Tobacco plant inspection treatment device
By designing a tobacco sample inspection and processing device, the automated cutting and multiple rinsing of tobacco samples were realized, solving the problem of excessive time caused by manual processing and improving the accuracy of experiments.
Patent Information
- Application Number
- CN202511064018.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2025-10-28
AI Technical Summary
In existing technologies, tobacco sample processing is mostly done manually, which leads to excessively long processing times when testing large samples, affecting the growth of pathogens and reducing experimental accuracy.
Design a tobacco sample testing and processing device, including a feeding platform, a cutting component, an alcohol rinsing tank, a mercury rinsing tank, and a sterile water rinsing tank. Through automated cutting and multiple rinsing, it achieves efficient processing of tobacco sample.
This improved the efficiency of tobacco sample processing, ensured the stability of the pathogen growth environment, and enhanced the accuracy of experiments.
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Figure CN120846769A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of tobacco processing devices, and in particular to a tobacco inspection and processing device. Background Technology
[0002] In recent years, with the adjustment of planting structure, limited land rotation, and the widespread application of seedling transplanting under plastic film, the obstacles of continuous cropping have become increasingly serious. In addition, abnormal climate changes, variety resistance problems, and lack of healthy cultivation techniques have led to the deterioration of the soil rhizosphere ecological environment in some tobacco-growing areas. Soil-borne diseases, mainly tobacco Fusarium root rot and black shank, have gradually become more severe, resulting in serious losses in tobacco planting.
[0003] To clarify the species structure of the pathogen causing Fusarium root rot in tobacco, samples were collected from tobacco plants exhibiting typical Fusarium root rot symptoms. Small pieces of fresh tissue from the boundary between diseased and healthy tissue were cut, disinfected sequentially with alcohol and mercury solutions, rinsed three times with sterile water, and the remaining moisture on the tissue surface was blotted dry with sterile filter paper. The tissue was then evenly placed in PDA medium and incubated at 28°C for 3-5 days. After colonies grew, edge colonies were picked and purified in PDA medium before the pathogen species were identified.
[0004] Currently, tobacco sample processing is mostly done manually, with researchers sequentially processing multiple tobacco plants. This method is suitable for small-sample tests, but for large-sample tests, a large number of tobacco plants need to be processed, and the processing time can easily affect the growth of pathogens inside the tobacco plants, thus affecting the accuracy of the experiment. Summary of the Invention
[0005] This invention provides a tobacco plant testing and processing device, which aims to improve the processing efficiency of tobacco plant samples required for experiments.
[0006] This invention provides a tobacco sample inspection and processing device, including a feeding platform. A cutting component is provided on one side of the feeding platform. The feeding platform is connected to a platform driving component for moving the feeding platform closer to the cutting component. The cutting component is used to cut the tobacco sample on the feeding platform. An alcohol rinsing tank is provided on one side of the cutting component. A cleaning conveyor is provided on one side of the alcohol rinsing tank. Multiple nozzles are provided on the upper side of the cleaning conveyor. A mercury rinsing tank is provided on one side of the cleaning conveyor. Multiple sterile water rinsing tanks are provided on one side of the mercury rinsing tank.
[0007] Based on the above, in one possible implementation, the cutting component includes:
[0008] The cutter includes multiple blades arranged in an alternating pattern, and the cutter is connected to a cutting electric actuator for moving the cutter toward the feeding table.
[0009] Based on the above, in one possible implementation, the platform driving component includes:
[0010] It includes a feed platform drive screw that is threadedly connected to the feed platform, and the feed platform drive screw is connected to a drive component for rotating the feed platform drive screw.
