Permanent magnet type water treatment device for pipeline
By designing a detachable magnetic core structure, the problem of the inability to adjust the number of magnetic cores in pipeline permanent magnet water treatment devices is solved, enabling convenient disassembly and flexible adjustment of the magnetic cores to adapt to the needs of different pipe diameters and improve the applicability of the device.
Patent Information
- Application Number
- CN202423222900.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing permanent magnet water treatment devices for pipelines cannot flexibly adjust the number of magnetic cores to adapt to pipelines of different diameters, resulting in insufficient flexibility in use.
A detachable magnetic core structure was designed, which enables convenient disassembly and adjustment of the magnetic core through threaded connection and sliding connection groove. The structure includes a sliding plate, sliding rod, spring and snap-fit bracket, allowing for flexible adjustment of the number and position of the magnetic core.
It enables convenient disassembly and flexible adjustment of the magnetic core, adapting to the needs of different pipe diameters and improving the applicability and flexibility of the device.
Smart Images

Figure CN223705315U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pipeline permanent magnet type water treatment technical field especially relates to permanent magnet type water treatment device for pipeline. BACKGROUND
[0002] Pipeline permanent magnet type water treatment is a kind of environmental protection technology using the strong magnetic field generated by permanent magnet material to treat water flow.The water treatment unit assembled by special magnetic circuit design carries out strong magnetic activation to water and forms cathodic protection to pipeline, so as to achieve the effects of activating water quality, preventing scale, corrosion inhibition and sterilization and algae killing.
[0003] The number of magnetic cores on the general pipeline permanent magnet type water treatment device is fixed, and it is inconvenient to disassemble, which makes the pipeline permanent magnet type water treatment device unable to better adjust the number of magnetic cores according to the size of pipeline, leading to that the pipeline permanent magnet type water treatment device cannot be better applied to different diameter size pipelines, so that the overall use of the pipeline permanent magnet type water treatment device is not flexible enough.Therefore, how to better adjust the number of magnetic cores according to the size of pipeline is an important problem to be solved in the design of permanent magnet type water treatment device for pipeline. UTILITY MODEL CONTENT
[0004] The utility model discloses a pipeline permanent magnet type water treatment device to solve the problem that the pipeline permanent magnet type water treatment device cannot better adjust the number of magnetic cores according to the size of pipeline.
[0005] The utility model solves the above-mentioned technical problem through the following technical scheme:
[0006] The utility model provides permanent magnet type water treatment device for pipeline, including tubular shell, still include:
[0007] Magnetic core structure is arranged on tubular shell;
[0008] Preferably, the side wall of the both ends of tubular shell is fixedly connected with fixed plate, the fixed plate is threadedly connected with threaded rod, and the both ends of threaded rod are fixedly threadedly connected with nut.
[0009] Preferably, the tubular shell is circular arc structure.
[0010] Preferably, the side wall on the front and back of tubular shell is equidistantly provided with clamping groove.
[0011] Preferably, the inner side wall of the opposite two sides of tubular shell is provided with two sliding connection grooves.
[0012] Preferably, the magnetic core structure comprises a fixed shell, a clamping frame, a permanent magnetic core, a sliding rod, a spring and a sliding plate, the permanent magnetic core is fixedly connected on the side wall of the fixed shell, the sliding plate is slidably connected in the fixed shell, the sliding rod is fixedly connected on the side wall of the sliding plate, the other end of the sliding rod extends out of the fixed shell and is fixedly connected with the clamping frame of "L" type, and the spring is fixedly connected between the sliding plate and the inner side wall of the fixed shell.
[0013] In the technical solution, the sliding plate moves to drive the sliding rod to move, the spring is compressed, the sliding rod pushes the clamping frame to move, so that the clamping frame is separated from the clamping groove and no longer limits the fixed shell.
[0014] Preferably, the clamping frame and the clamping groove are matched with each other.
