A device for simply preparing magnetized water
By designing a detachable and modular magnetized water preparation device and an automatic cleaning system, the problems of performance changes and inconvenient cleaning of magnetizers under high temperature or long-term use are solved. This enables flexible adjustment of magnetized water parameters and efficient cleaning, improving the flexibility and efficiency of magnetized water preparation.
Patent Information
- Application Number
- CN202311783357.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-22
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2043-12-22
AI Technical Summary
Existing magnetizers are prone to changes in magnetic properties under high temperature or long-term use, and the magnetic field strength cannot be flexibly adjusted, which affects the test results and is inconvenient to clean.
A simple device for preparing magnetized water has been designed, which includes a magnetization device, a circulation device, and a storage device. The magnetization device is detachable and can be assembled. The magnetizer module is replaceable. It is equipped with an automatic cleaning block and a traction component. The magnetic field strength is adjustable, and the cleaning block automatically cleans the magnet.
It enables flexible adjustment of magnetized water parameters, avoids changes in magnetizer performance affecting the test, facilitates automatic cleaning, improves magnetization efficiency, and saves materials.
Smart Images

Figure CN117735682B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of magnetized water preparation apparatus, specifically a simple apparatus for preparing magnetized water. Background Technology
[0002] Concrete is widely used in civil engineering construction. With the rapid development of the construction industry, the construction quality and technical requirements for concrete are constantly being updated. How to improve the performance of concrete and save material consumption has always been a concern for researchers. One application of magnetized water is to improve the strength of cement concrete by mixing it with magnetized water. Magnetized water, obtained by magnetizing tap water in a magnetic field for a certain period, undergoes changes in surface tension and conductivity, which can affect the hydration of cement minerals and thus promote its hydration process. Compared to using water-reducing agents in concrete, using magnetized water as a hydration agent to improve concrete performance is lower in cost, more environmentally friendly, and saves on materials.
[0003] Currently, most magnetizers use permanent magnet magnetizers. Under high temperature or long-term use, the performance of the magnets in the magnetizer may change, affecting the test results. In addition, the magnetic field strength in the magnetizer cannot be flexibly adjusted, and the magnetization parameters cannot be adjusted as needed during the test.
[0004] Therefore, it is necessary to provide a simple apparatus for preparing magnetized water to solve the above-mentioned technical problems. Summary of the Invention
[0005] The purpose of this invention is to provide a simple device for preparing magnetized water. It has a simple structure, is easy to assemble, and has a detachable assembly module. The magnetizer module can be replaced at any time according to different experimental needs to prepare magnetized water with different parameters. It is safe, reliable, and saves materials, providing a convenient magnetized water preparation device for experimental research.
[0006] The above-mentioned technical objective of the present invention is achieved through the following technical solution: a simple device for preparing magnetized water, comprising a magnetizing device, a circulation device, and a storage device, wherein the magnetizing device is connected to the storage device through the circulation device, the magnetizing device comprising a magnetizer module and an adapter module; the circulation device comprising a circulation pump, an inlet pipe, a first outlet pipe, and a second outlet pipe; and the storage device comprising a water tank.
[0007] A further configuration of the present invention is as follows: the inlet end of the first adapter is connected to the outlet end of the second outlet pipe, the outlet end of the first adapter is connected to the inlet end of the magnetizer module, the inlet end of the second adapter is connected to the outlet end of the magnetizer module, the outlet end of the second adapter is connected to the inlet end of the inlet pipe, the inlet end of the circulation pump is connected to the outlet end of the inlet pipe, the outlet end of the circulation pump is connected to the inlet end of the first outlet pipe, the inlet end of the water tank is connected to the outlet end of the first outlet pipe, and the outlet end of the water tank is connected to the inlet end of the second outlet pipe.