[0011] In one possible implementation, based on the above, the alcohol feeding assembly includes an alcohol feeding net located inside the alcohol rinsing tank. The side of the alcohol feeding net closest to the cleaning conveyor network is rotatably connected to the side wall of the adjacent alcohol rinsing tank. The side of the alcohol feeding net furthest from the cleaning feeding net is connected to an alcohol feeding push rod for moving the connected alcohol feeding net above the cleaning conveyor network. The mercury feeding assembly includes a mercury feeding net located inside the mercury rinsing tank. The side of the mercury feeding net closest to the adjacent sterile water rinsing tank is rotatably connected to the side wall of the adjacent mercury rinsing tank. The side of the mercury feeding net furthest from the adjacent sterile water rinsing tank is connected to a mercury feeding push rod for moving the connected mercury feeding net above the adjacent sterile water rinsing tank.
[0012] In light of the above, in one possible implementation, each of the sterile water rinsing tanks is equipped with a water feeding component for moving the internal tobacco stalks out of the current sterile water rinsing tank and to one side.
[0013] In one possible implementation, based on the above, the water feeding assembly includes a water feeding net located inside the sterile water rinsing tank. One side of the water feeding net is rotatably connected to the side wall of the sterile water rinsing tank. A feeding push rod is connected to the side of the water feeding net away from the side wall of the sterile water rinsing tank. The feeding push rod is connected to a feeding motor via a feeding rocker arm for driving the feeding push rod to rotate on the upper side of the sterile water rinsing tank.
[0014] Based on the above, in one possible implementation, the driving component is configured as a drive motor.
[0015] In one possible implementation, based on the above, the driving component includes a driving rack connected to the cutting electric push rod. A driving gear meshes with one side of the driving rack. A driving sprocket is fixedly connected to the driving gear. A driven sprocket is connected to the driving sprocket via a driving chain. The driven sprocket is connected to the driving screw and drives the driving screw to rotate. The cutting table is provided with a feeding plate for placing tobacco blocks. Springs are connected to the opposite side walls of the feeding plate to drive the feeding plate to move along the moving direction of the feeding table.
[0016] In one possible implementation, based on the above, a cutter sleeve is slidably fitted onto the outside of the cutter, the cutter sleeve is connected to the cutting electric push rod via a compression spring, and a guide post is fixedly connected to the feeding platform for abutting against the side wall of the cutter sleeve.
[0017] The tobacco plant inspection and processing device provided by this invention, compared with the prior art:
[0018] It can automatically cut tobacco samples and perform detailed processing such as alcohol rinsing, cleaning, mercury rinsing, and sterile water rinsing on the tobacco sample blocks after cutting. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of Example 1 of the present application;
[0020] Figure 2 This is a schematic diagram of the display platform driving assembly according to Embodiment 1 of this application;
[0021] Figure 3 This is a schematic diagram showing the connection relationship between the mercury rinsing tank and the mercury feeding assembly in Embodiment 1 of this application;
[0022] Figure 4 This is a schematic diagram showing the connection relationship between the feeding platform and the cutting assembly in Embodiment 2 of this application;
[0023] Figure 5 This is a schematic diagram showing the connection relationship between the drive screw and the drive component in an embodiment of this application.
[0024] 01. Feeding platform; 011. Rollers; 012. Feeding plate; 013. Spring; 014. Guide post;
[0025] 02. Cutting assembly; 021. Cutting table; 022. Cutting blade; 023. Cutting plate; 024. Cutting electric actuator; 025. Cutting blade sleeve;
[0026] 03. Material platform drive assembly; 031. Drive slide rail; 032. Drive block; 033. Drive screw; 034. Drive component; 0341. Drive motor; 0342. Drive reducer; 0343. Drive rack; 0344. Drive gear; 0345. Drive sprocket; 0346. Driven sprocket; 0347. Chain; 0348. Protective box;
[0027] 04. Alcohol rinsing tank;
[0028] 05. Feeding plate; 051. Feeding electric actuator;
[0029] 06. Clean the conveyor network;
[0030] 07. Cleaning box; 071. Spray nozzle;
[0031] 08. Sewage tank;
[0032] 09. Mercury rinsing tank;
[0033] 10. Sterile water rinsing tank;
[0034] 11. Sample table;
[0035] 12. Alcohol feeding assembly; 121. Alcohol feeding screen; 122. Alcohol electric actuator;
[0036] 13. Mercury feeding assembly; 131. Mercury feeding screen; 132. Mercury electric actuator;
[0037] 14. Water feeding assembly; 141. Water feeding net; 142. Feeding push rod; 143. Feeding rocker arm; 144. Feeding motor; 145. Feeding reducer. Detailed Implementation
[0038] To make the technical problems to be solved, the technical solutions, and the beneficial effects of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the present invention.
