Ion high-voltage electrostatic water treater

By introducing an anti-detachment connection structure into the ion high-voltage electrostatic water processor, the problem of loosening or falling off of the high-voltage cable lock head and the anti-detachment front lock was solved, and the stable operation of the equipment was achieved.

CN223879516UActive Publication Date: 2026-02-06SHANGHAI MEIBANG FLUID CONTROL EQUIPMENT CO LTD
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Patent Information

Application Number
CN202423260642.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2026-02-06
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In existing high-voltage electrostatic water processors, the high-voltage cable lock head and the anti-detachment front lock are prone to loosening or falling off, affecting the normal operation of the equipment.

Method used

The system employs two anti-detachment connection structures. Through the cooperation of the anti-detachment connection ring plate and the anti-detachment connection ring frame, and utilizing the design of sliding blocks, springs, and threaded rods, it ensures a secure connection between the high-voltage wire lock head and the anti-detachment front lock, preventing loosening or detachment.

Benefits of technology

It effectively prevents the high-voltage cable lock head from falling off from the anti-detachment front lock, improving the stability and reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ion high-voltage electrostatic water treater which comprises a water treatment ion rod and further comprises a first anti-disengagement connecting structure, a second anti-disengagement connecting structure, a third anti-disengagement connecting structure, a third anti-disengagement connecting structure and a fourth anti-disengagement connecting structure, the second anti-disengagement connecting structure is arranged at the front end of the water treatment ion rod. The anti-falling limiting block is pushed to move downwards to be clamped into the anti-falling clamping ring groove through movement of the sliding frame, the anti-falling front locking device and the high-voltage wire lock are prevented from falling off, a layer of anti-falling protection can be conveniently and well added, the anti-falling front locking device and the high-voltage wire lock can be well prevented from falling off, the sliding frame is fixed through the threaded rod, and the anti-falling front locking device is prevented from falling off from the high-voltage wire lock. And the sliding frame abuts against the anti-falling limiting block through the connecting rod, so that the situation that the anti-falling limiting block is separated from the anti-falling clamping ring groove, and consequently anti-falling protection cannot be well conducted on the anti-falling front locking device and the high-voltage wire lock is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water treatment device technical field especially relates to ion high pressure electrostatic water treatment device. BACKGROUND

[0002] Ion high pressure electrostatic water treatment device is a kind of equipment using high voltage electrostatic field to treat circulating cooling water, with scale removal, scale prevention, sterilization, algae killing, corrosion inhibition and anticorrosion function.It mainly changes the physical structure of water molecules through the electrostatic field generated by high-voltage direct current, so as to achieve treatment effect.

[0003] The cable line of general ion high pressure electrostatic water treatment device is connected with anti-loosening front lock by high-voltage cable lock head and anti-loosening front lock, and the anti-loosening effect of this connection mode is not good enough, and in the use process, high-voltage cable lock head may rotate, so that high-voltage cable lock head and anti-loosening front lock may be loose or fall off, resulting in

[0004] The working of ion high pressure electrostatic water treatment device fails, and the effect of treatment is influenced.Therefore, how to better avoid the loose or falling off of high-voltage cable lock head and anti-loosening front lock is an important problem to be solved in the design of ion high pressure electrostatic water treatment device. SUMMARY

[0005] The utility model discloses in order to solve the problem that high-voltage cable lock head and anti-loosening front lock can be loose or fall off, and provide ion high pressure electrostatic water treatment device.

[0006] The utility model discloses the following technical scheme solves above-mentioned technical problem:

[0007] The utility model provides ion high pressure electrostatic water treatment device, including water treatment ion stick, still includes:

[0008] Anti-loosening connection structure one is arranged at the front end of water treatment ion stick;

[0009] Anti-loosening connection structure two is arranged at the front end of water treatment ion stick;

[0010] The top of water treatment ion stick is fixedly provided with high-voltage cable line, and the other end of high-voltage cable line is fixedly arranged at the output end of power box, and the input end of power box is fixedly provided with power line.

[0011] Preferably, the inside of the power box is fixedly provided with a high-voltage electrostatic module generator.

