A pulse electromagnetic anti-fouling cleaning device
By using the synergistic effect of buffer components and electronic water processors in the water circulation path, the problem of scale instability caused by water flow velocity fluctuations and turbulence was solved, achieving stable changes in the crystal morphology of calcium and magnesium ions, thus improving the scale prevention effect and system stability.
Patent Information
- Application Number
- CN202522106161.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-29
AI Technical Summary
Existing pulsed electromagnetic anti-scaling devices suffer from insufficient residence time of water in the electromagnetic field when water flow velocity fluctuates greatly, resulting in inadequate changes in ion crystal morphology and unstable anti-scaling effect. Furthermore, water turbulence interferes with the distribution of the electromagnetic field, creating dead zones for scaling.
A water circulation path is formed by conveying pipelines and processing pipelines. A buffer component stabilizes the water flow, an electronic water processor emits pulsed electromagnetic signals to change the crystal morphology of calcium and magnesium ions, and an electronic control component enables intelligent control.
It improves the stability and reliability of anti-scaling effect, reduces the risk of pipe scaling, lowers maintenance costs, and ensures the normal operation of industrial circulating water systems.
Smart Images

Figure CN224677876U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of water treatment, and in particular to a pulsed electromagnetic anti-scaling and cleaning device. Background Technology
[0002] In industries such as coking, chemical, metallurgy, cement, steel, power plants, and petroleum, circulating water systems cool equipment and processes through water circulation, ensuring that the equipment operates within a suitable temperature range. Within these systems, calcium and magnesium ions in the water easily crystallize on the inner walls of pipes, forming hard scale. This reduces the flow area of the pipes, decreases heat exchange efficiency, and can even cause equipment blockage. Existing anti-scaling technologies typically employ chemical agents, but the use of chemical agents can easily cause water pollution. Pulse electromagnetic anti-scaling devices, however, prevent scale formation using pulse electromagnetic technology. Due to the absence of secondary pollution and low operating costs, they have become one of the main mainstream technologies.
[0003] However, during the operation of existing pulse electromagnetic anti-scaling devices, when the water flow velocity fluctuates greatly, the water body does not stay in the electromagnetic field for a long time, the ion crystal morphology does not change sufficiently, and the anti-scaling effect is unstable. At the same time, water turbulence will interfere with the distribution of the electromagnetic field, resulting in insufficient magnetic field strength in local areas of the pipeline, forming a dead zone for scaling. Utility Model Content
[0004] To address the problem of insufficient residence time of water in an electromagnetic field and inadequate change in ion crystal morphology when water flow velocity fluctuates greatly, resulting in unstable anti-scaling effects, this application provides a pulsed electromagnetic anti-scaling cleaning device.
[0005] This application provides a pulsed electromagnetic anti-scaling cleaning device, which adopts the following technical solution: A pulsed electromagnetic anti-scaling cleaning device includes a conveying pipe and a processing pipe, wherein the conveying pipe is connected to the processing pipe, a buffer component is installed inside the conveying pipe, and an electronic water processor for emitting and transmitting pulsed electromagnetic signals is provided on the processing pipe, and the electronic water processor is electrically connected to an electronic control component. The buffer assembly includes a support shaft arranged along the radial direction of the conveying pipe, and a sleeve rotatably mounted on the support shaft, with a plurality of buffer blades arranged circumferentially on the surface of the sleeve.
[0006] By adopting the above technical solution, the delivery pipeline and the treatment pipeline are connected to form a water circulation path. The buffer component stabilizes the water flow entering the treatment pipeline, reducing flow velocity fluctuations and the impact of turbulence. The electronic water processor acts on the water body through pulsed electromagnetic signals, changing the crystal morphology of calcium and magnesium ions and preventing the formation of hard scale. The electronic control component realizes intelligent control of the electronic water processor. When water flows through the delivery pipeline, the buffer blades rotate with the water flow, using the blade resistance to slow down sudden changes in flow velocity and simultaneously smooth out turbulent flow patterns, allowing the water to enter the treatment pipeline smoothly. This ensures that the water body has a uniform residence time in the electromagnetic field, improving the stability of the pulsed electromagnetic anti-scaling effect.
