Interlocking anti-dislocation type insulation board connecting structure

By designing an interlocking anti-misalignment insulation board connection structure, and using locking groove components and connector components, the problem of splicing errors in existing insulation boards has been solved, achieving stability and anti-fall-off effects.

CN224048402UActive Publication Date: 2026-03-27HEBEI JUDE RUNGONG ENERGY SAVING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-22
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The lack of interlocking and anti-misalignment calibration structures between adjacent insulation boards in the existing system leads to splicing errors, reduced stability, and compromised insulation performance.

Method used

The design incorporates an interlocking anti-misalignment insulation board connection structure, employing a locking groove assembly and a connector assembly. Stability is achieved through the cooperation of the splice joint and the positive and negative calibration grooves, preventing splicing errors. Furthermore, the connection stability is enhanced by using a beveled anti-dislodgement groove.

Benefits of technology

It improves the stability and anti-misalignment effect of insulation board splicing, avoids splicing errors, and enhances the stability and anti-detachment performance of the connection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of insulation board connecting structures, in particular to an interlocking anti-dislocation type insulation board connecting structure. According to the technical scheme, the interlocking anti-dislocation type heat preservation plate connecting structure comprises a heat preservation plate and further comprises a lock catch groove assembly and a connector assembly. A lock catch groove assembly and a connector assembly are arranged at the two ends of the splicing position of the heat preservation plate respectively. According to the utility model, the splicing heads are vertically inserted into the splicing grooves for splicing and fixing, and the function that the splicing heads and the splicing grooves cannot be spliced after being reversely inserted is realized by matching the positive and negative calibration heads with the positive and negative calibration grooves, so that the structural splicing stability and the dislocation-preventing splicing effect are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of insulation board connecting structure, and specifically relates to interlocking anti-misplacement insulation board connecting structure. BACKGROUND

[0002] In the field of building insulation engineering, the splicing and installation of the insulation board is very important, and the splicing effect of the insulation board directly affects the insulation performance and overall quality of the building, since the insulation board is a key material for building insulation and heat insulation.

[0003] The existing insulation board still lacks an anti-misplacement calibration structure, and in the actual construction process, workers are prone to splicing errors when splicing the insulation board, such as installing the insulation board in the wrong direction or deviating the splicing position, which not only affects the appearance of the insulation board, but also more seriously damages the integrity of the insulation system, resulting in a significant reduction in the insulation performance.

[0004] Therefore, in view of the above-mentioned existing insulation board, since the connecting structure between adjacent insulation boards does not have an interlocking structure and an anti-misplacement calibration structure, the problem of easy splicing error and decreased stability during the splicing and assembly of the insulation board can be solved by designing an interlocking anti-misplacement insulation board connecting structure. SUMMARY

[0005] In order to overcome the problem of easy splicing error and decreased stability during the splicing and assembly of the insulation board due to the lack of an interlocking structure and an anti-misplacement calibration structure in the connecting structure between adjacent insulation boards of the existing insulation board.

[0006] The technical scheme of the utility model is as follows: an interlocking anti-misplacement insulation board connecting structure, comprising an insulation board, a lock slot assembly, and a connecting head assembly; the splicing end of the insulation board is provided with the lock slot assembly and the connecting head assembly; the lock slot assembly comprises a connecting slot body, a splicing slot, and a forward and reverse calibration slot; the connecting head assembly comprises a connecting head body, a splicing head, an oblique anti-disengagement slot, and a forward and reverse calibration head.

[0007] Preferably, the splicing head is vertically inserted into the splicing slot for splicing and fixing, and the forward and reverse calibration head cooperates with the forward and reverse calibration slot to realize the function that the splicing head cannot be spliced when inserted reversely, thereby improving the stability of the structure splicing and the anti-misplacement splicing effect, and solving the problem of easy splicing error and decreased stability during the splicing and assembly of the insulation board due to the lack of an interlocking structure and an anti-misplacement calibration structure in the connecting structure between adjacent insulation boards of the existing insulation board.

[0008] Preferably, the inside of the connecting slot body is provided with the splicing slot, and the splicing slot and the connecting slot body are integrally formed; the inside of the connecting slot body is provided with the splicing head, and the splicing head is connected and arranged inside the splicing slot in a vertical manner.

