Spreading and cooling table convenient for collecting spread and cooled tea leaves

By designing a lanai that is easy to collect, and using components such as collection boxes and fixtures, the problem of time-consuming and laborious collection of tea after drying is solved, and the convenient collection of tea is achieved.

CN223053810UActive Publication Date: 2025-07-04JUNLIAN RUIXIN TEA CO LTD
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Patent Information

Application Number
CN202422211291.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-07-04
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

The existing tea stall lanai needs to be collected manually after drying, resulting in a waste of manpower and long time, and lack of convenient collection components.

Method used

A lanai including a collection box, a collection box, a fixing device, a fixing block, a moving shell, a moving inner shell and a spring are designed. Through the use of these components, convenient collection of tea leaves is achieved.

Benefits of technology

It realizes convenient collection of herbal tea leaves, reducing labor waste and time costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a spread cooling table convenient for collecting spread cooling tea leaves, which comprises a collecting box and a collecting box, the collecting box is movably connected to the inner cavity of the collecting box, the front side of the collecting box penetrates through the collecting box and extends to the outer side of the inner cavity of the collecting box, and the top of the collecting box is provided with a corrugated cover. Through cooperative use of a fixing device, a fixing block, a movable outer shell, a movable inner shell and a spring, the problems that an existing tea spreading and cooling table can be a simple bamboo mat and a grid and can also be modern equipment provided with a ventilation system, and tea is usually directly placed on the spreading and cooling table during natural spreading and cooling; the tea leaves need to be collected and moved to the next processing procedure after being aired, however, the tea leaves in a plurality of spreading cooling tables at different positions need to be collected when the tea leaves are collected due to the fact that the spreading cooling tables only have the function of airing the tea leaves, manpower is wasted, the consumed time is long, and the tea leaves in the spreading cooling tables at different positions need to be collected. However, an existing tealeaf spreading and cooling table is not provided with a component for conveniently collecting the spread and cooled tealeaves.
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Description

Technical Field

[0001] The utility model belongs to the technical field of tea cooling platforms, and particularly relates to a cooling platform which is convenient for collecting cooled tea. Background Art

[0002] A tea cooling platform refers to a facility used for spreading and drying newly picked tea during the tea processing process. This process aims to moderately evaporate the moisture in the tea through natural drying or artificial assistance, reduce the humidity of the tea, and promote the internal biochemical reactions of the tea, thereby improving the quality and shelf life of the tea. To sum up, the problems existing in the prior art are as follows: The tea cooling platform can be a simple bamboo mat and grid or a modern device equipped with a ventilation system. When naturally cooling the tea, the tea is usually directly placed on the cooling platform, and then the cooling platform is placed in a ventilated and shaded place. After drying, the tea still needs to be collected and moved to the next processing step. Usually, the cooling platform only has the function of drying the tea. When collecting the tea, it is necessary to collect the tea in multiple cooling platforms at different positions, which not only wastes manpower but also takes a long time. However, the existing tea cooling platforms do not have components for conveniently collecting the cooled tea. Therefore, a cooling platform which is convenient for collecting cooled tea is specifically proposed to solve the above problems. Content of the Utility Model

[0003] Aiming at the problems existing in the prior art, the utility model provides a cooling platform which is convenient for collecting cooled tea, having the advantage of enabling the cooling platform for tea to conveniently collect the cooled tea, and solving the problems that the existing tea cooling platform can be a simple bamboo mat and grid or a modern device equipped with a ventilation system. When naturally cooling the tea, the tea is usually directly placed on the cooling platform, and then the cooling platform is placed in a ventilated and shaded place. After drying, the tea still needs to be collected and moved to the next processing step. Usually, the cooling platform only has the function of drying the tea. When collecting the tea, it is necessary to collect the tea in multiple cooling platforms at different positions, which not only wastes manpower but also takes a long time. However, the existing tea cooling platforms do not have components for conveniently collecting the cooled tea.