[0008] A further configuration of the present invention is as follows: the magnetizer module includes a magnet module and a housing; the magnet module includes a group of strong magnets and a group of pads; the group of strong magnets includes multiple cuboid strong magnets; the group of pads includes multiple cuboid pads; the cuboid strong magnets attract each other in pairs along the surfaces formed by their length and height, and two cuboid pads are placed between the attracting surfaces; a water flow channel is formed between two adjacent cuboid strong magnets and the two cuboid pads between them; a fixing sleeve is provided inside the housing, and the cuboid strong magnets and cuboid pads are fixedly connected to the inner wall of the fixing sleeve.
[0009] A further configuration of the present invention is as follows: a cleaning block is slidably disposed within the water flow channel; the two opposite sidewalls of the cleaning block are in contact with the sidewalls of the two cuboid strong magnets on both sides; the top and bottom walls of the cleaning block are in contact with the two cuboid pads respectively; the cleaning block is hollow; the side of the cleaning block near the water inlet of the magnetizer module is open; drainage grooves are provided on both opposite sidewalls of the cleaning block; a stop block for limiting the cleaning block is provided on the side of the water flow channel near the water outlet of the magnetizer module; when the cleaning block contacts the stop block, the two drainage grooves on the cleaning block extend out from the water flow channel; and a traction component for pulling the cleaning block is provided at the end of the cuboid pad away from the stop block.
[0010] A further feature of the present invention is that the top and bottom of the cleaning block are provided with L-shaped grooves, the stop block is adapted to the L-shaped grooves, so that the stop block can enter the L-shaped grooves, and when the cleaning block is completely located inside the water flow channel, the water flow can flow into the water flow channel through the L-shaped grooves.
[0011] A further configuration of the present invention is as follows: the traction assembly includes an L-shaped plate, one end of the L-shaped plate is fixedly connected to one end of a cuboid pad, a connecting ring is fixedly installed on the L-shaped plate, a rope hole is provided on one side of the L-shaped plate, an elastic rope is fixedly connected to the connecting ring, the elastic rope passes through the rope hole, and the other end of the elastic rope is fixedly connected to the cleaning block.
[0012] A further feature of the present invention is that a plurality of guide rings are fixedly installed on the L-shaped plate, and the elastic rope passes through the plurality of guide rings sequentially in a Z-shaped trajectory.
[0013] A further feature of the present invention is that the fixing sleeve is made of elastic rubber material, and a rotating seat is rotatably installed on the side of the cuboid strong magnet near the water outlet end of the magnetizer module. Multiple push plates are fixedly installed on the rotating seat, and a baffle is embedded in the inner wall of the outer shell. When the water flows out through the drainage channel, the water flow impacts the push plate to make it rotate, thereby causing the roller at the end of the push plate to intermittently hit the baffle, causing the cuboid strong magnet to vibrate up and down.
[0014] A further feature of the present invention is that a roller is rotatably mounted on one end of each of the plurality of push plates.
[0015] In summary, the present invention has the following beneficial effects:
[0016] 1. The magnetization device, circulation device, and storage device of this invention can be detachably connected. The magnetizer module and adapter module in the magnetization device are customizable modules. During the experiment, magnetization devices of different specifications can be quickly disassembled and replaced, thereby flexibly adjusting the magnetic field strength of the magnetizer to adjust the magnetization parameters according to the requirements. This allows for the simple and quick preparation of magnetized water. The device has a simple structure, is easy to assemble, has detachable assembly modules, is safe and reliable, saves materials, and can prepare magnetized water with different parameters according to different experimental requirements. It provides a convenient preparation device for experimental research. Furthermore, when the magnet performance of the magnetizer changes, the magnetizer can be easily replaced to prevent the change in magnetizer performance from affecting the experimental results.