[0015] In the technical solution, the clamping frame is clamped into the clamping groove to complete the fixation of the magnetic core.
[0016] Preferably, the side wall of the fixed shell is fixedly connected with the sliding connecting block of "T" type.
[0017] In the technical solution, the permanent magnetic core and the tubular shell are slidably connected through the sliding connecting block.
[0018] Preferably, the magnetic core structure comprises a moving block, a rotating rod one, a fixed rod and a rotating rod two, the fixed rod is fixedly connected on the inner side wall of the fixed shell, the rotating rod one and the rotating rod two are rotatably connected on the fixed rod, the rotating rod one and the rotating rod two are in "X" type structure, one end of the rotating rod one and the rotating rod two is fixedly connected with two moving blocks, the two moving blocks are slidably connected on the side wall of the two sliding plates, and the other end of the rotating rod one and the rotating rod two extends out of the fixed shell.
[0019] In the technical solution, the rotating rod one and the rotating rod two are manually pushed to the outside of the fixed shell, the one end of the rotating rod one and the rotating rod two pushed away from each other, the other end is synchronously opened along with the rotating cylinder, the opening of the rotating rod one and the rotating rod two drives the moving block to move horizontally and vertically, when the moving block moves vertically, the moving block slides along the sliding plate, and when the moving block moves horizontally, the moving block pushes the sliding plate to move.
[0020] On the basis of conforming to the common knowledge in the art, the above-mentioned preferred conditions can be combined arbitrarily, that is, the preferred examples of the present application are obtained.
[0021] The positive progress effect of the present application is that:
[0022] 1. By manually pushing the part of rotating rod one and rotating rod two extending outside the fixed shell to both sides, the end of rotating rod one and rotating rod two pushed away from each other, the other end is opened synchronously with the rotating cylinder, rotating rod one and rotating rod two open to drive the moving block to move, the moving block pushes the sliding plate to move, the sliding plate drives the clamping frame to move, so that the clamping frame is separated from the clamping groove, no longer restricts the fixed shell, moves the fixed shell, can complete the disassembly of the permanent magnet core, makes the disassembly of the magnetic core more convenient and fast, makes the permanent magnet water treatment device can adjust the number of magnetic cores according to the size of the pipeline, the overall use is relatively flexible.
[0023] 2. After the clamping frame of the present application no longer restricts the fixed shell, the fixed shell drives the sliding connection block to move, the sliding connection block moves along the sliding connection groove, so as to better drive the permanent magnet core to move and adjust, so as to make the permanent magnet core can better adjust the position according to the number, make it in equidistant distribution in the tubular shell. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is the overall three-dimensional structure diagram of the utility model.
[0025] Figure 2 It is the overall internal structure diagram of the utility model.
[0026] Figure 3 It is the overall side internal structure diagram of the utility model.
[0027] Figure 4 It is the overall Figure 2 A place local amplification structure diagram of the utility model.
[0028] Figure 5 It is the overall Figure 3 B place local amplification structure diagram of the utility model.
[0029] EXPLANATION OF REFERENCE NUMERALS
[0030] 1, tubular shell; 2, magnetic core structure; 201, fixed shell; 202, clamping frame; 203, permanent magnet core; 204, sliding rod; 205, spring; 206, sliding plate; 211, moving block; 212, rotating rod one; 213, fixed rod; 214, rotating rod two; 221, sliding connection block; 3, clamping groove; 4, fixed plate; 5, threaded rod; 6, nut; 7, sliding connection groove. DETAILED DESCRIPTION
[0031] The utility model will be further illustrated by way of examples below, but it is not limited to the scope of the examples.
[0032] AsFigures 1-5 The permanent magnet water treatment device for pipeline shown in the figure comprises a tubular shell 1 and further comprises:
[0033] A magnetic core structure 2 is arranged on the tubular shell 1.
[0034] Fixed plates 4 are fixedly connected to the side walls at both ends of the tubular shell 1, threaded rods 5 are threadedly connected to the fixed plates 4, and nuts 6 are fixedly threadedly connected to both ends of the threaded rods 5.