[0007] Optionally, the buffer blades are arc-shaped, and a gap is provided between the buffer blades and the inner wall of the conveying pipe. By adopting the above technical solution, the arc-shaped buffer blades conform to the streamlined motion trajectory of the water flow, which can reduce the resistance interference to the water flow and avoid the generation of new turbulence; the gap between the blades and the inner wall of the pipe ensures the free rotation of the blades and prevents the water flow from forming eddies from the blade edges, further optimizing the flow stabilization effect, while avoiding wear caused by friction between the blades and the inner wall of the pipe, thus extending the service life of the buffer assembly.
[0008] Optionally, the conveying pipe has a through hole for installing the support shaft. A sealing element is installed between the through hole and the support shaft. Clamping elements are installed at both ends of the support shaft, located outside the conveying pipe, to fix the support shaft to the conveying pipe. By adopting the above technical solution, the through hole provides an installation channel for the support shaft; the sealing element prevents water leakage from the pipe through the gap between the shaft and the hole, ensuring the pipe's sealing performance; the clamping elements fix the support shaft from the outside of the pipe, preventing water flow impact from causing displacement or shaking of the support shaft, ensuring stable operation of the buffer blades, and facilitating the disassembly and maintenance of the support shaft.
[0009] Optionally, the electronic water processor is installed on the outer wall of one end of the treatment pipe, and a filter plate is installed on the inner wall of the other end. Along the water flow direction, the filter plate near the electronic water processor has conical discharge holes at the bottom of the treatment pipe. A collection tank connected to the discharge holes is installed at the bottom of the treatment pipe to collect the removed scale. By adopting the above technical solution, the filter plate can intercept loose flocculent crystals (non-hard scale) formed after electromagnetic field treatment, preventing them from entering subsequent pipes with the water flow; the conical discharge holes use gravity to guide the intercepted scale to slide into the collection tank, reducing scale accumulation in the pipe; the collection tank enables centralized collection of scale, facilitating regular cleaning, reducing the risk of pipe blockage, and improving the system's continuous operation capability.
[0010] Optionally, a first mounting ring and a second mounting ring are detachably installed inside the processing pipeline, with the filter plate located between the first mounting ring and the second mounting ring. By adopting the above technical solution, the first mounting ring and the second mounting ring form a clamping structure, enabling quick assembly and disassembly of the filter plate; when the filter plate becomes clogged due to excessive dirt interception, it can be easily replaced or cleaned without disassembling the entire processing pipeline, reducing maintenance costs, improving equipment maintenance efficiency, and ensuring long-term stable filtration effect.
[0011] Optionally, a first flange is installed at one end of the conveying pipeline and a second flange is installed at the other end. A third flange is installed at one end of the processing pipeline and a fourth flange is installed at the other end. The second and third flanges are connected to fix the conveying pipeline and the processing pipeline together. By adopting the above technical solution, the connection between the second and third flanges ensures a stable seal between the conveying pipeline and the processing pipeline, preventing water leakage. At the same time, it facilitates modular assembly and disassembly of the device, allowing for the replacement of suitable conveying or processing pipelines according to different operating conditions, thus improving the versatility and expandability of the equipment.
[0012] Optionally, the electronic water processor includes a signal generator and a magnetic conductive assembly. The magnetic conductive assembly is installed at both ends of the signal generator, allowing the signal generator to be mounted on the treatment pipeline. The signal generator generates a high-frequency pulsed electromagnetic field, which acts on the water within the treatment pipeline through the magnetic conductive assembly, altering the crystallization morphology of calcium and magnesium ions to prevent scaling. The signal generator is equipped with a power interface. By adopting the above technical solution, the signal generator, as the source of the pulsed electromagnetic field, can be connected to power and its output parameters can be adjusted via the power interface; the magnetic conductive assembly efficiently conducts the electromagnetic field into the treatment pipeline, enhancing the intensity of the magnetic field's effect on the water; the high-frequency pulsed electromagnetic field can disrupt the crystallization conditions of calcium and magnesium ions, causing them to form loose, easily removable flocs rather than hard scale, fundamentally reducing the risk of scaling, and eliminating the need for chemical agents, thus meeting environmental protection requirements.
