Protective structure of an electrodialyzer

By designing a protective structure for non-electrical components, the problem of high energy consumption in the protective structure of the electrodialysis unit was solved, achieving improved energy efficiency and stability, and ensuring the stable use of the electrodialysis unit and the management of the wiring.

CN224410171UActive Publication Date: 2026-06-26JIANGSU RITAI ENVIRONMENTAL PROTECTION ENG
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Patent Information

Application Number
CN202521546433.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-23
Publication Date
2026-06-26
Estimated Expiration
2035-07-23

AI Technical Summary

Technical Problem

The existing protective structure of electrodialysis machines has high energy consumption and general energy efficiency due to the presence of several electrical components.

Method used

The protective structure design employs non-electrical components, including guide posts and wire holes for cable management, clamps for fixing, and a locking structure for sealing the cover, thus achieving mechanical fixation and protection of the electrodialysis unit.

Benefits of technology

It reduces the energy consumption of the protective structure, improves the installation stability of the electrodialysis unit and the management of the wires, avoids wire tangling, and ensures the stable use of the electrodialysis unit.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a protection structure of electrodialyzer, including protection case, the edge position of protection case top end is installed rubber sealing strip, the top of protection case is equipped with the box cover, the outer wall of box cover rear is connected with the outer wall of protection case through hinge, the surface of box cover and protection case is equipped with two lock catch structure, and lock catch structure contains the buckle seat, the piece box, first linkage arm, second linkage arm, spring and buckle rod, both sides of box cover surface are fixedly installed buckle seat, and the surface of protection case below buckle seat all is installed piece box, and the outer wall on both sides of piece box is rotatably installed first linkage arm through torsional spring, and the outer wall on first linkage arm is movably installed second linkage arm, and the outer wall between second linkage arm and first linkage arm is wound with spring. The utility model not only improves the energy -conserving nature of protection structure use time, also has reached the purpose of wire arrangement, to reduce the mutual entanglement phenomenon between the wire, and guarantees the stability after the installation of electrodialyzer ontology.
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Description

Technical Field

[0001] This utility model relates to the field of electrodialysis equipment technology, specifically a protective structure for an electrodialysis device. Background Technology

[0002] An electrodialysis unit is a device that uses ion exchange membranes to selectively permeate ions to desalinate or concentrate a solution. Its core components include electrode plates, ion exchange membranes, dialysis plates, and fluid channels. During use, electrodialysis units are prone to damage due to external impacts, pressure fluctuations, or membrane stack assembly deviations. To reduce the occurrence of such phenomena, it is particularly important to develop a protective structure for electrodialysis units.

[0003] Referring to the protective structure of an electrodialysis unit disclosed in CN217895209U, the structure includes an electrodialysis unit body. A heat dissipation mechanism is fixedly installed on the top of the electrodialysis unit body. The heat dissipation mechanism includes a top plate fixedly installed on the top of the electrodialysis unit body, a bottom plate fixedly installed on the bottom of the electrodialysis unit body, and three connecting rods on the outer side of the electrodialysis unit body. A first heat dissipation plate and a second heat dissipation plate are rotatably connected to the bottom of the three connecting rods, respectively. Several electrically operated telescopic rods are fixedly installed at both ends of the connecting rods. The beneficial effects of this protective structure are: the rotation of the first and second heat dissipation plates at the bottom of the connecting rods cools the electrodialysis unit body; the raising and lowering of the connecting rods by the electrically operated telescopic rods allows the first and second heat dissipation plates to more effectively dissipate heat from different parts of the electrodialysis unit body, thereby improving the overall heat dissipation effect of the protective structure. However, while this protective structure can be well applied, it typically involves several electrical components, resulting in high energy consumption and limited energy efficiency, requiring further improvement. Utility Model Content

