An automatic circulating water cleaning device for forsythia suspensa

CN224641823UActive Publication Date: 2026-08-18HENAN YUNTAISHAN TRADITIONAL CHINESE MEDICINE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521635481.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-08-18
Estimated Expiration
2035-08-04

AI Technical Summary

Technical Problem

[0004]常规的自动化循环水清洗装置由于结构向较复杂,使得过滤结构在维护过程中比较费时费力,使得操作相对不便,影响操作效率

Benefits of technology

[0015] 1. This utility model, by installing circulation components on both sides of the cleaning tank assembly, wherein the entire circulation component is connected and fixed to one end of the docking seat on the side of the main tank body through the first metering pump and the second metering pump, thereby realizing the structural disassembly and assembly of the cleaning tank assembly and the circulation component. At the same time, under the structural setting of the first check valve and the second check valve, the water inside the main tank body starts from the first metering pump, and is sequentially delivered through the first check valve, the filter box, the second check valve and the second metering pump, and then flows back into the interior of the main tank body, achieving a good water circulation and filtration effect. Furthermore, the first metering pump, the first check valve, the filter box, the second check valve and the second metering pump adopt a modular structure, which makes the structure disassembly and assembly of each component easy to disassemble and replace, and facilitates structural maintenance.

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Abstract

The utility model discloses a kind of forsythia automatic circulating water cleaning devices, it is related to forsythia processing technical field, including cleaning tank component and circulating component, the inside horizontal erection of cleaning tank component is equipped with cleaning cylinder component, and the horizontal erection installation of one side of cleaning tank component is equipped with driving assembly, the left and right sides lower end of circulating component is symmetrically installed in cleaning tank component. The forsythia automatic circulating water cleaning device, by installing the circulation component in the left and right symmetrical lower end of cleaning tank component, using the setting of its structure, the water in the inside of cleaning tank component can be effectively guaranteed to be effectively circulated and filtered, to ensure water conservation, while, can ensure cleaning effect, in addition, the modularization setting of each structure of circulating component itself provides good convenience for maintenance operation, and the use of cleaning cylinder component cooperates cleaning tank component and driving assembly, which plays a good cleaning effect and takes material.
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Description

Technical Field

[0001] This utility model relates to the field of forsythia processing technology, specifically to an automated circulating water cleaning device for forsythia. Background Technology

[0002] Forsythia is a plant of the Oleaceae family with important medicinal value, and its dried fruit is widely used in the field of traditional Chinese medicine.

[0003] An automated circulating water cleaning device is an automated filtration equipment specifically designed for industrial circulating water systems. It can automatically remove solid particles (such as silt, rust, scale, etc.) from the water while the system operates continuously, preventing equipment blockage and extending its service life.

[0004] Conventional automated circulating water cleaning devices have a relatively complex structure, making the filtration structure time-consuming and labor-intensive to maintain, resulting in relatively inconvenient operation and affecting operational efficiency. Utility Model Content

[0005] The purpose of this invention is to provide an automated circulating water cleaning device for Forsythia suspensa to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: an automated circulating water cleaning device for Forsythia suspensa, comprising a cleaning tank assembly and a circulation assembly. A cleaning cylinder assembly is horizontally mounted inside the cleaning tank assembly, and a drive assembly is horizontally mounted on one side of the cleaning tank assembly. The circulation assembly is symmetrically mounted on the lower left and right sides of the cleaning tank assembly. The circulation assembly includes a first metering pump, a first check valve, a filter box, a second check valve, and a second metering pump. The end of the first metering pump away from the cleaning tank assembly is connected to the first check valve, and the end of the first check valve away from the first metering pump is connected to the filter box. The end of the filter box away from the first check valve is connected to the second check valve, and the end of the second check valve away from the filter box is equipped with the second metering pump.

[0007] Furthermore, the cleaning tank assembly includes a main body, a first bearing seat, a second bearing seat, and a docking seat. The first bearing seat is installed on the front side of the main body, and the second bearing seat is installed on the side of the main body away from the first bearing seat. Moreover, two sets of docking seats are provided at the lower ends of both the left and right sides of the main body.

[0008] Furthermore, both the first bearing housing and the second bearing housing are constructed with a sealed bearing housing structure, and both the first bearing housing and the second bearing housing are located on the same horizontal central axis. The main housing and the docking seat are constructed as an integral structure.

