Plant shampoo processing and cleaning system with effect of promoting thickening of fine hair

By designing an automated cleaning system, the problem of impurities, residues and floating objects needing manual salvage during plant cleaning in shampoo processing is solved, and efficient plant raw material cleaning and impurity separation is achieved, improving cleaning efficiency and purity.

CN223145458UActive Publication Date: 2025-07-25SICHUAN 村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村村
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Patent Information

Application Number
CN202421998348.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-07-25
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

During the existing shampoo processing, impurities, residues and floating objects need to be manually salvaged during plant cleaning, resulting in inefficiency.

Method used

An automated cleaning system including a cleaning barrel, a mixing mechanism, a salvage mechanism, a transmission mechanism and a transportation table is designed. Through the cooperation of the lifting assembly and the salvage assembly, the automatic cleaning of plant raw materials and the separation of impurities are realized.

Benefits of technology

It improves cleaning efficiency and raw material purity, ensures the independence and efficiency of cleaning and salvage operations, and reduces manual intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The plant shampoo processing and cleaning system comprises a cleaning barrel, a stirring mechanism, a fishing mechanism, a first driving part, a transmission mechanism, a conveying table and a mounting vertical plate, the cleaning barrel is provided with a first containing cavity, and an opening and a water outlet which are both communicated with the first containing cavity are formed in the cleaning barrel; the stirring mechanism is used for stirring the interior of the cleaning barrel, the fishing mechanism comprises a hoisting assembly and a fishing assembly, the hoisting assembly comprises a hoisting support and a filtering frame, the filtering frame is provided with a second containing cavity for containing plant raw materials, a driving part of the first driving part is connected with the first end of the hoisting support, and the second end of the hoisting support is connected with the filtering frame; the driving part can drive the hoisting support to drive the filtering frame to be movably installed in the first containing cavity in the first direction, the fishing assembly comprises a fishing net frame and a screw, the fishing net frame is movably connected to the screw in the second direction, and the screw is in transmission connection with the hoisting support through a transmission mechanism.
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Description

Technical Field

[0001] The utility model relates to the technical field of shampoo processing, in particular to a plant shampoo processing and cleaning system with the function of promoting the thickening of fine hair filaments. Background Technique

[0002] When plants used for shampoo processing are being cleaned, since the plants will carry soil or other impurities when picked, and during transportation, collisions between plants will produce residues. Therefore, when cleaning the plants, impurities, residues and other floating substances will float on the water surface. In order to prevent impurities, residues and other floating substances from mixing into the plants and affecting the extraction quality of the plants, during cleaning, it is necessary to fish out the impurities, residues and other floating substances. However, in the existing cleaning process, manual fishing of impurities, residues and other floating substances is required, which greatly reduces the plant cleaning efficiency. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a plant shampoo processing and cleaning system with the function of promoting the thickening of fine hair filaments, so as to solve the problems put forward in the above background technique.

[0004] To achieve the above purpose, the present disclosure provides a plant shampoo processing and cleaning system with the function of promoting the thickening of fine hair filaments, including a cleaning barrel, a stirring mechanism, a fishing mechanism, a first driving member, a transmission mechanism, a transportation platform and an installation vertical plate;

[0005] The installation vertical plate is located on one side of the transportation platform, the first driving member, the stirring mechanism, the fishing mechanism and the transmission mechanism are all installed on the installation vertical plate, and the cleaning barrel is arranged on the belt of the transportation platform;

[0006] The cleaning barrel has a first accommodation cavity, and an opening and a water outlet that are both communicated with the first accommodation cavity are formed on the cleaning barrel;

[0007] The stirring mechanism is used for stirring the interior of the cleaning barrel;

[0008] The fishing mechanism includes a hoisting assembly and a fishing assembly. The hoisting assembly includes a hoisting bracket and a filtering frame. The filtering frame has a second accommodation cavity for accommodating plant raw materials. The driving part of the first driving member is connected to the first end of the hoisting bracket, and the second end of the hoisting bracket is connected to the filtering frame. The driving part can drive the hoisting bracket to drive the filtering frame to be movably installed in the first accommodation cavity along a first direction;

[0009] The salvage assembly includes a salvage net frame and a screw rod. The salvage net frame is movably connected to the screw rod in the second direction. The salvage net frame is used for salvaging floating objects located at the top of the second accommodation cavity. The screw rod is drivingly connected to the lifting bracket through the transmission mechanism;

[0010] Wherein, the first direction is perpendicular to the second direction.

