Chrysanthemum processing spreading and cooling device
By using the intermittent feeding and vibrating screen components of the chrysanthemum processing and cooling device, the problems of excessively high chrysanthemum temperature and impurity separation are solved, achieving uniform cooling and efficient screening of chrysanthemums, and improving the processing safety and quality of chrysanthemums.
Patent Information
- Application Number
- CN202423089437.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-13
AI Technical Summary
In existing chrysanthemum tea processing equipment, the chrysanthemums are heated to excessively high temperatures, posing a risk of burns. The cooling effect is poor, and impurities cannot be separated, affecting the quality of the chrysanthemums.
A chrysanthemum processing and cooling device was designed, which included a rotating intermittent feeding component, a storage bin driving component, a cooling and vibrating screening component, and an auxiliary cooling component. Through intermittent feeding, vibrating screening, and cold air-assisted cooling, the chrysanthemums could be slowly fed, screened, and quickly cooled.
This method achieves uniform cooling of chrysanthemums, avoids heat accumulation, effectively separates impurities, and improves the cooling efficiency and quality of chrysanthemums.
Smart Images

Figure CN223484706U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of chrysanthemum processing and cooling technology, and in particular to a chrysanthemum processing and cooling device. Background Technology
[0002] The prior art patent CN220777283U discloses a cooling device for chrysanthemum tea processing, including a conveying assembly comprising a first conveyor and a first support column, the first support column being fixedly connected to the first conveyor. It also includes a preliminary processing assembly, a cooling assembly, and a support assembly. The preliminary processing assembly includes a support plate, a second support column, a fan, a front baffle, and a mesh cover. The support plate is located above the first conveyor, the second support column is fixedly connected to the support plate, the fan is fixedly connected to the support plate, the front baffle is detachably connected to the first conveyor, and the mesh cover is detachably connected to the front baffle. This invention solves the problem in the prior art where, when using a cooling device for chrysanthemum tea processing, the chrysanthemum tea temperature is too high, causing workers to slow down the processing speed for fear of burns, resulting in low worker efficiency.
[0003] This patent describes a process where chrysanthemum raw materials are transported in one go via a conveyor and cooled on a cooling plate. However, the accumulation of chrysanthemum raw materials on the cooling plate causes heat accumulation, resulting in poor cooling effect. Furthermore, the chrysanthemums cannot be screened, and impurities and broken flowers mixed in with the chrysanthemums will affect their quality. Therefore, a chrysanthemum processing and cooling device is needed to meet the usage requirements. Utility Model Content
[0004] The purpose of this invention is to provide a chrysanthemum processing and cooling device to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a chrysanthemum processing and cooling device, including a support frame, which serves to install and connect components;
[0006] A rotating intermittent feeding assembly is mounted on the bracket for intermittent feeding of chrysanthemums.
[0007] A storage bin drive assembly is mounted on the bracket and the rotating intermittent feeding assembly, and is used to drive the rotating intermittent feeding assembly to move and realize the intermittent feeding of chrysanthemums;
[0008] A cooling and sieving assembly is mounted on the support and is used for sieving and cooling chrysanthemums.
[0009] A collection device, mounted on the support, is used to collect impurities and broken flowers after the chrysanthemums have been shaken and sieved.
[0010] An auxiliary cooling component is provided on the support and the cooling vibrating screen component to accelerate the cooling of the chrysanthemums;
[0011] A support column, located at the bottom of the collecting component, is used to support the device.
[0012] Furthermore, the rotating intermittent feeding assembly includes a storage bin rotatably mounted on the support, a feeding hopper is installed on the top of the storage bin, a rotating feeding hole is opened at the bottom of the storage bin, and a fixed feeding hole is opened on the support. The fixed feeding hole and the rotating feeding hole are offset and separated.
[0013] Furthermore, the rotating intermittent feeding assembly also includes a rotating hole formed on the bracket, the inner wall of the rotating hole is provided with a retaining groove, a rotating shaft is installed at the bottom of the storage bin, a retaining ring is installed on the rotating shaft, and the retaining ring is rotatably installed in the retaining groove.
[0014] Furthermore, the storage bin drive assembly includes a gear ring mounted on the storage bin, a drive motor mounted on the bracket, a drive shaft mounted on the output end of the drive motor, a gear mounted on the drive shaft, and the gear meshing with the gear ring.