[0009] Preferably, the two sides of the splicing joint are provided with beveled anti-dropping grooves, and the beveled anti-dropping grooves are integrally formed with the splicing joint and are connected with the inner wall of the splicing groove in a beveled interlocking manner.

[0010] Preferably, one side of the beveled anti-dropping groove is provided with a positive and negative calibration head, and the positive and negative calibration head is integrally formed with the connecting head body.

[0011] Preferably, the lower side of the positive and negative calibration head is provided with a positive and negative calibration groove, and the positive and negative calibration groove is integrally formed with the connecting groove body.

[0012] Preferably, the positive and negative calibration head is connected with the positive and negative calibration groove.

[0013] Preferably, one end of the splicing joint is provided with a connecting head body, and the connecting head body is integrally formed with the splicing joint and the thermal insulation plate; the connecting groove body is integrally formed with the thermal insulation plate.

[0014] The utility model discloses the beneficial effect:

[0015] 1, the existing thermal insulation plate, because the connecting structure splicing between adjacent thermal insulation plates does not have interlocking structure and anti-misinsertion calibration structure, causes the thermal insulation plate splicing assembly to be easy to splice error and the problem of stability decline, through the splicing joint vertical insertion splicing groove and fix, cooperate the cooperation of positive and negative calibration head and positive and negative calibration groove realizes the function that the splicing joint and splicing groove anti-insertion cannot splice, thereby improve the stability of structure splicing and anti-misplacement splicing effect, solve the existing thermal insulation plate, because the connecting structure splicing between adjacent thermal insulation plates does not have interlocking structure and anti-misinsertion calibration structure, causes the thermal insulation plate splicing assembly to be easy to splice error and the problem of stability decline,

[0016] 2, through the setting of the beveled anti-dropping groove, the beveled anti-dropping groove is inserted into the splicing connection with the inner wall of the splicing groove in a beveled manner to prevent the lock catch groove assembly and the connecting head assembly from being stretched in the horizontal direction and the splicing joint from falling out of the splicing groove, thereby improving the stability of the structure connection. DRAWINGS

[0017] Figure 1 The whole three-dimensional structure schematic diagram of the interlocking anti-misplacement type thermal insulation plate connecting structure of the utility model is shown.

[0018] Figure 2 The lock catch groove assembly and connecting head assembly combined three-dimensional structure schematic diagram of the interlocking anti-misplacement type thermal insulation plate connecting structure of the utility model is shown.

[0019] Figure 3 The rear view three-dimensional structure schematic diagram of the lock catch groove assembly and connecting head assembly combination of the interlocking anti-misplacement type thermal insulation plate connecting structure of the utility model is shown.

[0020] Figure 4The utility model discloses interlocking mistake proofing formula heat preservation board connecting structure's lock catch groove subassembly, connecting head subassembly combination elevational view structure schematic diagram of showing.

[0021] The marks in the drawing are: 1, heat preservation board;2, lock catch groove subassembly;3, connecting head subassembly;201, connecting groove body;202, splicing groove;203, positive and negative calibration groove;301, connecting head body;302, splicing head;303, bevel anti -drop groove;304, positive and negative calibration head. Specific implementation

[0022] The utility model is further explained below in combination with the drawing and embodiment.

[0023] Please refer to Figures 1-4 The utility model provides embodiment: interlocking mistake proofing formula heat preservation board connecting structure, including heat preservation board 1 still including lock catch groove subassembly 2, connecting head subassembly 3, the splicing of heat preservation board 1 both ends is provided with lock catch groove subassembly 2, connecting head subassembly 3;Lock catch groove subassembly 2 includes connecting groove body 201, splicing groove 202, positive and negative calibration groove 203;Connecting head subassembly 3 includes connecting head body 301, splicing head 302, bevel anti -drop groove 303, positive and negative calibration head 304.

[0024] Please refer to Figures 1-4 In the embodiment, the inside of connecting groove body 201 is provided with splicing groove 202, and splicing groove 202 is integrally formed with connecting groove body 201;The inside of connecting groove body 201 is provided with splicing head 302, and splicing head 302 is vertically inserted and connected in the inside of splicing groove 202;The both sides of splicing head 302 are provided with bevel anti -drop groove 303, and bevel anti -drop groove 303 is integrally formed with splicing head 302, and bevel anti -drop groove 303 is connected with the inner wall of splicing groove 202 with bevel interlocking;The side of bevel anti -drop groove 303 is provided with positive and negative calibration head 304, and positive and negative calibration head 304 is integrally formed with connecting head body 301;The below of positive and negative calibration head 304 is provided with positive and negative calibration groove 203, and positive and negative calibration groove 203 is integrally formed with connecting groove body 201;Positive and negative calibration head 304 is connected with positive and negative calibration groove 203;One end of splicing head 302 is provided with connecting head body 301, and connecting head body 301 is integrally formed with splicing head 302, heat preservation board 1;Connecting groove body 201 is integrally formed with heat preservation board 1.