[0011] Optionally, the transmission mechanism includes a first bevel gear, a second bevel gear, a transmission rod, a driving sprocket, a driven sprocket, a chain and a positioning block. The lifting bracket includes two guide rails, two guide rods, a connecting rod and two first suspension rods. The salvage assembly further includes two mounting blocks, a moving block and a second suspension rod;

[0012] The positioning block, the first bevel gear, the two mounting blocks and the two guide rails are all mounted on the side of the mounting vertical plate close to the cleaning bucket;

[0013] The two guide rails are arranged at the same horizontal interval. The two guide rails are both provided with chutes extending in the first direction. The two first guide rods are respectively connected to both ends of the connecting rod and extend in the same direction. The two guide rods are respectively slidably connected to the corresponding chutes. One of the two first guide rods is configured as a rack rod, and the rack on the rack rod meshes with the first bevel gear;

[0014] The two first suspension rods are arranged at the same horizontal interval. The first ends of the two first suspension rods are connected to the connecting rod, and the second ends of the two first suspension rods are detachably connected to the filter frame;

[0015] One end of the transmission rod is sleeved with the driving sprocket, and the other end of the transmission rod is sleeved with the second bevel gear. The first bevel gear meshes with the second bevel gear;

[0016] The two mounting blocks are arranged at the same horizontal interval. The screw rod passes through the two mounting blocks, and the two ends of the screw rod are respectively rotatably connected to the two mounting blocks. The outer end of the screw rod is sleeved with the driven sprocket, and the chain is rotatably sleeved between the driving sprocket and the driven sprocket;

[0017] The moving block is located between the two mounting blocks. The moving block is slidably connected to the screw rod. One end of the second suspension rod is connected to the moving block, and the other end of the suspension rod is connected to the salvage net frame.

[0018] Optionally, the second suspension rod includes a first connecting member and a second connecting member;

[0019] The first connecting member includes a first section and a second section that are connected and in an L shape. One end of the first section is connected to the moving block, the other end of the first section is connected to one end of the second section, and a sliding hole is formed at the other end of the second section. The sliding hole penetrates the second section along the second direction;

[0020] One end of the second connecting member is connected to the fishing net frame, and the other end of the second connecting member is located in the sliding hole and can move in the sliding hole in the first direction.

[0021] Optionally, the fishing assembly further includes a limit nut. The second connecting member has an extension section extending out of the sliding hole, and an external thread is provided on the extension section. The limit nut is threadedly engaged with the extension section.

[0022] Optionally, an annular limit protrusion is formed on the outer side wall of the filter frame. The bottom surface of the annular limit protrusion is fitted with the top surface of the cleaning bucket. Two insertion portions are oppositely formed on the top surface of the annular limit protrusion, and a through hole is formed on each insertion portion. The through hole penetrates the insertion portion along the second direction;

[0023] Each first suspension rod includes a third section and a fourth section that are connected and in an L shape. One end of the third section is connected to the connecting rod, the other end of the third section is connected to one end of the fourth section, and the other end of the fourth section has an insertion section. Each insertion section is inserted and fitted with the corresponding through hole.

[0024] Optionally, the processing and cleaning system further includes a switching valve, a first collection bucket, and a second collection bucket;

[0025] The bottom of the cleaning bucket is in a funnel structure, an outlet is formed at the bottom of the funnel structure, and a plurality of support legs are provided at the bottom of the cleaning bucket;

[0026] The switching valve is configured as a ball valve. The first interface end of the switching valve is communicated with the outlet, the second interface end of the switching valve is communicated with the first collection bucket, and the third interface end of the switching valve is communicated with the second collection bucket;

[0027] The first collection bucket is used to collect the sediment in the cleaning liquid, and the second collection bucket is used to collect the cleaning liquid.

[0028] Optionally, the cleaning bucket is configured with a transparent material.

[0029] Optionally, the stirring mechanism includes a second driving member, a stirring shaft, and a plurality of stirring rods formed on the stirring shaft;

[0030] The second driving member is arranged at the top of the mounting vertical plate. The stirring shaft extends along the first direction, the upper end of the stirring shaft is connected to the driving shaft of the second driving member, and the lower end of the stirring shaft is connected to a plurality of the stirring rods.