[0017] 2. This invention, through the design of the traction component and the cleaning block, enables the device to automatically clean the cuboid strong magnet each time it is used, eliminating the need for manual disassembly of the magnetizer module. This makes it more convenient to use. Furthermore, the drainage groove on the cleaning block can change the direction of the water flow, allowing the water to impact the push plate and cause it to rotate. This causes the roller at the end of the push plate to intermittently strike the baffle. Due to the elasticity of the fixing sleeve, the cuboid strong magnet vibrates slightly up and down. When the cuboid strong magnet vibrates, on the one hand, impurities attached to the cuboid strong magnet are more easily removed. On the other hand, when the cuboid strong magnet vibrates, the magnetic field lines move back and forth up and down, thereby increasing the speed difference between the magnetic field lines and the water flow, which can improve the magnetization efficiency of the water. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the present invention;
[0019] Figure 2 This is a schematic diagram of the magnetizer module according to the first embodiment of the present invention;
[0020] Figure 3 This is a schematic diagram of the magnetizer module according to the second embodiment of the present invention;
[0021] Figure 4 This is a cross-sectional view of the magnetizer module according to the second embodiment of the present invention;
[0022] Figure 5 For the present invention Figure 4 A magnified structural diagram at point A;
[0023] Figure 6 For the present invention Figure 4 A magnified structural diagram at point B;
[0024] Figure 7 This is a schematic diagram of the structure of the cleaning block and traction assembly of the present invention;
[0025] Figure 8 This is a top view of the cleaning block and traction assembly of the present invention.
[0026] In the diagram: 1. Magnetizer module; 2. First adapter; 3. Second adapter; 4. Circulation pump; 5. Inlet pipe; 6. First outlet pipe; 7. Second outlet pipe; 8. Water tank; 9. Outer shell; 10. Fixing sleeve; 11. Rectangular strong magnet; 12. Rectangular pad; 13. Water flow channel; 14. Cleaning block; 1401. Drainage trough; 1402. L-shaped groove; 15. L-shaped plate; 1501. Rope hole; 16. Connecting ring; 17. Elastic rope; 18. Guide ring; 19. Baffle; 20. Rotating seat; 21. Push plate; 22. Roller; 23. Stop block. Detailed Implementation
[0027] The present invention will be further described below with reference to the accompanying drawings in the embodiments of the present invention.
[0028] Example 1
[0029] Please see Figure 1 and Figure 2In this embodiment of the invention, a simple apparatus for preparing magnetized water includes a magnetization device, a circulation device, and a storage device. The magnetization device includes a magnetizer module 1 and an adapter module. The circulation device includes a circulation pump 4, an inlet pipe 5, a first outlet pipe 6, and a second outlet pipe 7. The storage device includes a water tank 8. The inlet end of the first adapter 2 is connected to the outlet end of the second outlet pipe 7, and the outlet end of the first adapter 2 is connected to the inlet end of the magnetizer module 1. The inlet end of the second adapter 3 is connected to the outlet end of the magnetizer module 1. The outlet end is connected to the inlet end of the inlet pipe 5, the inlet end of the circulating pump 4 is connected to the outlet end of the inlet pipe 5, the outlet end of the circulating pump 4 is connected to the inlet end of the first outlet pipe 6, the inlet end of the water tank 8 is connected to the outlet end of the first outlet pipe 6, and the outlet end of the water tank 8 is connected to the inlet end of the second outlet pipe 7. All connections are made using stainless steel clamps. The first adapter 2 and the second adapter 3 are both rectangular connectors with a length of 75mm and a width of 50mm, which are converted to circular connectors with a diameter of 25mm. The inlet pipe 5, the first outlet pipe 6, and the second outlet pipe 7 are all 50mm long. The device consists of a 25mm diameter rubber hose, a circulation pump 4 with a flow rate of 3.5m³ / h, and a 30L water tank. The connection between the magnetizer module 1 and the adapter module uses PVC plastic adhesive to prevent leakage. Connecting the magnetizer module 1, circulation module, and storage module forms a simple device for preparing magnetized water. Adding the predetermined amount of water to the water tank 8 and turning on the circulation pump 4 begins the process. The magnetization device, circulation device, and storage device are detachable and connectable. The magnetizer module 1 and adapter module in the magnetization device are customizable. The module allows for quick disassembly and replacement of magnetizing devices of different specifications during the experiment, enabling flexible adjustment of the magnetic field strength of the magnetizer to adjust the magnetization parameters according to requirements. This facilitates the simple and rapid preparation of magnetized water. The device has a simple structure, is easy to assemble, and features detachable assembly modules. It is safe, reliable, and material-saving. It can prepare magnetized water with different parameters according to different experimental needs, providing a convenient preparation device for experimental research. Furthermore, it allows for easy replacement of the magnetizer when its performance changes, preventing the change in magnetizer performance from affecting the experimental results.
