Drying device for phalaenopsis leaf extraction

By designing a drying device with a rotating and collecting structure, the problem of Phalaenopsis orchid leaves sticking together and being difficult to remove during the drying process was solved, enabling rapid drying and automated collection of the leaves and improving production efficiency.

CN224136240UActive Publication Date: 2026-04-17JIANG SU JING YAN MEI CUI SHENG WU KE JI YOU XIAN GONG SI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANG SU JING YAN MEI CUI SHENG WU KE JI YOU XIAN GONG SI
Filing Date
2025-05-21
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In existing technologies, Phalaenopsis orchid leaves tend to stick to the surface of the fixing plate during the drying process, making them difficult to remove and requiring manual removal, which is inefficient and detrimental to improving enterprise production efficiency.

Method used

A drying device including a rotating structure and a collection structure was designed. The lower frame and the wire mesh frame are driven to rotate by a motor. Adhesive blades are scraped off by diamond wire. The blades are automatically collected and unloaded by the cooperation of a hand-turned threaded rod and a pull frame.

Benefits of technology

This technology enables rapid drying and automated collection of leaves, improving production efficiency, reducing manual intervention, and enhancing the company's overall productivity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of Chinese herbal medicine processing, in particular to a drying device for phalaenopsis leaf extraction. The drying device comprises a drying box, a rotating structure is installed on the drying box and comprises a motor, the motor is fixedly installed on the rear wall of the drying box, a lower frame is movably installed on the inner wall of the drying box through a bearing, upper net frames are fixedly connected to the two side walls of the lower frame, and hand-screwing threaded rods are in threaded connection with the middles of the top faces of the upper net frames. Sliding grooves are formed in the two side walls of the lower frame and the two side walls of the upper net frame, and magnetic blocks are bonded to the interiors of the front faces of the lower frame and the upper net frame. The diamond wires are arranged on the lower frame and the upper net frame respectively, the diamond wires can be driven to slide in the mode of being attached to the net plate and the upper net frame by pushing and pulling the pull frame, the diamond wires can scrape off blades attached to the surfaces of the net plate and the upper net frame, the blades are scattered on the top face of the net plate, the blades can fall down from the net plate conveniently, and rapid collection of the blades is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of Phalaenopsis orchid processing technology, specifically to a drying device for extracting Phalaenopsis orchid leaves. Background Technology

[0002] Phalaenopsis orchid leaves have medicinal value, and during the processing of Phalaenopsis orchid leaves, they need to be dried.

[0003] In response, Chinese patent application number CN202222976325.6 discloses a herbal medicine extraction and drying device, including a herbal juice extraction mechanism and a herbal cake drying device on one side of the herbal juice extraction mechanism. The herbal cake drying device includes a drying chamber, a driving mechanism on the drying chamber, a herbal cake fixing plate A on one side of the driving mechanism, and a limiting mechanism above the herbal cake fixing plate A. This utility model fixes the herbal medicine cake between the herbal cake fixing plate B and the herbal cake fixing plate A by setting the driving mechanism, the herbal cake fixing plate A, and the limiting mechanism. Then, the driving mechanism drives the herbal medicine cake to rotate and dry, which can make the moisture in the herbal cake flung outward during rotation, and at the same time, it can make the drying more uniform.

[0004] The device uses two sets of herb fixing plates to rotate the herbs. However, the herbs are in contact with the fixing plates, and during drying, they adhere to the surface of the fixing plates and are difficult to remove. This requires manual removal of the herbs, which is laborious and inefficient, and is not conducive to improving the production efficiency of enterprises.

