Wolfberry pesticide residue detection device with thorn blocks
By designing a goji berry pesticide residue detection device with multiple stirring seats, the device utilizes a transmission rod, stirring fan blades, and stirring rod to thoroughly stir the goji berries, thus solving the problems of low detection efficiency and result deviation in existing devices and achieving efficient and accurate pesticide residue detection.
Patent Information
- Application Number
- CN202520525183.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-24
AI Technical Summary
Existing pesticide residue detection devices for goji berries require a long time to wash off surface pesticides, and water can contaminate different batches of goji berries during testing, leading to inaccurate test results.
A goji berry pesticide residue detection device with multiple stirring seats is designed. The goji berries are thoroughly stirred by the transmission rod, stirring fan blade and stirring rod in the stirring seat, so as to achieve separate detection of different batches.
This improves testing efficiency, avoids cross-contamination of water between different batches, and ensures the accuracy of test results.
Smart Images

Figure CN223955558U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of Chinese wolfberry pesticide residue detection device, especially to the Chinese wolfberry pesticide residue detection device with the pricking block. BACKGROUND
[0002] Chinese wolfberry is a kind of traditional Chinese medicine, and its main functions are kidney-nourishing, lung-moistening, liver-tonifying and eyesight-improving. During the growth of Chinese wolfberry plants, pests will attack the leaves of the plants. Generally, pesticides are sprayed to kill the pests, which leads to pesticide residues on Chinese wolfberry fruits. In order to protect the health and rights of consumers, it is necessary to detect the pesticide residues of Chinese wolfberry on the market.
[0003] However, due to the uneven surface of Chinese wolfberry, it takes a long time to wash out the surface pesticide by simply using a common stirring frame, which reduces the detection efficiency. Moreover, the pesticide residue device can only detect the same batch of Chinese wolfberry. When different batches of Chinese wolfberry are detected, the water used to clean the Chinese wolfberry will be contaminated, which will cause the detection results to deviate.
[0004] Therefore, in view of the above problems of the existing pesticide residue device, which simply uses a common stirring frame to stir, takes a long time to wash out the surface pesticide, reduces the detection efficiency, and can only detect the same batch of Chinese wolfberry, when different batches of Chinese wolfberry are detected, the water used to clean the Chinese wolfberry will be contaminated, which will cause the detection results to deviate, a Chinese wolfberry pesticide residue detection device with a pricking block can be designed. Through the multiple stirring seats, different batches of Chinese wolfberry can be separated and detected. Through the transmission rod, stirring fan blade and stirring rod inside the stirring seat, the Chinese wolfberry can be fully stirred, so that the water and the pesticide on the surface of the Chinese wolfberry are mixed. SUMMARY
[0005] In order to overcome the problems of the existing pesticide residue device, which simply uses a common stirring frame to stir, takes a long time to wash out the surface pesticide, reduces the detection efficiency, and can only detect the same batch of Chinese wolfberry, when different batches of Chinese wolfberry are detected, the water used to clean the Chinese wolfberry will be contaminated, which will cause the detection results to deviate.
[0006] The utility model discloses a technical scheme for a goji berry pesticide residue detection device with a pricking block, which comprises a device shell, a device top cover arranged at the top end of the device shell, an operation panel arranged at the front end of the device top cover, a stirring seat arranged at the inner side of the device shell below the device top cover, a collecting groove arranged at the outer side of the bottom end of the device shell below the stirring seat, a display lamp and a discharge port arranged in sequence at the front end of the collecting groove, a stirring top cover arranged at the top end of the stirring seat, a transmission rod arranged at the inner side of the stirring seat below the stirring top cover, stirring fan blades arranged at both sides of the transmission rod, a second top block arranged at one side of the stirring fan blades, a first top block arranged at the inner wall of the stirring seat at one end of the second top block, and a stirring rod arranged at the inner side of the stirring fan blades behind the second top block.
