Boiler water treatment equipment
By using stirring, tapping, and circulating components in boiler water treatment equipment, the uniform dispersion and thorough mixing of the reagents with the boiler water are ensured, solving the problem of uneven mixing, improving the utilization rate of the reagents and the cleanliness of the boiler, and extending the service life of the boiler.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-04-07
AI Technical Summary
Uneven mixing of chemicals and impurities in boiler water makes it difficult to remove impurities, leading to scale buildup and affecting boiler cleanliness and efficiency.
The system employs a motor-driven stirring assembly, elastic rope and magnetic ball assembly, circulation assembly, and insulation layer to ensure uniform dispersion of the reagent and thorough mixing with the boiler water, thereby removing sediment, reducing blockages, and minimizing heat loss.
Improve the utilization rate of chemicals, enhance the rate of chemical reactions, maintain the cleanliness of boiler water, extend the service life of boilers, and improve the working environment.
Smart Images

Figure CN224091725U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water treatment equipment technology, and in particular to a boiler water treatment device. Background Technology
[0002] Boiler water, also known as boiler water, is the water flowing in the operating boiler system. It is an important medium for heat exchange in the boiler, absorbing the heat generated by boiler combustion and converting it into steam or hot water, thereby providing power or heat energy for various industrial or civil equipment.
[0003] If the boiler water contains a lot of minerals, such as calcium and magnesium, these minerals will deposit on the boiler's heating surface at high temperatures, forming scale that is difficult to remove. Therefore, it is necessary to add mixed agents to the boiler water regularly to restore the boiler's cleanliness.
[0004] Through long-term use and observation, it was found that during the process of adding mixed agents to the boiler for water treatment, the uneven mixing of the mixed agents and boiler water made it difficult to effectively remove impurities and hardness ions from the boiler water.
[0005] Therefore, we propose a boiler water treatment device. Utility Model Content
[0006] The technical solution of this utility model is as follows: a boiler water treatment device, including a treatment cylinder, an outlet pipe fixed in the middle of the side wall of the treatment cylinder, a top cover mounted on the top side wall of the treatment cylinder, an inlet pipe fixedly connected to the top side wall of the top cover, a flow limiting component provided in the middle of the inner side wall of the inlet pipe, a stirring component provided in the top side wall of the top cover, a striking component provided in the middle of the side wall of the stirring component, the striking component being located inside a movable cylinder, a movable cylinder slidably fitted in the middle of the inner side wall of the treatment cylinder, a plurality of filter holes opened in the middle of the side wall of the movable cylinder, the treatment cylinder, the outlet pipe, the top cover, the inlet pipe and the movable cylinder being hollow and interconnected, a pair of handles fixed in the top side wall of the filter holes, a circulation component provided in the middle of the side wall of the treatment cylinder, the circulation component being connected to the movable cylinder, the stirring component including a motor, the motor being fixed to the top of the top cover. The motor output end is fixedly connected to a movable shaft, and a stirring plate is fixedly connected to the middle of the side wall of the movable shaft. Multiple stirring plates are arranged in a linear array on the side wall of the movable shaft. The stirring plates rotate inside the movable cylinder. Multiple elastic bands are fixedly connected to the middle of the side wall of the stirring plates. This step, by setting up the motor, movable shaft, stirring plates, and elastic bands, allows the mixed agent to be more evenly dispersed in the boiler water, reducing excessively high or low concentrations of the mixed agent in local areas. This helps the mixed agent to fully exert its intended effect, improving its utilization rate. Furthermore, this setup increases the turbulence in the boiler water, allowing reactants and products in the boiler water to contact and mix more thoroughly, accelerating the rate of chemical reactions and enabling the mixed agent to react more quickly with impurities in the boiler water, generating insoluble precipitates or complexes.
[0007] In a further technical solution, the striking component includes multiple elastic ropes arranged in a linear array on the side wall of the movable shaft. Magnetic balls are fixed to the ends of the elastic ropes, and multiple magnetic plates are fixed in the middle of the inner side wall of the movable cylinder. The magnetic plates and magnetic balls are correspondingly arranged. This step, by setting up elastic ropes, magnetic balls, and magnetic plates, can remove some of the sediment adhering to the inner wall of the movable cylinder, reducing the difficulty in separating the treated boiler water and sediment due to the filter holes being clogged by sediment, thus helping to restore the cleanliness of the boiler.