[0005] Therefore, in order to solve the above problems, a drying device for extracting Phalaenopsis orchid leaves is proposed. Utility Model Content

[0006] The purpose of this utility model is to provide a drying device for extracting Phalaenopsis leaves, in order to solve the problem mentioned in the background art that the existing device can rotate the medicinal materials by setting two sets of medicinal material fixing plates. However, the surface of the medicinal materials is in contact with the medicinal material fixing plates. During the drying process, the medicinal materials will stick to the surface of the medicinal material fixing plates and are difficult to remove. The medicinal materials need to be removed manually, which is laborious and inefficient, and is not conducive to improving the production efficiency of enterprises.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a drying device for extracting Phalaenopsis orchid leaves, comprising: a drying box;

[0008] The drying oven is equipped with a rotating structure, which includes a motor. The motor is fixedly installed on the rear wall of the drying oven. A lower frame is movably installed on the inner wall of the drying oven via bearings. A wire mesh frame is fixedly connected to both side walls of the lower frame. A hand-threaded rod is threadedly connected to the center of the top surface of the wire mesh frame. Sliding grooves are provided on both side walls of the lower frame and the wire mesh frame. Magnetic blocks are adhered to the inside of the front of the lower frame and the wire mesh frame. A pull frame is installed on the front of the lower frame and the wire mesh frame. A diamond wire is fixedly connected to the rear end of the pull frame.

[0009] A collecting structure is installed on the rotating structure. The collecting structure includes a mesh plate, which is movably installed on the inner side of the lower frame via a rotating shaft. An insertion hole is provided on the front of the mesh plate, and bolts are threadedly connected to the front of the lower frame.

[0010] Preferably, the output end of the motor is fixedly connected to the lower frame via a coupling.

[0011] Preferably, the mesh rack is vertically aligned with the lower frame, and the mesh rack is slidably installed on the inner side of the support frame.

[0012] Preferably, the hand-rotated threaded rod passes through the support frame and its bottom end is rotatably connected to the top surface of the mesh frame.

[0013] Preferably, the magnetic block is magnetically connected to the pull frame, the diamond wire is slidably installed on the inner side of the slide groove, and the diamond wire is in contact with the surface of the mesh plate and the mesh frame.

[0014] Preferably, the outer wall of the mesh plate is fitted with the inner wall of the lower frame, the mesh plate is located on the lower side of the slide groove, and the rear end of the bolt is inserted into the insertion hole.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: By setting diamond wires on the lower frame and the mesh frame respectively, the diamond wires can slide along the mesh plate and the mesh frame by pushing and pulling the frame. The diamond wires can scrape off the leaves that are attached to the surface of the mesh plate and the mesh frame, so that the leaves are scattered on the top surface of the mesh plate, making it easier to pour the leaves off the mesh plate and realize the rapid collection of the leaves.

[0016] 1. This utility model, by incorporating a rotating structure and a collecting structure, places the blades on the top surface of the mesh plate. A hand-threaded rod is rotated, which is threadedly connected to the support frame. As the hand-threaded rod rotates, it gradually moves downwards, and its bottom end is rotatably connected to the mesh rack. The mesh rack is slidably mounted inside the support frame. Therefore, rotating the threaded rod causes the mesh rack to slide downwards inside the support frame, bringing the bottom surface of the mesh rack into contact with the top surface of the lower frame, thus securing the blades. Starting the motor rotates the lower frame and the mesh rack, which, during rotation, flings water off the blades, accelerating the drying process. At the end, the two sets of pullers can be pulled forward and away from the lower frame and the mesh frame, which can release the magnetic attraction of the pullers to the magnetic blocks. The pullers will also drive the diamond wire to slide inside the chute. When the chute moves, it can scrape off the blades that are attached to the surface of the mesh plate and the mesh frame, so that the blades are placed on the top surface of the mesh plate under the action of gravity. At this time, the threaded rod can be turned in reverse to raise the mesh frame. Finally, the bolt can be unscrewed to unscrew the back end of the bolt from the insertion hole, which can release the positioning of the mesh plate inside the lower frame. The mesh plate can then tilt downward around the back end under the action of gravity, which can pour out the blades on the mesh plate, improve the material feeding efficiency, and ensure the production efficiency of the enterprise. Attached Figure Description

[0017] Figure 1 This is a front view schematic diagram of the structure of this utility model;

[0018] Figure 2 This is an exploded view of the rotating structure of this utility model;

[0019] Figure 3 This is an exploded view of the lower frame structure of this utility model;

[0020] Figure 4 This is a front sectional view of the lower frame and mesh panel of this utility model.