[0030] In this embodiment, preferably, the magnetizer module 1 includes a magnet module and a housing 9. The magnet module includes a strong magnet group and a pad group. The strong magnet group includes multiple cuboid strong magnets 11, including but not limited to neodymium iron boron strong magnets. The dimensions of the cuboid strong magnets 11 are 100mm in length, 20mm in width, and 50mm in height, with a magnetic field strength of 330mT. The dimensions of the cuboid pads 12 are 100mm in length, 2mm in width, and 2mm in thickness. The dimensions of the housing 9 are 100mm in length, 90mm in width, and 50mm in thickness. The pad group consists of cuboid pads with a thickness of 2mm-10mm. 12. The pad assembly includes multiple cuboid pads 12. The cuboid strong magnets 11 attract each other in pairs with the surfaces formed by their length and height, and two cuboid pads 12 are placed between the attracting surfaces to form a magnet module. Various specifications of strong magnet assemblies can be set according to requirements. A water flow channel 13 is formed between two adjacent cuboid strong magnets 11 and the two cuboid pads 12 between them. The inner part of the outer shell 9 is provided with a fixing sleeve 10. The cuboid strong magnets 11 and the cuboid pads 12 are fixedly connected to the inner wall of the fixing sleeve 10. The fixing sleeve 10 is made of hot melt adhesive or rubber.
[0031] Example 2
[0032] When the magnetizer module 1 is used for a long time, impurities in the water will gradually be attracted to the cuboid strong magnet 11. As the impurities accumulate, the cross-sectional area of the water flow channel 13 will gradually decrease, while the flow rate of the circulation pump 4 remains constant, which increases the flow velocity of the water through the water flow channel 13. This reduces the time for the water to be magnetized by the magnetic field, ultimately leading to a decrease in magnetization efficiency. Therefore, the water flow channel 13 needs to be cleaned regularly. Cleaning requires disassembling the magnetizer module 1, which is inconvenient. To solve this problem, the following embodiment is provided.
[0033] Please see Figures 3-8In this embodiment of the invention, a cleaning block 14 is slidably disposed within the water flow channel 13. The two opposite sidewalls of the cleaning block 14 are in contact with the sidewalls of the two rectangular strong magnets 11 on either side. The top and bottom walls of the cleaning block 14 are respectively in contact with two rectangular pads 12. The cleaning block 14 is hollow, with an opening on the side of the cleaning block 14 near the water inlet of the magnetizer module 1. Drainage grooves 1401 are provided on both opposite sidewalls of the cleaning block 14. A stop block 23 for limiting the cleaning block 14 is provided on the side of the water flow channel 13 near the water outlet of the magnetizer module 1. When the cleaning block 14 contacts the stop block 23, the two drainage grooves 1401 on the cleaning block 14 extend from within the water flow channel 13. A traction component for pulling the cleaning block 14 is provided at the end of the rectangular pad 12 away from the stop block 23. When the circulation pump 4 is turned off, the cleaning block 14 is pulled by the traction component. Block 14 is located at the end of the water flow channel 13 near the water inlet of the magnetizer module 1. When the circulation pump 4 is turned on, the cleaning block 14 is gradually pushed towards the water outlet of the magnetizer module 1 under the impact of the water flow. As the cleaning block 14 moves, it scrapes off the impurities attached to the inner wall of the water flow channel 13. When the cleaning block 14 moves to contact the stop block 23, it stops moving. The two drainage grooves 1401 on the cleaning block 14 extend from the water flow channel 13, so that the magnetized water flowing out of the water flow channel 13 can be discharged through the two drainage grooves 1401. After the circulation pump 4 is turned off, the traction component pulls the cleaning block 14 to move and reset, so that the cleaning block 14 can clean the inner wall of the water flow channel 13 again. The device can automatically clean the cuboid strong magnet 11 every time it is used, without the need for manual disassembly of the magnetizer module 1 for cleaning, which is more convenient to use.
