A waste activated carbon cleaning device

By designing a combination of support frame, cleaning tank and positioning structure, and using a servo motor to drive the stirring rod and a tilting motor to drive the micro-rotation of the cleaning tank, the problems of low cleaning efficiency and secondary pollution in existing waste activated carbon cleaning devices are solved, achieving high-efficiency cleaning and anti-clogging effects.

CN224272438UActive Publication Date: 2026-05-26CHANGZHOU FUCHUANG RENEWABLE RESOURCES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU FUCHUANG RENEWABLE RESOURCES CO LTD
Filing Date
2025-04-01
Publication Date
2026-05-26

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Abstract

This utility model discloses a waste activated carbon cleaning device, including a support frame and a cleaning tank. The cleaning tank is located in the upper middle position of the support frame. A mounting frame is fixedly connected to the outer ring of the cleaning tank. The mounting frame has multiple positioning holes. A positioning structure for easy adjustment of the cleaning tank angle is provided between the support frame and the mounting frame. The positioning structure includes positioning component one and positioning component two, both of which are fixed to the outer periphery of the mounting frame by fasteners. By setting up the cleaning components, when the servo motor drives the rotating shaft to rotate inside the cleaning tank, the rotating shaft drives multiple sets of stirring rods and spiral blades to stir inside the cleaning tank. The bottom set of stirring rods drives the transmission sleeve to rotate in the annular groove, and drives multiple scrapers at the bottom of the transmission sleeve to abut and scrape against the bottom wall of the cleaning tank, which facilitates the cleaning of the main body of sediment at the bottom of the cleaning tank, prevents residue from remaining inside the device, prevents blockage during discharge, and improves the practicality of the device.
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Description

Technical Field

[0001] This utility model relates to a waste activated carbon cleaning device, belonging to the field of activated carbon processing technology. Background Technology

[0002] Activated carbon, also known as activated carbon, is a black, powdery, lumpy, granular, or honeycomb-like amorphous carbon, and can also exist as regularly arranged crystalline carbon. Besides carbon, activated carbon contains two types of impurities: one is chemically bonded elements, mainly oxygen and hydrogen. These elements remain in the carbon due to incomplete carbonization, or are introduced during activation by non-carbon elements chemically bonding to the activated carbon surface, such as during steam activation, when the activated carbon surface is oxidized or oxidized by steam. The other type of impurity is ash, the inorganic component of activated carbon; ash in activated carbon easily causes secondary pollution. Waste activated carbon is highly toxic and, depending on its source, may be corrosive. Reusing waste activated carbon after treatment can reduce resource waste.

[0003] However, existing waste activated carbon cleaning devices suffer from problems such as low cleaning efficiency, high energy consumption, and risk of secondary pollution. During the cleaning process, impurities are easily adsorbed on the inner bottom wall of the device, affecting the cleaning of the next batch of activated carbon and increasing maintenance costs. Therefore, there is an urgent need to design a waste activated carbon cleaning device to solve the above problems. Utility Model Content

[0004] The purpose of this invention is to address the aforementioned problems in the existing technology and overcome the shortcomings mentioned in the background technology by designing a waste activated carbon cleaning device.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows:

[0006] A waste activated carbon cleaning device includes a support frame and a cleaning tank. The cleaning tank is located at the upper center of the support frame. A mounting frame is fixedly connected to the outer ring of the cleaning tank. The mounting frame has multiple positioning holes. A positioning structure for easy adjustment of the cleaning tank angle is provided between the support frame and the mounting frame. The positioning structure includes a positioning component one and a positioning component two. Both positioning components one and two are fixed to the outer sides of the mounting frame by fasteners, including bolts and nuts. The top and bottom of the cleaning tank are respectively provided with an inlet pipe and an outlet pipe. Both the inlet pipe and the outlet pipe are provided with detachable outer covers. The bottom of the cleaning tank is conical. An annular groove is formed inside the cleaning tank. A cleaning component to assist in cleaning the main body is provided inside the cleaning tank. A servo motor is installed on the top of the cleaning tank. The servo motor drives the cleaning component to stir the main body. A slide rail seat is welded to the inner right side of the support frame. A sliding groove is formed on the slide rail seat.

