Disposable conductive adhesive polar plate

By adding anti-slip plates and elastic elements to the conductive adhesive electrode plate, a multi-restraint structure is formed, which solves the problem of electrode plate slippage or detachment caused by a single adhesive point, and achieves the stability and adhesion effect of the electrode plate during the operation.

CN224056070UActive Publication Date: 2026-03-31CHANGZHOU YANLING ELECTRONICS EQUIP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing disposable conductive adhesive plates cannot provide sufficient adhesion at a single adhesive point during surgery, causing the plates to slide or fall off, thus affecting the surgical outcome.

Method used

Adding a non-stick plate provides another point of adhesion, and the skin is restrained by elastic elements and clamping structures, forming multiple restrictions to improve the adhesive effect.

Benefits of technology

The multiple confinement structures ensure that the electrode plates do not slip or fall off during the operation, thus improving the stability and effectiveness of the surgery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a disposable conductive viscose polar plate, which comprises an adhesive plate and a polar plate main body, the polar plate main body comprises a support plate, an aluminum foil and a polar plate handle part, the aluminum foil is connected to one side of the support plate, the polar plate handle part is connected with the aluminum foil, a conductive adhesive layer is coated on the aluminum foil, and the conductive adhesive layer is coated on the polar plate main body. The pole plate main body is suitable for being connected with the adhesion plate through the conductive adhesion layer, the anti-skid assembly comprises an elastic element and an anti-skid plate, the elastic element is connected with the supporting plate, the anti-skid plate is connected with the elastic element so that the anti-skid plate can be acted to stretch the elastic element, and the anti-skid plate is connected with the anti-skid plate. The antiskid plate is provided with a first side and a second side which are oppositely arranged, the first side is provided with a bonding surface, a clamping area is formed between the antiskid plate and the supporting plate, the antiskid plate is additionally arranged to provide adhesion to the other point of the skin, and an elastic element is arranged to limit part of the skin so as to improve the adhesion effect.
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Description

Technical Field

[0001] This utility model relates to a, specifically, a disposable conductive adhesive electrode plate. Background Technology

[0002] Currently, disposable conductive adhesive plates are usually adhered to the skin at a single point. However, this method of adhesion may encounter some problems during surgery, especially when it is necessary to ensure that the plate is stably and non-sliply adhered to the skin surface.

[0003] A search revealed that Chinese patent CN203252728U discloses a disposable conductive adhesive electrode plate with a safety seal. This patent uses an insulating foam layer to cover the edge of the aluminum foil and surround it within the conductive adhesive layer, effectively preventing overheating of the edge by high-frequency current and reducing the risk of burns. However, this patent still uses an adhesive layer on the conductive adhesive layer and an adhesive layer on the insulating layer to adhere to the skin. Both are located in the same position on the skin, and a single adhesive point cannot provide sufficient adhesion to cope with various movements and forces that may occur during surgery. When the surgical site needs to be moved or adjusted, the electrode plate may slide or fall off due to insufficient adhesion, thereby affecting the progress and effect of the surgery. Utility Model Content

[0004] The technical problem to be solved by this invention is to overcome the defects in the prior art. By adding an anti-slip plate to provide another point of adhesion to the skin and setting an elastic element to limit part of the skin, the adhesion effect is improved.

[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is a disposable conductive adhesive electrode plate, comprising:

[0006] Glue board;

[0007] The electrode body includes a support plate, an aluminum foil, and an electrode handle.

[0008] The aluminum foil is connected to one side of the support plate, the electrode plate handle is connected to the aluminum foil, the aluminum foil is coated with a conductive adhesive layer, and the electrode plate body is adapted to be connected to the adhesive plate through the conductive adhesive layer.

[0009] An anti-slip assembly, comprising an elastic element and an anti-slip plate, wherein the elastic element is connected to the support plate, and the anti-slip plate is connected to the elastic element to be adapted to be actuated by the anti-slip plate to stretch the elastic element;

[0010] The anti-slip plate has a first side and a second side arranged opposite to each other. The first side has an adhesive surface that is suitable for sticking to the skin. A clamping area is formed between the anti-slip plate and the support plate. The elastic element is adapted to drive the support plate to reset so as to pull the skin into the clamping area.