[0009] Furthermore, the cleaning drum assembly includes a cleaning drum, a docking plate, a movable cover, a damping hinge, a docking block, and a limiting block. Both ends of the cleaning drum are equipped with docking plates, and a movable cover is provided in the middle of the side of the cleaning drum. A damping hinge is installed at the connection between the movable cover and one side of the cleaning drum, and a docking block is connected to the end of the movable cover away from the damping hinge. At the same time, a limiting block is connected to the side of the docking block away from the movable cover.

[0010] Furthermore, the cleaning roller and the docking plate are fixedly connected, and the movable cover adopts an embedded structure to dock with the cleaning roller. Moreover, the surfaces of both the cleaning roller and the movable cover are provided with an array of perforations for filtration, and the limiting block and the cleaning roller are integrated into one structure.

[0011] Furthermore, the docking block and the movable cover are integrally structured, and the docking block and the limiting block are provided with holes for bolt installation. The first bearing seat and the second bearing seat are movably connected to the axial position of the docking plate.

[0012] Furthermore, the drive assembly includes a support frame, a servo motor, and a coupling. The servo motor is horizontally mounted at the end of the support frame away from the cleaning tank assembly, and the coupling is horizontally mounted at the power output end of the servo motor.

[0013] Furthermore, the coupling is horizontally mounted away from the servo motor in the middle of the interior of the first bearing housing, and the support frame is mounted on the side surface of the main housing where the first bearing housing is located.

[0014] This utility model provides an automated circulating water cleaning device for Forsythia suspensa, which has the following beneficial effects:

[0015] 1. This utility model, by installing circulation components on both sides of the cleaning tank assembly, wherein the entire circulation component is connected and fixed to one end of the docking seat on the side of the main tank body through the first metering pump and the second metering pump, thereby realizing the structural disassembly and assembly of the cleaning tank assembly and the circulation component. At the same time, under the structural setting of the first check valve and the second check valve, the water inside the main tank body starts from the first metering pump, and is sequentially delivered through the first check valve, the filter box, the second check valve and the second metering pump, and then flows back into the interior of the main tank body, achieving a good water circulation and filtration effect. Furthermore, the first metering pump, the first check valve, the filter box, the second check valve and the second metering pump adopt a modular structure, which makes the structure disassembly and assembly of each component easy to disassemble and replace, and facilitates structural maintenance.

[0016] 2. This utility model, by horizontally installing the cleaning cylinder assembly inside the cleaning tank assembly, and connecting one end of the drive assembly to the first bearing seat via a coupling, allows the cleaning drum and movable cover with an array of holes on their surface to rotate horizontally while the material is immersed in the water inside the cleaning tank assembly, thereby achieving effective material cleaning. At the same time, it facilitates the centralized processing of materials during cleaning, and also makes it easy to pick up or put in materials, thus providing good coordination for the operational stability and ease of use of the device. Attached Figure Description

[0017] Figure 1 This is a side-view structural diagram of the main body of the automated circulating water cleaning device for Forsythia suspensa according to this utility model;

[0018] Figure 2 This is a schematic diagram of the cleaning box assembly structure of an automated circulating water cleaning device for Forsythia suspensa according to this utility model;

[0019] Figure 3 This is a three-dimensional structural diagram of the cleaning cylinder assembly of an automated circulating water cleaning device for Forsythia suspensa according to this utility model;

[0020] Figure 4 This is a three-dimensional structural diagram of the drive component of an automated circulating water cleaning device for Forsythia suspensa according to this utility model.

[0021] In the diagram: 1. Cleaning tank assembly; 101. Main tank body; 102. First bearing seat; 103. Second bearing seat; 104. Docking seat; 2. Cleaning drum assembly; 201. Cleaning drum; 202. Docking plate; 203. Movable cover; 204. Damping hinge; 205. Docking block; 206. Limiting block; 3. Drive assembly; 301. Support frame; 302. Servo motor; 303. Coupling; 4. Circulation assembly; 401. First metering pump; 402. First check valve; 403. Filter box; 404. Second check valve; 405. Second metering pump. Detailed Implementation