[0013] Optionally, the magnetically conductive assembly includes several connecting units, which are sequentially connected to one end of the signal generator. Each connecting unit includes a magnetically conductive block, a first ring connector, and a second ring connector. The magnetically conductive block is connected to one end of the signal generator, and the first ring connector is connected to both sides of the magnetically conductive block. The other end of the first ring connector is connected to the second ring connector. Multiple second ring connectors are sequentially connected to adhere to the outer wall of the processing pipe. The magnetically conductive block and the first ring connector, the first ring connector and the second ring connector, and two second ring connectors are connected by connecting bolts to form a closed loop that surrounds the processing pipe. By adopting the above technical solution, the modular design of the connecting units allows the magnetically conductive assembly to adapt to processing pipes of different diameters, enhancing the equipment's versatility. The closed-loop structure ensures that the magnetically conductive assembly fits tightly against the outer wall of the pipe, reducing magnetic field leakage and improving the efficiency of electromagnetic field action. The bolt connection method facilitates installation and debugging, and the position of the ring connector can be adjusted according to the pipe shape to ensure that the magnetic field uniformly covers the cross-section of the processing pipe and eliminates local magnetic field blind spots.
[0014] In summary, this application includes at least one of the following beneficial technical effects: 1. This device forms a water circulation path through a delivery pipeline and a treatment pipeline. The buffer component buffers and stabilizes the water flow entering the treatment pipeline, ensuring that the water has sufficient residence time in the electromagnetic field and is subjected to uniform force. This solves the problems of unstable anti-scaling effect and the existence of scale dead zones in existing pulse electromagnetic anti-scaling devices when the water flow velocity fluctuates greatly and turbulent interference occurs. 2. Under the control of the electronic control components, the electronic water processor emits pulsed electromagnetic signals to act on the water in the treatment pipe, changing the crystal morphology of calcium and magnesium ions, thereby preventing scale buildup in the pipe and treating the scale generated during the treatment process. It has no secondary pollution and low operating costs. Attached Figure Description
[0015] Figure 1 This is a structural schematic diagram of an embodiment of this application; Figure 2 This is a top view of an embodiment of this application; Figure 3 yes Figure 2 Sectional view of AA; Figure 4 This is a schematic diagram of the structure of the electronic water processor in the embodiments of this application.
[0016] Explanation of reference numerals in the attached figures: 1. Conveying pipe; 11. First flange; 12. Second flange; 13. Buffer assembly; 131. Support shaft; 132. Sleeve; 133. Buffer blade; 134. Clamping component; 2. Processing pipe; 21. Third flange; 22. Fourth flange; 23. Discharge hole; 24. First mounting ring; 25. Second mounting ring; 26. Filter plate; 3. Collection tank; 4. Electronic water processor; 41. Signal generator; 42. Magnetic guide assembly; 421. Connecting unit; 4211. Magnetic guide block; 4212. First ring connector; 4213. Second ring connector. Detailed Implementation
[0017] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments of the present invention can be combined with each other.
[0018] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0019] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0020] The following is in conjunction with the appendix Figure 1-4 This application will be described in further detail.
[0021] This application discloses a pulsed electromagnetic anti-scaling cleaning device, referring to... Figures 1-3The pulse electromagnetic anti-scaling cleaning device includes a conveying pipe 1 and a processing pipe 2. The conveying pipe 1 and the processing pipe 2 are connected. A buffer component 13 is installed in the conveying pipe 1. An electronic water processor 4 for emitting and transmitting pulse electromagnetic signals is installed on the processing pipe 2. The electronic water processor 4 is electrically connected to an electronic control component. The buffer assembly 13 includes a support shaft 131, which is arranged along the radial direction of the conveying pipe 1. A sleeve 132 is sleeved on the support shaft 131 and rotatably arranged thereon. A plurality of buffer blades 133 are arranged circumferentially on the surface of the sleeve 132.