[0039] Please refer to the following: Figures 1 to 5 The present invention will describe a tobacco plant inspection and processing device.
[0040] Example 1
[0041] Reference Figure 1 , Figure 2 and Figure 3A tobacco processing and inspection device includes a feeding platform 01, with rollers 011 installed at each corner of the bottom of the feeding platform 01. A cutting assembly 02 is provided on one side of the feeding platform 01, and a platform drive assembly 03 is connected to the bottom of the feeding platform 01 for moving the feeding platform 01 toward the cutting assembly 02.
[0042] An alcohol rinsing tank 04 is provided on one side of the feeding platform 01, and the alcohol rinsing tank 04 contains 75% alcohol. A feeding plate 05 is provided on the upper side of the feeding platform 01 away from the alcohol rinsing tank 04. A feeding electric actuator 051 is provided on the side of the feeding plate 05 away from the feeding platform 01 to move the feeding plate 05 closer to the alcohol rinsing tank 04.
[0043] A cleaning conveyor belt 06 is provided on one side of the alcohol rinsing tank 04, and the length direction of the cleaning conveyor belt 06 is parallel to the moving direction of the discharge platform 01. A cleaning box 07 is provided on the upper side of the cleaning conveyor belt 06, and multiple nozzles 071 are provided on the side of the cleaning box 07 near the cleaning conveyor belt 06. A wastewater tank 08 is provided on the lower side of the cleaning conveyor belt 06 to collect the water sprayed from the nozzles 071.
[0044] A mercury rinsing tank 09 is located on the side of the cleaning conveyor network 06 away from the alcohol rinsing tank 04. The mercury rinsing tank 09 contains a 0.1% mercury solution. Three sterile water rinsing tanks 10 are arranged along the length of the cleaning conveyor network 06, away from the mercury rinsing tank 09 and also away from adjacent sterile water rinsing tanks 10. A sample table 11 is located on the side of the sterile water rinsing tank 10 away from the mercury rinsing tank 09 and also away from adjacent sterile water rinsing tanks 10.
[0045] When tobacco plants need to be processed, they are placed on the feeding platform 01. The platform drive assembly 03 then moves the feeding platform 01 to one side of the cutting assembly 02, which then cuts the tobacco plants on the feeding platform 01. After cutting, the feeding plate 05 is moved by the feeding electric push rod 051, pushing the tobacco plant blocks on the feeding platform 01 into the alcohol rinsing tank 04. The tobacco plant blocks inside the alcohol rinsing tank 04 are then placed on the cleaning conveyor belt 06. As the cleaning conveyor belt 06 moves the tobacco plant blocks, the nozzles 071 spray and wash them. Wastewater generated during the spraying process flows into the wastewater tank 08.
[0046] The tobacco stalks on the cleaning conveyor belt 06 then fall into the mercury rinsing tank 09. The tobacco stalks inside the mercury rinsing tank 09 are then rinsed sequentially through three sterile water rinsing tanks 10. After rinsing, the tobacco stalks are placed on the sample stage 11, thus completing the processing of the eyeball sample. This improves the processing efficiency of the tobacco stalk sample.
[0047] The cutting assembly 02 includes a cutting table 021, with a cutter 022 located on its lower side. In this embodiment, the cutting table 021 is fishbone shaped, and when the feeding platform 01 moves to the lower side of the cutting table 021, the cutter 022 is positioned directly above the feeding platform 01. A cutting plate 023 is fixedly connected to the upper side of the cutter 022, and the cutting plate 023 is horizontally arranged. A vertically arranged cutting electric push rod 024 is provided on the upper side of the cutting table 021, and the piston rod of the cutting electric push rod 024 passes through the side wall of the cutting table 021 and is slidably connected to the side wall of the cutting table 021.