[0012] In the technical scheme, the high-voltage electrostatic module generator in the power box generates high-voltage electrostatic field, which is transmitted to the water treatment ion stick through the high-voltage cable line.

[0013] Preferably, the water treatment ion stick comprises an ion stick body, an ion stick tail end and an ion stick front end, the ion stick tail end is fixedly arranged on the bottom side wall of the ion stick body, and the ion stick front end is fixedly arranged on the top side wall of the ion stick body.

[0014] Preferably, the ion stick tail end is composed of a lock head, a PTFE strong electric separator one and an electric shielding ring, the electric shielding ring is fixedly connected to the bottom side wall of the ion stick body, the inside of the electric shielding ring is fixedly provided with the PTFE strong electric separator one, and the bottom of the PTFE strong electric separator one is fixedly connected with the lock head.

[0015] Preferably, the ion stick front end is composed of a self-locking electric shielding ring, a PTFE strong electric separator two, a front anti-disengagement lock and a high-voltage cable lock head, the self-locking electric shielding ring is fixedly connected to the top side wall of the ion stick body, the top of the self-locking electric shielding ring is fixedly connected with the PTFE strong electric separator one, the top of the PTFE strong electric separator one is fixedly connected with the front anti-disengagement lock, the front anti-disengagement lock is threadedly connected with the high-voltage cable lock head, and the high-voltage cable lock head is fixedly connected to one end of the high-voltage cable.

[0016] Preferably, the first anti-disengagement connecting structure comprises an anti-disengagement connecting ring plate and an anti-disengagement clamping ring groove, the anti-disengagement connecting ring plate is fixedly connected to the side wall of the front anti-disengagement lock, and the anti-disengagement clamping ring groove is formed in the side wall of the anti-disengagement connecting ring plate.

[0017] Preferably, the second anti-disengagement connecting structure comprises an anti-disengagement connecting ring frame, a sliding groove and a threaded groove, the anti-disengagement connecting ring frame is fixedly connected to the side wall of the high-voltage cable lock head, two sliding grooves and a threaded groove are formed in the side wall of the anti-disengagement connecting ring frame, and the anti-disengagement connecting ring frame and the anti-disengagement connecting ring plate are matched with each other.

[0018] In the technical solution, the high-voltage cable lock head is threadedly connected to the front anti-disengagement lock, and with the connection, the anti-disengagement connecting ring plate on the front anti-disengagement lock is inserted into the anti-disengagement connecting ring frame.

[0019] Preferably, the second anti-disengagement connecting structure comprises a sliding rod, a sliding block, a spring, a connecting rod, an anti-disengagement limiting block and a sliding plate, the sliding rod is fixedly connected to the inner side wall of the sliding groove, the sliding rod is slidably connected with the sliding block, the spring is fixedly connected between the sliding block and the side wall of the sliding groove, one end of the connecting rod is rotatably connected to the side wall of the sliding block, the other end of the connecting rod is rotatably connected with the anti-disengagement limiting block, two sliding plates are fixedly connected to the side walls on both sides of the anti-disengagement limiting block, and the two sliding plates are slidably connected in the sliding groove.

[0020] In the technical solution, the sliding frame moves to push the sliding block to move, the spring is compressed, the sliding block drives the connecting rod to move, the connecting rod pushes the anti-withdrawal limiting block to move downwards and be clamped into the anti-withdrawal clamping ring groove.

[0021] Preferably, the anti-withdrawal limiting block and the anti-withdrawal clamping ring groove are matched with each other.

[0022] In the technical solution, the anti-withdrawal limiting block is clamped into the anti-withdrawal clamping ring groove, the movement of the anti-withdrawal connecting ring plate is limited by the anti-withdrawal limiting block, the anti-withdrawal connecting ring plate cannot be separated from the anti-withdrawal connecting ring frame, and thus the anti-withdrawal front lock device is prevented from being separated from the high-voltage wire lock.