[0021] In the diagram: 1. Drying oven; 2. Rotating structure; 21. Motor; 22. Lower frame; 23. Support frame; 24. Net rack; 25. Hand-threaded rod; 26. Slide groove; 27. Magnetic block; 28. Pull frame; 29. ​​Diamond wire; 3. Collection structure; 31. Mesh plate; 32. Insertion hole; 33. Bolt. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figures 1-4 An embodiment of a drying device for extracting Phalaenopsis orchid leaves provided by this utility model:

[0024] The drying oven 1 and motor 21 used in this application are products that can be purchased directly from the market. Their principles and connection methods are existing technologies well known to those skilled in the art, so they will not be described in detail here.

[0025] A drying device for extracting Phalaenopsis orchid leaves includes: a drying box 1;

[0026] A rotating structure 2 is installed on the drying oven 1. The rotating structure 2 includes a motor 21, which is fixedly installed on the rear wall of the drying oven 1. A lower frame 22 is movably installed on the inner wall of the drying oven 1 via bearings. A wire mesh rack 24 is fixedly connected to the two side walls of the lower frame 22. A hand-cranked threaded rod 25 is threadedly connected to the center of the top surface of the wire mesh rack 24. Sliding grooves 26 are provided on the two side walls of the lower frame 22 and the wire mesh rack 24. A magnetic block 27 is glued to the inside of the front of the lower frame 22 and the wire mesh rack 24. A pull frame 28 is installed on the front of the lower frame 22 and the wire mesh rack 24. A diamond wire 29 is fixedly connected to the rear end of the pull frame 28.

[0027] A collection structure 3 is installed on the rotating structure 2. The collection structure 3 includes a mesh plate 31. The mesh plate 31 is movably installed on the inner side of the lower frame 22 via a rotating shaft. An insertion hole 32 is opened on the front of the mesh plate 31. A bolt 33 is threadedly connected to the front of the lower frame 22. By setting diamond wires 29 on the lower frame 22 and the mesh frame 24 respectively, the diamond wires 29 can be moved to slide along the mesh plate 31 and the mesh frame 24 by pushing and pulling the pull bracket 28. The diamond wires 29 can scrape off the blades that are attached to the surface of the mesh plate 31 and the mesh frame 24, so that the blades are scattered on the top surface of the mesh plate 31, making it easy to pour the blades off the mesh plate 31 and realize the rapid collection of the blades.

[0028] Furthermore, the output end of the motor 21 is fixedly connected to the lower frame 22 via a coupling, and the motor 21 provides power for the rotation of the lower frame 22.

[0029] Furthermore, the mesh frame 24 is aligned vertically with the lower frame 22, and the mesh frame 24 is slidably installed on the inner side of the support frame 23. The mesh frame 24, together with the lower frame 22, can fix the blades on the mesh plate 31, and the mesh frame 24 can move stably within the support frame 23.

[0030] Furthermore, the hand-turned threaded rod 25 passes through the support frame 23, and its bottom end is rotatably connected to the top surface of the mesh rack 24. When the hand-turned threaded rod 25 is rotated, the mesh rack 24 can be moved inside the support frame 23.

[0031] Furthermore, the magnetic block 27 is magnetically connected to the pull bracket 28, and the diamond wire 29 is slidably installed on the inner side of the slide groove 26. The diamond wire 29 is attached to the surface of the mesh plate 31 and the mesh frame 24. The magnetic block 27 can fix the pull bracket 28 to the front of the lower frame 22 and the mesh frame 24. When the diamond wire 29 moves, it can scrape off the blades that are attached to the surface of the mesh plate 31 and the mesh frame 24.

[0032] Furthermore, the outer wall of the mesh plate 31 is fitted with the inner wall of the lower frame 22. The mesh plate 31 is located on the lower side of the slide groove 26. The rear end of the bolt 33 is inserted into the insertion hole 32. The lower frame 22 can restrict the blades to the top surface of the mesh plate 31. The bolt 33, in conjunction with the insertion hole 32, can fix the angle of the mesh plate 31 inside the lower frame 22.