[0048] When it is necessary to cut the tobacco blocks, the feeding platform 01 is moved to the lower side of the cutting platform 021, and then the cutting electric push rod 024 is activated. The cutting electric push rod 024 drives the cutting plate 023 and the cutting blade 022 to move downward, thereby realizing the cutting process of the tobacco blocks.
[0049] The material table cutting assembly 02 includes a drive slide rail 031 located below the feeding table 01 and extending to the lower side of the cutting table 021. A drive block 032 is fixedly connected to one side wall of the feeding table 01 near the drive slide rail 031. The drive block 032 is inserted into the drive slide rail 031 and slidably connected to the drive slide rail 031 along its length. A drive screw 033 is threaded through and threaded onto the drive block 032. The drive screw 033 is located inside the drive slide rail 031 and is arranged along its length. A drive component 034 is connected to the drive screw 033 to drive it to rotate. In this embodiment, the drive component 034 is a drive motor 0341. The drive motor 0341 is connected to the drive screw 033 through a drive reducer 0342 and drives the drive screw 033 to rotate.
[0050] After placing the tobacco blocks on the feeding platform 01, the drive motor 0341 is turned on. The drive motor 0341 drives the drive screw 033 to rotate via the drive reducer 0342. During the rotation of the drive screw 033, the drive block 032 moves, which in turn moves the feeding platform 01, allowing it to move to the underside of the cutting table 021. This allows the cutter 022 to cut the tobacco blocks on the feeding platform 01. After cutting, the drive motor 0341 moves the feeding platform 01 back to its initial position. Then, the feeding electric push rod 051 moves the feeding plate 05, pushing the cut tobacco blocks into the alcohol rinsing tank 04.
[0051] An alcohol feeding component 12 is provided on the side of the alcohol rinsing tank 04 away from the cleaning conveyor network 06. The alcohol feeding component 12 is used to drive the tobacco blocks inside the alcohol rinsing tank 04 to move towards the cleaning conveyor network 06.
[0052] The alcohol feeding assembly 12 includes an alcohol feeding screen 121 located inside the alcohol rinsing tank 04. The side of the alcohol feeding screen 121 closest to the cleaning conveyor belt 06 is rotatably connected to the upper sidewall of the adjacent alcohol rinsing tank 04. An alcohol electric actuator 122 is provided on the side of the alcohol rinsing tank 04 away from the cleaning conveyor belt 06. The piston rod of the alcohol electric actuator 122 is gradually inclined upwards from the side closest to the alcohol rinsing tank 04 towards the side away from the alcohol rinsing tank 04. The upper end of the alcohol electric actuator 122 is connected to the adjacent alcohol feeding screen 121.
[0053] When the tobacco stalks are pushed into the alcohol rinsing tank 04, they fall into the alcohol feeding net 121. After the alcohol rinsing is completed, the alcohol electric actuator 122 is activated. The alcohol electric actuator 122 drives one side of the alcohol feeding net 121 to rotate upward. Then, the alcohol feeding net 121 drives the tobacco stalks inside the alcohol rinsing tank 04 to rotate upward, so that the tobacco stalks can move towards the cleaning conveyor net 06. This makes it easier for the staff to move the tobacco stalks inside the alcohol rinsing tank 04 onto the cleaning conveyor net 06.
[0054] A mercury feeding assembly 13 is provided on the side of the mercury rinsing tank 09 away from the adjacent sterile water rinsing tank 10.