[0023] Preferably, the anti-withdrawal connecting structure two comprises a rotating connecting block, a sliding frame, a rotating handle block and a threaded rod, the sliding frame is slidingly connected to the side wall of the anti-withdrawal connecting ring frame, the end of the sliding frame is fixedly connected to the side wall of the sliding block, the side wall of the sliding frame is rotatably connected with the rotating connecting block, one end of the rotating connecting block is fixedly connected with the threaded rod, the threaded rod and the threaded groove are matched with each other, and the other end of the rotating connecting block is fixedly connected with the rotating handle block.

[0024] In the technical solution, the threaded rod is screwed into the threaded groove, the threaded rod is moved by being screwed by the rotating handle block, and the sliding frame is moved.

[0025] On the basis of conforming to the common knowledge in the art, the above-mentioned preferred conditions can be combined at will, that is, the preferred examples of the utility model are obtained.

[0026] The positive progress effect of the utility model lies in:

[0027] 1. The sliding frame moves to push the sliding block to move, the spring is compressed, the sliding block drives the connecting rod to move, the connecting rod pushes the anti-withdrawal limiting block to move downwards and be clamped into the anti-withdrawal clamping ring groove, the movement of the anti-withdrawal connecting ring plate is limited by the anti-withdrawal limiting block, the anti-withdrawal connecting ring plate cannot be separated from the anti-withdrawal connecting ring frame, and thus the anti-withdrawal front lock device is prevented from being separated from the high-voltage wire lock, a layer of anti-withdrawal protection is conveniently added, and the anti-withdrawal front lock device is prevented from being separated from the high-voltage wire lock.

[0028] 2. The sliding frame is fixed by the threaded rod, the sliding frame abuts against the anti-withdrawal limiting block through the connecting rod, the anti-withdrawal limiting block is prevented from being separated from the anti-withdrawal clamping ring groove, and the anti-withdrawal protection of the anti-withdrawal front lock device and the high-voltage wire lock is conveniently achieved. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is a whole three-dimensional structure schematic view of the utility model.

[0030] Figure 2 It is a whole internal structure schematic view of the utility model.

[0031] Figure 3 It is the end internal structure schematic view of the utility model ion stick.

[0032] Figure 4 It is the end internal structure schematic view of the utility model ion stick.

[0033] Figure 5 It is the overall Figure 4 A place partial enlarged structure schematic view of the utility model.

[0034] Mark explanation

[0035] 1, water treatment ion stick;2, high voltage cable;3, power supply box;4, power line;5, ion stick end;501, lock head;502, PTFE strong electric separator one;503, electric shield ring;6, ion stick front end;601, self-locking electric shield ring;602, PTFE strong electric separator two;603, anti-off front lock;604, high voltage cable lock head;7, anti-off connecting structure one;701, anti-off connecting ring plate;702, anti-off clamping ring groove;8, anti-off connecting structure two;801, anti-off connecting ring frame;802, sliding groove;803, thread groove;811, sliding rod;812, sliding block;813, spring;814, connecting rod;815, anti-off limiting block;816, sliding plate;821, rotating connecting block;822, sliding frame;823, rotating handle block;824, threaded rod;9, ion stick body. Specific implementation

[0036] The utility model will be further illustrated by the way of embodiment, but will not therefore limit the utility model in the embodiment range.

[0037] As Figures 1-5 Indicated, ion high voltage electrostatic water treatment ware, including water treatment ion stick 1, still include:

[0038] Anti-off connecting structure one 7, the anti-off connecting structure one 7 sets up in the front end of water treatment ion stick 1;

[0039] Anti-off connecting structure two 8, the anti-off connecting structure two 8 sets up in the front end of water treatment ion stick 1;

[0040] The top of water treatment ion stick 1 is fixedly provided with high voltage cable 2, and the other end of high voltage cable 2 is fixedly arranged at the output end of power supply box 3, and the input end of power supply box 3 is fixedly provided with power line 4.

[0041] The inside of power supply box 3 is fixedly provided with high voltage electrostatic module generator.

[0042] The high-voltage electrostatic generated by the high-voltage electrostatic module generator in the power box 3 is transmitted to the water treatment ion stick 1 through the high-voltage cable 2 to generate a certain high-voltage electrostatic field.

