Efficient frequency sweeping device for circulating water

Through the combination of electromagnetic coil and electrode plate, impurities are condensed and adsorbed in circulating water, and the electrode plate is cleaned with the cleaning strip of the linkage mechanism, which solves the problems of poor descaling effect and cumbersome operation in the prior art, and achieves an efficient and convenient descaling effect.

CN223087662UActive Publication Date: 2025-07-11GUANGDONG YUTANG ENVIRONMENTAL PROTECTION GRP CO LTD
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Patent Information

Application Number
CN202422183078.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-07-11
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

When used, the existing high-efficiency circulating water sweeping device has poor descaling and cumbersome operation, and some impurities with high viscosity are difficult to completely remove.

Method used

The electromagnetic coil is used to generate a magnetic field to condense the impurities into blocks, and the electrostatic field of the electrode plate is used to absorb impurities. At the same time, the synchronous movement of the dirt cleaning plate and the cleaning strip is achieved through the linkage mechanism. The cleaning strip comes into contact with the electrode plate to remove the agglomerated impurities.

Benefits of technology

It realizes rapid condensation and adsorption of impurities, improves descaling efficiency, and achieves convenient cleaning of electrode plates through simplified operation, achieving better descaling effect and reducing the cost of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a circulating water efficient frequency sweep device, including circulating water treatment tank, inlet pipe, solenoid coil, drain pipe, circulating water treatment tank both sides both connected with inlet pipe, circulating water treatment tank both sides both connected with drain pipe, and circulating water treatment tank both ends both extend into the inside of circulating water treatment tank, and electromagnetic coil both ends both extend into the inside of circulating water treatment tank. And electromagnetic coils are wound on the water inlet pipes. The electromagnetic coils are wound on the two groups of water inlet pipes, the electromagnetic coils are connected with the alternating current power supply, and circulating liquid is injected into the circulating water treatment tank through the water inlet pipes, so that the circulating water can be subjected to frequency sweeping treatment by utilizing a magnetic field generated by the electromagnetic coils, and impurities in the circulating water can be condensed into blocks; furthermore, the impurities are adsorbed to the corresponding electrode plates in cooperation with an electrostatic field generated by the electrode plates, so that the circulating water does not carry the impurities to flow out together after being discharged from the drainage pipe, and the descaling and cleaning effects are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of circulating water treatment, in particular to a high-efficiency frequency-sweeping device for circulating water. Background Art

[0002] In industrial production, the circulating water system is widely used in process links such as cooling and heating. However, after long-term operation, minerals such as calcium and magnesium in the water will deposit on the surfaces of equipment such as pipelines and heat exchangers to form scale, seriously affecting the heat exchange efficiency of the system, increasing energy consumption, and even causing equipment failures. To solve this problem, a high-efficiency frequency-sweeping device came into being.

[0003] In a frequency-sweeping device for water treatment with the publication number of CN221166181U, it includes a water treatment box body and a driving lifting component. An outlet pipe is arranged on the left side of the water treatment box body, a return pipe is arranged on the right side of the water treatment box body, a water pump is arranged at the lower end of the outlet pipe, a water inlet pipe is arranged on the side of the water pump, a sliding box is slidably arranged inside the water treatment box body, the interior of the sliding box is divided into three accommodation cavities, electrodes are respectively arranged on the top wall and the bottom wall of the two accommodation cavities where the upper end of the sliding box is located; the driving lifting component is arranged at the lower left end of the water treatment box body. After the water in the outlet pipe of the utility model passes through the frequency-sweeping magnetic field generated by the electromagnetic coil, the impurities in the water can be more effectively condensed into lumps. Under the action of the electrostatic field generated by the electrodes, the lumpy impurities can be better adsorbed on the electrodes, preventing the impurities from continuing to flow with the water. By setting a cleaning component to wash and remove the impurities in the water, the descaling effect is improved.