[0031] Through the above technical solution, the stirring mechanism is installed on the mounting vertical plate, and can stir the plant raw materials and the cleaning liquid in the cleaning barrel during the cleaning process to ensure sufficient contact between the raw materials and the cleaning liquid and improve the cleaning effect. Moreover, through the cooperation between the hoisting assembly and the fishing assembly, the hoisting assembly includes a hoisting bracket and a filter frame. The filter frame has a second accommodation cavity for accommodating the plant raw materials to be cleaned. The driving part of the first driving member is connected to the hoisting bracket, so that the filter frame can move along the first direction (vertical direction) in the first accommodation cavity of the cleaning barrel to immerse in the cleaning liquid or be lifted out of the cleaning liquid. The fishing assembly includes a fishing net frame and a screw rod. The fishing net frame is used to catch the floating objects at the top of the second accommodation cavity. The fishing net frame moves along the second direction (horizontal direction) and is linked with the hoisting bracket through a transmission mechanism, so that the transmission of power and the coordination of actions can be realized, that is, the floating objects can be effectively removed during the lifting process of the filter frame. With such a design, on the one hand, the automatic cleaning of plant raw materials and impurity separation can be realized, and the cleaning efficiency and the purity of the raw materials can be improved. On the other hand, the independence and high efficiency of the cleaning and fishing operations can be ensured. Brief Description of the Drawings

[0032] Figure 1 is a three-dimensional view of a plant shampoo processing and cleaning system with the effect of promoting the thickening of fine hair strands provided by an exemplary embodiment of the present disclosure;

[0033] Figure 2 is Figure 1 a partially enlarged schematic view of part A in

[0034] Figure 3 is a three-dimensional view of a fishing mechanism of a plant shampoo processing and cleaning system with the effect of promoting the thickening of fine hair strands provided by an exemplary embodiment of the present disclosure.

[0035] In the figure: 10, cleaning bucket; 11, first accommodating cavity; 12, opening; 13, water outlet; 20, stirring mechanism; 21, second driving member; 22, stirring shaft; 23, stirring rod; 30, fishing mechanism; 31, hoisting assembly; 311, hoisting bracket; 3111, guide rail; 3112, guide rod; 3113, connecting rod; 3114, first suspension rod; 3115, third section; 3116, fourth section; 3117, chute; 312, filter frame; 313, second accommodating cavity; 314, annular limiting projection; 315, insertion portion; 32, fishing assembly; 321, fishing net frame; 322, screw; 323, mounting block; 324, moving block; 325, second suspension rod; 326, first connecting member; 3261, first section; 3262, second section; 327, second connecting member; 328, sliding hole; 329, limiting nut; 40, first driving member; 50, transmission mechanism; 51, first bevel gear; 52, second bevel gear; 53, transmission rod; 54, driving sprocket; 55, driven sprocket; 56, chain; 57, positioning block; 60, belt; 70, mounting vertical plate; 80, on-off valve; 81, first interface end; 82, second interface end; 83, third interface end; 90, support leg. Specific embodiments

[0036] The following will describe in detail the specific embodiments of the present disclosure with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only for the purpose of illustration and explanation of the present disclosure, and are not intended to limit the present disclosure.

[0037] In the description of the present disclosure, unless otherwise stated, "inside and outside" refer to the inside and outside of the corresponding component contour. In addition, the terms "first", "second", etc. are used to distinguish one element from another, and do not have sequentiality and importance.

[0038] In the description of the present disclosure, it should also be noted that, unless otherwise clearly defined and limited, the terms "set", "connected", "coupled", "installed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present disclosure can be understood according to specific circumstances.

[0039] As Figures 1 to 3As shown in the figure, the present disclosure provides a processing and cleaning system for a plant shampoo with the function of promoting the thickening of fine hair strands, including a cleaning barrel 10, a stirring mechanism 20, a fishing mechanism 30, a first driving member 40, a transmission mechanism 50, a transportation table, and a mounting vertical plate 70. The mounting vertical plate 70 is located on one side of the transportation table. The first driving member 40, the stirring mechanism 20, the fishing mechanism 30, and the transmission mechanism 50 are all mounted on the mounting vertical plate 70. The cleaning barrel 10 is arranged on the belt 60 of the transportation table. The cleaning barrel 10 has a first accommodating cavity 11, and an opening 12 and a water outlet 13 that are both communicated with the first accommodating cavity 11 are formed on the cleaning barrel 10. The stirring mechanism 20 is used for stirring the inside of the cleaning barrel 10. The fishing mechanism 30 includes a hoisting assembly 31 and a fishing assembly 32. The hoisting assembly 31 includes a hoisting bracket 311 and a filtering frame 312. The filtering frame 312 has a second accommodating cavity 313 for accommodating plant raw materials. The driving part of the first driving member 40 is connected to the first end of the hoisting bracket 311, and the second end of the hoisting bracket 311 is connected to the filtering frame 312. The driving part can drive the hoisting bracket 311 to drive the filtering frame 312 to be movably installed in the first accommodating cavity 11 along a first direction. The fishing assembly 32 includes a fishing net frame 321 and a screw 322. The fishing net frame 321 is movably connected to the screw 322 along a second direction. The fishing net frame 321 is used for fishing floating objects located at the top of the second accommodating cavity 313. The screw 322 is in transmission connection with the hoisting bracket 311 through the transmission mechanism 50. Among them, the first direction is perpendicular to the second direction.