[0033] Working principle: During processing, the blades are placed on the top surface of the mesh plate 31. The hand-threaded rod 25 is rotated and is threadedly connected to the support frame 23. As the hand-threaded rod 25 rotates, it gradually moves downwards, and the bottom end of the hand-threaded rod 25 is rotatably connected to the mesh frame 24. The mesh frame 24 is slidably installed inside the support frame 23. Therefore, the hand-threaded rod 25 will drive the mesh frame 24 to slide downwards inside the support frame 23, so that the bottom surface of the mesh frame 24 is in contact with the top surface of the lower frame 22, which can fix the blades. The motor 21 is started, which can drive the lower frame 22 and the mesh frame 24 to rotate. When the lower frame 22 and the mesh frame 24 rotate, they can throw off the water stains on the blades, which can speed up the drying efficiency of the blades.

[0034] When drying is finished, the two sets of pullers 28 can be pulled forward to move away from the lower frame 22 and the wire mesh frame 24, which can release the magnetic attraction of the magnetic block 27 to the pullers 28. The pullers 28 will also drive the diamond wire 29 to slide inside the slide groove 26. When the slide groove 26 moves, it can scrape off the blades that are attached to the surface of the wire mesh 31 and the wire mesh frame 24, so that the blades are placed on the top surface of the wire mesh 31 under the action of gravity. At this time, the screw rod 25 can be turned in reverse to raise the wire mesh frame 24. Finally, the bolt 33 is unscrewed to unscrew the rear end of the bolt 33 from the insertion hole 32, which can release the positioning of the wire mesh 31 inside the lower frame 22. The wire mesh 31 can then tilt downward around the rear end under the action of gravity, which can pour out the blades on the wire mesh 31, improve the material feeding efficiency, and ensure the production efficiency of the enterprise.

[0035] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any way. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description. However, any modifications, alterations, or equivalent variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are considered equivalent embodiments of this utility model. Furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.

Claims

1. A drying device for extracting leaves of a phalaenopsis, comprising: Drying oven (1); Its features are: A rotating structure (2) is installed on the drying box (1). The rotating structure (2) includes a motor (21). The motor (21) is fixedly installed on the rear wall of the drying box (1). A lower frame (22) is movably installed on the inner wall of the drying box (1) through a bearing. A net rack (24) is fixedly connected to the two side walls of the lower frame (22). A hand-cranked threaded rod (25) is threadedly connected to the center of the top surface of the net rack (24). Sliding grooves (26) are provided on the two side walls of the lower frame (22) and the net rack (24). A magnetic block (27) is glued to the inside of the front of the lower frame (22) and the net rack (24). A pull frame (28) is installed on the front of the lower frame (22) and the net rack (24). A diamond wire (29) is fixedly connected to the rear end of the pull frame (28). A collection structure (3) is installed on the rotating structure (2). The collection structure (3) includes a mesh plate (31). The mesh plate (31) is movably installed on the inner side of the lower frame (22) via a rotating shaft. An insertion hole (32) is provided on the front side of the mesh plate (31). A bolt (33) is threadedly connected to the front side of the lower frame (22).

2. The drying device for extracting leaves of a butterfly plant according to claim 1, characterized in that: The output end of the motor (21) is fixedly connected to the lower frame (22) via a coupling.

3. The device according to claim 1, wherein the device is characterized by: The network rack (24) is aligned vertically with the lower frame (22), and the network rack (24) is slidably installed on the inner side of the support frame (23).

4. The drying device for extracting leaves of a butterfly plant according to claim 1, characterized in that: The hand-rotating threaded rod (25) passes through the support frame (23) and its bottom end is rotatably connected to the top surface of the mesh frame (24).

5. The device according to claim 1, wherein: The magnetic block (27) is magnetically connected to the pull frame (28), the diamond wire (29) is slidably installed on the inner side of the slide groove (26), and the diamond wire (29) is in contact with the surface of the mesh plate (31) and the mesh frame (24).

6. The device according to claim 1, wherein: The outer wall of the mesh plate (31) is attached to the inner wall of the lower frame (22), the mesh plate (31) is located on the lower side of the slide groove (26), and the rear end of the bolt (33) is inserted into the socket (32).

Citation Information

Patent Citations

  • Chinese herbal medicine extracting and drying device

    CN219120964U