[0011] Furthermore, an insulating protective pad is provided on the side of the support plate connected to the aluminum foil, and the insulating protective pad surrounds the four edges of the aluminum foil.

[0012] Furthermore, the elastic element is a rubber band.

[0013] Furthermore, the anti-slip plate has anti-slip protrusions on one side of the adhesive surface.

[0014] Furthermore, a first adhesive surface is provided on the second side of the anti-slip plate, and a second adhesive surface is provided on the support plate. The anti-slip plate is adapted to be actuated to cause the first adhesive surface to adhere to the second adhesive surface.

[0015] Furthermore, a first clamping block is provided on the opposing surfaces between the support plate and the anti-slip plate;

[0016] A second clamping block is provided on the opposing surfaces between the anti-slip plate and the support plate;

[0017] The first clamp and the second clamp are adapted to restrict the skin located within the clamping area.

[0018] Furthermore, the first clamping block is provided with a downward inclined surface, and the second clamping block is provided with an upward inclined surface.

[0019] By adopting the above technical solution, this utility model has the following beneficial effects:

[0020] 1. By using the rubber band and anti-slip plate structure, pull the anti-slip plate to the position where it needs to be glued. After the anti-slip plate is glued to the position, the rubber band that was previously stretched along with the anti-slip plate will drive the anti-slip plate to return to its original position. During the process of the anti-slip plate returning to its original position, it will pull the glued skin to the clamping area and restrict it.

[0021] 2. Through the setting of structures such as the first clamping block and the second clamping block, after the anti-slip plate and the rubber band pull part of the skin area, the first clamping block and the second clamping block together clamp the skin in the clamping area, so that even if it is sticky and loose, the main body of the plate will not easily slide.

[0022] 3. By setting up structures such as the upper inclined surface and the lower inclined surface, while the first clamping block and the second clamping block clamp and restrict the skin in the clamping area, the upper inclined surface on the second clamping block will guide the skin upward and squeeze it to the lower inclined surface. At this time, the skin will exert pressure from top to bottom on the entire first clamping block through the lower inclined surface, thereby causing the electrode plate body to apply pressure to the skin, so that the electrode plate body fits the skin more closely. Attached Figure Description

[0023] Figure 1 This is a top view of the overall structure of this utility model;

[0024] Figure 2 This is a schematic diagram of the bottom surface of the overall structure of this utility model;

[0025] Figure 3 This is a side view of the electrode plate body and anti-slip components of this utility model;

[0026] Figure 4 For the present utility model Figure 3 Enlarged view of point A in the middle.

[0027] In the picture: 1. Adhesive board;

[0028] 2. Electrode body; 21. Support plate; 22. Aluminum foil; 23. Insulating protective pad; 24. Electrode handle; 25. Conductive adhesive layer;

[0029] 3. Anti-slip components; 31. Rubber band; 32. Anti-slip plate; 33. Anti-slip protrusions; 34. Clamping area; 35. First clamping block; 36. Second clamping block; 37. Lower inclined surface; 38. Upper inclined surface;

[0030] 4. First adhesive surface; 5. Second adhesive surface. Detailed Implementation

[0031] To make the contents of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0032] Example 1

[0033] like Figure 1-3 As shown, a disposable conductive adhesive electrode plate includes:

[0034] Adhesive board 1;

[0035] The electrode body 2 includes a support plate 21, an aluminum foil 22, and an electrode handle 24.

[0036] Aluminum foil 22 is connected to one side of support plate 21, electrode handle 24 is connected to aluminum foil 22, aluminum foil 22 is coated with conductive adhesive layer 25, and electrode body 2 is adapted to be connected to adhesive plate 1 through conductive adhesive layer 25.

[0037] Anti-slip component 3 includes an elastic element and an anti-slip plate 32. The elastic element is connected to the support plate 21, and the anti-slip plate 32 is connected to the elastic element to be adapted to be actuated to stretch the elastic element.

[0038] The anti-slip plate 32 has a first side and a second side arranged opposite to each other. The first side has an adhesive surface that is suitable for sticking to the skin. The anti-slip plate 32 and the support plate 21 form a clamping area 34. The elastic element is suitable for driving the support plate 21 to reset so as to pull the skin into the clamping area 34.

[0039] like Figure 2 As shown, an insulating protective pad 23 is provided on the side of the support plate 21 connected to the aluminum foil 22, and the insulating protective pad 23 surrounds the four edges of the aluminum foil 22.

