A device for removing impurities and cleaning for recycling resources
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HENAN XIAOLEI RENEWABLE RESOURCES RECYCLING CO LTD
- Filing Date
- 2024-10-10
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]传统的再生资源回收过程中,多采用人工分拣和简单的机械筛选方法进行除杂,这些方法劳动强度大,此外,随着环保法规的日益严格,对回收过程中的环保要求也在提高,传统的清洗方法往往难以达到环保标准,并且对物料上的杂质清理不干净,无法彻底去除细小杂质,影响资源的纯净度和后续利用
[0017] Compared with the prior art, the beneficial effects of this utility model are: the removal component can adsorb and remove iron-containing items mixed in with the material, and can remove iron-containing materials. The drive component can drive the rotation of the forward stirring component and the reverse stirring component to stir and clean the material. The forward stirring component and the reverse stirring component stir in both directions at the same time, which can quickly clean and remove impurities from the material, making it easy to recycle and reuse the material.
Smart Images

Figure CN224600013U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of renewable resource recycling technology, and in particular to a cleaning and impurity removal device for renewable resource recycling. Background Technology
[0002] In today's society, with the increasing depletion of resources and the aggravation of environmental pollution, the recycling and utilization of renewable resources has become particularly important. The recycling of renewable resources such as waste metals, waste plastics, and waste paper can not only reduce dependence on virgin resources, but also effectively reduce environmental pollution. However, in the process of recycling renewable resources, how to effectively remove impurities mixed in the resources and improve the purity and reuse rate of the resources is a key technical challenge.
[0003] In traditional recycling processes, manual sorting and simple mechanical screening are often used to remove impurities. These methods are labor-intensive. In addition, with increasingly stringent environmental regulations, environmental requirements for the recycling process are also increasing. Traditional cleaning methods often fail to meet environmental standards and cannot thoroughly remove impurities from the materials, affecting the purity of the resources and their subsequent utilization.
[0004] Therefore, it is necessary to further improve the cleaning and impurity removal equipment used for recycling renewable resources. Utility Model Content
[0005] The technical problem to be solved by this utility model is to overcome the existing defects and provide a cleaning and impurity removal device for recycling renewable resources. This device can simultaneously agitate materials in both forward and reverse directions, quickly clean and remove impurities from the materials, facilitate the recycling and reuse of the materials, and effectively solve the problems in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a cleaning device for recycling renewable resources, comprising a cleaning tank, a feeding hopper at the inlet on the outer side of the cleaning tank, a rejection component on the feeding hopper, an inlet pipe, a drain pipe and a lifting component on the outer side of the cleaning tank, a drain valve on the drain pipe, a discharge component at the discharge port on the lower side of the cleaning tank, a bracket installed on the lower side of the cleaning tank, a pressure plate installed on the cleaning tank via a limiting component on its inner side, a rebound component and a forward stirring component installed inside the mounting holes on the pressure plate, a reverse stirring component installed inside the forward stirring component via a double-sided bearing, a discharge component installed at the lower end of the reverse stirring component, a drive component installed at the upper end of the reverse stirring component, the drive component connected to the forward stirring component, and L-shaped fixing rings rotatably mounted on the drive component, the upper and lower L-shaped fixing rings connected by a connecting strip, the upper L-shaped fixing ring connected to the lifting component via a connecting column, and the lower L-shaped fixing ring connected to the rebound component.
[0007] Preferably, the lifting assembly includes a connecting strip and a pneumatic telescopic rod, the connecting strip being installed at the telescopic end of the pneumatic telescopic rod, and the pneumatic telescopic rod being installed on the outer side of the cleaning tub.
[0008] Preferably, the discharge assembly includes an electric telescopic rod, a pull-out plate, an L-shaped sealing strip, and a discharge hopper. The pull-out plate is slidably mounted on the L-shaped sealing strip, which is located at the discharge port on the lower side of the cleaning tank. The discharge hopper is mounted on the L-shaped sealing strip, and the electric telescopic rod is mounted on the lower side of the cleaning tank, with its telescopic end connected to the pull-out plate.
[0009] Preferably, the rejection assembly includes a mounting strip and an electromagnetic rod, the mounting strip being mounted on the feed hopper, and the electromagnetic rods being evenly distributed in the mounting holes on the mounting strip.
[0010] Preferably, the limiting component includes a limiting strip and a limiting groove. The limiting strip is installed in the limiting groove and is located on the inner side of the cleaning tub. The limiting groove is located on the outer side of the pressure plate.