[0055] The mercury loading assembly 13 includes a mercury loading screen 131 located inside the mercury rinsing tank 09. The side of the mercury loading screen 131 closest to the sterile water rinsing tank 10 is rotatably connected to the upper end of the side wall of the adjacent mercury rinsing tank 09. A mercury electric actuator 132 is provided on the side of the mercury rinsing tank 09 away from the sterile water rinsing tank 10. The piston rod of the mercury electric actuator 132 is gradually inclined upwards from the side closest to the mercury rinsing tank 09 towards the side away from the mercury rinsing tank 09. The upper end of the mercury electric actuator 132 is connected to the adjacent mercury loading screen 131.
[0056] When the tobacco stalk block is pushed into the mercury rinsing tank 09, it falls into the mercury feeding net 131. After the mercury rinsing is completed, the mercury electric actuator 132 is activated. The mercury electric actuator 132 drives one side of the mercury feeding net 131 to rotate upward. Then, the mercury feeding net 131 drives the tobacco stalk block inside the mercury rinsing tank 09 to rotate upward, so that the tobacco stalk block can move towards the sterile water rinsing tank 10. This makes it easier for the staff to move the tobacco stalk block inside the mercury rinsing tank 09 into the sterile water rinsing tank 10.
[0057] Each sterile water rinsing tank 10 is equipped with a water feeding assembly 14 on the side away from the cleaning conveyor network 06.
[0058] The water feeding assembly 14 includes a water feeding net 141 located inside each sterile water rinsing tank 10. The side of each water feeding net 141 closest to the sample stage 11 is rotatably connected to the upper side of the side wall of the adjacent sterile water rinsing tank 10. A feeding push rod 142 is connected to the side of each water feeding net 141 away from the side wall of the connected sterile water rinsing tank 10. A feeding rocker arm 143 is connected to the end of each feeding push rod 142 away from the cleaning conveyor net 06. Each feeding rocker arm 143 is perpendicular to the feeding push rod 142. A feeding motor 144 is provided on one side of each feeding rocker arm 143. Each feeding motor 144 is connected to the adjacent feeding rocker arm 143 through a feeding reducer 145.
[0059] When it is necessary to remove the tobacco stalks inside the current sterile water rinsing tank 10, the feeding motor 144 is turned on. The feeding motor 144 drives the feeding rocker arm 143 to rotate through the feeding reducer 145. During the rotation of the feeding rocker arm 143, the feeding push rod 142 is driven to rotate. During the rotation of the feeding push rod 142, the water feeding net 141 and the tobacco stalks inside the water feeding net 141 are moved.
[0060] The implementation principle of Example 1 is as follows: the tobacco block is placed on the feeding platform 01, and then the feeding platform 01 is moved to the lower side of the cutter 022 by the drive belt motor. The cutting electric push rod 024 is turned on to drive the cutter 022 to cut the tobacco block. After the cutting is completed, the tobacco block is moved into the alcohol rinsing tank 04 by the feeding plate 05.
[0061] The tobacco stalks then pass through an alcohol rinsing tank 04, a cleaning conveyor belt 06, a mercury rinsing tank 09, and three sterile water rinsing tanks 10 before being moved to the sample platform 11, thus completing the processing of the tobacco stalk blocks.
[0062] Example 2
[0063] Reference Figure 5 The difference between this embodiment and Embodiment 1 is that the driving component 034 includes a driving rack 0343 fixedly connected to the side of the cutting plate 023 away from the feeding table 01, and the driving rack 0343 is vertically arranged. A driving gear 0344 meshes with one side of the driving rack 0343, and a driving sprocket 0345 is fixedly connected to one side of the driving gear 0344. A driven sprocket 0346 is provided inside the driving rail opposite to the lower side of the driving sprocket 0345. The size of the driving sprocket 0345 is larger than the size of the driven sprocket 0346. The driven sprocket 0346 and the driving sprocket 0345 are fitted with the same chain 0347. One side of the driven sprocket 0346 is fixedly connected to the driving screw 033. The driving rack 0343, driving gear 0344, driving sprocket 0345, and chain 0347 are all covered with protective boxes 0348.