[0040] like Figure 2-4 As shown, the elastic element is a rubber band 31.

[0041] like Figure 2 As shown, the anti-slip plate 32 has anti-slip protrusions 33 on the side with the adhesive surface.

[0042] like Figure 1 As shown, a first adhesive surface 4 is provided on the second side of the anti-slip plate 32, and a second adhesive surface 5 is provided on the support plate 21. The anti-slip plate 32 is adapted to be moved to cause the first adhesive surface 4 to adhere to the second adhesive surface 5.

[0043] like Figure 4 As shown, a first clamping block 35 is provided on the opposing surfaces between the support plate 21 and the anti-slip plate 32;

[0044] A second clamping block 36 is provided on the opposing surfaces between the anti-slip plate 32 and the support plate 21;

[0045] The first clamp 35 and the second clamp 36 are adapted to restrict the skin located within the clamping area 34.

[0046] The working principle of this embodiment is as follows:

[0047] The adhesive plate 1 is adhesively attached to the electrode body 2, and the adhesive plate 1 needs to be removed when the electrode body 2 is needed.

[0048] After the adhesive plate is removed, the aluminum foil 22 is adhered to the patient's skin surface that needs to be adhered through the conductive adhesive layer 25. The high-frequency current is delivered to the aluminum foil 22 through the neutral electrode connection line connected to the electrode handle 24, and then delivered to the patient through the conductive adhesive layer 25 coated on the aluminum foil 22. At the same time, an insulating protective layer is set around the edge of the aluminum foil 22 to protect the patient and avoid overheating and burns caused by excessive current at the edge of the aluminum foil 22. The specific working principle of this part is existing technology and will not be described in detail here.

[0049] The conductive adhesive layer 25 provides the first layer of restriction to the skin. To avoid insufficient adhesion at a single location, an anti-slip component 3 is also provided. Preferably, one set of anti-slip components 3 is provided on each side of the support plate 21. The anti-slip component 3 mainly includes an anti-slip plate 32 and an elastic element. The elastic element directly connects the anti-slip plate 32 and the support plate 21, so that the anti-slip plate 32 and the electrode plate body 2 form a whole. The elastic element can be a rubber strip 31.

[0050] After the first layer of restriction is completed, the operator pulls the anti-slip plate 32 to another location on the patient's skin and uses the adhesive surface on the anti-slip plate 32 to adhere to the skin. After the anti-slip plate 32 is adhered, the operator releases the anti-slip plate 32. When the anti-slip plate 32 was pulled, the rubber band 31 was also stretched. When the anti-slip plate 32 loses tension, the rubber band 31 will contract and return to its original position under its own properties. During the return process, the anti-slip plate 32 is moved towards the support plate 21. During the movement of the anti-slip plate 32, the skin adhered to the anti-slip plate 32 will move along with it. The part of the skin that moves along with it will compress and bulge the remaining relatively stationary skin, and finally be pulled into the clamping area 34 between the support plate 21 and the anti-slip plate 32. The clamping area 34 restricts this part of the skin. The adhesive surface of the anti-slip plate 32 acts as the second layer of restriction, while the clamping in the clamping area 34 is the third layer of restriction. Through multiple restrictions, the problem of the electrode plate falling off, sliding, or loosening during use is avoided.

[0051] A first clamping block 35 is provided on the support plate 21, and a second clamping block 36 is provided on the anti-slip plate 32. The first clamping block 35 and the second clamping block 36 are both located inside the clamping area 34. The first clamping block 35 and the second clamping block 36 can further clamp and limit the part of the skin located in the clamping area 34, thereby improving the stability of the electrode plate body 2.

[0052] In addition, anti-slip protrusions 33 are provided on the contact surface between the anti-slip plate 32 and the skin. The anti-slip protrusions 33 can increase the friction between the anti-slip plate 32 and the skin, further improve the stability of the adhesion, and make it easier to move the adhered skin in the direction of the anti-slip plate 32 resetting.

[0053] Meanwhile, since anti-slip plates 32 extending to both sides are provided on both sides of the electrode plate, a larger packaging bag is required during packaging. To avoid the cost issues caused by changing the packaging bag, the rubber strip 31 can be bent by rotating the anti-slip plate 32, so that the first adhesive surface 4 on the anti-slip plate 32 is bonded to the second adhesive surface 5 on the support plate 21, thereby achieving the effect of folding up the anti-slip plate 32 without changing the packaging bag.