[0040] Through the above technical solution, the stirring mechanism 20 is mounted on the mounting vertical plate 70, and can stir the plant raw materials and the cleaning liquid in the cleaning barrel 10 during the cleaning process to ensure full contact between the raw materials and the cleaning liquid and improve the cleaning effect. Moreover, through the cooperation between the provided hoisting assembly 31 and the fishing assembly 32, the hoisting assembly 31 includes a hoisting bracket 311 and a filtering frame 312. The filtering frame 312 has a second accommodating cavity 313 for accommodating the plant raw materials to be cleaned. The driving part of the first driving member 40 is connected to the hoisting bracket 311, so that the filtering frame 312 can move along the first direction (vertical direction) in the first accommodating cavity 11 of the cleaning barrel 10 to immerse in or lift out of the cleaning liquid. The fishing assembly 32 includes a fishing net frame 321 and a screw 322. The fishing net frame 321 is used to capture floating objects at the top of the second accommodating cavity 313 (here referring to above the cleaning liquid). The fishing net frame 321 moves along the second direction (horizontal direction) and is linked with the hoisting bracket 311 through the transmission mechanism 50, which can realize the transmission of power and the coordination of actions, that is, the floating objects can be effectively removed during the lifting process of the filtering frame 312. Designed in this way, on the one hand, the automatic cleaning of plant raw materials and impurity separation can be realized, which can improve the cleaning efficiency and the purity of the raw materials. On the other hand, the independence and high efficiency of the cleaning and fishing operations can be ensured.

[0041] Among them, the cleaning bucket 10 serves as a cleaning container for plant raw materials and has a first accommodating cavity 11 for accommodating cleaning liquid and plant raw materials. An opening 12 and a water outlet 13 are provided thereon to facilitate the entry and exit of plant raw materials and the discharge of cleaning liquid.

[0042] Among them, the first driving member 40 is used to drive the vertical movement of the hoisting bracket 311 and the filtering frame 312. The first driving member 40 can be a winch, a vertical motor, or a hydraulic cylinder, and the present disclosure does not limit this.

[0043] Among them, the transport table is provided with a belt 60 for carrying and moving the cleaning bucket 10 to achieve the automatic transfer of the cleaning bucket 10 on the production line, that is, first stirring the plant raw materials and the cleaning liquid, and then salvaging the floating objects above the cleaning liquid.

[0044] Among them, the installation vertical plate 70 fixes the first driving member 40, the stirring mechanism 20, the salvaging mechanism 30, and the transmission mechanism 50 to provide a stable support structure.

[0045] As an implementation manner, such as Figures 2 to 3As shown, the transmission mechanism 50 includes a first bevel gear 51, a second bevel gear 52, a transmission rod 53, a driving sprocket 54, a driven sprocket 55, a chain 56 and a positioning block 57. The hoisting bracket 311 includes two guide rails 3111, two guide rods 3112, a connecting rod 3113 and two first suspension rods 3114. The fishing assembly 32 further includes two mounting blocks 323, a moving block 324 and a second suspension rod 325. The positioning block 57, the first bevel gear 51, the two mounting blocks 323 and the two guide rails 3111 are all mounted on the side of the mounting vertical plate 70 close to the cleaning barrel 10. The two guide rails 3111 are arranged at the same horizontal interval. Each of the two guide rails 3111 is provided with a chute 3117 extending in the first direction. The two first guide rods 3112 are respectively connected to the two ends of the connecting rod 3113 and extend in the same direction. The two guide rods 3112 are respectively slidably connected to the corresponding chutes 3117. One of the two first guide rods 3112 is configured as a rack bar, and the rack on the rack bar meshes with the first bevel gear 51. The two first suspension rods 3114 are arranged at the same horizontal interval. The first ends of the two first suspension rods 3114 are connected to the connecting rod 3113, and the second ends of the two first suspension rods 3114 are detachably connected to the filter frame 312. One end of the transmission rod 53 is sleeved with the driving sprocket 54, and the other end of the transmission rod 53 is sleeved with the second bevel gear 52. The first bevel gear 51 and the second bevel gear 52 mesh with each other. The two mounting blocks 323 are arranged at the same horizontal interval. The screw rod 322 passes through the two mounting blocks 323, and the two ends of the screw rod 322 are respectively rotatably connected to the two mounting blocks 323. The outer end of the screw rod 322 is sleeved with the driven sprocket 55. The chain 56 is rotatably sleeved between the driving sprocket 54 and the driven sprocket 55. The moving block 324 is located between the two mounting blocks 323. The moving block 324 is slidably connected to the screw rod 322. One end of the second suspension rod 325 is connected to the moving block 324, and the other end of the suspension rod is connected to the fishing net frame 321.