[0064] The feeding platform 01 is equipped with a feeding plate 012, which is T-shaped. A groove is provided on the top wall of the feeding platform 01 for the lower end of the feeding plate 012 to be inserted into, and the lower end of the feeding plate 012 can move along the length of the drive slide rail 031 within the groove. Springs 013 are fixedly connected to both side walls of the feeding plate 012 along the length of the drive slide rail 031. The end of each spring 013 away from the connected feeding plate 012 is fixedly connected to the inner wall of the corresponding groove. The upper T-shaped side of the feeding plate 012 can cover the groove on the feeding platform 01.
[0065] When it is necessary to cut the tobacco block on the feeding platform 01, the tobacco block is placed on the feeding platform 01. Then, the cutting electric actuator 024 drives the cutting plate 023 to move downward. During the downward movement of the cutting plate 023, the driving rack 0343 moves. During the movement of the driving rack 0343, the driving gear 0344 rotates. During the rotation of the driving gear 0344, the driving sprocket 0345 rotates. During the rotation of the driving sprocket 0345, the chain 0347 rotates. During the rotation of the chain 0347, the driven sprocket 0346 rotates. During the rotation of the driven sprocket 0346, the driving screw 033 rotates, thereby moving the feeding platform 01.
[0066] When the feeding platform 01 moves directly below the cutter 022, the cutter 022 comes into contact with the tobacco block. As the cutting plate 023 continues to move downwards, it also drives the feeding platform 01 to continue moving. At this time, because the cutter 022 presses against the feeding plate 012 through the tobacco block, the feeding plate 012 becomes difficult to move further, thus pressing against the connected spring 013.
[0067] After the cutting is completed, the cutting plate 023 moves upward. At this time, the cutter 022 separates from the feeding plate 012, so that the feeding plate 012 can return to the initial position under the action of the spring 013. As the cutting plate 023 moves upward, the feeding table 01 gradually moves to the initial position, realizing the cutting process of the tobacco block on the feeding plate 012.
[0068] A cutter 022 sleeve is fitted on the outer side of the cutter 022, and the cutter 022 sleeve can slide vertically connected to the adjacent cutter 022 sidewall. The upper side of the cutter 022 sleeve is connected to the lower sidewall of the cutting plate 023 through multiple compression springs. A guide post 014 is fixedly connected to each corner of the upper sidewall of the feeding platform 01. The guide posts 014 are vertically arranged, and each guide post 014 can abut against the lower sidewall of the cutter 022 sleeve.
[0069] As the cutter 022 moves downward, the cutter 022 sleeve abuts against the guide post 014, making it difficult to move downward. This allows the cutter 022 to come into contact with the tobacco block and cut it. After the cutting is completed, as the cutting plate 023 moves upward, the cutter 022 sleeve moves downward under the action of the compression spring, causing the tobacco block attached to the cutter 022 to fall onto the feeding table 01 under the action of the cutter 022 sleeve.
[0070] The implementation principle of Example 2 is as follows: During the movement of the cutter 022, the cutting plate 023 drives the drive screw 033 to rotate. As the drive screw 033 rotates, it moves the feeding platform 01 to the underside of the cutter 022, allowing the cutter 022 to cut the tobacco blocks on the feeding platform 01. After cutting, the cutter 022 can scrape off the tobacco blocks attached to it. The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A tobacco plant inspection and processing device, characterized in that: The device includes a feeding platform (01), a cutting assembly (02) on one side of the feeding platform (01), a platform driving assembly (03) connected to the feeding platform (01) for moving the feeding platform (01) closer to the cutting assembly (02), the cutting assembly (02) for cutting the tobacco samples on the feeding platform (01), an alcohol rinsing tank (04) on one side of the cutting assembly (02), a cleaning conveyor net (06) on one side of the alcohol rinsing tank (04), a plurality of nozzles (071) on the upper side of the cleaning conveyor net (06), a mercury rinsing tank (09) on one side of the cleaning conveyor net (06), and a plurality of sterile water rinsing tanks (10) on one side of the mercury rinsing tank (09).
