Appearance mildew detection equipment for safe processing raw materials of spleen-tonifying tea
By combining a material spreading plate with a visual inspection system in the raw material testing equipment for Jianpi Tea, the problem of humidity changes affecting the accuracy of testing for Jianpi Tea raw materials has been solved, enabling timely detection and efficient collection of moldy Jianpi Tea raw materials.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANTONG TAILIDA CHEM
- Filing Date
- 2025-05-16
- Publication Date
- 2026-04-24
AI Technical Summary
The moisture content of the raw materials for the spleen-strengthening tea changes while awaiting testing due to their hygroscopic properties, which affects the accuracy of mold detection and the test results cannot reflect the true condition of the raw materials in a timely manner.
A device for detecting mold growth on the appearance of raw materials for Jianpi Tea was designed. It combines a spreading plate with a visual inspection system. Through moving spreading and real-time detection within the hopper, combined with AI deep learning algorithms, it achieves timely detection and accurate results for Jianpi Tea raw materials.
This method ensures the accuracy and timeliness of mold detection in the raw materials for spleen-strengthening tea, prevents humidity changes from affecting the test results, and improves both testing and collection efficiency.
Smart Images

Figure CN224163584U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tea production technology, specifically to a device for detecting mold growth on the appearance of raw materials for safe processing of spleen-strengthening tea. Background Technology
[0002] The equipment for detecting mold growth on raw materials used in the safe processing of Jianpi Tea ensures product quality and safety, improves production efficiency and economic benefits, and strengthens quality traceability and management. It mainly uses a vision inspection system (based on machine vision technology, it uses a high-resolution camera to capture images of Jianpi Tea raw materials, and then uses image processing algorithms to analyze the images, which can quickly detect abnormalities such as moldy areas and color changes on the surface of the raw materials). It can set different detection parameters to adapt to different types of Jianpi Tea raw materials and mold characteristics. It has the advantages of fast detection speed and high accuracy, and can be widely used in raw material inspection on large-scale production lines.
[0003] In existing technologies, to improve detection efficiency, the raw materials for Jianpi Tea are typically spread out before visual mold detection. However, the raw materials cannot be detected immediately during this process. While waiting for detection, the raw materials, being hygroscopic, may absorb moisture from the air, causing changes in humidity. These changes can affect the development of mold and the detection equipment's assessment of the raw materials' condition, resulting in inaccurate test results that do not reflect the original condition of the raw materials. Therefore, a novel structure is needed to address these issues. Utility Model Content
[0004] The purpose of this utility model is to provide a device for detecting mold growth on the appearance of raw materials used in the safe processing of spleen-strengthening tea, thereby solving the problems mentioned in the background section. To solve the above technical problems, this utility model is achieved through the following technical solution:
[0005] This utility model relates to a device for detecting mold growth on the appearance of raw materials used in the safe processing of spleen-strengthening tea, comprising:
[0006] silos;
[0007] A high-efficiency detection component includes a spreading plate, a receiving plate, and a vision inspection system. The spreading plate is movably connected in the hopper, the receiving plate is fixedly connected to both sides of the spreading plate, and the vision inspection system is fixedly connected to the bottom of the receiving plate.
[0008] Furthermore, there is a two-centimeter gap between the bottom of the spreading plate and the hopper.
[0009] Furthermore, the high-efficiency detection component also includes an external frame, a motor, a threaded rod, a rectangular plate, and a first threaded groove. The external frame is fixedly connected to one end of the hopper, and the motor is fixedly connected to the external frame. The output end of the motor is connected to the threaded rod. The rectangular plate is fixedly connected to the top of the spreading plate, and the first threaded groove is opened through the middle of the rectangular plate. The threaded rod is movably connected in the first threaded groove.
[0010] Furthermore, the high-efficiency detection component also includes a T-shaped guide groove and a T-shaped slide plate. The T-shaped guide groove is opened on both sides of the hopper, and the T-shaped slide plate is fixedly connected to both sides of the spreading plate. The T-shaped slide plate is movably connected in the T-shaped guide groove.
[0011] Furthermore, it also includes a convenient material feeding component, which includes a receiving groove and an L-shaped plate. The receiving groove is provided on the material spreading plate, and the L-shaped plate is movably connected in the receiving groove. The L-shaped plate is movably connected in the hopper.
[0012] Furthermore, the convenient feeding assembly also includes a second threaded groove and a fastening screw. The second threaded groove is provided on the spreading plate, the second threaded groove is connected to the receiving groove, and the fastening screw is movably connected in the second threaded groove.
[0013] Furthermore, the convenient feeding assembly also includes a support rod and a collection box. The support rod is fixedly connected to the bottom of the hopper, and the collection box is movably connected to the bottom of one side of the hopper.
[0014] This utility model has the following beneficial effects:
[0015] In this invention, the spreading plate can spread the raw materials for Jianpi Tea thinly during the movement of the material hopper, and the connected vision detection system can follow the movement of the spreading plate, thereby enabling timely detection of the thinned raw materials for Jianpi Tea. This prevents the raw materials from becoming moldy due to humidity or other external environmental factors, and ensures that the detection results accurately reflect the original condition of the raw materials for Jianpi Tea.