[0035] The tubular shell 1 has a circular arc structure.
[0036] The front and back side walls of the tubular shell 1 are equally and oppositely provided with clamping grooves 3.
[0037] Two sliding connection grooves 7 are formed in the inner side walls of the opposite sides of the tubular shell 1.
[0038] The magnetic core structure 2 comprises a fixed shell 201, a clamping frame 202, a permanent magnet core 203, a sliding rod 204, a spring 205 and a sliding plate 206, the permanent magnet core 203 is fixedly connected to the side wall of the fixed shell 201, the sliding plate 206 is slidingly connected in the fixed shell 201, the sliding rod 204 is fixedly connected to the side wall of the sliding plate 206, the other end of the sliding rod 204 extends out of the fixed shell 201 to be fixedly connected to the clamping frame 202 of “L” type, and the spring 205 is fixedly connected between the inner side walls of the sliding plate 206 and the fixed shell 201.
[0039] The sliding plate 206 moves to drive the sliding rod 204 to move, the spring 205 is compressed, the sliding rod 204 pushes the clamping frame 202 to move, so that the clamping frame 202 is separated from the clamping groove 3 and no longer limits the fixed shell 201.
[0040] The clamping frame 202 cooperates with the clamping groove 3.
[0041] The clamping frame 202 is clamped into the clamping groove 3 to complete the fixation of the magnetic core.
[0042] A “T” type sliding connection block 221 is fixedly connected to the side wall of the fixed shell 201.
[0043] The permanent magnet core 203 is slidingly connected with the tubular shell 1 through the sliding connection block 221.
[0044] The magnetic core structure 2 comprises two moving blocks 211, a rotating rod one 212, a fixed rod 213 and a rotating rod two 214, the fixed rod 213 is fixedly connected to the inner side wall of the fixed shell 201, the rotating rod one 212 and the rotating rod two 214 are rotatably connected to the fixed rod 213, the rotating rod one 212 and the rotating rod two 214 are in an X-shaped structure, one end of the rotating rod one 212 and the rotating rod two 214 is fixedly connected with two moving blocks 211, the two moving blocks 211 are slidably connected to the side walls of the two side sliding plates 206, and the other end of the rotating rod one 212 and the rotating rod two 214 extends out of the fixed shell 201.
[0045] The part of the rotating rod one 212 and the rotating rod two 214 extending out of the fixed shell 201 is manually pushed to two sides, the end of the rotating rod one 212 and the rotating rod two 214 pushed away from each other is opened, the other end is synchronously opened along with the rotating cylinder, the rotating rod one 212 and the rotating rod two 214 are opened to drive the moving blocks 211 to move horizontally and vertically, when the moving blocks 211 move vertically, the moving blocks 211 slide along the sliding plates 206, and when the moving blocks 211 move horizontally, the sliding plates 206 are driven to move.
[0046] When the electric appliance element appearing in the application is used, the electric appliance element is externally connected with a power supply and a control switch, when the permanent magnetic water processor is installed, the two tubular shells 1 are placed at two sides of the pipeline, the threaded rods 5 are threadedly connected to the fixed plates 4 at two ends of the two tubular shells 1, and the nuts 6 are threadedly connected to the threaded rods 5 and are tightened, so that the whole permanent magnetic water processor is fixedly connected to the outside of the pipeline.
[0047] The part of the rotating rod one 212 and the rotating rod two 214 extending out of the fixed shell 201 is manually pushed to two sides, the end of the rotating rod one 212 and the rotating rod two 214 pushed away from each other is opened, the other end is synchronously opened along with the rotating cylinder, the rotating rod one 212 and the rotating rod two 214 are opened to drive the moving blocks 211 to move horizontally and vertically, when the moving blocks 211 move vertically, the moving blocks 211 slide along the sliding plates 206, and when the moving blocks 211 move horizontally, the sliding plates 206 are driven to move.