[0015] Furthermore, the cooling vibrating screen assembly includes a vibrating screen frame installed on the support, a screen mesh installed inside the vibrating screen frame, a vibration motor installed on the vibrating screen frame, and a guide plate installed on the vibrating screen frame.
[0016] Furthermore, the auxiliary cooling component includes an electric slide rail mounted on the bracket, an electric sliding sleeve slidably connected to the electric slide rail, a cooling fan mounted on the electric sliding sleeve, and ventilation holes provided on the vibrating screen frame.
[0017] The beneficial effects of this utility model are:
[0018] In this invention, by setting up a rotating intermittent feeding component and a storage bin drive component, the rotation of the drive motor drives the gear ring to rotate, and the rotation of the gear ring drives the storage bin to rotate. When the rotating feeding hole rotates to coincide with the fixed feeding hole, the chrysanthemum will be fed through the rotating feeding hole and the fixed feeding hole. When the rotating feeding hole and the fixed feeding hole separate, the chrysanthemum will not be fed. This can realize the intermittent feeding of chrysanthemums in small quantities multiple times. The intermittent and slow feeding of chrysanthemums will not cause a large number of chrysanthemums to concentrate, and will not cause the heat of the chrysanthemums to accumulate, which will have a better effect on the cooling of the chrysanthemums.
[0019] In this invention, through the setting of the cooling and sieving assembly and the auxiliary cooling assembly, the chrysanthemums after feeding will fall into the sieve. The vibration motor will drive the sieve to vibrate, and the sieve vibration will cool the chrysanthemums, separating impurities and broken flowers. The broken leaves and impurities that have passed through the sieve will fall into the collection device for collection. During the chrysanthemum cooling process, the cold air machine will blow cold air through the ventilation holes to the chrysanthemums on the sieve, which can accelerate the dissipation of heat from the chrysanthemums, thereby accelerating the cooling of the chrysanthemums. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of a chrysanthemum processing and cooling device proposed in this utility model;
[0021] Figure 2 This is a schematic diagram of the storage bin, gears, and other structures of a chrysanthemum processing and cooling device proposed in this utility model;
[0022] Figure 3 This is a schematic diagram of the rotating shaft, retaining ring, and other structures of a chrysanthemum processing and cooling device proposed in this utility model;
[0023] Figure 4 This is a three-dimensional structural diagram of a chrysanthemum processing and cooling device proposed in this utility model from another angle;
[0024] Figure 5 This is a schematic diagram of the structure of the chrysanthemum processing and cooling device proposed in this utility model, including the air blower, vibrating screen, etc.
[0025] Figure 6 This is a schematic diagram of the structure of the chrysanthemum processing and cooling device proposed in this utility model, including the screen, guide plate, etc.
[0026] In the diagram: 1. Support frame; 2. Rotating intermittent feeding assembly; 21. Storage bin; 22. Feed hopper; 23. Rotating feeding hole; 24. Fixed feeding hole; 25. Rotating hole; 26. Retaining groove; 27. Rotating shaft; 28. Retaining ring; 3. Storage bin drive assembly; 31. Gear ring; 32. Drive motor; 33. Drive shaft; 34. Gear; 4. Cooling vibrating screen assembly; 41. Vibrating screen frame; 42. Screen; 43. Vibrating motor; 44. Guide plate; 5. Collecting component; 6. Auxiliary cooling assembly; 61. Electric slide rail; 62. Electric sliding sleeve; 63. Cooling fan; 64. Ventilation hole; 7. Support column. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0028] Example:
[0029] like Figure 1-6As shown, this embodiment provides a chrysanthemum processing and cooling device, including a support 1, which serves to install and connect components; a rotating intermittent feeding assembly 2, mounted on the support 1, for intermittent feeding of chrysanthemums; a storage bin drive assembly 3, mounted on the support 1 and the rotating intermittent feeding assembly 2, for driving the rotating intermittent feeding assembly 2 to achieve intermittent feeding of chrysanthemums; a cooling vibrating screen assembly 4, mounted on the support 1, for vibrating and cooling of chrysanthemums; a collection component 5, mounted on the support 1, for collecting impurities and broken flowers after vibrating and screening of chrysanthemums; an auxiliary cooling assembly 6, mounted on the support 1 and the cooling vibrating screen assembly 4, for accelerating the cooling of chrysanthemums; and a support column 7, mounted at the bottom of the collection component 5, for supporting the device.