[0007] Preferably, the different batches of goji berries can be separated and detected through the multiple stirring seats, and the goji berries can be fully stirred through the transmission rod, the stirring fan blades and the stirring rod at the inner side of the stirring seat, so that the water is mixed with the pesticide on the surface of the goji berries.
[0008] Preferably, a hinge is arranged at the inner side of the device shell at the rear end of the device top cover, the device shell and the device top cover are connected through the hinge, a control chip is arranged at the inner side of the operation panel, and the operation panel and the device shell are electrically connected through the control chip.
[0009] Preferably, a servo motor is arranged at the inner side of the stirring seat below the transmission rod, the bottom end of the transmission rod extends to the output end of the top end of the servo motor, and the transmission rod and the servo motor are connected through a shaft coupling.
[0010] Preferably, the transmission rod and the stirring fan blades are in an integrated structure, a movable groove is arranged at one side of the stirring fan blades at the rear end of the second top block, the rear end of the second top block extends to the inner side of the movable groove, a connecting spring is arranged at the inner side of the movable groove in front of the second top block, and the second top block is movably connected with the stirring fan blades through the connecting spring.
[0011] Preferably, the stirring seat and the first top block are in an integrated structure, the opposite surfaces of the first top block and the second top block are both inclined surfaces, and the first top block and the second top block are attached through the inclined surfaces.
[0012] Preferably, the opposite surfaces of the second top block and the stirring rod are respectively provided with a tooth block and a transmission gear at the inner wall of the second top block and the bottom end of the stirring rod, and the tooth block and the transmission gear are in meshing engagement.
[0013] Preferably, a pesticide detection card is arranged at the inner side of the collecting groove, a feeding port is arranged at the bottom end of the stirring seat above the collecting groove, a filter screen is arranged at the inner side of the feeding port, a connecting pipe is arranged at the bottom end of the feeding port, the bottom end of the connecting pipe extends to the inner side of the collecting groove, and control valves are arranged at the inner sides of the feeding port and the discharge port.
[0014] The utility model discloses the beneficial effects of:
[0015] The goji residue detection device can detect different batches of goji through the multiple stirring seats, and when the transmission rod rotates, the second top block on the two sides of the transmission rod is in contact with the first top block, so that the second top block slides on the inner side of the stirring fan blade, and the second top block is in mesh with the transmission gear at the bottom end of the stirring fan blade, thereby driving the stirring rod to rotate in the sliding process of the second top block, and the goji is fully stirred through the transmission rod, the stirring fan blade and the stirring rod inside the stirring seat, so that the water and the pesticide on the surface of the goji are mixed. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The overall structure of the utility model is shown;
[0017] Figure 2 The overall structure of the utility model is shown;
[0018] Figure 3 The overall structure of the utility model is shown;
[0019] Figure 4 The overall structure of the utility model is shown.
[0020] BRIEF DESCRIPTION OF DRAWINGS: 1, device shell; 2, device top cover; 3, operation panel; 4, collection groove; 5, display lamp; 6, discharge port; 7, stirring seat; 8, stirring top cover; 9, transmission rod; 10, stirring rod; 11, tooth block; 12, first top block; 13, second top block; 14, movable groove; 15, transmission gear; 16, feed inlet; 17, connecting spring; 18, stirring fan blade. DETAILED DESCRIPTION
[0021] The utility model will be further explained in connection with the drawings and examples.
