding mechanism for preventing blocking when feeding the wet cyanuric acid material is provided inside the material storage box (8); The anti-blocking feeding mechanism comprises a mounting frame (9), a driving motor (10), a reducer (11), a rotating shaft (12), blades (13), a conveying shaft (21), a feeding pipe (22) and a bracket (23); the top end of the storage box (8) is transversely fixed with the mounting frame (9); the interior of the storage box (8) is vertically provided with a rotating shaft (12), and blades (13) are respectively fixed on both sides of the rotating shaft (12); the bottom end of the storage box (8) is fixed with a feeding pipe (22), and the bottom end of the feeding pipe (22) passes through the interior of the top cover (7); the interior of the feeding pipe (22) is vertically provided with a conveying shaft (21); the left side of the bottom end of the interior of the top cover (7) is fixed with a bracket (23); the top end of the mounting frame (9) is fixed with a reducer (11), and the left side of the reducer (11) is fixed with a driving motor (10).

2. A cyanuric acid drying device according to claim 1, characterized in that: The output shaft of the driving motor (10) is fixedly connected to the input shaft of the reducer (11); the top end of the rotating shaft (12) passes through the interior of the mounting frame (9) and is fixedly connected to the output shaft of the reducer (11); the top end of the conveying shaft (21) passes through the bottom end of the material storage box (8) and is fixedly connected to the bottom end of the rotating shaft (12); and the bottom end of the conveying shaft (21) is movably connected to the top end of the bracket (23).

3. A cyanuric acid drying device according to claim 1, characterized in that: The blades (13) are fixed in three groups on both sides of the rotating shaft (12), and the material storage box (8) is connected to the interior of the drying box (2) through the feeding pipe (22).

4. A cyanuric acid drying device according to claim 1, characterized in that: An upper drying plate (5) is fixed at the top of the drying box (2), a lower drying plate (3) is fixed at the bottom of the drying box (2), a second rotating shaft (6) is vertically arranged inside the drying box (2), and a material guide cover (4) is fixed at the middle position outside the second rotating shaft (6), support rods (24) are welded and fixed at the top and bottom ends of both sides of the second rotating shaft (6), and a rake arm (25) is welded and fixed on one side of the support rod (24), and a rake blade (26) is fixed at the bottom end of the rake arm (25), a reducer (14) is fixed at the top of the top cover (7), and a drive motor (15) is fixed at the front end of the reducer (14), and an opening (27) is respectively opened inside the bottom ends of the upper drying plate (5) and the lower drying plate (3).

5. A cyanuric acid drying device according to claim 4, characterized in that: The output shaft of the second reducer (14) is fixedly connected to the input shaft of the second drive motor (15), the top end of the second rotating shaft (6) passes through the interior of the top cover (7) and is fixedly connected to the output shaft of the second reducer (14), the second rotating shaft (6) passes through the interior of the opening (27), the support rod (24) and the rake arm (25) are respectively symmetrically arranged about the vertical center line of the second rotating shaft (6), and the rake blades (26) are arranged in multiple groups at equal intervals at the bottom end of the rake arm (25).

6. The cyanuric acid drying device according to claim 1, characterized in that: A discharge port (18) is fixed at the bottom end of the drying box (2), and a discharge barrel (19) is fixed at the bottom end of the discharge port (18). A driving motor 3 (28) is fixed on the left side of the discharge barrel (19). A feed shaft (29) is movably connected to the inside of the discharge barrel (19). A discharge port (20) is fixed on the right side of the bottom end of the discharge barrel (19).

7. A cyanuric acid drying device according to claim 6, characterized in that: The output shaft of the driving motor 3 (28) is fixedly connected to the left side of the feeding shaft (29) through a pulley structure, the discharge port (18) is connected to the interior of the discharge barrel (19), and the discharge barrel (19) is connected to the interior of the discharge port (20).

8. The cyanuric acid drying device according to claim 1, characterized in that: Support legs (1) are vertically fixed to both ends of the bottom of the drying box (2), a heating box (16) is fixedly installed on the right side of the top of the drying box (2), and an air outlet pipe (17) is fixed to the front end of the heating box (16), the bottom end of the air outlet pipe (17) passes through the interior of the top cover (7) and is connected to the interior of the drying box (2), a blower (30) is fixedly installed at the rear end of the right side of the top of the top cover (7), and the output end of the blower (30) is fixedly connected to the rear end of the heating box (16), and an electric heating component (31) is fixedly installed inside the heating box (16).