[0030] The chrysanthemums to be cooled are placed in the rotating intermittent feeding component 2. The movement of the rotating intermittent feeding component 2 will cause the chrysanthemums inside to be fed intermittently. The chrysanthemums are fed slowly and intermittently, which will not cause a large number of chrysanthemums to concentrate and will not cause the heat of the chrysanthemums to accumulate. This will result in a better cooling effect on the chrysanthemums. After feeding, the chrysanthemums will fall into the cooling vibrating screen component 4 for cooling and vibrating. This will remove broken leaves and impurities from the chrysanthemums. The broken leaves and impurities that have passed through the vibrating screen will fall into the collection component 5 for collection. During the chrysanthemum vibrating and sieving process, the auxiliary cooling component 6 can accelerate the cooling of the chrysanthemums, and the support column 7 can provide support for the device.
[0031] In one embodiment, the rotating intermittent feeding assembly 2 includes a storage bin 21 rotatably mounted on a support 1, a feeding hopper 22 is installed on the top of the storage bin 21, a rotating feeding hole 23 is opened at the bottom of the storage bin 21, and a fixed feeding hole 24 is opened on the support 1. The fixed feeding hole 24 and the rotating feeding hole 23 are staggered and separated.
[0032] When intermittent feeding of chrysanthemums is required, the chrysanthemums to be cooled are poured into the storage bin 21 through the feeding hopper 22. The rotation of the storage bin 21 will drive the rotating feeding hole 23 to rotate. In the initial state, the rotating feeding hole 23 and the fixed feeding hole 24 are misaligned and separated. When the rotating feeding hole 23 rotates to the point where it begins to overlap with the fixed feeding hole 24, the chrysanthemums will be fed through the rotating feeding hole 23 and the fixed feeding hole 24. When the rotating feeding hole 23 and the fixed feeding hole 24 separate, the chrysanthemums will not be fed. This allows for intermittent feeding of chrysanthemums in small quantities multiple times.
[0033] In one embodiment, the rotating intermittent feeding assembly 2 further includes a rotating hole 25 opened on the bracket 1, a retaining groove 26 opened on the inner wall of the rotating hole 25, a rotating shaft 27 installed at the bottom of the storage bin 21, a retaining ring 28 installed on the rotating shaft 27, and the retaining ring 28 is rotatably installed in the retaining groove 26.
[0034] When the storage bin 21 rotates, the rotating shaft 27 will rotate within the rotating hole 25, and the retaining ring 28 will also rotate within the retaining groove 26, which can prevent the storage bin 21 from falling off the support 1.
[0035] In one embodiment, the storage bin drive assembly 3 includes a gear ring 31 mounted on the storage bin 21, a drive motor 32 mounted on the bracket 1, a drive shaft 33 mounted on the output end of the drive motor 32, a gear 34 mounted on the drive shaft 33, and the gear 34 meshing with the gear ring 31.
[0036] When it is necessary to drive the storage bin 21 to rotate, the drive motor 32 can be started. The rotation of the drive motor 32 will drive the drive shaft 33 to rotate, the rotation of the drive shaft 33 will drive the gear 34 to rotate, the rotation of the gear 34 will drive the gear ring 31 to rotate, and the rotation of the gear ring 31 will drive the storage bin 21 to rotate.
[0037] In one embodiment, the cooling vibrating screen assembly 4 specifically includes a vibrating screen frame 41 mounted on a support 1, a screen 42 installed inside the vibrating screen frame 41, a vibration motor 43 mounted on the vibrating screen frame 41, and a guide plate 44 mounted on the vibrating screen frame 41.
[0038] When the chrysanthemums need to be cooled and screened, the chrysanthemums will fall into the screen 42 after being fed. The vibration motor 43 will drive the screen frame 41 to vibrate, and the screen frame 41 will drive the screen 42 to vibrate. The screen 42 will screen and cool the chrysanthemums, separating impurities and broken flowers from the chrysanthemums. The guide plate 44 can guide the impurities and broken flowers from the screen.
[0039] In one embodiment, the auxiliary cooling component 6 specifically includes an electric slide rail 61 mounted on the support 1, an electric slide sleeve 62 slidably sleeved on the electric slide rail 61, a cold air fan 63 mounted on the electric slide sleeve 62, and a ventilation hole 64 opened on the vibrating screen frame 41.
[0040] When it is necessary to speed up the cooling of chrysanthemums, the air cooler 63 can be turned on. The air cooler 63 will blow cold air through the ventilation holes 64 onto the vibrating chrysanthemums, which can accelerate the dissipation of heat from the chrysanthemums and thus speed up the cooling of the chrysanthemums.