[0011] Preferably, the forward stirring assembly includes a rotating sleeve and a stirring blade. The rotating sleeve is rotatably installed in the mounting hole of the pressure plate, and the stirring blade is installed on the lower section of the outer side of the rotating sleeve.
[0012] Preferably, the reverse stirring assembly includes a rotating shaft and a second stirring blade. The rotating shaft is mounted inside the rotating sleeve via a double-sided bearing, and the second stirring blade is mounted on the lower section of the outer side of the rotating shaft.
[0013] Preferably, the discharge assembly includes a follower rod and a discharge plate. The follower rod is installed at the lower end of the rotating shaft, and the discharge plate is evenly distributed on the lower section of the outer side of the follower rod, and the discharge plate is in contact with the inner bottom surface of the washing tank.
[0014] Preferably, the rebound assembly includes a T-shaped fixing rod and a spring. The T-shaped fixing rod is installed inside the mounting hole of the pressure plate and is connected to the lower L-shaped fixing ring. The spring is fitted on the T-shaped fixing rod, and both ends of the spring are in contact with the pressure plate and the lower L-shaped fixing ring, respectively.
[0015] Preferably, the drive assembly includes a drive motor, a first bevel gear, a bevel gear, and a second bevel gear. The drive motor is mounted on the connecting column via a mounting bracket. The first bevel gear is mounted inside the upper L-shaped fixing ring via a rotating slide rail, and the second bevel gear is mounted inside the lower L-shaped fixing ring via a rotating slide rail. The first bevel gear meshes with the bevel gear, and the second bevel gear meshes with the bevel gear. The first bevel gear is mounted on a rotating shaft, the second bevel gear is mounted on a rotating sleeve, the bevel gear is mounted on the second connecting bar, and the output shaft of the drive motor is connected to the first bevel gear.
[0016] The working principle and usage principle of this utility model are as follows: the material to be cleaned and impurities removed is placed into the cleaning tank through the feeding hopper, the removal component can adsorb and remove iron objects mixed in with the material, the cleaning liquid is injected into the cleaning tank, the lifting component drives the L-shaped fixed ring and the driving component to move downward, the pressure plate immerses the material completely in the cleaning liquid, and the driving component can drive the rotation of the forward stirring component and the reverse stirring component to stir and clean the material.
[0017] Compared with the prior art, the beneficial effects of this utility model are: the removal component can adsorb and remove iron-containing items mixed in with the material, and can remove iron-containing materials. The drive component can drive the rotation of the forward stirring component and the reverse stirring component to stir and clean the material. The forward stirring component and the reverse stirring component stir in both directions at the same time, which can quickly clean and remove impurities from the material, making it easy to recycle and reuse the material. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0019] Figure 2 This is a bottom view of the structure of this utility model;
[0020] Figure 3 This is a partial cross-sectional structural diagram of the present invention;
[0021] Figure 4 This is an enlarged structural diagram of part A of this utility model.
[0022] Explanation of reference numerals in the attached drawings: 1. Cleaning tank; 2. Lifting assembly; 201. Connecting strip one; 202. Pneumatic telescopic rod; 3. Feed hopper; 4. Drain pipe; 5. Discharge assembly; 501. Electric telescopic rod; 502. Pull-out plate; 503. L-shaped sealing strip; 504. Discharge hopper; 6. Removal assembly; 601. Mounting strip; 602. Electromagnetic rod; 7. Pressure plate; 8. L-shaped fixing ring; 9. Limiting assembly; 901. Limiting strip; 902. Limiting groove; 10. Forward stirring assembly; 1 001. Rotating sleeve; 1002. Stirring blade one; 11. Reverse stirring assembly; 1101. Rotating shaft; 1102. Stirring blade two; 12. Discharge assembly; 1201. Follower rod; 1202. Discharge plate; 13. Connecting bar two; 14. Rebound assembly; 1401. T-shaped fixing rod; 1402. Spring; 15. Drive assembly; 1501. Drive motor; 1502. Bevel gear disc one; 1503. Bevel gear; 1504. Bevel gear disc two; 16. Connecting column. Detailed Implementation
[0023] To make the technical means, creative features, objectives and effects of the embodiments of this application easier to understand, the embodiments of this application are further described below in conjunction with the figures and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the embodiments of this application and are not intended to limit the embodiments of this application.