[0022] In this pulsed electromagnetic anti-scaling cleaning device, the delivery pipe 1 serves as the water flow channel, initially guiding the water flow direction and introducing the circulating water to be treated into the device. Simultaneously, the delivery pipe 1 also provides an installation platform for the buffer assembly 13. The treatment pipe 2 is the installation platform for the electronic water processor 4; that is, the treatment pipe 2 is the main area where pulsed electromagnetic radiation acts on the water, where the water flow receives pulsed electromagnetic treatment, altering the crystallization morphology of calcium and magnesium ions. At the same time, the treatment pipe 2 also provides installation space for the filter plate 26, the discharge hole 23, etc. The electronic water processor 4 emits a 10-150 kHz high-frequency alternating electromagnetic field. By sending pulsed electromagnetic signals, it acts on the water within the treatment pipe 2, transmitting the signal throughout the entire water system. This alters the physical properties of calcium and magnesium ions, such as their crystal morphology, causing calcium carbonate to form suspended ion clusters in the water. Instead of hard scale, it forms loose flocs, thus preventing scale buildup. This eliminates the need for chemical agents, avoiding water pollution and offering low operating costs. It effectively changes the crystal morphology of calcium and magnesium ions, reducing hard scale buildup on the pipe walls and ensuring the flow area and heat exchange efficiency of the pipes. The electronic control components can control the start-up, stop, pulse frequency, and intensity parameters of the electronic water processor 4. By adjusting the operating state of the electronic water processor 4 based on water flow conditions and water quality, it achieves intelligent control. The parameters of the pulsed electromagnetic signals can be flexibly adjusted according to actual operating conditions, ensuring good anti-scaling effects under different water flow and quality conditions, improving the adaptability and automation of the device. The support shaft 131 in the buffer assembly 13 provides a stable support and rotation center for the sleeve 132 and the buffer blade 133, ensuring that the sleeve 132 and the buffer blade 133 can rotate stably around it. Under the impact of water flow, the buffer blade 133 can also rotate smoothly without shaking or deviating, ensuring the buffer assembly 13's buffering and combing effect on the water flow, and providing stable water flow conditions for subsequent pulse electromagnetic treatment. The sleeve 132 can rotate around the support shaft 131, connecting the support shaft 131 and the buffer blade 133, fixing the buffer blade 133 on its surface, and driving the buffer blade 133 to rotate together, realizing the rotational connection between the buffer blade 133 and the support shaft 131, so that the buffer blade 133 can rotate flexibly with the water flow, while ensuring the integrity and stability of the buffer blade 133 during the rotation process, and improving the working efficiency of the buffer assembly 13. Under the impact of water flow, the buffer blades 133 rotate with the sleeve 132. When in contact with the water flow, they generate resistance, smoothing, and buffering effects, reducing fluctuations in water flow velocity, smoothing turbulence, and making the water flow velocity more stable. This allows the water to be evenly stressed in the electromagnetic field of the treatment pipe 2, fully altering the ion crystal morphology and improving the anti-scaling effect. In other words, it effectively slows down sudden changes in water flow velocity, smooths turbulent flow patterns, and allows water to enter the treatment pipe 2 smoothly. This reduces the problem of insufficient residence time of water in the electromagnetic field and inadequate alteration of ion crystal morphology caused by unstable water flow, thus improving the stability of the anti-scaling effect.
[0023] Specifically, the buffer blades 133 can be arranged at equal intervals, and buffer blades 133 of corresponding size can also be arranged at intervals along the axial direction of the sleeve 132. The buffer blades 133 are in contact with the water flow to the maximum extent on the cross section of the conveying pipe 1, which further reduces the fluctuation of the water flow speed and makes the water flow speed more stable.
[0024] This pulsed electromagnetic anti-scaling cleaning device forms a water circulation path through a delivery pipe 1 and a treatment pipe 2. A buffer component 13 buffers and stabilizes the water flow entering the treatment pipe 2, ensuring sufficient residence time and uniform force in the electromagnetic field. This solves the problems of unstable anti-scaling effect and the existence of dead zones in existing pulsed electromagnetic anti-scaling devices when water flow velocity fluctuates greatly or turbulent interference occurs. Under the control of the electronic control component, the electronic water processor 4 emits pulsed electromagnetic signals to act on the water in the treatment pipe 2, changing the crystal morphology of calcium and magnesium ions, thereby preventing pipe scaling and treating the scale generated during the process. This results in no secondary pollution and low operating costs. The coordinated operation of all parts of the device improves the stability and reliability of the anti-scaling effect, ensures the normal operation of equipment and processes in the industrial circulating water system, extends the service life of pipelines, and reduces maintenance costs.
[0025] In this application, the buffer blade 133 can be arranged in an arc shape, which conforms to the streamlined motion trajectory of the water flow. When the water flow impacts the blade, it can guide the water flow in the direction of the water flow, reducing direct obstruction of the water flow and lowering the resistance when the water flows through the blade. At the same time, the arc structure can make the contact area between the blade and the water flow more reasonable, and apply guiding force to the water flow more smoothly during rotation, reducing the excessive reduction of water flow velocity or the generation of new turbulence due to excessive resistance of the buffer blade 133, and ensuring that the water flow can smoothly enter the treatment pipe 2 through the delivery pipe 1.