[0004] The utility model is realized as follows: A cooling platform which is convenient for collecting cooled tea includes a collection box and a collection box. The collection box is movably connected to the inner cavity of the collection box. The front side of the collection box penetrates through the collection box and extends to the outside of the inner cavity of the collection box. A corrugated cover is arranged on the top of the collection box. A column is fixedly connected to the rear side of the collection box. A plurality of cooling platforms are sleeved on the surface of the column. A partition net frame is movably connected to the inner cavity of the cooling platform. The front side of the partition net frame penetrates through the cooling platform and extends to the outside of the inner cavity of the cooling platform. A fixing device is arranged on the front side of the cooling platform.

[0005] Preferably, as for the present utility model, the fixing device includes a fixing block, a moving outer shell is fixedly connected to the top of the fixing block, a moving inner shell is movably connected to the inner cavity of the moving outer shell, the top of the moving inner shell is fixedly connected to the surface of the cooling table, two springs are fixedly connected to the top of the fixing block, and the top of the springs is fixedly connected to the surface of the cooling table. By providing the fixing device, when the partition net frame moves into the inner cavity of the cooling table, the fixing device has a limiting effect on the position of the partition net frame.

[0006] Preferably, as for the present utility model, two control frames are arranged on one side of the cooling table close to the fixing block, a moving clamping block matched with the control frame is fixedly connected to the front side of the cooling table, and the inner cavity of the control frame is movably connected to the surface of the moving clamping block. By providing the control frame and the moving clamping block, pulling the control frame drives the control frame to move along the surface of the moving clamping block. The setting of the moving clamping block has a limiting effect on the moving position of the control frame. When the control frame moves, it can drive the extrusion frame to move.

[0007] Preferably, as for the present utility model, extrusion frames are fixedly connected to the opposite sides of the two control frames, extrusion holes matched with the extrusion frames are formed in the surface of the fixing block, and the surface of the extrusion frame is movably connected to the inner cavity of the extrusion hole. By providing the extrusion frame and the extrusion hole, when the extrusion frame moves, it can generate an extrusion force on the extrusion hole, and the extrusion hole subjected to the extrusion force can drive the fixing block to move.

[0008] Preferably, as for the present utility model, a fixing groove matched with the fixing block is formed in the top of the partition net frame, and the surface of the fixing block is in contact with the inner cavity of the fixing groove. By providing the fixing groove, when the partition net frame moves into the inner cavity of the cooling table and the control frame is released, the restoring force generated by the spring restoring its shape will drive the fixing block to snap into the inner cavity of the fixing groove. The cooperation of the fixing block and the fixing groove has a limiting effect on the position of the partition net frame.

[0009] Preferably, as for the present utility model, hanging rings are fixedly connected to the left and right sides of the corrugated cover, hanging hooks matched with the hanging rings are fixedly connected to the left and right sides of the cooling table, and the inner cavity of the hanging ring is in contact with the surface of the hanging hook. By providing the hanging ring and the hanging hook, when the top of the corrugated cover contacts the bottom of the cooling table, the hanging ring is hung on the surface of the hanging hook. The cooperation of the hanging ring and the hanging hook has a limiting effect on the position of the corrugated cover.

[0010] Preferably, as for the present utility model, sliding blocks are fixedly connected to the left and right sides of the partition net frame, sliding holes matched with the sliding blocks are formed in the left and right sides of the cooling table, and the surface of the sliding block is movably connected to the inner cavity of the sliding hole. By providing the sliding block and the sliding hole, when the partition net frame moves, it will drive the sliding block to move along the inner cavity of the sliding hole. The cooperation of the sliding block and the sliding hole has a limiting effect on the moving position of the partition net frame.

[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0012] 1. By using the cooperation of the fixing device, fixing block, moving outer shell, moving inner shell and spring, the present utility model solves the problem that the existing tea cooling table can be a simple bamboo mat and grid or a modern device equipped with a ventilation system. When naturally cooling tea, the tea is usually directly placed on the cooling table, and then the cooling table is placed in a ventilated and shaded place. After drying, the tea still needs to be collected and moved to the next processing step. Usually, the cooling table only has the function of drying tea. When collecting tea, it is necessary to collect the tea in multiple cooling tables at different positions, which not only wastes manpower but also takes a long time. However, the existing cooling tables for tea do not have components for conveniently collecting the cooled tea.