[0034] In this embodiment, preferably, the top and bottom of the cleaning block 14 are provided with L-shaped grooves 1402, and the stop block 23 is adapted to the L-shaped grooves 1402 so that the stop block 23 can enter the L-shaped grooves 1402. When the cleaning block 14 is completely located inside the water flow channel 13, the water flow can flow into the water flow channel 13 through the L-shaped grooves 1402. When water is filled into the water tank 8, the water in the water tank 8 can enter the circulation pump 4 through the second water outlet pipe 7, the magnetizer module 1 and the water inlet pipe 5, so as to facilitate the start of the circulation pump 4.
[0035] In this embodiment, preferably, the traction assembly includes an L-shaped plate 15, one end of which is fixedly connected to one end of a cuboid pad 12. A connecting ring 16 is fixedly installed on the L-shaped plate 15. A rope hole 1501 is provided on one side of the L-shaped plate 15. An elastic rope 17 is fixedly connected to the connecting ring 16. The elastic rope 17 passes through the rope hole 1501, and the other end of the elastic rope 17 is fixedly connected to a cleaning block 14, thereby traction on the cleaning block 14, causing the water pump to start. When activated, the cleaning block 14 is pushed by the water flow to contact the stop block 23. After the water pump stops working, the cleaning block 14 can be reset under the tension of the elastic rope 17. Multiple guide rings 18 are fixedly installed on the L-shaped plate 15. The elastic rope 17 passes through the multiple guide rings 18 in a Z-shaped trajectory, so that a longer elastic rope 17 can be set on the L-shaped plate 15, thereby reducing the length of the L-shaped plate 15, making the volume of the L-shaped plate 15 smaller, and reducing the volume of the magnetizer module 1 for easier carrying.
[0036] In this embodiment, preferably, the fixing sleeve 10 is made of elastic rubber. The fixing sleeve 10 is sealed with the outer shell 9, the cuboid strong magnet 11, and the cuboid pad 12. A rotating seat 20 is rotatably mounted on the side of the cuboid strong magnet 11 near the water outlet end of the magnetizer module 1. Multiple push plates 21 are fixedly mounted on the rotating seat 20. The multiple push plates 21 are arranged in a circular array with the axis of the rotating seat 20 as the array center. A roller 22 is rotatably mounted on one end of each of the multiple push plates 21. A baffle is embedded in the inner wall of the outer shell 9. 19. When the water flows out through the drainage channel 1401, the water flow impacts the push plate 21, causing it to rotate. This causes the roller 22 at the end of the push plate 21 to intermittently hit the baffle 19. Since the fixed sleeve 10 has a certain elasticity, the cuboid strong magnet 11 vibrates up and down slightly. When the cuboid strong magnet 11 vibrates, on the one hand, the impurities attached to the cuboid strong magnet 11 are more likely to fall off. On the other hand, when the cuboid strong magnet 11 vibrates, the magnetic field lines will move up and down back and forth, thereby making the speed difference between the magnetic field lines and the water flow greater, which can improve the magnetization efficiency of the water.
[0037] The above description is only a preferred embodiment of the present invention. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of this patent application are included in the scope of this patent application.