[0008] In a further technical solution, the circulation component includes a water pump located outside the treatment cylinder. A water pump is fixedly connected to the pump's suction end, and the suction pipe is fixedly connected to the treatment cylinder. A water delivery pipe is fixedly connected to the pump's outlet end, and the water delivery pipe is fixedly connected to the treatment cylinder. The treatment cylinder, suction pipe, and water delivery pipe are all hollow and interconnected. This step of setting up the water pump, suction pipe, and water delivery pipe allows for continuous circulation of the upper and lower layers of water, enabling suspended particles, colloids, and other impurities in the boiler water to be fully mixed with the mixed chemicals, reducing sediment formation and helping to maintain the cleanliness and transparency of the boiler water. Furthermore, this arrangement promotes the mixing of the upper and lower layers of boiler water, ensuring uniform distribution of the mixed chemicals in the water, which helps the mixed chemicals fully exert their treatment effect and improves the overall quality of the boiler water.
[0009] In a further technical solution, the flow-limiting component includes a support rod, which is fixed to the inner wall of the inlet pipe. A fixing rod is fixedly connected to the middle of the inner wall of the inlet pipe. The fixing rods are a pair and symmetrically arranged on both sides of the support rod. A movable plate is rotatably connected to the middle of the side wall of the fixing rod. A torsion spring is provided between the movable plate and the fixing rod. This step, by setting the support rod, the fixing rod, and the movable plate, can reduce the situation where boiler water flows back from the inlet pipe, bringing back the treated water and mixed chemicals, resulting in boiler water pollution and waste of mixed chemicals.
[0010] In a further technical solution, a sealing ring is fixed between the handle and the top cover. The sealing ring is made of an elastic material. This step, by setting the sealing ring, can provide an effective seal and prevent the medium from leaking from the inside of the processing cylinder.
[0011] In a further technical solution, a heat insulation layer is installed between the processing cylinder and the movable cylinder. The heat insulation layer is fixed to the inner wall of the processing cylinder. This step of setting the heat insulation layer can effectively reduce the heat loss of the boiler. By reducing heat loss, the operating temperature and pressure of the boiler will also be reduced accordingly, which helps to extend the service life of the boiler. Moreover, this setting can reduce the heat dissipation during boiler operation, thereby reducing the temperature of the working environment and improving the working conditions of the staff.
[0012] The beneficial effects of this utility model are:
[0013] 1. By incorporating a motor, movable shaft, stirring plate, and elastic band, the mixed reagents can be more evenly dispersed in the boiler water, reducing localized excessively high or low concentrations. This helps the mixed reagents fully exert their intended effect, improving their utilization rate. Furthermore, this design increases the turbulence in the boiler water, allowing reactants and products to contact and mix more thoroughly, accelerating the chemical reaction rate and enabling the mixed reagents to react more quickly with impurities in the boiler water, forming insoluble precipitates or complexes.
[0014] 2. By setting up elastic ropes, magnetic balls, and magnetic plates, some of the sediment adhering to the inner wall of the moving cylinder can be removed, reducing the difficulty in separating the treated boiler water and sediment due to the filter holes being blocked by sediment, and helping to restore the cleanliness of the boiler. Attached Figure Description
[0015] Figure 1 This is a perspective view of the present invention;
[0016] Figure 2 This is a cross-sectional view of the processing cylinder in this utility model;
[0017] Figure 3 This is a schematic diagram of the cooperative structure of the movable cylinder and the stirring plate in this utility model;
[0018] Figure 4 This is a schematic diagram of the cooperative structure of the water inlet pipe and the movable plate in this utility model.
[0019] Explanation of reference numerals in the attached figures:
[0020] 1. Processing cylinder; 11. Outlet pipe; 12. Top cover; 13. Inlet pipe; 14. Movable cylinder; 15. Filter hole; 16. Handle; 2. Motor; 21. Movable shaft; 22. Stirring plate; 23. Elastic band; 3. Elastic rope; 31. Magnetic ball; 32. Magnetic plate; 4. Water pump; 41. Pumping pipe; 42. Water delivery pipe; 5. Support rod; 51. Fixing rod; 52. Movable plate; 6. Sealing ring; 7. Insulation layer. Detailed Implementation
[0021] The embodiments of this utility model will be further described below with reference to the accompanying drawings.