[0025] In the working process, the splicing head 302 is vertically inserted into the splicing groove 202 for splicing and fixing, and the cooperation of the positive and negative calibration head 304 and the positive and negative calibration groove 203 realizes the function that the splicing head 302 cannot be spliced by being inserted reversely, thereby improving the stability of structural splicing and the anti-misalignment splicing effect; and the problem that the existing thermal insulation board 1 is prone to splicing error and stability decline in splicing and assembling because the connecting structure between adjacent thermal insulation boards 1 has no interlocking structure and anti-misinsertion calibration structure is solved.

[0026] Then, the oblique anti-dropping groove 303 is obliquely inserted into the inner wall of the splicing groove 202 to prevent the lock catch groove assembly 2 and the connecting head assembly 3 from being stretched in the horizontal direction and the splicing head 302 from falling out of the splicing groove 202, thereby improving the stability of structural connection.

[0027] Through the above steps, the splicing head 302 is vertically inserted into the splicing groove 202 for splicing and fixing, and the cooperation of the positive and negative calibration head 304 and the positive and negative calibration groove 203 realizes the function that the splicing head 302 cannot be spliced by being inserted reversely, thereby improving the stability of structural splicing and the anti-misalignment splicing effect, avoiding the problem that the existing thermal insulation board 1 is prone to splicing error and stability decline in splicing and assembling because the connecting structure between adjacent thermal insulation boards 1 has no interlocking structure and anti-misinsertion calibration structure.

[0028] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range possessed by those skilled in the art without departing from the purpose of the utility model.

Claims

1. An interlocking anti-misalignment insulation board connection structure, comprising an insulation board (1), characterized in that: It also includes a locking groove assembly (2) and a connector assembly (3); the two ends of the splicing of the insulation board (1) are respectively provided with a locking groove assembly (2) and a connector assembly (3); the locking groove assembly (2) includes a connecting groove body (201), a splicing groove (202), and a positive and negative calibration groove (203); the connector assembly (3) includes a connector body (301), a splicing joint (302), a beveled anti-detachment groove (303), and a positive and negative calibration head (304).

2. The interlocking anti-misalignment insulation board connection structure according to claim 1, characterized in that: The connecting groove (201) is provided with a splicing groove (202) inside, and the splicing groove (202) is integrally formed with the connecting groove (201); the connecting groove (201) is provided with a splicing joint (302) inside, and the splicing joint (302) is vertically inserted into the splicing groove (202) for connection.

3. The interlocking anti-misalignment insulation board connection structure according to claim 2, characterized in that: Both sides of the splice joint (302) are provided with slanted anti-detachment grooves (303), and the slanted anti-detachment grooves (303) are integrally formed with the splice joint (302). The slanted anti-detachment grooves (303) are interlocked with the slanted openings on the inner wall of the splice groove (202).

4. The interlocking anti-misalignment insulation board connection structure according to claim 3, characterized in that: A positive and negative calibration head (304) is provided on one side of the oblique anti-detachment groove (303), and the positive and negative calibration head (304) is integrally formed with the connector body (301).

5. The interlocking anti-misalignment insulation board connection structure according to claim 4, characterized in that: A positive and negative calibration groove (203) is provided below the positive and negative calibration head (304), and the positive and negative calibration groove (203) is integrally formed with the connecting groove (201).

6. The interlocking anti-misalignment insulation board connection structure according to claim 4, characterized in that: The positive and negative calibration head (304) is spliced ​​and connected with the positive and negative calibration groove (203).

7. The interlocking anti-misalignment insulation board connection structure according to claim 2, characterized in that: One end of the splice joint (302) is provided with a connector body (301), and the connector body (301) is integrally formed with the splice joint (302) and the insulation board (1); the connecting groove (201) is integrally formed with the insulation board (1).