[0004] When the above-mentioned existing water treatment frequency-sweeping device is in use, when the electrodes need to be cleaned, it is necessary to operate the lifting drive component and cooperate with components such as the adjustment component to work, and the sliding box is lifted to wash the motor board. On the one hand, the cooperation of multiple parts and components has the problem of cumbersome overall operation. On the other hand, using the flushing method for cleaning may cause some impurities with greater viscosity to be not easily washed away, resulting in incomplete cleaning and descaling of the motor, and the effect is not good. Therefore, corresponding improvements are needed. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a high-efficiency frequency-sweeping device for circulating water to solve the problem of poor descaling and cleaning effect of the existing high-efficiency frequency-sweeping device for circulating water when in use as proposed in the above background art.

[0006] To achieve the above object, the present utility model provides the following technical solutions: a high-efficiency frequency-sweeping device for circulating water, including a circulating water treatment tank, a water inlet pipe, electromagnetic coils, and a drain pipe. Both ends of one side of the circulating water treatment tank are connected with water inlet pipes. Both ends of the other side of the circulating water treatment tank are connected with drain pipes, and one end of each drain pipe extends into the circulating water treatment tank. Electromagnetic coils are wound around the water inlet pipes, and one end of each electromagnetic coil is connected to an AC power supply;

[0007] It further includes:

[0008] The top of the circulating water treatment tank is provided with an opening with a rectangular cross-section, and the opening is filled with a blocking plug. One side inside the circulating water treatment tank is connected with a movable plate, and the other side inside the circulating water treatment tank is connected with a partition plate. A connecting column is connected between the movable plate and the partition plate. The top of the circulating water treatment tank is connected with an electric push rod, and one end of the electric push rod extends into the circulating water treatment tank and is connected to the top end of the movable plate. Cleaning and descaling components are arranged on both sides inside the circulating water treatment tank. A linkage mechanism is arranged on one side of the circulating water treatment tank, and the linkage mechanism includes a driving electrode. The driving electrode is arranged on one side of the circulating water treatment tank. One end of the driving electrode is connected with a driving shaft, and one end of the driving shaft extends into the circulating water treatment tank. A linkage shaft is connected inside the circulating water treatment tank below the driving shaft. One ends of the linkage shaft and the driving shaft extend outside the circulating water treatment tank and are connected with a pulley assembly. Gears are sleeved on the outer sides of the driving shaft and the linkage shaft.

[0009] When using the high-efficiency frequency-sweeping device for circulating water of this technical solution, during use, by using the linkage mechanism, the synchronous movement of the two dirt cleaning plates and cleaning strips can be realized, so as to clean the corresponding electrode plates and achieve the descaling effect.

[0010] Preferably, the pulley assembly includes a driving wheel, a driven wheel, and a driving belt. The driving wheel is sleeved on the driving shaft, the driven wheel is sleeved on the linkage shaft, and a driving belt is connected between the driving wheel and the driven wheel.

[0011] Preferably, the movable plate and the partition plate are of the same size, and electrode plates are connected to the bottom ends of the movable plate and the partition plate.

[0012] Preferably, rectangular cross-sectioned sliding grooves are arranged on both inner walls of the circulating water treatment tank, and limiting sliding blocks are slidably connected inside the sliding grooves. One side of each limiting sliding block is connected to the movable plate and the partition plate, and the movable plate and the partition plate are slidably connected to the circulating water treatment tank.

[0013] Preferably, the cleaning and descaling assembly includes a dirt cleaning plate disposed inside the circulating water treatment tank, and cleaning strips are uniformly connected to the dirt cleaning plates. A guiding column penetrates through the inside of the dirt cleaning plate, and a toothed plate is connected to one side of the guiding column. The bottom end of the toothed plate meshes with a gear.

[0014] Preferably, two groups of the dirt cleaning plates are disposed inside the circulating water treatment tank, and the dirt cleaning plates and the cleaning strips are both disposed below the electrode plates.

[0015] Preferably, a through hole with a circular cross-section is disposed inside the cleaning strip, and the dirt cleaning plate slides horizontally on the guiding column.

[0016] Compared with the prior art, the beneficial effects of the present utility model are as follows: The high-efficiency frequency-sweeping device for circulating water can not only quickly agglomerate impurities in the circulating water, and use the electrode plates to quickly adsorb the agglomerated impurities, improving the treatment efficiency of the circulating water, but also quickly and conveniently clean the electrode plates for treating the circulating water, achieving a good descaling effect.