[0016] Based on the aforementioned beneficial effects, after the test is completed, the L-shaped plate can be moved downwards and the fastening screws tightened. At this time, the bottom of the L-shaped plate contacts the hopper, and the motor is turned on again, which can push and collect the spleen-strengthening tea processing raw materials spread out in the hopper. This allows the normal spleen-strengthening tea processing raw materials after testing to be pushed into the collection box in a timely manner, and can avoid the leakage of normal spleen-strengthening tea processing raw materials. At the same time, only one movement is needed to achieve complete collection, which improves collection efficiency. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the overall design of this utility model;
[0019] Figure 2 This is a schematic diagram of the connection of the collection box of this utility model;
[0020] Figure 3 A schematic diagram showing the T-shaped guide groove inside the hopper of this utility model;
[0021] Figure 4 This is a schematic diagram of the T-shaped sliding plate connection of this utility model;
[0022] Figure 5 This is a schematic diagram of the bottom of the L-shaped plate of this utility model being flush with the bottom of the spreading plate;
[0023] Figure 6 This is a schematic diagram of the bottom of the L-shaped plate protruding from the bottom of the spreading plate of this utility model.
[0024] The attached diagram lists the components represented by each number as follows:
[0025] 101. Silo;
[0026] 201. Material spreading plate; 202. Receiving plate; 203. Vision inspection system; 204. External frame; 205. Motor; 206. Threaded rod; 207. Rectangular plate; 208. First threaded groove; 209. T-shaped guide groove; 2010. T-shaped sliding plate;
[0027] 301. Receiving groove; 302. L-shaped plate; 303. Second threaded groove; 304. Fastening screw; 305. Support rod; 306. Collection box. Detailed Implementation
[0028] 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.
[0029] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.
[0030] Please see Figure 1-6 As shown, this utility model is a device for detecting mold growth on the appearance of raw materials used in the safe processing of spleen-strengthening tea, comprising:
[0031] Silo 101;
[0032] The high-efficiency detection component includes a spreading plate 201, a receiving plate 202, and a vision inspection system 203. The spreading plate 201 is movably connected in the hopper 101, the receiving plate 202 is fixedly connected to both sides of the spreading plate 201, and the vision inspection system 203 is fixedly connected to the bottom of the receiving plate 202. There is a two-centimeter gap between the bottom of the spreading plate 201 and the hopper 101.
[0033] The material silo 101 contains raw materials for the spleen-strengthening tea processing. The spreading plate 201 and its position ensure that the raw materials are spread thinly, thereby improving the accuracy of detecting mold growth on the appearance of the raw materials. The receiving plate 202 provides a guarantee for the installation of the vision inspection system 203. The vision inspection system 203 is model 6CSX-136S. It is equipped with advanced AI deep learning algorithms, a high-resolution color CCD with hundreds of millions of pixels, and a full-spectrum image sensor. It can accurately remove moldy parts and other impurities from the raw materials according to their characteristics, and perform efficient sorting and impurity removal.
[0034] The high-efficiency detection component also includes an external frame 204, a motor 205, a threaded rod 206, a rectangular plate 207, and a first threaded groove 208. One end of the hopper 101 is fixedly connected to the external frame 204, the motor 205 is fixedly connected to the external frame 204, the output end of the motor 205 is connected to the threaded rod 206, the top of the spreading plate 201 is fixedly connected to the rectangular plate 207, the first threaded groove 208 is opened through the middle of the rectangular plate 207, and the threaded rod 206 is movably connected in the first threaded groove 208.
[0035] The external bracket 204 provides a guarantee for the installation of the motor 205, and the motor 205 provides kinetic energy to drive the threaded rod 206 to rotate. The rectangular plate 207 provides a guarantee for the opening of the first threaded groove 208.
[0036] The high-efficiency detection component also includes a T-shaped guide groove 209 and a T-shaped slide plate 2010. The T-shaped guide groove 209 is opened on both sides of the material bin 101. The T-shaped slide plate 2010 is fixedly connected to both sides of the material spreader 201. The T-shaped slide plate 2010 is movably connected in the T-shaped guide groove 209.
[0037] The T-shaped guide groove 209 and the T-shaped slide plate 2010 work together to ensure the smooth movement of the spreading plate 201.
[0038] Working principle: First, the raw materials for Jianpi Tea are poured into the hopper 101. Then, the vision inspection system 203 and motor 205 are turned on. At this time, the threaded rod 206 rotates in the first threaded groove 208. With the cooperation of the T-shaped sliding plate 2010 and the T-shaped guide groove 209, the spreading plate 201 drives the vision inspection system 203 to move. Since there is a two-centimeter gap between the spreading plate 201 and the hopper 101, the raw materials for Jianpi Tea can be spread thinly during the movement. The vision inspection system 203 promptly detects mold on the spread raw materials. When moldy raw materials are detected, an alarm is sounded. At this time, the motor 205 is turned off, and the operator removes the moldy raw materials and then continues the inspection process. This step ensures that the inspection results accurately reflect the original true condition of the raw materials for Jianpi Tea.