[0013] 2. By setting the fixing device, the extrusion hole under the extrusion force will drive the fixing block to move upward. When the fixing block moves, it will drive the moving outer shell to move upward along the surface of the moving inner shell. When the force generated by the movement of the fixing block causes the spring to undergo elastic deformation, the restoring force generated when the spring returns to its shape will drive the fixing block to snap into the inner cavity of the fixing groove, and the fixing device has a limiting effect on the position of the partition net frame. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a three-dimensional structural schematic diagram provided by an embodiment of the present utility model;

[0015] Figure 2 is a three-dimensional connection schematic diagram of the corrugated cover and the cooling table provided by an embodiment of the present utility model;

[0016] Figure 3 is a three-dimensional connection schematic diagram of the cooling table, partition net frame and column provided by an embodiment of the present utility model;

[0017] Figure 4 is a three-dimensional schematic diagram of the cooling table and the partition net frame provided by an embodiment of the present utility model.

[0018] In the figure: 1. Collection box; 2. Collection box; 3. Corrugated cover; 4. Column; 5. Cooling table; 6. Partition net frame; 7. Fixing device; 701. Fixing block; 702. Moving outer shell; 703. Moving inner shell; 704. Spring; 8. Control box; 9. Moving clamping block; 10. Extrusion frame; 11. Extrusion hole; 12. Fixing groove; 13. Hanging ring; 14. Hook; 15. Slide block; 16. Slide hole. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] In order to further understand the content, features and effects of the present utility model, the following embodiments are hereby cited and described in detail in conjunction with the accompanying drawings.

[0020] The structure of the present utility model will be described in detail below with reference to the accompanying drawings.

[0021] As Figures 1 to 4 shown, a cooling table for facilitating the collection of cooled tea leaves provided by an embodiment of the present utility model includes a collection box 1 and a collection box 2. The collection box 2 is movably connected to the inner cavity of the collection box 1. The front side of the collection box 2 penetrates through the collection box 1 and extends to the outside of the inner cavity of the collection box 1. A corrugated cover 3 is arranged on the top of the collection box 1. A column 4 is fixedly connected to the rear side of the collection box 1. A plurality of cooling tables 5 are sleeved on the surface of the column 4. A partition net frame 6 is movably connected to the inner cavity of the cooling table 5. The front side of the partition net frame 6 penetrates through the cooling table 5 and extends to the outside of the inner cavity of the cooling table 5. A fixing device 7 is arranged on the front side of the cooling table 5.

[0022] Referring to Figure 4 , the fixing device 7 includes a fixing block 701. A moving outer shell 702 is fixedly connected to the top of the fixing block 701. A moving inner shell 703 is movably connected to the inner cavity of the moving outer shell 702. The top of the moving inner shell 703 is fixedly connected to the surface of the cooling table 5. Two springs 704 are fixedly connected to the top of the fixing block 701. The top of the springs 704 is fixedly connected to the surface of the cooling table 5.

[0023] With the above solution: by setting the fixing device 7, when the partition net frame 6 moves into the inner cavity of the cooling table 5, the fixing device 7 has a limiting effect on the position of the partition net frame 6.

[0024] Referring to Figure 4 , two control frames 8 are arranged on one side of the cooling table 5 close to the fixing block 701. A moving clamping block 9 cooperating with the control frame 8 is fixedly connected to the front side of the cooling table 5. The inner cavity of the control frame 8 is movably connected to the surface of the moving clamping block 9.

[0025] With the above solution: by setting the control frame 8 and the moving clamping block 9, pulling the control frame 8 drives the control frame 8 to move along the surface of the moving clamping block 9. The setting of the moving clamping block 9 has a limiting effect on the moving position of the control frame 8. When the control frame 8 moves, it can drive the extrusion frame 10 to move.

[0026] Referring to Figure 4 , extrusion frames 10 are fixedly connected to the opposite sides of the two control frames 8. An extrusion hole 11 cooperating with the extrusion frame 10 is formed on the surface of the fixing block 701. The surface of the extrusion frame 10 is movably connected to the inner cavity of the extrusion hole 11.