[0024] Please see Figure 1-4 This utility model provides a technical solution: a cleaning device for recycling renewable resources, including a cleaning tank 1, a feeding hopper 3 at the inlet on the outer side of the cleaning tank 1, a rejection component 6 on the feeding hopper 3, an inlet pipe, a drain pipe 4 and a lifting component 2 on the outer side of the cleaning tank 1, a drain valve on the drain pipe 4, a discharge component 5 at the discharge outlet on the lower side of the cleaning tank 1, a bracket installed on the lower side of the cleaning tank 1, and a pressure plate 7 installed on the cleaning tank 1 through a limiting component 9 on its inner side. Rebound components 14 are installed inside the mounting holes on the pressure plate 7. The forward stirring assembly 10 is equipped with a reverse stirring assembly 11 installed inside the forward stirring assembly 10 via a double-sided bearing. A discharge assembly 12 is installed at the lower end of the reverse stirring assembly 11, and a drive assembly 15 is installed at the upper end of the reverse stirring assembly 11. The drive assembly 15 is connected to the forward stirring assembly 10. An L-shaped fixing ring 8 is rotatably mounted on the drive assembly 15, with corresponding upper and lower L-shaped fixing rings 8 connected by a connecting strip 13. The upper L-shaped fixing ring 8 is connected to the lifting assembly 2 via a connecting column 16, and the lower L-shaped fixing ring 8 is connected to the spring-loaded assembly 14.
[0025] Specifically, the lifting components 2 are symmetrically arranged on the outer side of the cleaning tank 1, the rebound components 14 are slidably installed inside the mounting holes on the pressure plate 7, and the forward stirring components 10 are rotatably installed inside the mounting holes on the pressure plate 7.
[0026] The material to be cleaned and impurities removed is placed into the cleaning tank 1 through the feed hopper 3. The removal component 6 can adsorb and remove iron objects mixed in with the material. The cleaning liquid is injected into the cleaning tank 1. The lifting component 2 drives the L-shaped fixed ring 8 and the drive component 15 to move downward. The pressure plate 7 immerses the material in the cleaning liquid. The drive component 15 can drive the forward stirring component 10 and the reverse stirring component 11 to rotate, agitate and clean the material, and clean all the impurities adsorbed on the material. The cleaning liquid and impurities can be discharged through the drain pipe 4. The cleaned material can be cleaned out through the discharge component 12 and the discharge component 5.
[0027] Furthermore, the lifting component 2 includes a connecting strip 201 and a pneumatic telescopic rod 202. The connecting strip 201 is installed at the telescopic end of the pneumatic telescopic rod 202, and the pneumatic telescopic rod 202 is installed on the outer side of the cleaning tub 1.
[0028] Specifically, the extension and retraction of the pneumatic telescopic rod 202 can drive the drive assembly 15 to move up and down via the connecting strip 201.
[0029] Furthermore, the discharge assembly 5 includes an electric telescopic rod 501, a pull-out plate 502, an L-shaped sealing baffle 503, and a discharge hopper 504. The pull-out plate 502 is slidably mounted on the L-shaped sealing baffle 503, which is located at the discharge port on the lower side of the cleaning tank 1. The discharge hopper 504 is mounted on the L-shaped sealing baffle 503. The electric telescopic rod 501 is mounted on the lower side of the cleaning tank 1, and the telescopic end of the electric telescopic rod 501 is connected to the pull-out plate 502.
[0030] Specifically, the extension and retraction of the electric telescopic rod 501 can drive the pull plate 502 to move within the L-shaped sealing strip 503. The pull plate 502 can block the water and materials inside the cleaning tank 1. When the pull plate 502 is opened, the materials can be discharged through the discharge hopper 504.
[0031] Furthermore, the rejection assembly 6 includes a mounting strip 601 and an electromagnetic rod 602. The mounting strip 601 is mounted on the feed hopper 3, and the electromagnetic rod 602 is evenly distributed in the mounting holes on the mounting strip 601.
[0032] Specifically, after the electromagnetic rod 602 is energized, it generates magnetic force, and the uncleaned material enters the feed hopper 3. The electromagnetic rod 602 can adsorb iron objects mixed in the material.
[0033] Furthermore, the limiting component 9 includes a limiting strip 901 and a limiting groove 902. The limiting strip 901 is installed in the limiting groove 902 and is located on the inner side of the cleaning tub 1. The limiting groove 902 is located on the outer side of the pressure plate 7.
[0034] Specifically, when the pressure plate 7 moves up and down, it can move along the limit bar 901, which can limit the pressure plate 7.