[0022] Example:
[0023] like Figures 1 to 4 As shown, a boiler water treatment device includes a treatment cylinder 1. A water outlet pipe 11 is fixed in the middle of the side wall of the treatment cylinder 1. A top cover 12 is installed on the top side wall of the treatment cylinder 1. A water inlet pipe 13 is fixed to the top side wall of the top cover 12. A flow limiting component is provided in the middle of the inner side wall of the water inlet pipe 13. A stirring component is provided in the top side wall of the top cover 12. A striking component is provided in the middle of the side wall of the stirring component. The striking component is located inside a movable cylinder 14. A movable cylinder 14 is slidably fitted in the middle of the inner side wall of the treatment cylinder 1. A plurality of filter holes 15 are opened in the middle of the side wall of the movable cylinder 14. The treatment cylinder 1, the water outlet pipe 11, the top cover 12, the water inlet pipe 13 and the movable cylinder 14 are all hollow and connected. A pair of handles 16 are fixed in the top side wall of the filter holes 15. A circulation component is provided in the middle of the side wall of the treatment cylinder 1. The circulation component is connected to the movable cylinder 14.
[0024] The working principle of the above technical solution is as follows:
[0025] Under the restriction of the flow limiting component, the staff adds the mixed agent into the treatment cylinder 1. Under the action of the stirring component, the mixed agent reacts with impurities such as calcium and magnesium ions in the water to form insoluble complexes or precipitates. At the same time, the striking component continuously taps the inner wall of the movable cylinder 14, shaking off the complexes or precipitates adhering to the inner wall of the movable cylinder 14. Then, the top cover 12 is opened and a pair of handles 16 are pulled to pull the movable cylinder 14 out of the treatment cylinder 1. At this time, the treated boiler water will enter the treatment cylinder 1 through multiple filter holes 15, while the formed complexes or precipitates will be blocked inside the movable cylinder 14 by the filter holes 15. The staff puts the cleaned movable cylinder 14 back into the treatment cylinder 1. During the process of treating boiler water, the circulation component continuously circulates the boiler water inside the treatment cylinder 1.
[0026] like Figures 1 to 3 As shown, the stirring assembly includes a motor 2, which is fixed to the top of the top cover 12. A movable shaft 21 is fixedly connected to the output end of the motor 2. A stirring plate 22 is fixedly connected to the middle of the side wall of the movable shaft 21. There are multiple stirring plates 22, which are arranged in a linear array on the side wall of the movable shaft 21. The stirring plates 22 rotate inside the movable cylinder 14. Multiple elastic bands 23 are fixedly connected to the middle of the side wall of the stirring plate 22.
[0027] The operator starts motor 2, which drives the movable shaft 21 to rotate. As the movable shaft 21 rotates, it carries multiple stirring plates 22 to rotate inside the treatment cylinder 1. At this time, the stirring plates 22 continuously stir the mixed agent and the boiler water inside the treatment cylinder 1, so that the mixed agent and the boiler water are fully mixed. When the stirring plate 22 is rotating, multiple elastic bands 23 on the side wall of the stirring plate 22 will rotate synchronously and stir the mixed liquid inside the treatment cylinder 1. This step, by setting up motor 2, movable shaft 21, stirring plates 22 and elastic bands 23, can make the mixed agent more evenly dispersed in the boiler water, reduce the concentration of the mixed agent in local areas that is too high or too low, help the mixed agent to fully exert its due effect, improve the utilization rate of the mixed agent, and this setting can also increase the turbulence of the boiler water, so that the reactants and products in the boiler water can contact and mix more fully, which helps to accelerate the rate of chemical reaction, and allows the mixed agent to react with impurities in the boiler water more quickly to form insoluble precipitates or complexes.