[0007] Preferably, the positioning component one includes a flip motor, which is mounted on the left outer wall of the support frame via a support plate one. The output end of the flip motor passes through the left inner wall of the support frame and is fixedly connected to a connecting shaft. The end of the connecting shaft away from the flip motor is fixedly connected to a clamping block one. The clamping block one has a positioning hole two. Both the positioning hole two and the positioning hole one are used with bolts.

[0008] Preferably, the second positioning component includes an electric push rod and a stabilizing plate. The electric push rod is mounted on the outer right side of the support frame via the second support plate. The output end of the electric push rod passes through the inner right side of the support frame and is fixedly connected to a connecting rod. The stabilizing plate slides within a groove opened in the slide rail seat.

[0009] Preferably, the end of the connecting rod away from the electric push rod is fixedly connected to the stabilizing plate, and the side of the stabilizing plate away from the connecting rod is rotatably connected to a clamping block two. The clamping block two has a positioning hole three, and both the positioning hole three and the positioning hole one are used with bolts.

[0010] Preferably, the cleaning assembly includes a rotating shaft, the top of which is fixedly connected to the output end of a servo motor, and multiple sets of stirring rods are equidistantly arranged on the outer ring of the rotating shaft, wherein a transmission collar is fixedly connected to the outer ring of the bottommost set of stirring rods.

[0011] Preferably, the transmission collar slides within the annular groove, and a spiral blade is fixedly provided on the outer periphery of the bottom of the rotating shaft, with the spiral blade located at a conical position at the bottom of the cleaning tank.

[0012] Preferably, the bottom of the transmission collar is fixedly connected with multiple scrapers at equal intervals, and the multiple scrapers are in contact with the conical wall at the bottom of the cleaning tank. The multiple stirring rods of the bottommost group are fixed to the corresponding number of scrapers by multiple support rods.

[0013] The beneficial effects achieved by this utility model are:

[0014] 1. By setting up a cleaning component, when the servo motor drives the rotating shaft to rotate inside the cleaning tank, the rotating shaft drives multiple sets of stirring rods and spiral blades to stir inside the cleaning tank, increasing the cleaning effect of waste activated carbon. The bottom set of stirring rods drives the transmission sleeve to rotate in the annular groove, and drives multiple scrapers at the bottom of the transmission sleeve to scrape against the bottom wall of the cleaning tank, which facilitates the cleaning of the main body settled at the bottom of the cleaning tank, improving the cleaning effect of the device on the main body and the internal cleaning effect. The spiral blades and multiple scrapers can assist in the discharge of the main body, prevent residues inside the device, prevent blockage during discharge, and improve the practicality of the device.

[0015] 2. By setting up a positioning structure, bolts and nuts are used to fix clamping block one and clamping block two on both sides of the mounting frame through the positioning holes. By starting the flipping motor, clamping block one and clamping block two drive the mounting frame and cleaning tank in the middle to rotate repeatedly. This can assist the cleaning and discharge of the main body inside the cleaning tank, while reducing the secondary pollution caused by impurities remaining inside the cleaning tank. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of one embodiment of the present utility model;

[0017] Figure 2 for Figure 1 The diagram shows a three-dimensional representation of the positioning structure.

[0018] Figure 3 for Figure 1 The diagram shows a cross-section of the internal structure of the cleaning tank.

[0019] Reference numerals: 1. Support frame; 2. Cleaning tank; 3. Mounting frame; 4. Positioning structure; 41. Positioning component one; 411. Tilting motor; 412. Connecting shaft; 413. Clamping block one; 42. Positioning component two; 421. Electric push rod; 422. Connecting rod; 423. Stabilizing plate; 424. Clamping block two; 5. Feed pipe; 6. Discharge pipe; 7. Annular groove; 8. Cleaning component; 81. Rotating shaft; 82. Stirring rod; 83. Transmission collar; 84. Spiral blade; 85. Scraper; 9. Servo motor; 10. Slide rail seat. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present invention, and should not be used to limit the scope of protection of the present invention.