[0027] With the above solution: by setting the extrusion frame 10 and the extrusion hole 11, when the extrusion frame 10 moves, it can generate an extrusion force on the extrusion hole 11. The extrusion hole 11 subjected to the extrusion force can drive the fixing block 701 to move.

[0028] Referring to Figure 4, a fixing groove 12 for cooperating with the fixing block 701 is formed at the top of the partition net frame 6, and the surface of the fixing block 701 is in contact with the inner cavity of the fixing groove 12.

[0029] With the above solution: by providing the fixing groove 12, when the partition net frame 6 moves into the inner cavity of the cooling table 5, the control frame 8 is released, and the restoring force generated by the spring 704 restoring its shape will drive the fixing block 701 to snap into the inner cavity of the fixing groove 12. The cooperation between the fixing block 701 and the fixing groove 12 has a limiting effect on the position of the partition net frame 6.

[0030] Reference Figure 1 , hanging rings 13 are fixedly connected to both the left and right sides of the corrugated cover 3, and hooks 14 for cooperating with the hanging rings 13 are fixedly connected to both the left and right sides of the cooling table 5. The inner cavity of the hanging ring 13 is in contact with the surface of the hook 14.

[0031] With the above solution: by providing the hanging rings 13 and the hooks 14, when the top of the corrugated cover 3 contacts the bottom of the cooling table 5, the hanging rings 13 are hung on the surface of the hooks 14. The cooperation between the hanging rings 13 and the hooks 14 has a limiting effect on the position of the corrugated cover 3.

[0032] Reference Figure 3 , sliding blocks 15 are fixedly connected to both the left and right sides of the partition net frame 6, and sliding holes 16 for cooperating with the sliding blocks 15 are formed on both the left and right sides of the cooling table 5. The surface of the sliding block 15 is movably connected to the inner cavity of the sliding hole 16.

[0033] With the above solution: by providing the sliding blocks 15 and the sliding holes 16, when the partition net frame 6 moves, it will drive the sliding blocks 15 to move along the inner cavity of the sliding holes 16. The cooperation between the sliding blocks 15 and the sliding holes 16 has a limiting effect on the moving position of the partition net frame 6.

[0034] The working principle of the present utility model:

[0035] During use, when the cooling table 5 for tea leaves needs to conveniently collect the cooled tea leaves, first collect the tea leaves in the first-layer cooling table 5. Rotate the remaining several cooling tables 5 except the first layer, driving the cooling table 5 to rotate backward along the surface of the column 4. When the cooling table 5 rotates to the rear side of the column 4, pull the corrugated cover 3 upward. When the bottom of the corrugated cover 3 contacts the bottom of the cooling table 5, hang the hanging ring 13 on the surface of the hook 14. Then, pull the control frames 8 toward the opposite side of each other, driving the control frames 8 to move along the surface of the moving blocks 9. When the control frames 8 move, they will drive the extrusion frame 10 to move along the inner cavity of the extrusion hole 11. The extrusion hole 11 under the extrusion force will drive the fixed block 701 to move upward. When the fixed block 701 moves, it will drive the moving outer shell 702 to move upward along the surface of the moving inner shell 703. When the force generated by the movement of the fixed block 701 causes the spring 704 to undergo elastic deformation, when the fixed block 701 disengages from the contact with the inner cavity of the fixed groove 12, pull the partition net frame 6 forward. When the partition net frame 6 moves out of the outer side of the inner cavity of the cooling table 5, the tea leaves in the inner cavity of the cooling table 5 will fall into the inner cavity of the collection box 2 in the collection box 1 through the corrugated cover 3. Then, the hanging ring 13 can be removed from the surface of the hook 14, and then the corrugated cover 3 is folded toward the side close to the collection box 2. After that, the partition net frame 6 is moved into the inner cavity of the cooling table 5, and then the two control frames 8 are released. The restoring force generated by the spring 704 restoring its shape will drive the fixed block 701 to snap into the inner cavity of the fixed groove 12. The cooperation of the fixed block 701 and the fixed groove 12 has a limiting effect on the position of the partition net frame 6. At this time, the tea leaves in the first-layer cooling table 5 are collected. After that, the same operation can be used to collect the tea leaves in the remaining several layers of cooling tables 5 until the cooling table 5 for tea leaves completes the convenient collection of the cooled tea leaves.