2. The tobacco plant inspection and processing device according to claim 1, characterized in that: The cutting assembly (02) includes a cutter (022), which includes multiple blades arranged in an alternating manner. The cutter (022) is connected to a cutting electric actuator (024) for moving the cutter (022) toward the feeding table (01).
3. The tobacco plant inspection and processing device according to claim 2, characterized in that: The platform drive assembly (03) includes a platform drive screw (033) threadedly connected to the feeding platform (01), and the platform drive screw (033) is connected to a drive member (034) for rotating the platform drive screw (033).
4. The tobacco plant inspection and processing device according to claim 1, characterized in that: The alcohol rinsing tank (04) is connected to an alcohol feeding assembly (12) for moving the tobacco stalks inside the alcohol rinsing tank (04) toward the direction of the cleaning conveyor network (06); the mercury rinsing tank (09) is connected to a mercury feeding assembly (13) for moving the tobacco stalks inside the mercury rinsing tank (09) toward the direction of the adjacent sterile water rinsing tank (10).
5. The tobacco plant inspection and processing device according to claim 4, characterized in that: The alcohol feeding assembly (12) includes an alcohol feeding net (121) located inside the alcohol rinsing tank (04). The side of the alcohol feeding net (121) closest to the cleaning conveyor network (06) is rotatably connected to the side wall of the adjacent alcohol rinsing tank (04). The side of the alcohol feeding net (121) furthest from the cleaning feeding network is connected to an alcohol feeding push rod (142) for moving the connected alcohol feeding net (121) upwards towards the cleaning conveyor network (06). The feeding assembly (13) includes a mercury feeding net (131) located inside the mercury rinsing tank (09). The mercury feeding net (131) is rotatably connected to the side wall of the adjacent mercury rinsing tank (09) on the side closest to the adjacent sterile water rinsing tank (10). The mercury feeding net (131) away from the adjacent sterile water rinsing tank (10) is connected to a mercury feeding push rod (142) for driving the connected mercury feeding net (131) to move upwards towards the adjacent sterile water rinsing tank (10).
6. The tobacco plant inspection and processing device according to claim 1, characterized in that: Each of the sterile water rinsing tanks (10) is equipped with a water feeding component (14) for moving the internal tobacco stalks out of the current sterile water rinsing tank (10) and moving them to one side.
7. The tobacco plant inspection and processing device according to claim 6, characterized in that: The water feeding assembly (14) includes a water feeding net (141) located inside the sterile water rinsing tank (10). One side of the water feeding net (141) is rotatably connected to the side wall of the sterile water rinsing tank (10). A feeding push rod (142) is connected to the side of the water feeding net (141) away from the side wall of the sterile water rinsing tank (10). The feeding push rod (142) is connected to a feeding motor (144) via a feeding rocker arm (143) for driving the feeding push rod (142) to rotate on the upper side of the sterile water rinsing tank (10).
8. The tobacco plant inspection and processing device according to claim 3, characterized in that: The driving component (034) is configured as a drive motor (0341).
9. The tobacco plant inspection and processing device according to claim 3, characterized in that: The driving component (034) includes a driving rack (0343) connected to the cutting electric push rod (024). A driving gear (0344) is meshed on one side of the driving rack (0343). A driving sprocket (0345) is fixedly connected to the driving gear (0344). The driving sprocket (0345) is connected to a driven sprocket (0346) through a driving chain (0347). The driven sprocket (0346) is connected to the driving screw (033) and drives the driving screw (033) to rotate. A feeding plate (012) for placing tobacco blocks is provided on the cutting table (021). Springs (013) are connected to the opposite side walls of the feeding plate (012) for driving the feeding plate (012) to move along the moving direction of the feeding table (01).
10. The tobacco plant inspection and processing device according to claim 3, characterized in that: The cutter (022) is slidably sleeved on the outside of the cutter (022), and the cutter (022) sleeve is connected to the cutting electric push rod (024) through a compression spring. The feeding table (01) is fixedly connected with a guide post (014) for abutting against the side wall of the cutter (022) sleeve.