[0017] By winding electromagnetic coils on both groups of water inlet pipes, connecting the electromagnetic coils to an AC power supply, and then injecting the circulating liquid into the circulating water treatment tank through the water inlet pipes, the magnetic field generated by the electromagnetic coils can be used to perform frequency-sweeping treatment on the circulating water, so that the impurities in the circulating water can be condensed into lumps. Further, the static electric field generated by the electrode plates is used to adsorb the impurities onto the corresponding electrode plates, so that when the circulating water is discharged from the drain pipe, it will not carry impurities and flow out together, achieving the effect of descaling and cleaning.

[0018] After the treatment of the circulating water is completed, drive the electric push rod to push the movable plate downward. Cooperating with the connecting column, the synchronous movement of the partition plate can be achieved. Further, the limit slider slides in the chute to limit and guide the downward movement of the movable plate and the partition plate until the electrode plate moves directly above the cleaning strip, which is convenient to operate. Then take out the stopper, introduce the cleaning liquid into the circulating water treatment tank, then drive the driving electrode to drive the driving shaft to rotate, and cooperate with the belt pulley assembly to synchronously rotate the linkage shaft, and then rotate the two groups of gears. Then, by using the meshing action of the gears and the toothed plate, the toothed plate, the dirt cleaning plate and the cleaning strip perform horizontal movement, and then the cleaning strip contacts the electrode plate. Cooperating with the cleaning liquid, the agglomerated impurities adhered to the electrode plate can be swept off, achieving the effect of cleaning and descaling. The operation is convenient, and the whole only relies on a single driving electrode for driving, achieving the effect of saving the use cost. Description of the Drawings

[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0020] Figure 1 Schematic three-dimensional structure diagram of the present invention;

[0021] Figure 2 Schematic three-dimensional sectional structure diagram of the present invention;

[0022] Figure 3 Schematic three-dimensional structure diagram of the dirt cleaning plate of the present invention;

[0023] Figure 4 Schematic three-dimensional structure diagram of the linkage mechanism of the present invention;

[0024] Figure 5 Schematic three-dimensional structure diagram of the movable plate of the present invention.

[0025] Explanation of the reference numerals in the drawings: 1, circulating water treatment tank; 101, chute; 2, water inlet pipe; 3, electromagnetic coil; 4, drain pipe; 5, stopper; 6, electric push rod; 7, linkage mechanism; 701, driving electrode; 702, driving shaft; 703, linkage shaft; 704, belt pulley assembly; 705, gear; 8, movable plate; 9, electrode plate; 10, connecting column; 11, partition plate; 12, dirt cleaning plate; 1201, cleaning strip; 13, toothed plate; 14, guiding column; 15, limiting slider. Detailed implementation manners

[0026] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0027] Please refer to Figures 1 - 5 , the present invention provides the following technical solutions:

[0028] Embodiment 1

[0029] To solve the problem of cumbersome circulating water treatment operations in the prior art, the following technical solutions are hereby disclosed. Specifically, please refer to Figure 1 , Figure 2, the high-efficiency frequency-sweeping device for circulating water provided by this application includes a circulating water treatment tank 1, a water inlet pipe 2, an electromagnetic coil 3, and a drain pipe 4. Both ends of one side of the circulating water treatment tank 1 are connected to the water inlet pipe 2, and both ends of the other side of the circulating water treatment tank 1 are connected to the drain pipe 4, and one end of each drain pipe 4 extends into the circulating water treatment tank 1. The electromagnetic coils 3 are wound around the water inlet pipes 2, and one end of each electromagnetic coil 3 is connected to an AC power supply. It further includes: There is an opening with a rectangular cross-section at the top of the circulating water treatment tank 1, and a plug 5 is filled in the opening.

[0030] When this embodiment is in use, the electromagnetic coils 3 are wound around both groups of water inlet pipes 2, and the electromagnetic coils 3 are connected to the AC power supply. Then, the circulating liquid is injected into the circulating water treatment tank 1 through the water inlet pipes 2. The magnetic field generated by the electromagnetic coils 3 can be used to perform frequency-sweeping treatment on the circulating water, causing the impurities in the circulating water to condense into lumps. Further, the static electric field generated by the electrode plates 9 is used to adsorb the impurities onto the corresponding electrode plates 9. After the circulating water is discharged from the drain pipes 4, it will not carry impurities and flow out together, achieving the effect of scale removal and cleaning.

