A building sound insulation panel that is easy to assemble

By using the retaining components of the slotted plate assembly and the retaining groove to cooperate with the retaining groove, the problem of complex installation of traditional building sound insulation panels is solved, realizing fast and stable panel assembly, improving aesthetics and reducing operation difficulty.

CN224281640UActive Publication Date: 2026-05-26QINGDAO HISENSE ARCHITECTURAL DESIGN INST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QINGDAO HISENSE ARCHITECTURAL DESIGN INST CO LTD
Filing Date
2025-02-12
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The installation process of traditional building sound insulation panels is complicated, requires professional personnel, and has a single fixing method, making it difficult to adapt to the needs of different building structures. It is also difficult to maintain and replace them later, increasing the cost of use.

Method used

By using slot plate assemblies and block plate assemblies, and through the cooperation of retaining components and retaining grooves, the plate body can be quickly assembled, eliminating the traditional bolt connection method and simplifying the operation process.

Benefits of technology

It enables quick and easy assembly of the panels, improves the stability and aesthetics of the assembly, and reduces the difficulty of operation and the cost of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of sound-insulating building materials technology, specifically, to a sound-insulating building material that is easy to assemble. It includes a panel body, with slotted plate assemblies and locking plate assemblies on both sides of the panel body. The slotted plate assembly includes a slotted plate body with several slots on its front side. A retaining member is slidably inserted into the center of each slot on the slotted plate body. The locking plate assembly includes a locking plate body with a locking block on its back side, and a retaining groove is formed in the center of each locking block. This utility model eliminates the need for traditional assembly methods such as bolt connections or welding, avoiding the cumbersome nature of bolt connections and the unsightly appearance of welding. Through the cooperation of the retaining member and the retaining groove, assembly can be completed without any auxiliary tools. Furthermore, it has a simple structure, is easy to operate, and can be performed anytime, saving time and effort.
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Description

Technical Field

[0001] This utility model relates to the field of sound-insulating building materials technology, specifically, to a sound-insulating building material that is easy to assemble. Background Technology

[0002] In the construction industry, the use of sound insulation panels is of great significance for improving the sound insulation effect of buildings. Traditional building sound insulation panels usually adopt a fixed structure, fixing the sound insulation material to the building walls or ceilings by bolts, adhesives, etc. However, this traditional method has many shortcomings: First, the installation process is complex, requires professional operation, and is time-consuming; second, the fixing method is relatively simple and difficult to adapt to the needs of different building structures; third, once installed, subsequent maintenance and replacement are difficult, increasing the cost of use.

[0003] Utility model patent CN218264654U discloses a soundproof building panel that is easy to assemble. The panel includes two panels, each with an inner cavity at its upper center. A soundproofing mechanism is fixedly connected to the inner wall of each cavity. Two connecting holes are located at the upper left and upper right of each panel, and a connecting mechanism is fixedly connected to four adjacent connecting holes. Two locking blocks are fixedly connected to the upper and lower left ends of each panel, and threaded holes are formed at the center of the front of several locking blocks. Two slots are located at the upper and lower right ends of each panel, and threaded holes are formed on the front wall of several slots. This utility model provides a soundproof building panel that is easy to assemble, allowing for rapid assembly and providing good sound insulation, making it suitable for use in assembling soundproof building panels.

[0004] Although the above technical solution assembles the two building panels through a series of structural components, the assembly method still uses bolt connection, which is complex in structure, cumbersome in operation, and affected by external conditions, causing inconvenience to the assembly work. In view of this, we propose an effective and feasible solution to solve the above shortcomings, namely, a building sound insulation panel that is easy to assemble. Utility Model Content

[0005] In view of the above-mentioned defects or deficiencies in the prior art, it is desirable to provide a building sound insulation panel that is easy to assemble.

[0006] In a first aspect, this application provides a building sound insulation panel that is easy to assemble, comprising a panel body, wherein a slotted plate assembly and a block plate assembly are respectively provided on both sides of the panel body. The slotted plate assembly includes a slotted plate body flush with the back of the panel body. A plurality of slots are equidistantly provided on the front of the slotted plate body along the vertical direction. A retaining member is slidably inserted through the slots at the center of the slotted plate body. The block plate assembly includes a block plate body flush with the front of the panel body. A block is provided on the back of the block body along the vertical direction at an equal number of equidistant ...

[0007] According to the technical solution provided in the embodiments of this application, the board body includes a panel layer, a flame-retardant board layer, a honeycomb board layer, a sound-absorbing cotton layer, a sound-insulating cavity, a sound-insulating felt, and a bottom plate layer arranged sequentially from the front to the back, and adjacent two layers of the board body are bonded and fixed together with glue.