[0022] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0023] like Figures 1 to 4As shown, an automated circulating water cleaning device for Forsythia suspensa includes a cleaning tank assembly 1 and a circulation assembly 4. A cleaning cylinder assembly 2 is horizontally mounted inside the cleaning tank assembly 1, and a drive assembly 3 is horizontally mounted on one side of the cleaning tank assembly 1. The circulation assembly 4 is symmetrically mounted on the lower left and right sides of the cleaning tank assembly 1. The circulation assembly 4 includes a first metering pump 401, a first check valve 402, a filter box 403, a second check valve 404, and a second metering pump 405. The end of the first metering pump 401 furthest from the cleaning tank assembly 1 is connected to the first check valve 402, and the end of the first check valve 402 furthest from the first metering pump 401 is connected to the filter box 403. The end of the filter box 403 furthest from the first check valve 402 is connected to the second check valve 404, and the end of the second check valve 404 furthest from the filter box 403 is equipped with the second metering pump 405. The cleaning tank assembly 1 includes a main body 101, a first bearing seat 102, and a second bearing... The main housing 101 has a first bearing seat 102 installed on the front side and a second bearing seat 103 installed on the side of the main housing 101 away from the first bearing seat 102. Two sets of docking seats 104 are also provided at the lower ends of both the left and right sides of the main housing 101. Both the first bearing seat 102 and the second bearing seat 103 are sealed bearing seats and are located on the same horizontal central axis. The main housing 101 and the docking seats 104 are integrated. Under the structure of the first check valve 402 and the second check valve 404, the entire circulation assembly 4 enables water to flow from the first metering pump 401 through the first check valve 402, filter box 403, second check valve 404, and second metering pump 405, and then back into the main housing 101, achieving good water circulation and filtration.

[0024] like Figures 1 to 4As shown, the cleaning drum assembly 2 includes a cleaning drum 201, a docking plate 202, a movable cover 203, a damping hinge 204, a docking block 205, and a limiting block 206. The cleaning drum 201 has docking plates 202 installed at both ends, and a movable cover 203 is located at the center of the side of the cleaning drum 201. A damping hinge 204 is installed at the connection between the movable cover 203 and one side of the cleaning drum 201. The end of the movable cover 203 away from the damping hinge 204 is connected to the docking block 205, and the side of the docking block 205 away from the movable cover 203 is connected to the limiting block 206. The cleaning drum 201 and the docking plate 202 are fixedly connected. The movable cover 203 is embedded and docked with the cleaning drum 201. Both the cleaning drum 201 and the movable cover 203 have an array of perforations for filtration. The limiting block 206 and the cleaning drum 201 are integrally formed. The docking block 205 and the movable cover 203... The components are integrated into a single structure, with holes for bolt installation at the joint of the docking block 205 and the limiting block 206. The first bearing seat 102 and the second bearing seat 103 are movably connected to the axial position of the docking plate 202. The drive assembly 3 includes a support frame 301, a servo motor 302, and a coupling 303. The servo motor 302 is horizontally mounted at the end of the support frame 301 away from the cleaning tank assembly 1, and the coupling 303 is horizontally mounted at the power output end of the servo motor 302. The coupling 303 is horizontally mounted in the middle of the first bearing seat 102 away from the servo motor 302. The support frame 301 is mounted on the side surface of the main housing 101 where the first bearing seat 102 is located. This allows the cleaning roller 201 and the movable cover 203, which have holes on their surfaces, to rotate horizontally while the material is immersed in the water inside the cleaning tank assembly 1, thus achieving effective material cleaning.

[0025] In summary, as Figures 1 to 4 As shown, when using the Forsythia automated circulating water cleaning device, firstly, when it is necessary to clean the material, simply open the movable cover 203 using the damping hinge 204 and put the material into the cleaning drum 201. Then, under the structural setting of the damping hinge 204, close the cleaning drum 201 and the movable cover 203, and connect the docking block 205 and the limiting block 206 to each other. Use bolts to connect and fix the two to ensure the stable operation of the subsequent cleaning drum assembly 2.

[0026] Then, under the operation of the servo motor 302 at one end of the support frame 301, and through the structural transmission of the coupling 303 and the first bearing seat 102, the entire cleaning drum assembly 2, which is connected to the first bearing seat 102 and the second bearing seat 103 respectively by the docking plates 202 at both ends of the cleaning drum 201, will carry the material and rotate horizontally at a uniform speed inside the main box 101, thereby achieving the cleaning of the material.