[0041] Working principle: During use, the chrysanthemums to be cooled are poured into the storage bin 21 through the feeding hopper 22. The drive motor 32 is started, and its rotation drives the drive shaft 33, which in turn drives the gear 34, which in turn drives the gear ring 31, which in turn drives the storage bin 21. The rotation of the storage bin 21 then drives the rotating feeding hole 23. Initially, the rotating feeding hole 23 and the fixed feeding hole 24 are misaligned. When the rotating feeding hole 23 rotates to the point where it begins to overlap with the fixed feeding hole 24, the chrysanthemums are fed through both holes. When the rotating feeding hole 23 and the fixed feeding hole 24 separate, the chrysanthemums are discharged. The chrysanthemums are not fed directly into the container, allowing for intermittent feeding in small quantities. This slow, intermittent feeding prevents a large concentration of chrysanthemums and avoids heat buildup, resulting in better cooling. After feeding, the chrysanthemums fall into the screen 42. The vibration motor 43 drives the vibrating screen frame 41, which in turn drives the screen 42. This vibration of the screen 42 cools the chrysanthemums, separating impurities and broken petals. The broken leaves and impurities that have passed through the screen fall into the collection container 5. During the cooling process, the cool air blower 63 blows cool air through the ventilation holes 64 onto the chrysanthemums, accelerating heat dissipation and thus speeding up the cooling process.
[0042] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A chrysanthemum processing and cooling device, comprising, characterized in that: The bracket (1) serves to install and connect components; A rotating intermittent feeding assembly (2) is mounted on the bracket (1) for intermittent feeding of chrysanthemums. The storage bin drive assembly (3) is mounted on the bracket (1) and the rotating intermittent feeding assembly (2) to drive the rotating intermittent feeding assembly (2) to achieve intermittent feeding of chrysanthemums; The cooling and sieving assembly (4) is set on the bracket (1) and is used for sieving and cooling chrysanthemums. The collection component (5) is set on the support (1) for collecting impurities and broken flowers after the chrysanthemum is shaken and screened; An auxiliary cooling component (6) is provided on the support (1) and the cooling vibrating screen component (4) to accelerate the cooling of chrysanthemums; A support column (7) is provided at the bottom of the collecting component (5) for supporting the device.
2. The chrysanthemum processing and cooling device according to claim 1, characterized in that: The rotating intermittent feeding assembly (2) includes a storage bin (21) rotatably mounted on the support (1), a feeding hopper (22) is installed on the top of the storage bin (21), a rotating feeding hole (23) is opened at the bottom of the storage bin (21), and a fixed feeding hole (24) is opened on the support (1). The fixed feeding hole (24) and the rotating feeding hole (23) are misaligned and separated.
3. The chrysanthemum processing and cooling device according to claim 2, characterized in that: The rotating intermittent feeding assembly (2) also includes a rotating hole (25) opened on the bracket (1), the inner wall of the rotating hole (25) is provided with a retaining groove (26), the bottom of the storage bin (21) is equipped with a rotating shaft (27), a retaining ring (28) is installed on the rotating shaft (27), and the retaining ring (28) is rotatably installed in the retaining groove (26).
4. The chrysanthemum processing and cooling device according to claim 3, characterized in that: The storage bin drive assembly (3) includes a gear ring (31) mounted on the storage bin (21), a drive motor (32) mounted on the bracket (1), a drive shaft (33) mounted on the output end of the drive motor (32), a gear (34) mounted on the drive shaft (33), and the gear (34) meshing with the gear ring (31).
5. The chrysanthemum processing and cooling device according to claim 1, characterized in that: The cooling vibrating screen assembly (4) includes a vibrating screen frame (41) installed on the bracket (1), a screen (42) installed inside the vibrating screen frame (41), a vibration motor (43) installed on the vibrating screen frame (41), and a guide plate (44) installed on the vibrating screen frame (41).
6. The chrysanthemum processing and cooling device according to claim 5, characterized in that: The auxiliary cooling component (6) includes an electric slide rail (61) installed on the bracket (1), an electric slide sleeve (62) is slidably sleeved on the electric slide rail (61), a cold air fan (63) is installed on the electric slide sleeve (62), and a ventilation hole (64) is opened on the vibrating screen frame (41).
Citation Information
Patent Citations
Spreading and cooling device for chrysanthemum tea processing
CN220777283U