[0036] In summary: For the cooling table that is convenient for collecting cooled tea leaves, through the combined use of the fixing device 7, the fixed block 701, the moving outer shell 702, the moving inner shell 703, and the spring 704, it solves the problem that the existing tea leaf cooling table can be a simple bamboo mat and grid or a modern device equipped with a ventilation system. When naturally cooling tea leaves, the tea leaves are usually directly placed on the cooling table, and then the cooling table is placed in a ventilated and shaded place. After drying, the tea leaves still need to be collected and moved to the next processing step. Usually, the cooling table only has the function of drying tea leaves. When collecting tea leaves, it is necessary to collect the tea leaves in multiple cooling tables at different positions, which not only wastes manpower but also takes a long time. However, the existing cooling tables for tea leaves do not have components for conveniently collecting the cooled tea leaves.

[0037] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0038] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cooling table for facilitating the collection of cooled tea leaves, comprising a collection box (1) and a collection box (2), characterized in that: The collection box (2) is movably connected to the inner cavity of the collection tank (1). The front side of the collection box (2) penetrates through the collection tank (1) and extends to the outside of the inner cavity of the collection tank (1). A corrugated cover (3) is arranged on the top of the collection tank (1). A column (4) is fixedly connected to the rear side of the collection tank (1). A plurality of cooling platforms (5) are sleeved on the surface of the column (4). A partition net frame (6) is movably connected to the inner cavity of the cooling platform (5). The front side of the partition net frame (6) penetrates through the cooling platform (5) and extends to the outside of the inner cavity of the cooling platform (5). A fixing device (7) is arranged on the front side of the cooling platform (5).

2. The cooling table for facilitating the collection of cooled tea leaves according to claim 1, wherein: The fixing device (7) includes a fixing block (701). A moving outer shell (702) is fixedly connected to the top of the fixing block (701). A moving inner shell (703) is movably connected to the inner cavity of the moving outer shell (702). The top of the moving inner shell (703) is fixedly connected to the surface of the cooling platform (5). Two springs (704) are fixedly connected to the top of the fixing block (701). The top of the springs (704) is fixedly connected to the surface of the cooling platform (5).

3. The cooling table for facilitating the collection of cooled tea leaves according to claim 2, wherein: Two control frames (8) are arranged on one side of the cooling platform (5) close to the fixing block (701). A moving clamping block (9) matched with the control frame (8) is fixedly connected to the front side of the cooling platform (5). The inner cavity of the control frame (8) is movably connected to the surface of the moving clamping block (9).

4. The cooling table for facilitating the collection of cooled tea leaves according to claim 3, characterized in that: Squeezing frames (10) are fixedly connected to the opposite sides of the two control frames (8). A squeezing hole (11) matched with the squeezing frame (10) is formed in the surface of the fixing block (701). The surface of the squeezing frame (10) is movably connected to the inner cavity of the squeezing hole (11).

5. The cooling table for facilitating the collection of cooled tea leaves according to claim 2, wherein: A fixing groove (12) matched with the fixing block (701) is formed in the top of the partition net frame (6). The surface of the fixing block (701) is in contact with the inner cavity of the fixing groove (12).

6. The cooling table for facilitating the collection of cooled tea leaves according to claim 1, wherein: Hanging rings (13) are fixedly connected to the left and right sides of the corrugated cover (3). Hooks (14) matched with the hanging rings (13) are fixedly connected to the left and right sides of the cooling platform (5). The inner cavity of the hanging ring (13) is in contact with the surface of the hook (14).

7. A cooling table for facilitating the collection of cooled tea leaves according to claim 1, characterized in that: Sliding blocks (15) are fixedly connected to the left and right sides of the partition net frame (6). Sliding holes (16) matched with the sliding blocks (15) are formed in the left and right sides of the cooling platform (5). The surface of the sliding block (15) is movably connected to the inner cavity of the sliding hole (16).