[0043] The water treatment ion stick 1 comprises an ion stick body 9, an ion stick end 5 and an ion stick front end 6, the ion stick end 5 is fixedly arranged on the bottom side wall of the ion stick body 9, and the ion stick front end 6 is fixedly arranged on the top side wall of the ion stick body 9.

[0044] The ion stick end 5 comprises a lock head 501, a PTFE strong electric separator 502 and an electrically isolated protection ring 503, the electrically isolated protection ring 503 is fixedly connected to the bottom side wall of the ion stick body 9, the PTFE strong electric separator 502 is fixedly arranged in the electrically isolated protection ring 503, and the lock head 501 is fixedly connected to the bottom of the PTFE strong electric separator 502.

[0045] The ion stick front end 6 comprises a self-locking electrically isolated protection ring 601, a PTFE strong electric separator 602, a front anti-loose lock 603 and a high-voltage cable lock head 604, the self-locking electrically isolated protection ring 601 is fixedly connected to the top side wall of the ion stick body 9, the PTFE strong electric separator 602 is fixedly connected to the top of the self-locking electrically isolated protection ring 601, the front anti-loose lock 603 is fixedly connected to the top of the PTFE strong electric separator 602, the high-voltage cable lock head 604 is threadedly connected to the front anti-loose lock 603, and one end of the high-voltage cable 2 is fixedly connected to the high-voltage cable lock head 604.

[0046] The anti-loose connection structure one 7 comprises an anti-loose connection ring plate 701 and an anti-loose clamping ring groove 702, the anti-loose connection ring plate 701 is fixedly connected to the side wall of the front anti-loose lock 603, and the anti-loose clamping ring groove 702 is formed in the side wall of the anti-loose connection ring plate 701.

[0047] The anti-loose connection structure two 8 comprises an anti-loose connection ring frame 801, a sliding groove 802 and a threaded groove 803, the anti-loose connection ring frame 801 is fixedly connected to the side wall of the high-voltage cable lock head 604, two sliding grooves 802 and a threaded groove 803 are formed in the side wall of the anti-loose connection ring frame 801, and the anti-loose connection ring frame 801 cooperates with the anti-loose connection ring plate 701.

[0048] The high-voltage cable lock head 501 is threadedly connected to the front anti-loose lock 603, and the anti-loose connection ring plate 701 on the front anti-loose lock 603 is inserted into the anti-loose connection ring frame 801.

[0049] The anti-disengagement connecting structure two 8 includes a sliding rod 811, a sliding block 812, a spring 813, a connecting rod 814, an anti-disengagement limiting block 815 and a sliding plate 816, the sliding rod 811 is fixedly connected to the inner side wall of the sliding groove 802, the sliding rod 811 is slidably connected with the sliding block 812, the spring 813 is fixedly connected between the sliding block 812 and the side wall of the sliding groove 802, one end of the connecting rod 814 is rotatably connected to the side wall of the sliding block 812, the other end of the connecting rod 814 is rotatably connected with the anti-disengagement limiting block 815, two sliding plates 816 are fixedly connected to the side walls on both sides of the anti-disengagement limiting block 815, and the two sliding plates 816 are slidably connected in the sliding groove 802.

[0050] The sliding frame 822 moves to push the sliding block 812 to move, the spring 813 is compressed, the sliding block 812 drives the connecting rod 814 to move, and the connecting rod 814 pushes the anti-disengagement limiting block 815 to move downwards and be clamped into the anti-disengagement clamping ring groove 702.

[0051] The anti-disengagement limiting block 815 and the anti-disengagement clamping ring groove 702 cooperate with each other.

[0052] The anti-disengagement limiting block 815 is clamped into the anti-disengagement clamping ring groove 702, the movement of the anti-disengagement connecting ring plate 701 is limited through the anti-disengagement limiting block 815, the anti-disengagement connecting ring plate 701 cannot be disengaged from the anti-disengagement connecting ring frame 801, and therefore the anti-disengagement front lock 603 cannot be disengaged from the high-voltage wire lock.