[0004] The purpose of this invention is to provide a protective structure for an electrodialysis device, in order to solve the problem that although the protective structure mentioned in the background art can be well applied, it is usually equipped with several electrical components, which makes the energy consumption of the protective structure high and its energy-saving performance generally poor.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a protective structure for an electrodialysis device, comprising a protective box, a rubber sealing strip installed at the edge of the top of the protective box, a box cover on the top of the protective box, the outer wall of the box cover being connected to the outer wall of the protective box via a hinge, two locking structures provided on the surface of the box cover and the protective box, each locking structure comprising a buckle base, a component box, a first linkage arm, a second linkage arm, a spring, and a buckle rod, buckle bases being fixedly installed on both sides of the surface of the box cover, and component boxes being installed on the surface of the protective box below the buckle bases, the first linkage arm being rotatably installed on the outer walls of both sides of the component box via torsion springs, the second linkage arm being movably installed on the outer wall of the first linkage arm, a spring being wound on the outer wall between the second linkage arm and the first linkage arm, and a buckle rod being installed on the upper inner wall between the second linkage arm, the buckle rod being engaged with the buckle base.

[0006] Preferably, two strip seats are fixedly installed on one side of the bottom of the protective box, and the electrodialysis unit body is installed at the bottom of the protective box between the strip seats. The strip seats are used to limit and position the electrodialysis unit body from the front and rear.

[0007] Preferably, a first clamping block is fixedly installed on the inner wall of the strip seat on one side of the electrodialysis unit body. The inner wall of the first clamping block contacts the outer wall on one side of the electrodialysis unit body. The first clamping block is provided so as to cooperate with the second clamping block to clamp and limit the electrodialysis unit body.

[0008] Preferably, a positioning seat is fixed on the inner wall of the strip seat on the side of the electrodialysis unit away from the first clamping block, and a nut seat is provided on the outer wall of the positioning seat. The nut seat is provided to facilitate the placement of the screw.

[0009] Preferably, a screw is installed on the internal thread of the nut seat. One end of the screw extends to the outside of the nut seat and is equipped with a handle. The other end of the screw passes through the positioning seat and is rotatably mounted with a second clamping block. The outer walls on both sides of the second clamping block contact the inner wall of the strip seat. The second clamping block is provided to cooperate with the first clamping block to clamp and limit the electrodialysis unit body.

[0010] Preferably, a plurality of guide posts are provided on the outer wall of one side of the protective box. One end of each guide post extends into the interior of the protective box, and a wire hole is provided inside the guide post. Both ends of the wire hole extend to the outside of the guide post. The guide posts and wire holes are provided to facilitate wire management of the wires connected to the electrodialysis unit.

[0011] Compared with the prior art, the beneficial effects of this utility model are: the protective structure of the electrodialysis device not only improves the energy efficiency of the protective structure during use, but also achieves the purpose of wire management to reduce the phenomenon of mutual entanglement between wires, and ensures the stability of the electrodialysis device body after installation.

[0012] (1) The first linkage arm is rotated and installed on the outer wall of the storage box by a torsion spring, and the second linkage arm is elastically placed on the outer wall of the first linkage arm by a spring. When the lever is pulled and fastened to the buckle seat, the box cover can be locked and installed on the top of the protective box. When the lever is rotated and disengaged from the buckle seat, the box cover can be opened and closed on the top of the protective box. Thus, the box cover can be closed on the top of the protective box to protect the electrodialysis unit when it is not in use. The box cover can be opened and closed to operate the electrodialysis unit. Since no electrical components are required, the energy consumption of the protective structure is effectively reduced, thereby improving the energy efficiency of the protective structure during use.

[0013] (2) By setting several guide posts and wire holes, wires can be passed through the wire holes and connected to the electrodialysis unit body, and several wires can be spaced and limited, thereby achieving the purpose of wire management and reducing the phenomenon of wires getting tangled together.

[0014] (3) By turning the handle, the drive screw is rotated and slid inside the nut seat, so that the screw drives the second clamping block to slide between the strip seats. When the second clamping block moves to the left and fits against the outer wall of the electrodialysis unit, the second clamping block and the first clamping block can clamp the electrodialysis unit to the bottom of the protective box between the strip seats, so as to reduce the displacement phenomenon after the electrodialysis unit is installed, thereby ensuring the stability of the electrodialysis unit after installation. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0016] Figure 2 This is a frontal cross-sectional view of the present invention.