[0026] A gap is provided between the buffer blade 133 and the inner wall of the conveying pipe 1. This gap provides the buffer blade 133 with rotation space, preventing friction or collision between the buffer blade 133 and the inner wall of the conveying pipe 1 during rotation. This ensures that the buffer blade 133 can rotate flexibly and unimpeded around the support shaft 131, extending the service life of both the buffer blade 133 and the conveying pipe 1, and reducing equipment maintenance costs. Simultaneously, the gap allows some water to flow between the blade and the inner wall of the pipe, reducing the sudden increase in water pressure caused by the buffer blade 133 completely blocking the flow. This maintains stable water flow, ensuring a more stable water flow into the treatment pipe 2. The water in the treatment pipe 2 can interact more fully with the pulsed electromagnetic field, resulting in a more thorough change in the crystal morphology of calcium and magnesium ions, a more stable anti-scaling effect, and reduced wear and tear during equipment operation. This improves the overall efficiency and reliability of the pulsed electromagnetic anti-scaling cleaning device.
[0027] When installing the buffer assembly 13, a through hole is provided on the conveying pipe 1 for installing the support shaft 131. A seal is installed between the through hole and the support shaft 131. Locking members 134 are provided at both ends of the support shaft 131, located outside the conveying pipe 1, to fix the support shaft 131 to the conveying pipe 1. The through hole serves as a channel for the support shaft 131 to be installed on the conveying pipe 1, providing an installation position for the support shaft 131 to pass through the conveying pipe 1. Simultaneously, the through hole facilitates the disassembly and assembly of the support shaft 131, making it convenient for future maintenance or replacement of the buffer assembly 13. The seal fills the gap between the through hole and the support shaft 131, preventing water in the delivery pipe 1 from leaking to the outside of the pipe. It also prevents external impurities from entering the pipe and contaminating the water, thus avoiding interference with the water flow or affecting the subsequent pulse electromagnetic treatment. The seal can be an O-ring; its excellent sealing performance ensures stable water pressure within the delivery pipe 1, guaranteeing smooth water flow along a preset path and providing a reliable environment for the normal operation of the buffer assembly 13 and the electronic water processor 4. The locking component 134, by fixing both ends of the support shaft 131, restricts the axial and radial displacement of the support shaft 131, stably fixing the support shaft 131 to the conveying pipe 1, preventing the support shaft 131 from loosening or falling off when impacted by water flow or when the buffer blade 133 rotates. The fixing function of the locking component 134 also prevents the buffer blade 133 from colliding with the inner wall of the conveying pipe 1 due to displacement of the support shaft 131, further ensuring the normal operation of the buffer assembly 13 and extending the service life of the equipment. An electronic water processor 4 is installed on the outer wall of one end of the treatment pipe 2, and a filter plate 26 is installed on the inner wall of the other end. Along the water flow direction, the filter plate 26 near the electronic water processor 4 has conical discharge holes 23 at the bottom of the treatment pipe 2, allowing intercepted dirt to flow with the water and collect in the discharge holes 23. A collection tank 3 connected to the discharge holes 23 is installed at the bottom of the treatment pipe 2 to collect the removed dirt. The electronic water processor 4 emits pulsed electromagnetic signals that act on the water in the treatment pipe 2, changing the crystallization morphology of calcium and magnesium ions in the water, preventing the formation of hard scale, reducing the narrowing of the pipe's flow area and the decrease in heat exchange efficiency, and ensuring the normal operation of the pipe.
[0028] The filter plate 26 can filter the water after pulse electromagnetic treatment, intercept the loose flocculent dirt generated by the change of ion crystal morphology in the water, separate the flocculent dirt from the water, prevent it from continuing to flow with the water, avoid the dirt from being deposited again in the subsequent pipe to form scale, ensure the cleanliness of the water flowing out of the treatment pipe 2, and maintain the smooth flow of the pipe. The discharge hole 23 guides the flocculent dirt intercepted by the filter plate 26 to gather at the bottom of the treatment pipe 2 and discharge it through the discharge hole 23. The conical design of the discharge hole 23 utilizes gravity to make it easier for dirt to slide into the discharge hole 23, improving the smoothness of dirt discharge and reducing dirt accumulation in the treatment pipe 2, which would affect the water flow rate and treatment effect. The collection tank 3 is used to collect the dirt discharged from the discharge hole 23, storing the dirt centrally and facilitating subsequent treatment of the dirt, ensuring the cleanliness of the environment around the treatment pipe 2. A drain pipe with a valve is installed at the bottom of the collection tank 3, which can be opened periodically to discharge the deposited dirt and avoid secondary pollution. To facilitate replacement or maintenance of the filter plate 26, a first mounting ring 24 and a second mounting ring 25 are detachably installed inside the treatment pipe 2, with the filter plate 26 located between the first mounting ring 24 and the second mounting ring 25. The first mounting ring 24 provides support and positioning for the filter plate 26 on one side. By fixing its position, it restricts the displacement of the filter plate 26 on that side, ensuring that the filter plate 26 remains stably in the preset filtration position. Under the impact of water flow, the filter plate 26 will not shift to that side, ensuring that the filter plate 26 can accurately intercept flocculent dirt in the water and maintain the stability of the filtration effect.