[0046] Through the cooperation between the first bevel gear 51 and the second bevel gear 52 provided, it can be used to change the direction of force, so that vertical movement can be converted into horizontal movement. The first bevel gear 51 meshes with the rack on the rack bar, receiving the linear movement from the rack; the second bevel gear 52 meshes with the first bevel gear 51, converting the linear movement into rotational movement. One end of the transmission rod 53 is installed with a driving sprocket 54, and the other end is installed with the second bevel gear 52. It transmits the rotational movement of the second bevel gear 52 to the driving sprocket 54. The driving sprocket 54 is installed at one end of the transmission rod 53, the driven sprocket 55 is installed at one end of the screw rod 322, and the chain 56 is sleeved between the driving sprocket 54 and the driven sprocket 55, transmitting the rotational movement of the driving sprocket 54 to the driven sprocket 55 to drive the screw rod 322 to rotate, thereby driving the moving block 324 to move axially along the screw rod 322. In this way, the moving block 324 can drive the second suspension rod 325 and the salvage net frame 321 to perform horizontal movement to salvage floating objects. The entire system can achieve the vertical lifting of the filter frame 312 and the horizontal movement of the salvage net frame 321 through the combination of the rack and gear, sprocket and chain 56, screw rod 322 and moving block 324, which can ensure the effective cleaning of plant raw materials and the efficient separation of impurities. Such a design cleverly combines multiple transmission mechanisms, which can reflect the ingenuity and complexity in mechanical engineering.

[0047] Among them, the positioning block 57 is fixed on the installation vertical plate 70, which is used to maintain the stability of the transmission mechanism 50.

[0048] Among them, the guide rail 3111 is installed on the installation vertical plate 70, which has a sliding groove 3117 extending along the first direction (i.e., the vertical direction), and the guide rod 3112 can slide in the sliding groove 3117 to achieve vertical movement.

[0049] Among them, two first suspension rods 3114 are used to connect the connecting rod 3113 and the filter frame 312 to achieve the vertical movement of the filter frame 312.

[0050] In order to enable the salvage assembly 32 to have a certain range of movement in the first direction, as an implementation manner, as Figure 1 and Figure 3 shown, the second suspension rod 325 includes a first connecting member 326 and a second connecting member 327. The first connecting member 326 includes a first section 3261 and a second section 3262 that are connected and in an L shape. One end of the first section 3261 is connected to the moving block 324, the other end of the first section 3261 is connected to one end of the second section 3262, and a sliding hole 328 is formed at the other end of the second section 3262. The sliding hole 328 penetrates the second section 3262 along the second direction. One end of the second connecting member 327 is connected to the salvage net frame 321, and the other end of the second connecting member 327 is located in the sliding hole 328 and can move in the first direction within the sliding hole 328.

[0051] Since one end of the first section 3261 of the first connecting member 326 is connected to the moving block 324, when the moving block 324 moves horizontally along the screw 322, it will drive the first connecting member 326 to move together. The other end of the first section 3261 is connected to one end of the second section 3262, and there is a sliding hole 328 at the other end of the second section 3262. This sliding hole 328 runs through the entire second section 3262 in the second direction (i.e., the horizontal direction). One end of the second connecting member 327 is connected to the fishing net frame 321 for directly controlling the position of the net frame. The other end of the second connecting member 327 is located within the sliding hole 328 of the second section 3262, enabling the second connecting member 327 to move in the first direction (i.e., the vertical direction) within the sliding hole 328 without being restricted by the horizontal movement of the first connecting member 326. That is to say, by utilizing the freedom degree of the second connecting member 327 within the sliding hole 328, the fishing net frame 321 can be adjusted vertically while moving horizontally according to the up-and-down movement of the filtering frame 312. Specifically, during the upward movement of the filtering frame 312, the plant raw materials (already cleaned) within the filtering frame 312 can exert an upward force on the fishing net frame 321, causing the second connecting member 327 to move upward along the sliding hole 328. Such a design can reduce the impact of the movement of the hoisting assembly 31 on the fishing process and contribute to increasing the flexibility and adaptability of the system.

[0052] As an implementation manner, as Figure 3 shown, the fishing assembly 32 further includes a limit nut 329. The second connecting member 327 has an extension section extending out of the sliding hole 328, and an external thread is provided on the extension section. The limit nut 329 is threadedly engaged with the extension section.

[0053] Among them, by providing the limit nut 329, the second connecting member 327 can be prevented from accidentally coming out of the sliding hole 328 of the first connecting member 326 in the vertical direction, ensuring the stable connection between the fishing net frame 321 and the second suspension rod 325.