[0031] Embodiment 2

[0032] This embodiment is different from Embodiment 1. By setting the linkage mechanism 7, the horizontal movement of the two groups of dirt cleaning plates 12 and cleaning strips 1201 can be realized, so as to efficiently and synchronously clean the electrode plates 9, and the scale removal effect is good. Therefore, the following technical solutions are disclosed. For details, please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5, one side inside the circulating water treatment tank 1 is connected with a movable plate 8, the other side inside the circulating water treatment tank 1 is connected with a partition plate 11, a connecting column 10 is connected between the movable plate 8 and the partition plate 11, the movable plate 8 and the partition plate 11 are of the same size, the bottom ends of the movable plate 8 and the partition plate 11 are both connected with electrode plates 9, the top end of the circulating water treatment tank 1 is connected with an electric push rod 6, and one end of the electric push rod 6 extends into the circulating water treatment tank 1 and is connected with the top end of the movable plate 8. Cleaning and descaling components are arranged on both sides inside the circulating water treatment tank 1, a linkage mechanism 7 is arranged on one side of the circulating water treatment tank 1, and the linkage mechanism 7 includes a driving electrode 701. The driving electrode 701 is arranged on one side of the circulating water treatment tank 1, one end of the driving electrode 701 is connected with a driving shaft 702, and one end of the driving shaft 702 extends into the circulating water treatment tank 1. A linkage shaft 703 is connected inside the circulating water treatment tank 1 below the driving shaft 702, and one ends of the linkage shaft 703 and the driving shaft 702 both extend outside the circulating water treatment tank 1 and are connected with a pulley assembly 704. Gear 705 is sleeved on the outer sides of the driving shaft 702 and the linkage shaft 703. The pulley assembly 704 includes a driving wheel, a driven wheel and a driving belt. The driving wheel is sleeved on the driving shaft 702, the driven wheel is sleeved on the linkage shaft 703, and the driving belt is connected between the driving wheel and the driven wheel. Rectangular cross-section sliding grooves 101 are arranged on the two inner walls of the circulating water treatment tank 1, and limiting sliders 15 are slidably connected inside the sliding grooves 101. One sides of the limiting sliders 15 are connected with the movable plate 8 and the partition plate 11. The movable plate 8 and the partition plate 11 are both slidably connected with the circulating water treatment tank 1. The cleaning and descaling component includes a dirt cleaning plate 12 arranged inside the circulating water treatment tank 1, and cleaning strips 1201 are uniformly connected on the dirt cleaning plate 12. A guide post 14 penetrates through the inside of the dirt cleaning plate 12, and a toothed plate 13 is connected to one side of the guide post 14. The bottom end of the toothed plate 13 meshes with the gear 705. Two groups of dirt cleaning plates 12 are arranged inside the circulating water treatment tank 1. The dirt cleaning plates 12 and the cleaning strips 1201 are both arranged below the electrode plates 9. A circular cross-section through hole is arranged inside the cleaning strips 1201. The dirt cleaning plate 12 slides horizontally on the guide post 14;

[0033] In the use of this embodiment, after the circulating water treatment is completed, the electric push rod 6 is driven to push the movable plate 8 downward. In cooperation with the connecting column 10, the synchronous movement of the partition plate 11 can be achieved. Further, the limit slider 15 slides in the chute 101 to limit and guide the downward movement of the movable plate 8 and the partition plate 11 until the electrode plate 9 moves directly above the cleaning strip 1201. Then, the driving electrode 701 is driven to drive the driving shaft 702 to rotate, and the belt pulley assembly 704 is used to synchronously rotate the linkage shaft 703. Subsequently, the two groups of gears 705 rotate. Then, by using the meshing action of the gears 705 and the toothed plate 13, the toothed plate 13, the dirt cleaning plate 12, and the cleaning strip 1201 perform horizontal movement. Subsequently, the cleaning strip 1201 contacts the electrode plate 9, and the caked impurities adhered to the electrode plate 9 can be swept off, achieving the effect of cleaning and descaling. Among them, two groups of dirt cleaning plates 12 are provided, and synchronous movement can be achieved only by driving a single group of driving electrodes 701, which has better economic benefits.