[0022] Please refer to Figures 1-4The utility model provides a technical scheme: gordonii pesticide residue detection device with pricking block, including device shell 1, the top of device shell 1 is equipped with device top cover 2, the front of device top cover 2 is equipped with operating panel 3, the downside of device top cover 2 is located the inside of device shell 1 and is equipped with agitator seat 7, the downside of agitator seat 7 is located the outside of device shell 1 bottom and is equipped with collecting tank 4, the front of collecting tank 4 is equipped with display lamp 5 and discharge gate 6 in proper order, the top of agitator seat 7 is equipped with agitator top cover 8, the downside of agitator top cover 8 is located the inside of agitator seat 7 and is equipped with transmission rod 9, both sides of transmission rod 9 are equipped with agitator vane 18, one side of agitator vane 18 is equipped with second top block 13, one end of second top block 13 is located the inner wall of agitator seat 7 and is equipped with first top block 12, the rear of second top block 13 is located the inside of agitator vane 18 and is equipped with stirring rod 10, the inside of collecting tank 4 is equipped with pesticide detection card, the top of collecting tank 4 is located the bottom of agitator seat 7 and is equipped with feeding port 16, the inside of feeding port 16 is equipped with filter screen, the bottom of feeding port 16 is equipped with connecting pipe, the bottom of connecting pipe extends to the inside of collecting tank 4, the inside of feeding port 16 and discharge gate 6 is equipped with control valve, and then device top cover 2 is opened, then the agitator top cover 8 of agitator seat 7 top is opened, water and gordonii are put into the inside of agitator seat 7, power is connected, and the device is started, and through the transmission rod 9, agitator vane 18 and stirring rod 10 of the inside of agitator seat 7, gordonii is fully stirred, so that water and pesticide on the surface of gordonii are mixed;
[0023] Please refer to Figures 2-3 In the embodiment, the rear end of device top cover 2 is located the inside of device shell 1 and is equipped with hinge, device shell 1 and device top cover 2 are connected through hinge, the inside of operating panel 3 is equipped with control chip, operating panel 3 and device shell 1 are electrically connected through control chip, the downside of transmission rod 9 is located the inside of agitator seat 7 and is equipped with servo motor, the bottom of transmission rod 9 extends to the output end of servo motor top, transmission rod 9 and servo motor are connected through shaft coupling, and then the device is controlled through operating panel 3;
[0024] Please refer to Figures 2-4In the embodiment, the transmission rod 9 and the stirring blade 18 are integrated, the rear end of the second top block 13 is provided with a movable slot 14 on one side of the stirring blade 18, the rear end of the second top block 13 extends to the inner side of the movable slot 14, the front of the second top block 13 is provided with a connecting spring 17 on the inner side of the movable slot 14, the second top block 13 is movably connected with the stirring blade 18 through the connecting spring 17, the stirring seat 7 is integrated with the first top block 12, the opposite surfaces of the first top block 12 and the second top block 13 are both inclined surfaces, the first top block 12 and the second top block 13 are attached through the inclined surfaces, the opposite surfaces of the second top block 13 and the stirring rod 10 are respectively provided with a tooth block 11 and a transmission gear 15 on the inner wall of the second top block 13 and the bottom end of the stirring rod 10, the tooth block 11 and the transmission gear 15 are meshed with each other, so that when the transmission rod 9 rotates, the second top block 13 on both sides of the transmission rod 9 contacts the first top block 12, the second top block 13 slides on the inner side of the stirring blade 18, and the second top block 13 and the transmission gear 15 at the bottom end of the stirring blade 18 are meshed with each other, so that the stirring rod 10 is driven to rotate in the sliding process of the second top block 13.
[0025] In operation, the device cover 2 is opened, then the stirring cover 8 at the top end of the stirring seat 7 is opened, water and wolfberry are put into the inner side of the stirring seat 7, the power is turned on, the device is started, when the transmission rod 9 rotates, the second top block 13 on both sides of the transmission rod 9 contacts the first top block 12, the second top block 13 slides on the inner side of the stirring blade 18, and the second top block 13 and the transmission gear 15 at the bottom end of the stirring blade 18 are meshed with each other, so that the stirring rod 10 is driven to rotate in the sliding process of the second top block 13, the wolfberry is fully stirred by the transmission rod 9, the stirring blade 18 and the stirring rod 10 in the inner side of the stirring seat 7, the water on the surface of the wolfberry is mixed with the pesticide, and the mixed water is transmitted to the collection tank 4 through the feed inlet 16 for pesticide detection.