[0054] As an implementation manner, as Figure 3 shown, an annular limit protrusion 314 is formed on the outer side wall of the filtering frame 312. The bottom surface of the annular limit protrusion 314 is attached to the top surface of the cleaning bucket 10. Two oppositely arranged insertion portions 315 are formed on the top surface of the annular limit protrusion 314. A through hole is formed on each insertion portion 315, and the through hole runs through the insertion portion 315 in the second direction. Each first suspension rod 3114 includes a third section 3115 and a fourth section 3116 that are connected and in an L shape. One end of the third section 3115 is connected to the connecting rod 3113, the other end of the third section 3115 is connected to one end of the fourth section 3116, and the other end of the fourth section 3116 has an insertion section. Each insertion section is inserted and matched with the corresponding through hole.

[0055] Among them, the filtering box 312 is lapped on the top surface of the cleaning bucket 10 through the annular limiting protrusion 314, which can play a role in positioning the filtering box 312 and ensure the stability of the filtering box 312 during the stirring process.

[0056] Among them, the insertion part 315 on the filtering box 312 cooperates with the insertion section of the first suspension rod 3114, which can realize the rapid installation and disassembly of the filtering box 312 and the hoisting assembly 31. At the same time, it can ensure the firmness of the filtering box 312 and the hoisting assembly 31 during the lifting process.

[0057] As an implementation manner, as Figure 1 shown, the processing and cleaning system further includes a switching valve 80, a first collection bucket and a second collection bucket. The bottom of the cleaning bucket 10 is a funnel structure, and an outlet is formed at the bottom of the funnel structure. A plurality of support legs 90 are arranged at the bottom of the cleaning bucket 10. The switching valve 80 is configured as a ball valve. The first interface end 81 of the switching valve 80 is communicated with the outlet, the second interface end 82 of the switching valve 80 is communicated with the first collection bucket, and the third interface end 83 of the switching valve 80 is communicated with the second collection bucket. The first collection bucket is used to collect the sediment in the cleaning liquid, and the second collection bucket is used to collect the cleaning liquid.

[0058] Among them, the switching valve 80 is configured as a ball valve, and the ball valve has three interface ends, which are respectively communicated with the outlet of the cleaning bucket 10, a first collection bucket (not shown) and a second collection bucket (not shown). With such a design, the cleaning liquid and sediment in the static cleaning bucket 10 can be sequentially diverted into two different collection buckets, so as to realize the recycling of the cleaning liquid and the effective separation of the sediment.

[0059] Among them, the funnel structure at the bottom of the cleaning bucket 10 helps to separate the cleaning liquid and the sediment. The sediment tends to gather at the bottom of the funnel, which is convenient for subsequent collection.

[0060] Among them, the first collection bucket is used to collect the sediment in the cleaning liquid, and the sediment may include fragments of plant raw materials, impurities and other unwanted particulate matters.

[0061] Among them, the second collection bucket is used to collect the preliminarily purified cleaning liquid, and this part of the cleaning liquid can be reused, thereby reducing the consumption of water resources and improving the environmental protection and economy of the production process.

[0062] Specifically, during the cleaning process, the cleaning liquid and the plant raw materials are mixed in the cleaning barrel 10. The stirring mechanism 20 is used to make the raw materials and the cleaning liquid come into full contact. After the cleaning is completed, the ball valve is opened, and the cleaning liquid and the sediment in it enter the ball valve through the outlet of the funnel structure. By controlling the state of the ball valve, the sediment in the cleaning liquid is guided to the first collection barrel, while the relatively clean cleaning liquid is directed to the second collection barrel. The sediment in the first collection barrel is regularly cleaned. The cleaning liquid in the second collection barrel can be reused in the cleaning process after further filtration or treatment, thus realizing the recycling of resources.

[0063] For the convenience of observing the cleaning situation inside the cleaning barrel 10, optionally, as Figure 1 shown, the cleaning barrel 10 is constructed of a transparent material. The transparent cleaning barrel 10 enables the operator to directly observe the situation during the cleaning process, including the interaction between the plant raw materials and the cleaning liquid, the separation of impurities, and the cleaning progress, etc. This visualization function is beneficial to monitoring the cleaning effect and promptly discovering potential problems (such as raw material caking, equipment failure, etc.).

[0064] As an implementation manner, as Figures 1 to 3 shown, the stirring mechanism 20 includes a second driving member 21, a stirring shaft 22, and a plurality of stirring rods 23 formed on the stirring shaft 22. The second driving member 21 is disposed at the top of the mounting vertical plate 70. The stirring shaft 22 extends in the first direction. The upper end of the stirring shaft 22 is connected to the driving shaft of the second driving member 21, and the lower end of the stirring shaft 22 is connected to the plurality of stirring rods 23.