[0053] The anti-disengagement connecting structure two 8 includes a rotating connecting block 821, a sliding frame 822, a rotating handle block 823 and a threaded rod 824, the sliding frame 822 is slidably connected to the side wall of the anti-disengagement connecting ring frame 801, the end of the sliding frame 822 is fixedly connected to the side wall of the sliding block 812, the rotating connecting block 821 is rotatably connected to the side wall of the sliding frame 822, one end of the rotating connecting block 821 is fixedly connected with the threaded rod 824, the threaded rod 824 cooperates with the threaded groove 803, and the other end of the rotating connecting block 821 is fixedly connected with the rotating handle block 823.

[0054] The threaded rod 824 is threadedly connected into the threaded groove 803, the threaded rod 824 is moved to drive the sliding frame 822 to move by rotating the rotating handle block 823.

[0055] The utility model discloses when using, the electric element appearing in the application when using all external communication power supply and control switch, install water treatment ion stick 1 in flexible water -tight conduit, through the high -voltage electrostatic module generator high -voltage electrostatic in power supply box 3, through high -voltage cable line 2 transmission to water treatment ion stick 1, produce certain high -voltage electrostatic field, through high -voltage electrostatic field direct action on water molecule, change electron structure in water molecule, make water dipole surround anion and cation in water and arrange in chain shape in positive and negative order, thereby prevent calcium, magnesium ion from forming incrustation on the wall of the device;

[0056] When the anti-dropping front lock 603 is connected with the high-voltage wire lock head 501, the high-voltage wire lock head 501 is screwed into the anti-dropping front lock 603, and with the connection, the anti-dropping connection ring plate 701 on the anti-dropping front lock 603 is inserted into the anti-dropping connection ring frame 801 until the anti-dropping connection ring plate 701 abuts against the anti-dropping connection ring frame 801, at this time, the threaded rod 824 is screwed into the threaded groove 803, and by rotating the knob 823, the threaded rod 824 moves to drive the sliding frame 822 to move, the sliding frame 822 moves to push the sliding block 812 to move, the spring 813 is compressed, the sliding block 812 drives the connecting rod 814 to move, and the connecting rod 814 pushes the anti-dropping limiting block 815 to move downward and is clamped into the anti-dropping clamping ring groove 702;

[0057] The anti-dropping limiting block 815 limits the movement of the anti-dropping connection ring plate 701, so that the anti-dropping connection ring plate 701 cannot be separated from the anti-dropping connection ring frame 801, thereby preventing the anti-dropping front lock 603 from falling off the high-voltage wire lock, and the sliding frame 822 is fixed by the threaded rod 824, and the sliding frame 822 abuts against the anti-dropping limiting block 815 through the connecting rod 814, avoiding the anti-dropping limiting block 815 from separating from the anti-dropping clamping ring groove 702, which causes the anti-dropping front lock 603 and the high-voltage wire lock to be unable to be effectively protected.

[0058] The utility model discloses not limited to the above-mentioned embodiment, no matter on its shape or structure makes any change, all falls in the protection scope of the utility model. The protection scope of the utility model is defined by the appended claims, and various changes or modifications can be made to these embodiments by those skilled in the art without departing from the principles and essence of the utility model, but these changes and modifications all fall within the protection scope of the utility model.

Claims

1. Ion high-voltage electrostatic water processor, comprising a water treatment ion bar (1), characterized in that, Also include: Anti-off connection structure one (7), the anti-off connection structure one (7) is arranged at the front end of the water treatment ion stick (1); Anti-off connection structure two (8), the anti-off connection structure two (8) is arranged at the front end of the water treatment ion stick (1); The top of the water treatment ion stick (1) is fixedly provided with a high-voltage cable (2), one end of the high-voltage cable (2) is fixedly arranged at the output end of the power supply box (3), and the input end of the power supply box (3) is fixedly provided with a power supply line (4).

2. The ionized high-voltage electrostatic water treatment device of claim 1, wherein: The inside of the power supply box (3) is fixedly provided with a high-voltage static module generator.