[0028] like Figure 2 and Figure 3 As shown, the striking component includes an elastic rope 3, which is arranged in a linear array on the side wall of the movable shaft 21. A magnetic ball 31 is fixed to the end of the elastic rope 3. Multiple magnetic plates 32 are fixed in the middle of the inner side wall of the movable cylinder 14. The magnetic plates 32 and the magnetic balls 31 are arranged correspondingly.
[0029] When the movable shaft 21 rotates, it will cause multiple elastic ropes 3 to rotate as well. As the elastic ropes 3 rotate, they will also cause the magnetic balls 31 to rotate. Because the magnetic balls 31 and magnetic plates 32 are set in correspondence, the magnetic balls 31 will be continuously attracted by different magnetic plates 32 as they rotate. Whenever the magnetic balls 31 and magnetic plates 32 are attracted together, the magnetic balls 31 will strike the movable cylinder 14, knocking off the complexes or precipitates adhering to the inner wall of the movable cylinder 14. This step, by setting up the elastic ropes 3, magnetic balls 31 and magnetic plates 32, can remove some of the precipitates adhering to the inner wall of the movable cylinder 14, reducing the difficulty in separating the treated boiler water and precipitates due to the filter holes 15 being blocked by precipitates, and helping to restore the cleanliness of the boiler.
[0030] like Figure 1 and Figure 2 As shown, the circulation assembly includes a water pump 4, which is located outside the treatment cylinder 1. A water pump pipe 41 is fixedly connected to the water pump 4 at the water pump's pumping end, and the water pump pipe 41 is fixedly connected to the treatment cylinder 1. A water delivery pipe 42 is fixedly connected to the water pump 4 at the water pump's outlet end, and the water delivery pipe 42 is fixedly connected to the treatment cylinder 1. The treatment cylinder 1, the water pump pipe 41, and the water delivery pipe 42 are all hollow and connected.
[0031] During the boiler water treatment process, the staff starts the water pump 4. Since the treatment tank 1, the pumping pipe 41, and the delivery pipe 42 are connected, the boiler water inside the treatment tank 1 is drawn into the delivery pipe 42 through the pumping pipe 41 and then returned to the treatment tank 1 through the delivery pipe 42. This step, with the water pump 4, pumping pipe 41, and delivery pipe 42, continuously circulates the upper and lower layers of water, allowing suspended particles, colloids, and other impurities in the boiler water to be fully mixed with the mixed chemicals, reducing the formation of sediment and helping to maintain the cleanliness and transparency of the boiler water. This setup also promotes the mixing of the upper and lower layers of boiler water, ensuring that the mixed chemicals are evenly distributed in the water, which helps the mixed chemicals to fully exert their treatment effect and improve the overall quality of the boiler water.
[0032] like Figure 1 and Figure 4 As shown, the flow limiting component includes a support rod 5, which is fixed to the inner wall of the water inlet pipe 13. A fixing rod 51 is fixedly connected to the middle of the inner side wall of the water inlet pipe 13. The fixing rods 51 are a pair and are symmetrically arranged on both sides of the support rod 5. A movable plate 52 is rotatably connected to the middle of the side wall of the fixing rod 51. A torsion spring is provided between the movable plate 52 and the fixing rod 51.
[0033] When the mixed agent is injected into the treatment cylinder 1 through the inlet pipe 13, the mixed agent will squeeze a pair of movable plates 52, causing the movable plates 52 to rotate on the side wall of the fixed rod 51. Then the mixed agent will pass through the movable plates 52 and enter the treatment cylinder 1. Because there is a torsion spring between the movable plates 52 and the fixed rod 51, when the mixed agent stops squeezing the movable plates 52, the pair of movable plates 52 will seal the inlet pipe 13. This step, by setting the support rod 5, the fixed rod 51 and the movable plates 52, can reduce the situation where boiler water flows back from the inlet pipe 13, bringing back the treated water and mixed agent together, resulting in boiler water pollution and waste of mixed agent.
[0034] like Figure 1 , Figure 2 and Figure 4 As shown, a sealing ring 6 is fixed between the handle 16 and the top cover 12. The sealing ring 6 is made of elastic material.
[0035] The sealing ring 6 provides an effective seal, preventing the medium from leaking from the inside of the processing cylinder 1.