[0065] Among them, the second driving member 21 can be an electric motor or a hydraulic motor, etc., for generating a rotational force.

[0066] Among them, the stirring shaft 22 extends in the first direction (i.e., the vertical direction). Its upper end is tightly connected to the driving shaft of the second driving member 21 to receive power transmission. The length and diameter of the stirring shaft 22 need to be designed according to the size and capacity of the cleaning barrel 10 to ensure that the stirring effect covers the entire internal space of the cleaning barrel 10.

[0067] Among them, the stirring rods 23 are formed at the lower end of the stirring shaft 22 and are evenly distributed along the circumferential direction of the stirring shaft 22. The number and spacing are determined according to the characteristics of the raw materials and the cleaning requirements. The design and layout of the stirring rods 23 directly affect the mixing effect of the cleaning liquid and the plant raw materials, ensuring that the raw materials and the cleaning liquid come into full contact and promoting the separation of impurities.

[0068] When the second driving member 21 is activated, the rotational force generated by the second driving member 21 is transmitted to the stirring shaft 22 through the drive shaft, and the stirring shaft 22 rotates accordingly. The rotation of the stirring shaft 22 drives the stirring rod 23 to rotate together, and the stirring rod 23 agitates the cleaning liquid in the cleaning barrel 10, promoting the full mixing of the plant raw materials and the cleaning liquid. This mechanical stirring can not only accelerate the penetration of the cleaning liquid into the raw materials, but also help to suspend and disperse the impurities in the raw materials, facilitating the subsequent fishing and separation processes.

[0069] The preferred embodiments of the present disclosure have been described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details in the above embodiments. Within the scope of the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all fall within the protection scope of the present disclosure.

[0070] In addition, it should be noted that, among the various specific technical features described in the above specific embodiments, they can be combined in any suitable manner without conflict. To avoid unnecessary repetition, the present disclosure will not separately describe various possible combination methods.

[0071] Furthermore, any combination can be made between various different embodiments of the present disclosure, as long as it does not violate the idea of the present disclosure, and it should also be regarded as the content disclosed by the present disclosure.

Claims

1. A processing and cleaning system for a plant shampoo with the effect of promoting the thickening of fine hair, characterized in that, It includes a cleaning bucket (10), a stirring mechanism (20), a fishing mechanism (30), a first driving member (40), a transmission mechanism (50), a transport table, and a mounting vertical plate (70); The mounting vertical plate (70) is located on one side of the transport table. The first driving member (40), the stirring mechanism (20), the fishing mechanism (30), and the transmission mechanism (50) are all mounted on the mounting vertical plate (70), and the cleaning bucket (10) is arranged on the belt (60) of the transport table; The cleaning bucket (10) has a first accommodating cavity (11), and an opening (12) and a water outlet (13) that are both communicated with the first accommodating cavity (11) are formed on the cleaning bucket (10); The stirring mechanism (20) is used for stirring the interior of the cleaning bucket (10); The fishing mechanism (30) includes a hoisting assembly (31) and a fishing assembly (32). The hoisting assembly (31) includes a hoisting bracket (311) and a filter frame (312). The filter frame (312) has a second accommodating cavity (313) for accommodating plant raw materials. The driving part of the first driving member (40) is connected to the first end of the hoisting bracket (311), and the second end of the hoisting bracket (311) is connected to the filter frame (312). The driving part can drive the hoisting bracket (311) to drive the filter frame (312) to be movably installed in the first accommodating cavity (11) along a first direction; The fishing assembly (32) includes a fishing net frame (321) and a screw rod (322). The fishing net frame (321) is movably connected to the screw rod (322) along a second direction. The fishing net frame (321) is used for fishing floating objects located at the top of the second accommodating cavity (313), and the screw rod (322) is in transmission connection with the hoisting bracket (311) through the transmission mechanism (50); Wherein, the first direction is perpendicular to the second direction.