[0021] Example 1

[0022] like Figure 1-3As shown, the present invention proposes a waste activated carbon cleaning device, including a support frame 1 and a cleaning tank 2. The cleaning tank 2 is located at the upper middle position of the support frame 1. A mounting frame 3 is fixedly connected to the outer ring of the cleaning tank 2. The mounting frame 3 has multiple positioning holes. A positioning structure 4 is provided between the support frame 1 and the mounting frame 3 to facilitate the adjustment of the angle of the cleaning tank 2. The positioning structure 4 includes a positioning component 41 and a positioning component 42. Both positioning components 41 and 42 are fixed to the outer sides of the mounting frame 3 by fasteners, including bolts and nuts. The top and bottom of the cleaning tank 2 are respectively provided with an inlet pipe 5 and an outlet pipe 6. Both the inlet pipe 5 and the outlet pipe 6 are provided with detachable outer covers. The bottom of the cleaning tank 2 is conical. An annular groove 7 is provided inside the cleaning tank 2. A cleaning component 8 for assisting the main body cleaning is provided inside the cleaning tank 2. A servo motor 9 is installed on the top of the cleaning tank 2. The servo motor 9 drives the cleaning component 8 to stir the main body. A slide rail seat 10 is welded to the inner right side of the support frame 1. A sliding groove is provided on the slide rail seat 10.

[0023] In this embodiment, a support frame 1 and a cleaning tank 2 are included. A mounting frame 3 is fixedly connected to the outer ring of the cleaning tank 2. The mounting frame 3 is provided to facilitate fixing the position of the cleaning tank 2. The cleaning tank 2 can be fixed in the middle of the support frame 1 by positioning components 41 and 42 on both sides of the mounting frame 3. The positioning components 41 and 42 can drive the cleaning tank 2 to rotate repeatedly at an angle greater than 30 degrees and less than 100 degrees. The top and bottom of the cleaning tank 2 are respectively provided with a feed pipe 5 and a discharge pipe 6. Both the feed pipe 5 and the discharge pipe 6 are provided with detachable outer covers. The main body to be cleaned is put into the cleaning tank 2 through the feed pipe 5 and discharged through the discharge pipe 6. The cleaning tank 2 is provided with a cleaning component 8 to assist in cleaning the main body. The cleaning component 8 is driven by a servo motor 9 to achieve efficient stirring and ensure uniform cleaning. A slide rail seat 10 is provided to adjust the distance between the positioning component 42 and the cleaning tank 2, so as to facilitate the removal of the cleaning tank 2 from the support frame 1.

[0024] Example 2

[0025] like Figure 1-3As shown, the waste activated carbon cleaning device proposed in this utility model, compared with embodiment 1, further includes a positioning component 41, which includes a flip motor 411. The flip motor 411 is installed on the left outer wall of the support frame 1 via a support plate 1. The output end of the flip motor 411 passes through the left inner wall of the support frame 1 and is fixedly connected to a connecting shaft 412. The end of the connecting shaft 412 away from the flip motor 411 is fixedly connected to a clamping block 413. The clamping block 413 has a positioning hole 2. Both the positioning hole 2 and the positioning hole 1 are used with bolts. The positioning component 42 includes an electric push rod 421 and a stabilizing plate 423. The electric push rod 421 is installed on the right outer wall of the support frame 1 via the support plate 2. The output end of the electric push rod 421 passes through the right inner wall of the support frame 1 and is fixedly connected to a connecting rod 422. The stabilizing plate 423 slides in the groove opened in the slide rail seat 10. The connecting rod 422 is away from the electric push rod 421. One end of 21 is fixedly connected to the stabilizing plate 423. The stabilizing plate 423 is rotatably connected to the side away from the connecting rod 422 by a clamping block 424. The clamping block 424 has a positioning hole 3. Both the positioning hole 3 and the positioning hole 1 are used with bolts. The cleaning assembly 8 includes a rotating shaft 81. The top of the rotating shaft 81 is fixedly connected to the output end of the servo motor 9. Multiple sets of stirring rods 82 are equidistantly arranged on the outer ring of the rotating shaft 81. A transmission collar 83 is fixedly connected to the outer ring of the bottom set of stirring rods 82. The transmission collar 83 slides in the annular groove 7. A spiral blade 84 is fixedly arranged on the outer circumference of the bottom of the rotating shaft 81. The spiral blade 84 is located in the conical position at the bottom of the cleaning tank 2. Multiple scrapers 85 are fixedly connected at equal intervals at the bottom of the transmission collar 83. The multiple scrapers 85 contact the conical wall at the bottom of the cleaning tank 2. The multiple stirring rods 82 of the bottom set are fixed to the corresponding number of scrapers 85 by multiple support rods.