[0036] like Figure 2 As shown, a heat insulation layer 7 is installed between the processing cylinder 1 and the movable cylinder 14, and the heat insulation layer 7 is fixed to the inner wall of the processing cylinder 1.
[0037] Setting up insulation layer 7 can effectively reduce the heat loss of the boiler. By reducing heat loss, the operating temperature and pressure of the boiler will also be reduced accordingly, which helps to extend the service life of the boiler. In addition, this setting can reduce the heat dissipation during boiler operation, thereby reducing the temperature of the working environment and improving the working conditions of the staff.
[0038] The above embodiments merely illustrate specific implementations of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.
Claims
1. A boiler water treatment device, comprising a treatment tank (1), characterized in that: A water outlet pipe (11) is fixed in the middle of the side wall of the treatment cylinder (1). A top cover (12) is fitted on the top side wall of the treatment cylinder (1). A water inlet pipe (13) is fixed to the top side wall of the top cover (12). A flow limiting component is provided in the middle of the inner side wall of the water inlet pipe (13). A stirring component is provided in the top side wall of the top cover (12). A knocking component is provided in the middle of the side wall of the stirring component. The knocking component is located inside the movable cylinder (14). The movable cylinder (14) is slidably fitted in the middle of the inner side wall of the treatment cylinder (1). Multiple filter holes (15) are opened in the middle of the side wall of the movable cylinder (14). The treatment cylinder (1), water outlet pipe (11), top cover (12), water inlet pipe (13) and movable cylinder (14) are all hollow and connected. A pair of handles (16) are fixed on the top side wall of the filter hole (15). A circulation component is provided in the middle of the side wall of the treatment cylinder (1). The circulation component is connected to the movable cylinder (14).
2. The boiler water treatment equipment according to claim 1, characterized in that: The stirring assembly includes a motor (2), which is fixed to the top of the top cover (12). The output end of the motor (2) is fixed to a movable shaft (21). A stirring plate (22) is fixed to the middle of the side wall of the movable shaft (21). There are multiple stirring plates (22) arranged in a linear array on the side wall of the movable shaft (21). The stirring plates (22) rotate inside the movable cylinder (14). Multiple elastic bands (23) are fixed to the middle of the side wall of the stirring plate (22).
3. The boiler water treatment equipment according to claim 1, characterized in that: The striking assembly includes an elastic rope (3), which is a plurality of elastic ropes (3) arranged in a linear array on the side wall of the movable shaft (21). A magnetic ball (31) is fixed to the end of the elastic rope (3). A plurality of magnetic plates (32) are fixed in the middle of the inner side wall of the movable cylinder (14). The magnetic plates (32) and the magnetic balls (31) are arranged correspondingly.
4. The boiler water treatment equipment according to claim 1, characterized in that: The circulation assembly includes a water pump (4), which is located outside the treatment cylinder (1). The water pump (4) has a water pump pipe (41) fixedly connected to its pumping end. The water pump pipe (41) is fixedly connected to the treatment cylinder (1). The water pump (4) has a water delivery pipe (42) fixedly connected to its outlet end. The water delivery pipe (42) is fixedly connected to the treatment cylinder (1). The treatment cylinder (1), the pumping pipe (41), and the water delivery pipe (42) are all hollow and connected.
5. A boiler water treatment device according to claim 1, characterized in that: The flow limiting component includes a support rod (5), which is fixed on the inner wall of the water inlet pipe (13). A fixing rod (51) is fixedly connected to the middle of the inner side wall of the water inlet pipe (13). The fixing rods (51) are a pair and symmetrically arranged on both sides of the support rod (5). A movable plate (52) is rotatably connected to the middle of the side wall of the fixing rod (51). A torsion spring is provided between the movable plate (52) and the fixing rod (51).
6. The boiler water treatment equipment according to claim 1, characterized in that: A sealing ring (6) is fixed between the handle (16) and the top cover (12), and the sealing ring (6) is made of elastic material.
7. A boiler water treatment device according to claim 4, characterized in that: A heat insulation layer (7) is installed between the processing cylinder (1) and the movable cylinder (14), and the heat insulation layer (7) is fixed to the inner wall of the processing cylinder (1).