2. The plant shampoo processing and cleaning system according to claim 1, characterized in that, The transmission mechanism (50) includes a first bevel gear (51), a second bevel gear (52), a transmission rod (53), a driving sprocket (54), a driven sprocket (55), a chain (56), and a positioning block (57). The hoisting bracket (311) includes two guide rails (3111), two guide rods (3112), a connecting rod (3113), and two first suspension rods (3114). The fishing assembly (32) further includes two mounting blocks (323), a moving block (324), and a second suspension rod (325); The positioning block (57), the first bevel gear (51), the two mounting blocks (323), and the two guide rails (3111) are all mounted on the side of the mounting vertical plate (70) close to the cleaning bucket (10); The two guide rails (3111) are arranged at the same horizontal interval. Chutes (3117) extending along the first direction are provided on both of the two guide rails (3111). The two guide rods (3112) are respectively connected to two ends of the connecting rod (3113) and extend along the same direction. The two guide rods (3112) are respectively slidably connected to the corresponding chutes (3117). One of the two guide rods (3112) is configured as a rack rod, and the rack on the rack rod meshes with the first bevel gear (51). The two first suspension rods (3114) are arranged at the same horizontal interval. The first ends of the two first suspension rods (3114) are connected to the connecting rod (3113), and the second ends of the two first suspension rods (3114) are detachably connected to the filter frame (312). One end of the transmission rod (53) is sleeved with the driving sprocket (54), and the other end of the transmission rod (53) is sleeved with the second bevel gear (52). The first bevel gear (51) meshes with the second bevel gear (52). The two mounting blocks (323) are arranged at the same horizontal interval. The screw rod (322) passes through the two mounting blocks (323), and the two ends of the screw rod (322) are respectively rotatably connected to the two mounting blocks (323). The driven sprocket (55) is sleeved on the outer end of the screw rod (322). The chain (56) is rotatably sleeved between the driving sprocket (54) and the driven sprocket (55). The moving block (324) is located between the two mounting blocks (323). The moving block (324) is slidably connected to the screw rod (322). One end of the second suspension rod (325) is connected to the moving block (324), and the other end of the suspension rod is connected to the fishing net frame (321).

3. The plant shampoo processing and cleaning system according to claim 2, characterized in that, The second suspension rod (325) includes a first connecting member (326) and a second connecting member (327). The first connecting member (326) includes a first section (3261) and a second section (3262) that are connected and in an L shape. One end of the first section (3261) is connected to the moving block (324), the other end of the first section (3261) is connected to one end of the second section (3262), and a sliding hole (328) is formed at the other end of the second section (3262). The sliding hole (328) penetrates through the second section (3262) along the second direction. One end of the second connecting member (327) is connected to the fishing net frame (321), and the other end of the second connecting member (327) is located in the sliding hole (328) and can move in the sliding hole (328) in the first direction.

4. The plant shampoo processing and cleaning system according to claim 3, wherein, The fishing assembly (32) further includes a limit nut (329). The second connecting member (327) has an extension section extending out of the sliding hole (328). External threads are provided on the extension section, and the limit nut (329) is in threaded fit with the extension section.

5. The plant shampoo processing and cleaning system according to claim 3, characterized in that, An annular limiting protrusion (314) is formed on the outer side wall of the filtering frame (312). The bottom surface of the annular limiting protrusion (314) is in contact with the top surface of the cleaning bucket (10). Two oppositely arranged insertion parts (315) are formed on the top surface of the annular limiting protrusion (314). A through hole is formed on each insertion part (315), and the through hole penetrates through the insertion part (315) along the second direction. Each of the first suspension rods (3114) includes a connected L-shaped third section (3115) and fourth section (3116). One end of the third section (3115) is connected to the connecting rod (3113), the other end of the third section (3115) is connected to one end of the fourth section (3116), and the other end of the fourth section (3116) has an insertion section. Each insertion section is inserted and matched with the corresponding through hole.

6. The plant shampoo processing and cleaning system according to claim 1, characterized in that, The processing and cleaning system further includes a switching valve (80), a first collection bucket, and a second collection bucket. The bottom of the cleaning bucket (10) is a funnel structure, and an outlet is formed at the bottom of the funnel structure. A plurality of support legs (90) are provided at the bottom of the cleaning bucket (10). The switching valve (80) is configured as a ball valve. The first interface end (81) of the switching valve (80) is communicated with the outlet, the second interface end (82) of the switching valve (80) is communicated with the first collection bucket, and the third interface end (83) of the switching valve (80) is communicated with the second collection bucket. The first collection bucket is used to collect the sediment in the cleaning liquid, and the second collection bucket is used to collect the cleaning liquid.

7. The plant shampoo processing and cleaning system according to claim 6, characterized in that, The cleaning bucket (10) is made of a transparent material.

8. The plant shampoo processing and cleaning system according to claim 1, characterized in that, The stirring mechanism (20) includes a second driving member (21), a stirring shaft (22), and a plurality of stirring rods (23) formed on the stirring shaft (22). The second driving member (21) is arranged at the top of the mounting vertical plate (70). The stirring shaft (22) extends along the first direction. The upper end of the stirring shaft (22) is connected to the driving shaft of the second driving member (21), and the lower end of the stirring shaft (22) is connected to the plurality of stirring rods (23).