[0039] Please see Figure 1-6 As shown, this embodiment, based on the above embodiment, further includes:
[0040] The convenient material feeding component includes a receiving groove 301 and an L-shaped plate 302. The receiving groove 301 is opened on the spreading plate 201, and the L-shaped plate 302 is movably connected in the receiving groove 301. The L-shaped plate 302 is movably connected in the hopper 101.
[0041] The receiving groove 301 provides a guarantee for the up-and-down movement of the L-shaped plate 302 at the spreading plate 201.
[0042] The convenient feeding component also includes a second threaded groove 303 and a fastening screw 304. The second threaded groove 303 is opened on the spreading plate 201. The second threaded groove 303 is connected to the receiving groove 301. The fastening screw 304 is movably connected in the second threaded groove 303.
[0043] The second threaded groove 303 and the fastening screw 304 work together to generate a clamping force on the L-shaped plate 302, thereby fixing the L-shaped plate 302 after it moves.
[0044] The convenient material unloading component also includes a support rod 305 and a collection box 306. The support rod 305 is fixedly connected to the bottom of the hopper 101, and the collection box 306 is movably connected to the bottom of one side of the hopper 101.
[0045] The support rod 305 provides a guarantee for the movable placement of the collection box 306, which is used to store qualified raw materials after testing.
[0046] Working principle: When the inspection is completed and the spreading plate 201 returns to the end near the external frame 204, loosen the fastening screw 304. At this time, the L-shaped plate 302 moves down along the receiving groove 301 until it contacts the material bin 101. Then, tighten the fastening screw 304 at the second threaded groove 303. Then, turn on the motor 205 (the vision inspection system 203 is in the off state) to drive the spreading plate 201 and the L-shaped plate 302 to move. At this time, the L-shaped plate 302 pushes the spread spleen-strengthening tea processing raw material until it is pushed into the collection box 306. Before the next inspection, first loosen the fastening screw 304, then push the L-shaped plate 302 upward until the bottom of the L-shaped plate 302 is flush with the bottom of the spreading plate 201. Then tighten and loosen the fastening screw 304 again. This step improves the collection efficiency.
[0047] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A device for detecting mold growth on the appearance of raw materials used in the safe processing of spleen-strengthening tea, characterized in that, include: Silo (101); The high-efficiency detection component includes a spreading plate (201), a receiving plate (202), and a vision detection system (203). The spreading plate (201) is movably connected in the hopper (101). The receiving plate (202) is fixedly connected to both sides of the spreading plate (201). The vision detection system (203) is fixedly connected to the bottom of the receiving plate (202).
2. The device for detecting mold growth on the appearance of raw materials for spleen-strengthening tea according to claim 1, characterized in that: There is a two-centimeter gap between the bottom of the spreading plate (201) and the hopper (101).
3. The device for detecting mold growth on the appearance of raw materials for spleen-strengthening tea according to claim 1, characterized in that: The high-efficiency detection component also includes an external frame (204), a motor (205), a threaded rod (206), a rectangular plate (207), and a first threaded groove (208). The external frame (204) is fixedly connected to one end of the hopper (101). The motor (205) is fixedly connected to the external frame (204). The output end of the motor (205) is connected to the threaded rod (206). The rectangular plate (207) is fixedly connected to the top of the spreading plate (201). The first threaded groove (208) is opened through the middle of the rectangular plate (207). The threaded rod (206) is movably connected in the first threaded groove (208).
4. The device for detecting mold growth on the appearance of raw materials for spleen-strengthening tea according to claim 1, characterized in that: The high-efficiency detection component also includes a T-shaped guide groove (209) and a T-shaped slide plate (2010). The T-shaped guide groove (209) is opened on both sides of the hopper (101). The T-shaped slide plate (2010) is fixedly connected to both sides of the material spreader (201). The T-shaped slide plate (2010) is movably connected in the T-shaped guide groove (209).
5. The device for detecting mold growth on the appearance of raw materials for spleen-strengthening tea according to claim 1, characterized in that: It also includes a convenient feeding component, which includes a receiving groove (301) and an L-shaped plate (302). The receiving groove (301) is opened on the spreading plate (201), and the L-shaped plate (302) is movably connected in the receiving groove (301). The L-shaped plate (302) is movably connected in the hopper (101).
6. The device for detecting mold growth on the appearance of raw materials for safe processing of spleen-strengthening tea according to claim 5, characterized in that: The convenient feeding assembly also includes a second threaded groove (303) and a fastening screw (304). The second threaded groove (303) is opened on the spreading plate (201). The second threaded groove (303) is connected to the receiving groove (301). The fastening screw (304) is movably connected in the second threaded groove (303).
7. The device for detecting mold growth on the appearance of raw materials for spleen-strengthening tea according to claim 5, characterized in that: The convenient feeding assembly also includes a support rod (305) and a collection box (306). The support rod (305) is fixedly connected to the bottom of the hopper (101), and the collection box (306) is movably connected to the bottom of one side of the hopper (101).