[0029] The second mounting ring 25 is positioned opposite the first mounting ring 24, providing support and positioning for the filter plate 26 on the other side. Working in conjunction with the first mounting ring 24, it restricts the position of the filter plate 26, further enhancing its stability and preventing it from swaying or shifting to that side under water flow, ensuring that the filter plate 26 always remains in an effective filtration position. The first mounting ring 24 and the second mounting ring 25 work together to support, position, and fix the filter plate 26. Their detachable design facilitates installation, disassembly, cleaning, or replacement of the filter plate 26, ensuring it maintains optimal filtration performance.
[0030] One end of the conveying pipe 1 is equipped with a first flange 11, and the other end with a second flange 12. One end of the processing pipe 2 is equipped with a third flange 21, and the other end with a fourth flange 22. The second flange 12 and the third flange 21 are connected to fix the conveying pipe 1 and the processing pipe 2 together. The first flange 11 provides an interface for connecting this end of the conveying pipe 1 to other components. Through its own structure, it secures the connection of this end of the conveying pipe 1, preventing it from easily loosening during operation and ensuring stable water flow. Furthermore, a mounting bracket is provided at the bottom of the corresponding flange, which can be used to suit the installation scenario of the device and is also beneficial for the spatial arrangement, installation, and disassembly of the collection tank 3, extending the service life of the collection tank 3.
[0031] The second flange 12 mates with the third flange 21 to provide a connection point for the conveying pipeline 1 and the treatment pipeline 2. Through its own structure, it achieves a tight connection with the third flange 21, thus ensuring the connection between the conveying pipeline 1 and the treatment pipeline 2. This guarantees the robustness of the connection, allowing water to flow smoothly from the conveying pipeline 1 into the treatment pipeline 2 without leakage at the connection point. In this application, the connection or disassembly between the conveying pipeline 1 and the treatment pipeline 2 can be achieved through the use of multiple connecting bolts and nuts.
[0032] The fourth flange 22 provides an interface for connecting this end of the treatment pipe 2 to other components, facilitating the connection and fixation of this end of the treatment pipe 2 to other components, enabling the other end of the treatment pipe 2 to be stably connected to the corresponding components, ensuring the reliability of the connection at this end of the treatment pipe 2, and ensuring that the treated water can flow smoothly out of the treatment pipe 2.
[0033] refer to Figure 1 and Figure 4The electronic water processor 4 includes a signal generator 41 and a magnetic conductive assembly 42. The magnetic conductive assembly 42 is mounted on both ends of the signal generator 41, allowing the signal generator 41 to be installed on the treatment pipe 2. The signal generator 41 generates a high-frequency pulsed electromagnetic field, which acts on the water in the treatment pipe 2 through the magnetic conductive assembly 42, changing the crystallization morphology of calcium and magnesium ions to prevent scaling. The signal generator 41 is equipped with a power interface. The signal generator 41 generates a high-frequency pulsed electromagnetic field, which acts on the water through the magnetic conductive assembly 42, providing the necessary energy and signal for scale prevention. Simultaneously, the signal generator 41 provides a mounting base for the magnetic conductive assembly 42, allowing its own structure to support the mounting of both ends of the magnetic conductive assembly 42, thus fixing the entire signal generator 41 to the treatment pipe 2.