[0017] Figure 3 This is a top view of the strip-shaped support structure of this utility model;

[0018] Figure 4 This is an enlarged schematic diagram of the locking structure of this utility model.

[0019] In the diagram: 1. Protective box; 2. Box cover; 3. Rubber sealing strip; 4. Locking structure; 401. Buckle seat; 402. Component box; 403. First linkage arm; 404. Second linkage arm; 405. Spring; 406. Buckle rod; 5. Guide post; 501. Wire hole; 6. Strip seat; 7. First clamping block; 8. Positioning seat; 9. Nut seat; 10. Handle; 11. Screw; 12. Second clamping block; 13. Electrodialysis unit body. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0021] Please see Figure 1-4 An embodiment of this utility model provides: a protective structure for an electrodialysis device, including a protective box 1, two strip seats 6 are fixedly installed on one side of the bottom of the protective box 1, and an electrodialysis device body 13 is installed at the bottom of the protective box 1 between the strip seats 6;

[0022] In use, the bar seat 6 is set so that the electrodialysis unit body 13 can be limited and positioned from the front and rear.

[0023] A first clamping block 7 is fixedly installed on the inner wall of the strip seat 6 on one side of the electrodialysis unit body 13, and the inner wall of the first clamping block 7 is in contact with the outer wall on one side of the electrodialysis unit body 13.

[0024] In use, the first clamping block 7 is set so that it can cooperate with the second clamping block 12 to clamp and limit the electrodialysis unit body 13.

[0025] A positioning seat 8 is fixed on the inner wall of the strip seat 6 on the side of the electrodialysis unit body 13 away from the first clamping block 7, and a nut seat 9 is provided on the outer wall of the positioning seat 8.

[0026] In use, the screw 11 is positioned by setting the nut seat 9;

[0027] A screw 11 is installed on the internal thread of the nut seat 9. One end of the screw 11 extends to the outside of the nut seat 9 and is fitted with a handle 10. The other end of the screw 11 passes through the positioning seat 8 and is rotatably fitted with a second clamping block 12. The outer walls on both sides of the second clamping block 12 are in contact with the inner wall of the strip seat 6.

[0028] In use, the second clamping block 12 is set so as to cooperate with the first clamping block 7 to clamp and limit the electrodialysis unit body 13.

[0029] Several guide posts 5 are provided on the outer wall of one side of the protective box 1. One end of the guide post 5 extends into the interior of the protective box 1. The interior of the guide post 5 is provided with wire hole 501. Both ends of the wire hole 501 extend to the outside of the guide post 5.

[0030] In use, the guide post 5 and the wire hole 501 are set to facilitate the wire management of the wires connected to the electrodialysis unit body 13.

[0031] A rubber sealing strip 3 is installed at the edge of the top of the protective box 1. A box cover 2 is provided on the top of the protective box 1. The outer wall of the box cover 2 is connected to the outer wall of the protective box 1 by a hinge. The surface of the box cover 2 and the protective box 1 is provided with two locking structures 4. The locking structure 4 includes a buckle 401, a storage box 402, a first linkage arm 403, a second linkage arm 404, a spring 405, and a buckle 406. Buckles 401 are fixedly installed on both sides of the surface of the box cover 2. Storage boxes 402 are installed on the surface of the protective box 1 below the buckles 401. The first linkage arm 403 is rotatably installed on the outer wall of both sides of the storage box 402 by a torsion spring. The second linkage arm 404 is movably installed on the outer wall of the first linkage arm 403. A spring 405 is wound on the outer wall between the second linkage arm 404 and the first linkage arm 403. A buckle 406 is installed on the upper inner wall between the second linkage arms 404. The buckle 406 and the buckle 401 are interlocked.