[0035] Furthermore, the forward stirring assembly 10 includes a rotating sleeve 1001 and a stirring blade 1002. The rotating sleeve 1001 is rotatably installed in the mounting hole of the pressure plate 7, and the stirring blade 1002 is installed on the lower section of the outer side of the rotating sleeve 1001.
[0036] Specifically, when the rotating sleeve 1001 rotates, it can drive the stirring blade 1002 to rotate in the forward direction, thereby driving the material and cleaning liquid inside the cleaning tank 1 to rotate and clean.
[0037] Furthermore, the reverse stirring assembly 11 includes a rotating shaft 1101 and a stirring blade 1102. The rotating shaft 1101 is mounted inside the rotating sleeve 1001 via a double-sided bearing, and the stirring blade 1102 is mounted on the lower section of the outer side of the rotating shaft 1101.
[0038] Specifically, when the rotating shaft 1101 rotates, it can drive the stirring blades 1102 to rotate in the opposite direction, thereby driving the material and cleaning liquid inside the cleaning tank 1 to rotate and clean.
[0039] Furthermore, the discharge assembly 12 includes a follower rod 1201 and a discharge plate 1202. The follower rod 1201 is installed at the lower end of the rotating shaft 1101, and the discharge plate 1202 is evenly distributed on the lower section of the outer side of the follower rod 1201, and the discharge plate 1202 is in contact with the inner bottom surface of the cleaning tank 1.
[0040] Specifically, when the rotating shaft 1101 rotates, it can drive the follower rod 1201 to rotate, and the follower rod 1201 drives the discharge plate 1202 to rotate, stirring and carrying up the material at the bottom of the barrel for cleaning, and the material can be scraped out of the cleaning barrel 1 by the discharge plate 1202.
[0041] Furthermore, the rebound assembly 14 includes a T-shaped fixing rod 1401 and a spring 1402. The T-shaped fixing rod 1401 is installed inside the mounting hole of the pressure plate 7 and is connected to the lower L-shaped fixing ring 8. The spring 1402 is fitted on the T-shaped fixing rod 1401, and both ends of the spring 1402 are in contact with the pressure plate 7 and the lower L-shaped fixing ring 8, respectively.
[0042] Specifically, when the pressure plate 7 is under force, it can move along the T-shaped fixed rod 1401. The spring 1402 is compressed under force and at the same time applies a reverse force to the pressure plate 7, which can press the material into the cleaning liquid. When the pressure plate 7 is not under force, the spring 1402 can restore the pressure plate 7 to its original position.
[0043] Furthermore, the drive assembly 15 includes a drive motor 1501, a first bevel gear 1502, a bevel gear 1503, and a second bevel gear 1504. The drive motor 1501 is mounted on the connecting column 16 via a mounting bracket. The first bevel gear 1502 is mounted inside the upper L-shaped fixing ring 8 via a rotating slide rail. The second bevel gear 1504 is mounted inside the lower L-shaped fixing ring 8 via a rotating slide rail. The first bevel gear 1502 meshes with the bevel gear 1503, and the second bevel gear 1504 meshes with the bevel gear 1503. The first bevel gear 1502 is mounted on the rotating shaft 1101, the second bevel gear 1504 is mounted on the rotating sleeve 1001, and the bevel gear 1503 is mounted on the second connecting bar 13. The output shaft of the drive motor 1501 is connected to the first bevel gear 1502.
[0044] Specifically, drive motor 1501 is a servo motor. When drive motor 1501 is running, it can drive the rotation of bevel gear disk 1502. Bevel gear disk 1502 drives bevel gear 1503 and rotating shaft 1101 to rotate. Bevel gear 1503 drives bevel gear disk 1504 to rotate. Bevel gear disk 1504 drives rotating sleeve 1001 to rotate.
[0045] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A cleaning and impurity removal device for recycling renewable resources, comprising a cleaning tank (1), characterized in that: A feeding hopper (3) is provided at the feed inlet on the outer side of the cleaning tank (1). A rejection component (6) is provided on the feeding hopper (3). An inlet pipe, a drain pipe (4), and a lifting component (2) are provided on the outer side of the cleaning tank (1). A drain valve is provided on the drain pipe (4). A discharge component (5) is provided at the discharge port on the lower side of the cleaning tank (1). A bracket is installed on the lower side of the cleaning tank (1). A pressure plate (7) is installed on the cleaning tank (1) through a limiting component (9) provided on its inner side. A rebound component (14) and a forward stirring component (10) are respectively installed in the mounting holes on the pressure plate (7). The forward stirring component (14) is installed in the mounting holes on the pressure plate (7). Inside the 0), a reverse stirring assembly (11) is installed via a double-sided bearing. A discharge assembly (12) is installed at the lower end of the reverse stirring assembly (11). A drive assembly (15) is installed at the upper end of the reverse stirring assembly (11). The drive assembly (15) is connected to the forward stirring assembly (10). An L-shaped fixing ring (8) is rotatably installed on the drive assembly (15). The L-shaped fixing ring (8) is connected via a connecting strip (13). The upper L-shaped fixing ring (8) is connected to the lifting assembly (2) via a connecting column (16). The lower L-shaped fixing ring (8) is connected to the spring-loaded assembly (14).
2. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The lifting assembly (2) includes a connecting strip (201) and a pneumatic telescopic rod (202). The connecting strip (201) is installed at the telescopic end of the pneumatic telescopic rod (202), and the pneumatic telescopic rod (202) is installed on the outer side of the cleaning tub (1).
3. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The discharge assembly (5) includes an electric telescopic rod (501), a pull plate (502), an L-shaped sealing strip (503), and a discharge hopper (504). The pull plate (502) is slidably installed on the L-shaped sealing strip (503). The L-shaped sealing strip (503) is located at the discharge port on the lower side of the cleaning tank (1). The discharge hopper (504) is installed on the L-shaped sealing strip (503). The electric telescopic rod (501) is installed on the lower side of the cleaning tank (1), and the telescopic end of the electric telescopic rod (501) is connected to the pull plate (502).
4. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The rejection assembly (6) includes a mounting strip (601) and an electromagnetic rod (602). The mounting strip (601) is mounted on the feed hopper (3), and the electromagnetic rod (602) is evenly distributed in the mounting holes on the mounting strip (601).
5. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The limiting component (9) includes a limiting strip (901) and a limiting groove (902). The limiting strip (901) is installed in the limiting groove (902). The limiting strip (901) is located on the inner side of the cleaning tub (1). The limiting groove (902) is located on the outer side of the pressure plate (7).
6. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The forward stirring assembly (10) includes a rotating sleeve (1001) and a stirring blade (1002). The rotating sleeve (1001) is rotatably installed in the mounting hole of the pressure plate (7), and the stirring blade (1002) is installed on the lower section of the outer side of the rotating sleeve (1001).
7. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The reverse stirring assembly (11) includes a rotating shaft (1101) and a stirring blade (1102). The rotating shaft (1101) is installed inside the rotating sleeve (1001) through a double-sided bearing, and the stirring blade (1102) is installed on the lower section of the outer side of the rotating shaft (1101).
8. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The discharge assembly (12) includes a follower rod (1201) and a discharge plate (1202). The follower rod (1201) is installed at the lower end of the rotating shaft (1101). The discharge plate (1202) is evenly distributed on the lower section of the outer side of the follower rod (1201) and is in contact with the inner bottom surface of the cleaning tank (1).
9. The impurity removal and cleaning device for recycling renewable resources according to claim 1, characterized in that: The rebound assembly (14) includes a T-shaped fixing rod (1401) and a spring (1402). The T-shaped fixing rod (1401) is installed inside the mounting hole of the pressure plate (7). The T-shaped fixing rod (1401) is connected to the lower L-shaped fixing ring (8). The spring (1402) is fitted on the T-shaped fixing rod (1401), and the two ends of the spring (1402) are in contact with the pressure plate (7) and the lower L-shaped fixing ring (8) respectively.
10. A cleaning and impurity removal device for recycling renewable resources according to claim 1, 6, or 7, characterized in that: The drive assembly (15) includes a drive motor (1501), a bevel gear one (1502), a bevel gear (1503), and a bevel gear two (1504). The drive motor (1501) is mounted on the connecting column (16) via a mounting bracket. The bevel gear one (1502) is mounted inside the upper L-shaped fixing ring (8) via a rotating slide rail. The bevel gear two (1504) is mounted inside the lower L-shaped fixing ring (8) via a rotating slide rail. The bevel gear one (1502) meshes with the bevel gear (1503), and the bevel gear two (1504) meshes with the bevel gear (1503). The bevel gear one (1502) is mounted on the rotating shaft (1101), the bevel gear two (1504) is mounted on the rotating sleeve (1001), and the bevel gear (1503) is mounted on the connecting strip two (13). The output shaft of the drive motor (1501) is connected to the bevel gear one (1502).