[0026] In this embodiment, clamping block 1 413 and clamping block 2 424 are provided to fix the mounting frame 3 around the outer periphery of the cleaning tank 2. Two bolts can be inserted and nuts used to position the cleaning tank 2 through positioning holes 1 on both sides of the mounting frame 3, which in turn cooperate with positioning holes 2 and 3 on clamping blocks 1 413 and 2 424, thus ensuring the cleaning tank 2 remains stable during the cleaning process and improving the cleaning effect. A slide rail seat 10 and a stabilizing plate 423 are provided. When the electric push rod 421 drives the connecting rod 422 to extend, it can cause the stabilizing plate 423 to slide within the groove of the slide rail seat 10, thereby bringing clamping block 2 424 closer to the cleaning tank 2 and fixing it through the mounting frame 3. If the cleaning tank 2 needs to be tilted or shaken, the tilting motor 4 is activated. 11. The clamping blocks 1 413 and 2 424 drive the middle mounting frame 3 and cleaning tank 2 to rotate repeatedly, which can assist the cleaning and discharge of the main body inside the cleaning tank 2. Multiple sets of stirring rods 82 are equidistantly arranged on the outer ring of the rotating shaft 81. A transmission collar 83 is fixedly connected to the outer ring of the bottom set of stirring rods 82, which facilitates the sliding of the transmission collar 83 in the annular groove 7. This ensures that the scraper 85 on the outer circumference of the bottom of the rotating shaft 81 is in close contact with the conical wall at the bottom of the cleaning tank 2. The increased contact area between the scraper 85 and the conical wall improves the friction, making the cleaning tank 2 more stable during the cleaning process and avoiding uneven cleaning caused by shaking. At the same time, the fixed design of the stirring rods 82 and the scraper 85 through the support rod enhances the stability of the overall structure.

[0027] Working Principle: During cleaning, the device first secures the cleaning tank 2 between positioning component 1 41 and positioning component 2 42 using fasteners to ensure stability. Clamping block 1 413 is then engaged on one side of the mounting frame 3, bolted into positioning holes 2 and 1, and secured with nuts. Next, the electric push rod 421 extends the connecting rod 422, pushing the stabilizing plate 423 along the slide rail, adjusting the distance between the cleaning tank 2 and the slide rail seat 10. Clamping block 2 424 is then engaged on the other side of the mounting frame 3, bolted into positioning holes 3 and 1, and tightened with nuts to ensure overall device stability. Next, the main body to be cleaned and the accompanying cleaning medium are discharged into the cleaning tank 2 through the feed pipe 5, and the outer cover on the feed pipe 5 is tightened. Finally, the servo motor 9 is started to rotate... Shaft 81 drives multiple sets of stirring rods 82 and spiral blades 84 to agitate inside the cleaning tank 2, increasing the cleaning effect of waste activated carbon. The stirring rods 82 at the bottom drive the transmission sleeve 83 to rotate in the annular groove 7, and drive multiple scrapers 85 at the bottom of the transmission sleeve 83 to scrape against the bottom wall of the cleaning tank 2, which facilitates the cleaning of the main body settled at the bottom of the cleaning tank 2, improving the cleaning and internal cleaning effect of the device. The spiral blades 84 and multiple scrapers 85 can assist in the discharge of the main body, prevent residues from remaining inside the device, and prevent blockage during discharge. At the same time, by starting the tilting motor 411, the clamping block 1 413 and clamping block 2 424 drive the middle mounting frame 3 and the cleaning tank 2 to rotate repeatedly, which can assist in the cleaning and discharge of the main body inside the cleaning tank 2, while reducing the secondary pollution caused by impurities remaining inside the cleaning tank 2.