[0026] Through the above steps, different batches of wolfberry can be separated and detected by providing a plurality of stirring seats 7, the wolfberry is fully stirred by the transmission rod 9, the stirring blade 18 and the stirring rod 10 in the inner side of the stirring seat 7, the water on the surface of the wolfberry is mixed with the pesticide, the problem that the existing pesticide residue device simply relies on ordinary stirring frame to stir and needs a long time to wash out the surface pesticide, reducing the detection efficiency, and the pesticide residue device can only detect the same batch of wolfberry, and when different batches of wolfberry are detected, the water after washing the wolfberry will pollute each other, causing deviation of the detection result.
Claims
1. A device for detecting pesticide residues in wolfberry with thorns, comprising a device housing (1), characterized in that: The top of the device housing (1) is provided with a device top cover (2), the front end of the device top cover (2) is provided with an operation panel (3), the bottom of the device top cover (2) is provided with a stirring seat (7) located inside the device housing (1), the bottom of the stirring seat (7) is provided with a collection trough (4) located outside the bottom end of the device housing (1), the front end of the collection trough (4) is provided with an indicator light (5) and a discharge port (6) in sequence, the top of the stirring seat (7) is provided with a stirring top cover (8), the bottom of the stirring top cover (8) is provided with a transmission rod (9) located inside the stirring seat (7), both sides of the transmission rod (9) are provided with stirring blades (18), one side of the stirring blades (18) is provided with a second top block (13), one end of the second top block (13) is provided with a first top block (12) located inside the stirring seat (7), and the rear of the second top block (13) is provided with a stirring rod (10) located inside the stirring blades (18).
2. The wolfberry pesticide residue detection device with thorns according to claim 1, characterized in that: The rear end of the device top cover (2) is provided with a hinge on the inner side of the device housing (1). The device housing (1) and the device top cover (2) are connected by the hinge. The inner side of the operation panel (3) is provided with a control chip. The operation panel (3) and the device housing (1) are electrically connected by the control chip.
3. The wolfberry pesticide residue detection device with thorns according to claim 1, characterized in that: A servo motor is located on the inner side of the stirring base (7) below the transmission rod (9). The bottom end of the transmission rod (9) extends to the output end of the top of the servo motor. The transmission rod (9) and the servo motor are connected by a coupling.
4. The wolfberry pesticide residue detection device with thorns according to claim 1, characterized in that: The transmission rod (9) and the stirring blade (18) are an integral structure. The rear end of the second top block (13) is provided with a movable groove (14) on one side of the stirring blade (18). The rear end of the second top block (13) extends to the inner side of the movable groove (14). The front of the second top block (13) is provided with a connecting spring (17) on the inner side of the movable groove (14). The second top block (13) is movably connected to the stirring blade (18) through the connecting spring (17).
5. The wolfberry pesticide residue detection device with thorns according to claim 1, characterized in that: The stirring base (7) and the first top block (12) are an integral structure. The opposite surfaces of the first top block (12) and the second top block (13) are both inclined surfaces, and the first top block (12) and the second top block (13) are attached together by the inclined surfaces.
6. The wolfberry pesticide residue detection device with thorns according to claim 1, characterized in that: The opposing surfaces of the second top block (13) and the stirring rod (10) are located on the inner wall of the second top block (13) and the bottom end of the stirring rod (10) are provided with a toothed block (11) and a transmission gear (15), and the toothed block (11) and the transmission gear (15) mesh with each other.
7. The wolfberry pesticide residue detection device with thorns according to claim 1, characterized in that: The inner side of the collection tank (4) is equipped with a pesticide detection card. The upper part of the collection tank (4) is located at the bottom of the stirring seat (7) and is equipped with a feed inlet (16). The inner side of the feed inlet (16) is equipped with a filter screen. The bottom of the feed inlet (16) is equipped with a connecting pipe. The bottom of the connecting pipe extends through to the inner side of the collection tank (4). The inner sides of the feed inlet (16) and the discharge outlet (6) are equipped with control valves.