[0027] During the cleaning process, the first metering pump 401 of the docking seat 104 quickly extracts the water from the main body 101 and, with the assistance of the first check valve 402, quickly enters the filter box 403 for purification. At the same time, the second metering pump 405, in conjunction with the operation of the second check valve 404, extracts the water from the filter box 403 from the other end and re-transports it into the main body 101. This achieves real-time and rapid purification of the water inside the circulating cleaning box assembly 1, thereby ensuring the cleaning effect.

[0028] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. An automated circulating water cleaning device for Forsythia suspensa, comprising a cleaning tank assembly (1) and a circulation assembly (4), characterized in that: The cleaning tank assembly (1) is horizontally mounted inside the cleaning cylinder assembly (2), and a drive assembly (3) is horizontally mounted on one side of the cleaning tank assembly (1). The circulation assembly (4) is symmetrically mounted on the lower left and right sides of the cleaning tank assembly (1). The circulation assembly (4) includes a first metering pump (401), a first check valve (402), a filter box (403), a second check valve (404), and a second metering pump (405). The first metering pump (401) is connected to the first check valve (402) at the end away from the cleaning tank assembly (1), and the first check valve (402) is connected to the filter box (403) at the end away from the first metering pump (401). The filter box (403) is connected to the second check valve (404) at the end away from the first check valve (402), and the second metering pump (405) is mounted on the end of the second check valve (404) away from the filter box (403).

2. The automated circulating water cleaning device for Forsythia according to claim 1, characterized in that, The cleaning tank assembly (1) includes a main body (101), a first bearing seat (102), a second bearing seat (103), and a docking seat (104). The first bearing seat (102) is installed on the front side of the main body (101), and the second bearing seat (103) is installed on the side of the main body (101) away from the first bearing seat (102). Furthermore, two sets of docking seats (104) are provided at the lower ends of both the left and right sides of the main body (101).

3. The automated circulating water cleaning device for Forsythia according to claim 2, characterized in that, The first bearing housing (102) and the second bearing housing (103) are both set with sealed bearing housing structure, and the first bearing housing (102) and the second bearing housing (103) are both on the same horizontal central axis. The main housing (101) and the docking seat (104) are set as an integral structure.

4. The automated circulating water cleaning device for Forsythia according to claim 2, characterized in that, The cleaning drum assembly (2) includes a cleaning drum (201), a docking plate (202), a movable cover (203), a damping hinge (204), a docking block (205), and a limiting block (206). The cleaning drum (201) is equipped with docking plates (202) at both ends, and a movable cover (203) is provided in the middle of the side of the cleaning drum (201). A damping hinge (204) is installed at the connection between the movable cover (203) and one side of the cleaning drum (201). The end of the movable cover (203) away from the damping hinge (204) is connected to the docking block (205), and the side of the docking block (205) away from the movable cover (203) is connected to the limiting block (206).

5. The automated circulating water cleaning device for Forsythia according to claim 4, characterized in that, The cleaning roller (201) and the docking plate (202) are fixedly connected, and the movable cover (203) adopts an embedded structure to dock with the cleaning roller (201). The surfaces of the cleaning roller (201) and the movable cover (203) are arrayed with perforated structures for filtration, and the limiting block (206) and the cleaning roller (201) are set as an integral structure.

6. The automated circulating water cleaning device for Forsythia according to claim 4, characterized in that, The docking block (205) and the movable cover (203) are integrated into one structure, and the docking block (205) and the limiting block (206) are provided with holes for bolt installation. The first bearing seat (102) and the second bearing seat (103) are respectively movably connected to the axial position of the docking plate (202).

7. The automated circulating water cleaning device for Forsythia according to claim 2, characterized in that, The drive assembly (3) includes a support frame (301), a servo motor (302) and a coupling (303). The servo motor (302) is horizontally mounted at one end of the support frame (301) away from the cleaning box assembly (1), and the coupling (303) is horizontally mounted at the power output end of the servo motor (302).

8. The automated circulating water cleaning device for Forsythia according to claim 7, characterized in that, The coupling (303) is horizontally mounted away from the servo motor (302) in the middle of the interior of the first bearing seat (102), and the support frame (301) is mounted on the side surface of the main housing (101) where the first bearing seat (102) is located.