Claims
1. A simple apparatus for preparing magnetized water, comprising a magnetizing device, a circulation device, and a storage device, wherein the magnetizing device is connected to the storage device via the circulation device, characterized in that: The magnetization device includes a magnetizer module (1) and an adapter module; the circulation device includes a circulation pump (4), an inlet pipe (5), a first outlet pipe (6), and a second outlet pipe (7); the storage device includes a water tank (8). The magnetizer module (1) includes a magnet module and a shell (9). The magnet module includes a strong magnet group and a pad group. The strong magnet group includes multiple cuboid strong magnets (11). The pad group includes multiple cuboid pads (12). The cuboid strong magnets (11) attract each other in pairs with the surfaces formed by their length and height. Two cuboid pads (12) are placed between the attracting surfaces. A water flow channel (13) is formed between two adjacent cuboid strong magnets (11) and the two cuboid pads (12) between them. A fixing sleeve (10) is provided inside the shell (9). The cuboid strong magnets (11) and the cuboid pads (12) are both fixedly connected to the inner wall of the fixing sleeve (10). A cleaning block (14) is slidably disposed within the water flow channel (13). The two opposite sidewalls of the cleaning block (14) are in contact with the sidewalls of the two cuboid strong magnets (11) on both sides. The top and bottom walls of the cleaning block (14) are in contact with the two cuboid pads (12) respectively. The cleaning block (14) is hollow. The side of the cleaning block (14) near the water inlet end of the magnetizer module (1) is open. Both opposite sidewalls of the cleaning block (14) are provided with openings. The drainage channel (1401) is provided with a stop (23) for limiting the cleaning block (14) on one side of the water flow channel (13) near the water outlet end of the magnetizer module (1). When the cleaning block (14) contacts the stop (23), the two drainage channels (1401) on the cleaning block (14) extend out from the water flow channel (13). The cuboid pad (12) is provided with a traction component for pulling the cleaning block (14) at one end away from the stop (23).
2. The simple apparatus for preparing magnetized water according to claim 1, characterized in that: The inlet end of the first adapter (2) is connected to the outlet end of the second outlet pipe (7), the outlet end of the first adapter (2) is connected to the inlet end of the magnetizer module (1), the inlet end of the second adapter (3) is connected to the outlet end of the magnetizer module (1), the outlet end of the second adapter (3) is connected to the inlet end of the inlet pipe (5), the inlet end of the circulation pump (4) is connected to the outlet end of the inlet pipe (5), the outlet end of the circulation pump (4) is connected to the inlet end of the first outlet pipe (6), the inlet end of the water tank (8) is connected to the outlet end of the first outlet pipe (6), and the outlet end of the water tank (8) is connected to the inlet end of the second outlet pipe (7).
3. The simple apparatus for preparing magnetized water according to claim 1, characterized in that: The cleaning block (14) has L-shaped grooves (1402) at both the top and bottom. The stop block (23) is adapted to the L-shaped groove (1402) so that the stop block (23) can enter the L-shaped groove (1402). When the cleaning block (14) is completely inside the water flow channel (13), the water flow can flow into the water flow channel (13) through the L-shaped groove (1402).
4. The simple apparatus for preparing magnetized water according to claim 1, characterized in that: The traction assembly includes an L-shaped plate (15), one end of which is fixedly connected to one end of a cuboid pad (12). A connecting ring (16) is fixedly installed on the L-shaped plate (15). A rope hole (1501) is provided on one side of the L-shaped plate (15). An elastic rope (17) is fixedly connected to the connecting ring (16). The elastic rope (17) passes through the rope hole (1501), and the other end of the elastic rope (17) is fixedly connected to the cleaning block (14).
5. The simple apparatus for preparing magnetized water according to claim 4, characterized in that: Multiple guide rings (18) are fixedly installed on the L-shaped plate (15), and the elastic rope (17) passes through the multiple guide rings (18) in a Z-shaped trajectory.
6. The simple apparatus for preparing magnetized water according to claim 1, characterized in that: The fixed sleeve (10) is made of elastic rubber. The rectangular strong magnet (11) is rotatably mounted on the side near the water outlet end of the magnetizer module (1). Multiple push plates (21) are fixedly mounted on the rotating seat (20). A baffle (19) is embedded in the inner wall of the outer shell (9). When the water flows out through the drain trough (1401), the water flows and impacts the push plate (21) to make it rotate, so that the roller (22) at the end of the push plate (21) intermittently hits the baffle (19), causing the rectangular strong magnet (11) to vibrate up and down.
7. The simple apparatus for preparing magnetized water according to claim 6, characterized in that: Each of the multiple push plates (21) has a roller (22) rotatably mounted on one end.
Citation Information
Patent Citations
Magnetic water treatment device
CN110844984A
Circulating liquid magnetizer
CN209906410U