[0032] In this embodiment, during use, the screw 10 is first turned to drive the screw 11 to rotate and slide inside the nut seat 9. This causes the screw 11 to move the second clamping block 12 between the strip seats 6. When the second clamping block 12 moves to the left and fits against the outer wall of the electrodialysis unit body 13, the second clamping block 12, in conjunction with the first clamping block 7, clamps and limits the electrodialysis unit body 13 to the bottom of the protective box 1 between the strip seats 6, thus reducing displacement of the electrodialysis unit body 13 after installation. Then, through the arrangement of several guide posts 5 and wire holes 501, wires can be passed through the wire holes 501 and connected to the electrodialysis unit body 13. The wires can be spaced and limited to achieve wire management. Finally, the process continues... The first linkage arm 403 is rotatably mounted on the outer wall of the housing box 402 via a torsion spring, and the second linkage arm 404 is elastically placed on the outer wall of the first linkage arm 403 via a spring 405. When the latch 406 is pulled to fasten it onto the latch seat 401, the cover 2 can be locked and installed on the top of the protective box 1. When the latch 406 is rotated to disengage from the latch seat 401, the cover 2 can be opened and closed on the top of the protective box 1. Thus, the cover 2 can be closed on the top of the protective box 1 to protect the electrodialysis unit 13 when it is not in use, and the cover 2 can be opened and closed to operate the electrodialysis unit 13. Since no electrical components are required, the energy consumption of the protective structure is effectively reduced, thus completing the use of the protective structure.

Claims

1. A protective structure for an electrodialysis device, characterized in that: The system includes a protective box (1), with a rubber sealing strip (3) installed at the edge of the top of the protective box (1). A box cover (2) is provided on the top of the protective box (1). The outer wall of the box cover (2) is connected to the outer wall of the protective box (1) by a hinge. The surface of the box cover (2) and the protective box (1) is provided with two locking structures (4). The locking structure (4) includes a buckle seat (401), a storage box (402), a first linkage arm (403), a second linkage arm (404), a spring (405), and a buckle rod (406). Both sides of the surface of the box cover (2) are fixedly installed with... The buckle (401) has a storage box (402) installed on the surface of the protective box (1) below it. The outer walls on both sides of the storage box (402) are rotatably mounted with a first linkage arm (403) via a torsion spring. The outer wall of the first linkage arm (403) is movably mounted with a second linkage arm (404). A spring (405) is wound on the outer wall between the second linkage arm (404) and the first linkage arm (403). A buckle rod (406) is installed on the upper inner wall between the second linkage arm (404). The buckle rod (406) is fastened to the buckle (401).

2. The protective structure of an electrodialysis device according to claim 1, characterized in that: Two strip seats (6) are fixedly installed on one side of the bottom of the protective box (1), and the electrodialysis unit body (13) is installed at the bottom of the protective box (1) between the strip seats (6).

3. The protective structure of an electrodialysis device according to claim 2, characterized in that: A first clamping block (7) is fixedly installed on the inner wall of the strip seat (6) on one side of the electrodialysis body (13), and the inner wall of the first clamping block (7) is in contact with the outer wall on one side of the electrodialysis body (13).

4. The protective structure of an electrodialysis device according to claim 3, characterized in that: A positioning seat (8) is fixed on the inner wall of the strip seat (6) on the side away from the first clamping block (7) of the electrodialysis unit body (13), and a nut seat (9) is provided on the outer wall of the positioning seat (8).

5. The protective structure of an electrodialysis device according to claim 4, characterized in that: The nut seat (9) has a screw (11) installed on its internal thread. One end of the screw (11) extends to the outside of the nut seat (9) and is fitted with a handle (10). The other end of the screw (11) passes through the positioning seat (8) and is rotatably fitted with a second clamping block (12). The outer walls on both sides of the second clamping block (12) are in contact with the inner wall of the strip seat (6).

6. The protective structure of an electrodialysis device according to claim 1, characterized in that: The outer wall of one side of the protective box (1) is provided with several guide posts (5). One end of the guide post (5) extends into the interior of the protective box (1). The interior of the guide post (5) is provided with a wire hole (501). Both ends of the wire hole (501) extend to the outside of the guide post (5).

Citation Information

Patent Citations

  • Protective structure of electrodialyzer

    CN217895209U