[0034] In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, the terms "installation", "connection", and "connection" 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 a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0035] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they can be located in one place or distributed to multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment. Those of ordinary skill in the art can understand and implement it without creative labor.

[0036] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or equivalently replace some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. High-efficiency frequency-sweeping device for circulating water, comprising a circulating water treatment tank (1), a water inlet pipe (2), electromagnetic coils (3), and a drain pipe (4). Both ends of one side of the circulating water treatment tank (1) are connected to the water inlet pipe (2). Both ends of the other side of the circulating water treatment tank (1) are connected to the drain pipe (4), and one end of each drain pipe (4) extends into the circulating water treatment tank (1). The water inlet pipes (2) are wound with electromagnetic coils (3), and one end of each electromagnetic coil (3) is connected to an AC power supply; It is characterized in that It further comprises: The top of the circulating water treatment tank (1) is provided with an opening with a rectangular cross-section, and a plug (5) is filled in the opening. One side inside the circulating water treatment tank (1) is connected with a movable plate (8), and the other side inside the circulating water treatment tank (1) is connected with a partition plate (11). A connecting column (10) is connected between the movable plate (8) and the partition plate (11). The top of the circulating water treatment tank (1) is connected with an electric push rod (6), and one end of the electric push rod (6) extends into the circulating water treatment tank (1) and is connected to the top of the movable plate (8). Cleaning and descaling assemblies are arranged on both sides inside the circulating water treatment tank (1). A linkage mechanism (7) is arranged on one side of the circulating water treatment tank (1), and the linkage mechanism (7) includes a driving electrode (701). The driving electrode (701) is arranged on one side of the circulating water treatment tank (1). One end of the driving electrode (701) is connected with a driving shaft (702), and one end of the driving shaft (702) extends into the circulating water treatment tank (1). A linkage shaft (703) is connected inside the circulating water treatment tank (1) below the driving shaft (702). One ends of the linkage shaft (703) and the driving shaft (702) extend outside the circulating water treatment tank (1) and are connected with a pulley assembly (704). Gears (705) are sleeved on the outer sides of the driving shaft (702) and the linkage shaft (703).

2. The high-efficiency frequency-sweeping device for circulating water according to claim 1, wherein: The pulley assembly (704) includes a driving pulley, a driven pulley, and a driving belt. The driving pulley is sleeved on the driving shaft (702), the driven pulley is sleeved on the linkage shaft (703), and the driving belt is connected between the driving pulley and the driven pulley.

3. The high-efficiency sweep-frequency device for circulating water according to claim 1, wherein: The movable plate (8) and the partition plate (11) are of the same size, and electrode plates (9) are connected to the bottom ends of the movable plate (8) and the partition plate (11).

4. The high-efficiency swept-frequency device for circulating water according to claim 1, wherein: Rectangular chutes (101) are arranged on both inner walls of the circulating water treatment tank (1), and limiting sliders (15) are slidably connected inside the chutes (101). One sides of the limiting sliders (15) are connected to the movable plate (8) and the partition plate (11), and the movable plate (8) and the partition plate (11) are slidably connected to the circulating water treatment tank (1).

5. The high-efficiency swept-frequency device for circulating water according to claim 1, characterized in that: The cleaning and descaling component includes a dirt cleaning plate (12) disposed inside the circulating water treatment tank (1), and cleaning strips (1201) are uniformly connected to the dirt cleaning plate (12). A guiding column (14) penetrates through the inside of the dirt cleaning plate (12), and a toothed plate (13) is connected to one side of the guiding column (14). The bottom end of the toothed plate (13) meshes with a gear (705).

6. The high-efficiency sweep-frequency device for circulating water according to claim 5, wherein: Two groups of the dirt cleaning plates (12) are disposed inside the circulating water treatment tank (1), and both the dirt cleaning plates (12) and the cleaning strips (1201) are disposed below the electrode plate (9).

7. The high-efficiency frequency-sweeping device for circulating water according to claim 5, characterized in that: A through hole with a circular cross-section is disposed inside the cleaning strip (1201), and the dirt cleaning plate (12) slides horizontally on the guiding column (14).

Citation Information

Patent Citations

  • Frequency sweeping device for water treatment

    CN221166181U