[0054] Example 2

[0055] like Figure 4 As shown, this embodiment further includes the following structure based on embodiment one: a downward inclined surface 37 is provided on the first clamping block 35, and an upward inclined surface 38 is provided on the second clamping block 36.

[0056] The working principle of this embodiment is as follows:

[0057] With the cooperation of the first clamping block 35 and the second clamping block 36, the skin in the clamping area 34 is restricted. The first clamping block 35 is provided with a downward inclined surface 37, and the second clamping block 36 is provided with an upward inclined surface 38. When part of the skin is moved by the anti-slip plate 32, the skin that is squeezed and raised will be further squeezed towards the support plate 21 along the upward inclined surface 38, and the whole body has a slight upward trend. When the anti-slip plate 32 is reset, the skin in the clamping area 34 is located above the first clamping block 35 and pressed on the first clamping block 35 by the dual traction of the anti-slip plate 32 and the upward inclined surface 38. This has a downward pressing effect on the first clamping block 35, which further improves the contact between the electrode plate body 2 and the skin. At the same time, the downward inclined surface 37 provided on the first clamping block 35 can reduce the discomfort of contact with the skin and increase the contact area between the first clamping block 35 and the skin.

[0058] The specific embodiments described above further illustrate the technical problems, technical solutions, and beneficial effects of this utility model. It should be understood that the above descriptions are merely specific embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A single-use conductive adhesive tab, characterized by: The utility model relates to a kind of adhesive plate and its connecting structure, including: Adhesive plate (1); Pole plate main body (2), the pole plate main body (2) includes support plate (21), aluminum foil (22) and pole plate handle (24); The aluminum foil (22) is connected in the side of the support plate (21), the pole plate handle (24) is connected with the aluminum foil (22), the aluminum foil (22) is coated with conductive adhesive layer (25), and the pole plate main body (2) is adapted to be connected with the adhesive plate (1) by the conductive adhesive layer (25); Anti-skid assembly (3), the anti-skid assembly (3) includes elastic element and anti-skid plate (32), the elastic element is connected with the support plate (21), and the anti-skid plate (32) is connected with the elastic element to be adapted to the anti-skid plate (32) passive action to stretch the elastic element; The anti-skid plate (32) is provided with oppositely arranged first side and second side, the first side is provided with adhesive surface, and the adhesive surface is adapted to stick skin, and the anti-skid plate (32) forms clamping area (34) with the support plate (21), and the elastic element is adapted to drive the support plate (21) reset to pull skin into the clamping area (34).

2. The single-use conductive gelled electrode pad of claim 1, wherein, The side where the support plate (21) is connected with the aluminum foil (22) is provided with insulating protective pad (23), and the insulating protective pad (23) surrounds the periphery of the aluminum foil (22).

3. The single-use conductive adhesive tab of claim 1 or 2, wherein, The elastic element is rubber band (31).

4. The single-use conductive adhesive tab of claim 1 or 2, wherein, The side where the anti-skid plate (32) is provided with the adhesive surface is provided with anti-skid convex (33).

5. The single-use conductive adhesive tab of claim 1 or 2, wherein, The second side of the anti-skid plate (32) is provided with first adhesive surface (4), and the support plate (21) is provided with second adhesive surface (5), and the anti-skid plate (32) is adapted to be passive to drive the first adhesive surface (4) and the second adhesive surface (5) to be combined.

6. The single-use conductive gelled electrode pad of claim 1 or 2, wherein, The opposite surface between the support plate (21) and the anti-skid plate (32) is provided with first clamping block (35); The opposite surface between the anti-skid plate (32) and the support plate (21) is provided with second clamping block (36); The first clamping block (35) and the second clamping block (36) are adapted to limit the skin located in the clamping area (34).

7. The single-use conductive gelled electrode pad of claim 6, wherein, The first clamping block (35) is provided with lower inclined surface (37), and the second clamping block (36) is provided with upper inclined surface (38).

Citation Information

Patent Citations

  • Disposable conductive adhesive electrode plate with safe sealing side

    CN203252728U