[0008] According to the technical solution provided in the embodiments of this application, the vertical side wall of the slot is provided with a through hole for accommodating the horizontal sliding of the retaining member, and two receiving slots are symmetrically opened on the side wall of the front end of the through hole.

[0009] According to the technical solution provided in the embodiments of this application, the retaining member includes a retaining post that is horizontally slidably inserted into the through hole, and the end of the retaining post near the front is provided with a sliding strip that can be accommodated in the corresponding receiving groove.

[0010] According to the technical solution provided in the embodiments of this application, the bottom of the retaining groove is provided with a plurality of springs distributed at equal intervals, and the plurality of springs are connected to the same sliding disk that is slidably engaged inside the retaining groove.

[0011] According to the technical solution provided in the embodiments of this application, the inner peripheral wall of the fixed groove is provided with an annular groove for accommodating the sliding of the slider. The back of the annular groove is provided with an insertion groove that is internally and externally connected and is used for the slider to slide into the annular groove at the corresponding positions of the two sliders.

[0012] According to the technical solution provided in the embodiments of this application, the front surface of the slide bar is flush with the front surface of the retaining post, the depth of the receiving groove is less than the depth of the through hole, the depth of the receiving groove is greater than or equal to the thickness of the slide bar, and the sum of the thicknesses of the card slot plate body and the card block plate body is equal to the plate thickness.

[0013] According to the technical solution provided in the embodiments of this application, the thickness of the slider is equal to the depth of the annular groove. When two sliders are simultaneously inserted into the corresponding insertion slots, the spring is pressed to its shortest state and the sliding disk has no overlapping part with the annular groove, so the slider can slide in annularly within the annular groove.

[0014] In summary, this technical solution specifically discloses an easily assembled soundproof building panel, which includes a panel body. On both sides of the panel body are respectively provided a slotted plate assembly and a locking plate assembly. The slotted plate assembly includes a slotted plate body, with several slots on its front side. A retaining member is slidably inserted into the center of each slot on the slotted plate body. The retaining member includes a retaining post and a sliding strip. The locking plate assembly includes a locking plate body, with a locking block on its back side. A retaining groove is formed in the center of the locking block, and an annular sliding groove is formed on the inner circumferential wall of the retaining groove. This embodiment abandons traditional methods such as bolt connection or welding to complete the assembly work, avoiding the cumbersome nature of bolt connection and the unsightly appearance of welding. That is, through the cooperation of the retaining member and the retaining groove, assembly can be completed without any auxiliary tools. Furthermore, the structure is simple, the operation is easy, and it can be performed anytime and anywhere, saving time and effort. Attached Figure Description

[0015] Other features, objects, and advantages of this application will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0016] Figure 1 This is a schematic diagram of the overall structure and splicing relationship of the utility model.

[0017] Figure 2 This is a schematic diagram of the back splicing relationship of the overall structure of the utility model;

[0018] Figure 3 This is a cross-sectional view of the splicing relationship of the overall structure of the utility model.

[0019] Figure 4 for Figure 3 Enlarged structural diagram at point A;

[0020] Figure 5 This is a schematic diagram of the slot plate assembly structure in the utility model;

[0021] Figure 6 This is a schematic diagram of the card block assembly structure in the utility model;

[0022] Figure 7 for Figure 6 Enlarged structural diagram at point B;

[0023] In the picture:

[0024] 1. Panel; 11. Panel layer; 12. Flame-retardant panel layer; 13. Honeycomb panel layer; 14. Sound-absorbing cotton layer; 15. Sound insulation cavity; 16. Sound insulation felt; 17. Base plate layer;

[0025] 2. Slot plate assembly; 21. Slot plate body; 22. Slot; 23. Through hole; 231. Receiving groove; 24. Fixing element; 241. Fixing post; 242. Sliding bar;

[0026] 3. Block plate assembly; 31. Block plate body; 32. Block; 321. Retention groove; 322. Spring; 323. Annular slide groove; 324. Insertion groove; 325. Sliding disc. Detailed Implementation

[0027] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the relevant utility model and not intended to limit the scope of the utility model. Furthermore, it should be noted that, for ease of description, only the parts relevant to the utility model are shown in the accompanying drawings.

[0028] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0029] Please see Figures 1-7 A building sound insulation panel that is easy to assemble includes a panel body 1. On both sides of the panel body 1 are staggered slotted plate assemblies 2 and slotted block assemblies 3. The slotted plate assembly 2 includes a slotted plate body 21 flush with the back of the panel body 1. This flush arrangement ensures that the entire back of the two panels 1 is on the same plane during assembly, resulting in a tighter and more robust assembly. The front of the slotted plate body 21 has several slots 22 evenly spaced along a vertical direction, with the slotted plate body 21 centered on each slot 22. A retaining member 24 is slidably inserted through the plate. The locking plate assembly 3 includes a locking plate body 31 that is flush with the front of the plate 1, ensuring that the entire front of the two plates 1 is on the same plane when they are assembled, thereby ensuring the aesthetics and stability of the assembly effect. The back of the locking plate body 31 is provided with locking blocks 32 at equal intervals along the vertical direction, which are equal in number and correspond one-to-one with the locking slots 22. A retaining groove 321 is provided in the center of the locking block 32 to accommodate the retaining member 24 at the corresponding position of the other plate 1.