[0048] The sliding plate 206 drives the sliding rod 204 to move, the spring 205 is compressed, the sliding rod 204 drives the clamping frame 202 to move, so that the clamping frame 202 is separated from the clamping groove 3 and no longer limits the fixed shell 201, the fixed shell 201 is moved, the fixed shell 201 drives the sliding connecting block 221 to move, the sliding connecting block 221 moves along the sliding connecting groove 7, the permanent magnetic core 203 can be disassembled from the tubular shell 1, the disassembly and assembly of the permanent magnetic core are convenient and fast, the permanent magnetic water treatment device can adjust the number of the permanent magnetic core according to the size of the pipeline, and the permanent magnetic core 203 can be slidably fixed to the shell 201, drives the permanent magnetic core 203 to move, and the positions of the remaining permanent magnetic cores 203 are adjusted, so that the remaining permanent magnetic cores 203 are distributed at equal distances in the tubular shell 1.
[0049] The utility model is not limited to the above-mentioned embodiment, no matter makes any change in its shape or structure, all fall in the protection scope of the utility model. The protection scope of the utility model is defined by the appended claims, and the skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the utility model, but these changes and modifications all fall into the protection scope of the utility model.
Claims
1. A permanent magnetic water treatment device for pipes, comprising a tubular housing (1), characterized in that, Also include: The magnetic core structure (2) is arranged on the tubular shell (1); The side wall of the tubular shell (1) is fixedly connected with a fixed plate (4), the fixed plate (4) is threadedly connected with a threaded rod (5), and the both ends of the threaded rod (5) are fixedly connected with a nut (6).
2. The permanent magnetic water treatment device for pipes as claimed in claim 1, wherein: The tubular shell (1) is in a circular arc structure.
3. The permanent magnetic water treatment device for pipes as claimed in claim 1, wherein: The tubular shell (1) is provided with a clamping groove (3) on the side wall of the front and back surfaces.
4. The permanent magnetic water treatment device for pipes as claimed in claim 1, wherein: Two sliding connection grooves (7) are formed in the inner side walls of the opposite sides of the tubular shell (1).
5. The permanent magnetic water treatment device for pipes as claimed in claim 1 wherein: The magnetic core structure (2) comprises a fixed shell (201), a clamping frame (202), a permanent magnet core (203), a sliding rod (204), a spring (205) and a sliding plate (206), the side wall of the fixed shell (201) is fixedly connected with the permanent magnet core (203), the sliding plate (206) is slidably connected in the fixed shell (201), the side wall of the sliding plate (206) is fixedly connected with the sliding rod (204), the other end of the sliding rod (204) extends out of the fixed shell (201) and is fixedly connected with the "L"-shaped clamping frame (202), and the spring (205) is fixedly connected between the sliding plate (206) and the inner side wall of the fixed shell (201).
6. The permanent magnetic water treatment device for pipes as claimed in claim 5 wherein: The clamping frame (202) cooperates with the clamping groove (3).
7. The permanent magnetic water treatment device for pipes as claimed in claim 5 wherein: The side wall of the fixed shell (201) is fixedly connected with a "T"-shaped sliding connection block (221).
8. The permanent magnetic water treatment device for pipes as claimed in claim 4 wherein: The magnetic core structure (2) comprises a moving block (211), a rotating rod one (212), a fixed rod (213) and a rotating rod two (214), the fixed rod (213) is fixedly connected to the inner side wall of the fixed shell (201), the rotating rod one (212) and the rotating rod two (214) are rotatably connected to the fixed rod (213), the rotating rod one (212) and the rotating rod two (214) are in an "X" structure, one end of the rotating rod one (212) and the rotating rod two (214) is fixedly connected with two moving blocks (211), the two moving blocks (211) are slidably connected to the side walls of the two sliding plates (206), and the other end of the rotating rod one (212) and the rotating rod two (214) extends out of the fixed shell (201).