[0034] The magnetic conductive component 42 mounts the signal generator 41 onto the treatment pipe 2, serving to connect and fix the signal generator 41. Simultaneously, it conducts the high-frequency pulsed electromagnetic field generated by the signal generator 41, enabling the electromagnetic field to act on the water within the treatment pipe 2, ensuring the effect of altering the crystal morphology of calcium and magnesium ions and aiding in the anti-scaling process. The power interface connects the signal generator 41 to an external power source, providing electrical energy to ensure the signal generator 41 can start normally and continuously generate a high-frequency pulsed electromagnetic field, allowing the electronic water processor 4 to uninterruptedly perform its anti-scaling function. The magnetic conductive assembly 42 includes several connecting units 421, which are sequentially connected to one end of the signal generator 41. Each connecting unit 421 includes a magnetic conductive block 4211, a first ring connector 4212, and a second ring connector 4213. The magnetic conductive block 4211 is connected to one end of the signal generator 41. The first ring connector 4212 is connected to both sides of the magnetic conductive block 4211. The other end of the first ring connector 4212 is connected to the second ring connector 4213. Multiple second ring connectors 4213 are sequentially connected to be attached to the outer wall of the processing pipe 2. The magnetic conductive block 4211 is connected to the first ring connector 4212, the first ring connector 4212 is connected to the second ring connector 4213, and the two second ring connectors 4213 are connected by connecting bolts to form a closed loop to surround the processing pipe 2.
[0035] Several connecting units 421 are sequentially connected to one end of the signal generator 41. Through the combination of multiple connecting units 421, the magnetic conductive assembly 42 can adapt to the shape of the processing pipe 2, achieving encirclement of the processing pipe 2 and providing a reliable carrier for the conduction of electromagnetic fields. The magnetic conductive block 4211 is connected to one end of the signal generator 41, providing connection points for the first ring connectors 4212 on both sides, transmitting the electromagnetic field generated by the signal generator 41 to the first ring connectors 4212, ensuring that the electromagnetic field can be smoothly transmitted from the signal generator 41 to subsequent components, and providing a basis for the conduction of electromagnetic fields in the magnetic conductive assembly 42.
[0036] One end of the first ring connector 4212 is connected to the magnetic block 4211, and the other end is connected to the second ring connector 4213. It plays the role of intermediate conduction and connection, further transmitting the electromagnetic field from the magnetic block 4211 to the second ring connector 4213, extending the conduction path of the electromagnetic field, so that the electromagnetic field can be transmitted more smoothly from the magnetic block 4211 to the second ring connector 4213, and at the same time strengthening the integrity between the various parts of the connection unit 421. One end of the second ring connector 4213 is connected to the first ring connector 4212. Multiple second ring connectors 4213 are sequentially connected and affixed to the outer wall of the treatment pipe 2, directly contacting the pipe 2 and transmitting the received electromagnetic field to the water inside. Simultaneously, the connection of multiple second ring connectors 4213 achieves a complete enclosure of the treatment pipe 2, ensuring the comprehensive coverage of the electromagnetic field. During installation, the number of second ring connectors 4213 is selected according to the corresponding pipe size, ensuring a tight fit with the pipe and further improving the versatility of the electronic water processor 4. The connecting bolts are used to connect the magnetic block 4211 with the first ring connector 4212, the first ring connector 4212 with the second ring connector 4213, and the two second ring connectors 4213. Through the tightening action of the bolts, the components are tightly connected to form a stable closed loop, preventing loosening during use, ensuring the stable shape of the closed loop, and enabling the magnetic component 42 to continuously and stably conduct electromagnetic fields. In this application, the magnetic conductive block 4211, the first ring connector 4212, and the second ring connector 4213 are connected by connecting bolts to form a connecting unit 421. Several connecting units 421 are connected in sequence to form a magnetic conductive assembly 42, forming a closed loop around the treatment pipe 2. This ensures that the electromagnetic field energy acts efficiently and uniformly on the water in the treatment pipe 2, fully changing the crystallization morphology of calcium and magnesium ions and enhancing the anti-scaling effect. At the same time, the stable connection structure ensures the long-term stable operation of the magnetic conductive assembly 42.