3. The ionized high-voltage electrostatic water treatment device of claim 1, wherein: The water treatment ion stick (1) comprises an ion stick body (9), an ion stick tail end (5) and an ion stick front end (6), the ion stick tail end (5) is fixedly arranged on the bottom side wall of the ion stick body (9), and the ion stick front end (6) is fixedly arranged on the top side wall of the ion stick body (9).

4. The ionized high-voltage electrostatic water conditioner of claim 3, wherein: The ion stick tail end (5) comprises a lock head (501), a PTFE strong electric separator (502) and an electrically isolated protection ring (503), the electrically isolated protection ring (503) is fixedly connected to the bottom side wall of the ion stick body (9), the inside of the electrically isolated protection ring (503) is fixedly provided with the PTFE strong electric separator (502), and the bottom of the PTFE strong electric separator (502) is fixedly connected with the lock head (501).

5. The ionized high-voltage electrostatic water conditioner of claim 3, wherein: The ion stick front end (6) comprises a self-locking electrically isolated protection ring (601), a PTFE strong electric separator (602), an anti-off front lock (603) and a high-voltage cable lock head (604), the self-locking electrically isolated protection ring (601) is fixedly connected to the top side wall of the ion stick body (9), the top of the self-locking electrically isolated protection ring (601) is fixedly connected with the PTFE strong electric separator (502), the top of the PTFE strong electric separator (502) is fixedly connected with the anti-off front lock (603), the anti-off front lock (603) is threadedly connected with the high-voltage cable lock head (604), and one end of the high-voltage cable lock head (604) is fixedly connected with the high-voltage cable (2).

6. The ionized high-voltage electrostatic water conditioner of claim 1, wherein: The anti-off connection structure one (7) comprises an anti-off connection ring plate (701) and an anti-off clamping ring groove (702), the anti-off connection ring plate (701) is fixedly connected to the side wall of the anti-off front lock (603), and the anti-off clamping ring groove (702) is formed in the side wall of the anti-off connection ring plate (701).

7. The ionized high-voltage electrostatic water conditioner of claim 1, wherein: The anti-off connection structure two (8) comprises an anti-off connection ring frame (801), a sliding groove (802) and a threaded groove (803), the anti-off connection ring frame (801) is fixedly connected to the side wall of the high-voltage cable lock head (604), two sliding grooves (802) and a threaded groove (803) are formed in the side wall of the anti-off connection ring frame (801), and the anti-off connection ring frame (801) and the anti-off connection ring plate (701) are matched with each other.

8. The ionized high-voltage electrostatic water treatment device of claim 7, wherein: The anti-disengagement connecting structure two (8) comprises a sliding rod (811), a sliding block (812), a spring (813), a connecting rod (814), an anti-disengagement limiting block (815) and a sliding plate (816), the sliding rod (811) is fixedly connected to the inner side wall of the sliding groove (802), the sliding rod (811) is slidably connected with the sliding block (812), the spring (813) is fixedly connected between the sliding block (812) and the side wall of the sliding groove (802), one end of the connecting rod (814) is rotatably connected to the side wall of the sliding block (812), the other end of the connecting rod (814) is rotatably connected with the anti-disengagement limiting block (815), the two sliding plates (816) are fixedly connected to the side walls of the anti-disengagement limiting block (815), and the two sliding plates (816) are slidably connected in the sliding groove (802).

9. The ionized high-voltage electrostatic water conditioner of claim 8, wherein: The anti-disengagement limiting block (815) and the anti-disengagement clamping ring groove (702) are matched with each other.

10. The ionized high-voltage electrostatic water conditioner of claim 7, wherein: The anti-disengagement connecting structure two (8) comprises a rotating connecting block (821), a sliding frame (822), a rotating handle block (823) and a threaded rod (824), the sliding frame (822) is slidably connected to the side wall of the anti-disengagement connecting ring frame (801), the end of the sliding frame (822) is fixedly connected to the side wall of the sliding block (812), the rotating connecting block (821) is rotatably connected to the side wall of the sliding frame (822), one end of the rotating connecting block (821) is fixedly connected with the threaded rod (824), the threaded rod (824) and the threaded groove (803) are matched with each other, and the other end of the rotating connecting block (821) is fixedly connected with the rotating handle block (823).