[0030] In this embodiment, the panel 1 includes a panel layer 11, a flame-retardant panel layer 12, a honeycomb panel layer 13, a sound-absorbing cotton layer 14, a sound-insulating cavity 15, a sound-insulating felt 16, and a bottom plate layer 17 arranged sequentially from the front to the back. Adjacent panels are bonded and fixed with adhesive. The panel layer 11 is made of an aesthetically pleasing, impact-resistant, and moisture-proof material. The flame-retardant panel layer 12 ensures the fire resistance of the panel 1, extends its service life, and expands its application range. The honeycomb panel layer 13, the sound-absorbing cotton layer 14, the sound-insulating cavity 15, and the sound-insulating felt 16 enhance the sound insulation effect of the panel 1. The adhesive fixing process is simple and easy to operate.

[0031] In this embodiment, the vertical sidewall of the slot 22 is provided with a through hole 23 for accommodating the horizontal sliding of the retaining member 24. The through hole 23 is symmetrically provided with two receiving slots 231 on the sidewall of the front end. The retaining member 24 includes a retaining post 241 that is horizontally slidably inserted into the through hole 23. The back end of the retaining post 241 is provided with a rotating ring. This structure is designed to prevent the retaining post 241 from slipping out of the through hole 23 and to facilitate the rotation of the retaining member 24. The ends of the retaining post 241 near the front end are provided with slide bars 242 that can be accommodated in the corresponding receiving slots 231. The slide bars 242 are provided to provide technical conditions for the retention of the two plates 1. The purpose of the receiving slots 231 is to ensure that the front end of the retaining post 241 and the slide bars 242 can be fully accommodated in the through hole 23, thereby ensuring that the card block 32 can slide smoothly into the slot 22.

[0032] It should be further explained that the front of the slide bar 242 is flush with the front of the retaining post 241, the depth of the receiving groove 231 is less than the depth of the through hole 23, and the depth of the receiving groove 231 is greater than or equal to the thickness of the slide bar 242. This series of data limitations are all to ensure that the front end of the retaining member 24 can be completely accommodated in the through hole 23, thereby ensuring that the locking block 32 can slide smoothly into the locking groove 22. The sum of the thickness of the locking groove plate body 21 and the locking block plate body 31 is equal to the thickness of the plate body 1. The purpose of this is that when the locking block 32 and the locking groove 22 are working together, after the two plates 1 are assembled and fixed, their front and back sides are on the same plane, which not only ensures the stability of the assembly in this embodiment but also improves the overall aesthetics.

[0033] In this embodiment, the bottom of the retaining groove 321 is provided with several equidistantly distributed springs 322. The several springs 322 are connected to the same sliding disk 325 that is slidably engaged inside the retaining groove 321. The inner peripheral wall of the retaining groove 321 is provided with an annular groove 323 for accommodating the sliding of the slider 242. On the back of the annular groove 323, at the corresponding positions of the two sliders 242, there are insertion slots 324 that are open inside and out and are used for the sliders 242 to slide into the annular groove 323. When the locking block 32 in one plate 1 is inserted into the locking slot 22 of another plate 1, it first rotates. The retaining member 24 adjusts the slide bar 242 to a position directly opposite the insertion slot 324, and then pushes the retaining member 24 forward, causing the retaining post 241 to be inserted into the retaining slot 321. When the front of the retaining post 241 contacts the bottom of the retaining slot 321, continue to push the retaining member 24 to press the spring 322 to its shortest state. At this time, the retaining post 241 can be rotated to drive the slide bar 242 into the annular slide groove 323. At this time, the force applied to the retaining member 24 ends. Under the action of the spring 322, the slide bar 242 is tightly engaged in the annular slide groove 323, thereby completing the assembly of the two plates 1.

[0034] It should be further explained that the thickness of the slider 242 is equal to the depth of the annular groove 323. When the two sliders 242 are simultaneously inserted into the corresponding insertion slots 324, the spring 322 is pressed to its shortest state and the sliding disk 325 has no overlapping part with the annular groove 323. The slider 242 can slide in annularly within the annular groove 323. This is to ensure that the slider 242 can slide into the interior of the annular groove 323, thereby forming a fixed position and ensuring the feasibility of this embodiment.