[0028] The above are merely preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A waste activated carbon cleaning device, comprising a support frame (1) and a cleaning tank (2), characterized in that: The cleaning tank (2) is located above the middle of the support frame (1). The outer ring of the cleaning tank (2) is fixedly connected to the mounting frame (3). The mounting frame (3) has multiple positioning holes. A positioning structure (4) is provided between the support frame (1) and the mounting frame (3) to facilitate the adjustment of the angle of the cleaning tank (2). The positioning structure (4) includes a positioning component one (41) and a positioning component two (42). The positioning component one (41) and the positioning component two (42) are both fixed to the outer sides of the mounting frame (3) by fasteners. The fasteners include bolts and nuts for use. The top and bottom are respectively provided with a feed pipe (5) and a discharge pipe (6). Both the feed pipe (5) and the discharge pipe (6) are provided with detachable outer covers. The bottom of the cleaning tank (2) is conical. The cleaning tank (2) has an annular groove (7) inside. The cleaning tank (2) is provided with a cleaning component (8) to assist in cleaning the main body. The top of the cleaning tank (2) is equipped with a servo motor (9). The servo motor (9) drives the cleaning component (8) to stir the main body. The right inner wall of the support frame (1) is welded with a slide rail seat (10). The slide rail seat (10) has a sliding groove.

2. The waste activated carbon cleaning device according to claim 1, wherein The positioning component 1 (41) includes a flip motor (411). The flip motor (411) is installed on the left outer wall of the support frame (1) through a support plate 1. The output end of the flip motor (411) passes through the left inner wall of the support frame (1) and is fixedly connected to a connecting shaft (412). The end of the connecting shaft (412) away from the flip motor (411) is fixedly connected to a clamping block 1 (413). The clamping block 1 (413) has a positioning hole 2. Both the positioning hole 2 and the positioning hole 1 are used with bolts.

3. The waste activated carbon cleaning device according to claim 1, wherein The second positioning component (42) includes an electric push rod (421) and a stabilizing plate (423). The electric push rod (421) is installed on the outer right side of the support frame (1) through the second support plate. The output end of the electric push rod (421) passes through the inner right side of the support frame (1) and is fixedly connected to a connecting rod (422). The stabilizing plate (423) slides in the groove opened in the slide rail seat (10).

4. The waste activated carbon cleaning device according to claim 3, wherein The end of the connecting rod (422) away from the electric push rod (421) is fixedly connected to the stabilizing plate (423). The side of the stabilizing plate (423) away from the connecting rod (422) is rotatably connected to the clamping block two (424). The clamping block two (424) has a positioning hole three. The positioning hole three and the positioning hole one are used with bolts.

5. The waste activated carbon cleaning device of claim 1, wherein The cleaning assembly (8) includes a rotating shaft (81), the top of which is fixedly connected to the output end of a servo motor (9), and multiple sets of stirring rods (82) are equidistantly arranged on the outer ring of the rotating shaft (81), wherein a transmission collar (83) is fixedly connected to the outer ring of the bottommost set of stirring rods (82).

6. The spent activated carbon washing apparatus according to claim 5, wherein The transmission sleeve ring (83) slides in the annular groove (7), and the bottom outer periphery of the rotating shaft (81) is fixedly provided with a spiral blade (84) located at the conical position of the inner bottom of the cleaning tank (2).

7. The spent activated carbon washing apparatus according to claim 5, wherein A plurality of scrapers (85) are fixedly connected to the bottom of the transmission sleeve ring (83) at equal intervals, the plurality of scrapers (85) are in contact with the conical wall of the inner bottom of the cleaning tank (2), and the plurality of stirring rods (82) at the bottom are fixedly connected to the corresponding number of scrapers (85) through a plurality of supporting rods.