[0037] The implementation process of a pulsed electromagnetic anti-scaling cleaning device according to an embodiment of this application is as follows: The circulating water first enters the delivery pipe 1. The water flow impacts the arc-shaped buffer blades 133 of the buffer assembly 13, causing the blades to rotate around the support shaft 131. The blades act as a guide and buffer for the water flow, reducing turbulence and flow velocity fluctuations, allowing the water to flow smoothly into the treatment pipe 2. At this time, the signal generator 41 of the electronic water processor 4 is connected to power through the power interface, generating a high-frequency pulsed electromagnetic field. The electromagnetic field is efficiently conducted to the water in the treatment pipe 2 through the connecting unit 421 of the magnetic conductive assembly 42 (the magnetic block 4211, the first ring connector 4212, and the second ring connector 4213 form a closed loop by connecting bolts and are attached to the treatment pipe 2), changing the crystallization morphology of calcium and magnesium ions. The treated water flows through the filter plate 26, where loose flocculent dirt is intercepted and slides down into the collection tank 3 through the conical discharge hole 23 under the action of gravity. Meanwhile, the conveying pipeline 1 and the treatment pipeline 2 are securely connected by flanges, the support shaft 131 is stably installed through through holes, seals and clamping parts 134, and the filter plate 26 is fixed by the first mounting ring 24 and the second mounting ring 25, ensuring that the entire device operates stably under the action of water flow and continuously achieves scale prevention and dirt removal. The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A pulsed electromagnetic anti-scaling cleaning device, characterized in that: It includes a conveying pipe (1) and a processing pipe (2), the conveying pipe (1) and the processing pipe (2) are connected, a buffer assembly (13) is installed in the conveying pipe (1), and an electronic water processor (4) for emitting and transmitting pulse electromagnetic signals is provided on the processing pipe (2), and the electronic water processor (4) is electrically connected to an electronic control assembly. The buffer assembly (13) includes a support shaft (131) arranged along the radial direction of the conveying pipe (1), and a sleeve (132) is rotatably arranged on the support shaft (131), and a plurality of buffer blades (133) are arranged circumferentially on the surface of the sleeve (132).
2. The pulse electromagnetic anti-scaling cleaning device according to claim 1, characterized in that: The buffer blade (133) is arc-shaped, and a gap is provided between the buffer blade (133) and the inner wall of the conveying pipe (1).
3. The pulse electromagnetic anti-scaling cleaning device according to claim 1, characterized in that: The conveying pipe (1) has a through hole for installing the support shaft (131). A sealing element is installed between the through hole and the support shaft (131). The support shaft (131) has a locking element (134) at both ends and outside the conveying pipe (1) to fix the support shaft (131) on the conveying pipe (1).
4. The pulse electromagnetic anti-scaling cleaning device according to claim 1, characterized in that: The electronic water processor (4) is installed on the outer wall of one end of the treatment pipe (2), and a filter plate (26) is installed on the inner wall of the other end. The filter plate (26) is located on the side close to the electronic water processor (4) along the water flow direction, and a tapered discharge hole (23) is opened at the bottom of the treatment pipe (2). A collection tank (3) communicating with the discharge hole (23) is installed at the bottom of the treatment pipe (2) so that the removed dirt is collected in the collection tank (3).
5. The pulse electromagnetic anti-scaling cleaning device according to claim 4, characterized in that: The processing pipe (2) is detachably installed with a first mounting ring (24) and a second mounting ring (25), and the filter plate (26) is located between the first mounting ring (24) and the second mounting ring (25).
6. The pulse electromagnetic anti-scaling cleaning device according to claim 1, characterized in that: The conveying pipe (1) is equipped with a first flange (11) at one end and a second flange (12) at the other end. The processing pipe (2) is equipped with a third flange (21) at one end and a fourth flange (22) at the other end. The second flange (12) and the third flange (21) are connected to fix the conveying pipe (1) and the processing pipe (2).
7. The pulse electromagnetic anti-scaling cleaning device according to claim 1, characterized in that: The electronic water processor (4) includes a signal generator (41) and a magnetic conductive component (42). The two ends of the magnetic conductive component (42) are respectively installed on the two ends of the signal generator (41) to install the signal generator (41) on the treatment pipe (2). The signal generator (41) generates a high-frequency pulsed electromagnetic field, which acts on the water in the treatment pipe (2) through the magnetic conductive component (42) to change the crystal morphology of calcium and magnesium ions to prevent scaling. The signal generator (41) is provided with a power interface.
8. The pulse electromagnetic anti-scaling cleaning device according to claim 7, characterized in that: The magnetic conductive assembly (42) includes several connecting units (421), which are sequentially connected to one end of the signal generator (41). Each connecting unit (421) includes a magnetic conductive block (4211), a first ring connector (4212), and a second ring connector (4213). The magnetic conductive block (4211) is connected to one end of the signal generator (41). The first ring connector (4212) is connected to both sides of the magnetic conductive block (4211). The other end of the first ring connector (4212) is connected to the second ring connector (4213). Multiple second ring connectors (4213) are sequentially connected and attached to the outer wall of the processing pipe (2). The magnetic conductive block (4211) is connected to the first ring connector (4212), the first ring connector (4212) is connected to the second ring connector (4213), and the two second ring connectors (4213) are connected by connecting bolts to form a closed loop to encircle the processing pipe (2).