[0035] Working principle: In this embodiment, the operator aligns one end of a plate 1 with the slot plate assembly 2 with one end of another plate 1 with the block plate assembly 3, inserts the block 32 into the slot 22 and pushes it to its innermost position. Then, the retaining member 24 is pushed forward, and the retaining member 24 is rotated to adjust the slide bar 242 to a position directly opposite the insertion slot 324. The retaining member 24 is then pushed forward again, causing the retaining post 241 to insert into the retaining groove 321. When the front of the retaining post 241 contacts the bottom of the retaining groove 321, the retaining member 24 is pushed further to activate the spring. When 322 is pressed to its shortest position, the retaining post 241 can be rotated, causing the slide bar 242 to slide into the annular groove 323. At this point, the force applied to the retaining member 24 is stopped. Under the action of the spring 322, the slide bar 242 is tightly engaged in the annular groove 323, thus completing the assembly of the two plates 1. To disassemble, simply hold and rotate the retaining post 241. When the slide bar 242 rotates to align with the insertion groove 324, the force applied to the retaining post 241 is stopped. Under the action of the spring 322, the slide bar 242 will pop out from the insertion groove 324, thus contacting the limit and fixing.

[0036] The above description is merely a preferred embodiment of this application and an explanation of the technical principles employed. Those skilled in the art should understand that the scope of the utility model involved in this application is not limited to the technical solutions formed by specific combinations of the above-described technical features, but should also cover other technical solutions formed by arbitrary combinations of the above-described technical features or their equivalents without departing from the inventive concept. For example, technical solutions formed by substituting the above-described features with (but not limited to) technical features with similar functions disclosed in this application.

Claims

1. A building sound insulation panel that is easy to assemble, comprising a panel body (1), characterized in that: The plate (1) is provided with a slot plate assembly (2) and a block plate assembly (3) on both sides respectively. The slot plate assembly (2) includes a slot plate body (21) flush with the back of the plate (1). The front of the slot plate body (21) is provided with a plurality of slots (22) at equal intervals along the vertical direction. A retaining member (24) is slidably inserted through the slot (22) at the center of the slot. The block plate assembly (3) includes a block plate body (31) flush with the front of the plate (1). The back of the block plate body (31) is provided with a number of blocks (32) at equal intervals along the vertical direction, which are equal to the number of slots (22) and correspond one-to-one with the position. A retaining groove (321) is provided at the center of the block (32) for accommodating the retaining member (24) at the corresponding position of another plate (1).

2. The easily assembled soundproof building panel according to claim 1, characterized in that: The board (1) includes a panel layer (11), a flame-retardant board layer (12), a honeycomb board layer (13), a sound-absorbing cotton layer (14), a sound-insulating cavity (15), a sound-insulating felt (16), and a bottom plate layer (17) arranged sequentially from the front to the back. Adjacent boards are bonded and fixed together with glue.

3. The easily assembled soundproof building panel according to claim 1, characterized in that: The slot (22) has a through hole (23) on its vertical side wall for accommodating the horizontal sliding of the retaining member (24). The through hole (23) has two accommodating slots (231) symmetrically opened on the side wall of the front end.

4. The easily assembled soundproof building panel according to claim 3, characterized in that: The retaining member (24) includes a retaining post (241) that is horizontally slidably inserted into the through hole (23). The end of the retaining post (241) near the front is provided with a slide bar (242) that can be accommodated in the corresponding receiving groove (231).

5. The easily assembled soundproof building panel according to claim 4, characterized in that: The bottom of the retaining groove (321) is provided with a plurality of springs (322) evenly distributed, and the plurality of springs (322) are connected to the same sliding disk (325) that is slidably engaged inside the retaining groove (321).

6. The easily assembled soundproof building panel according to claim 5, characterized in that: The inner peripheral wall of the fixed groove (321) is provided with an annular groove (323) for accommodating the sliding of the slider (242). On the back side of the annular groove (323), at the corresponding positions of the two sliders (242), there are insertion grooves (324) that are open to the inside and out and are used for the slider (242) to slide into the annular groove (323).

7. The easily assembled soundproof building panel according to claim 4, characterized in that: The front of the slide bar (242) is flush with the front of the retaining post (241). The depth of the receiving groove (231) is less than the depth of the through hole (23). The depth of the receiving groove (231) is greater than or equal to the thickness of the slide bar (242). The sum of the thicknesses of the card slot plate body (21) and the card block plate body (31) is equal to the thickness of the plate body (1).

8. The easily assembled soundproof building panel according to claim 6, characterized in that: The thickness of the slider (242) is equal to the depth of the annular groove (323). When the two sliders (242) are simultaneously inserted into the corresponding insertion slots (324), the spring (322) is pressed to its shortest state and the sliding disk (325) has no overlapping part with the annular groove (323). The slider (242) can slide in the annular groove (323).