Lightweight spliced insulation board

By using a frame structure and multi-layer insulation design, the problem of rapid splicing of insulated wall panels was solved, enabling rapid splicing and improving insulation effect, thus increasing construction efficiency and insulation performance.

CN223675585UActive Publication Date: 2025-12-16青岛九屋建筑安装有限公司
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Patent Information

Application Number
CN202423202498.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-16
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing insulated wall panels cannot be quickly assembled, affecting construction progress and increasing costs.

Method used

The frame structure design, combined with grooves, inserts, partitions and screws, and the combination of inner core and multi-layer insulation layers, enables rapid splicing and improves the insulation effect.

Benefits of technology

It enables rapid splicing of insulated wall panels, improves construction efficiency, and enhances insulation performance and overall quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223675585U_ABST
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Abstract

The utility model provides a light-weight spliced insulation board which comprises a frame and fixing holes, a plurality of groups of caulking grooves used for caulking connection of caulking heads are formed in the inner side of the left end of the frame, and a group of partition plates used for being separated from the two groups of caulking heads are arranged between every two groups of caulking grooves. The front side of the frame is provided with a group of front decorative plate grooves used for installing an external decorative plate, the middle position in the frame is provided with a group of inner grooves used for installing an inner plate core, and the inner grooves are internally provided with a group of inner flame-retardant layers used for wrapping the outer side of the inner plate core. Compared with the prior art, the utility model has the following beneficial effects: the heat insulation effect of the frame is improved by using the inner plate core, the insertion holes are correspondingly positioned with the screw rods in the embedded heads, the positioning grooves are used for keeping the positioning of the plurality of frames, and the heat insulation effect of the inner plate core is improved by using the outer heat insulation inner layer and the inner heat insulation inner layer; the heat preservation effect of the inner plate core is improved through the heat preservation inner plate.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of thermal insulation wallboard relates to a light splicing insulation board. BACKGROUND

[0002] The core function of thermal insulation wallboard is thermal insulation. It is made of high-efficiency thermal insulation materials such as rock wool, polystyrene, etc. These materials have low thermal conductivity and can effectively reduce heat transfer, thereby achieving thermal insulation effect. In winter, thermal insulation wallboard can reduce the loss of indoor heat and improve indoor temperature; in summer, it can block the intrusion of external heat and keep the room cool. Thermal insulation wallboard cannot be quickly spliced, which will cause a series of problems. These problems not only affect the construction efficiency, but also may have negative impact on the thermal insulation performance and overall quality of the building.

[0003] The inability to quickly splice thermal insulation wallboard will seriously affect the construction progress. Time is a very valuable resource in construction. If the splicing process of thermal insulation wallboard is complicated and time-consuming, the entire project will not be able to proceed as planned, thereby increasing construction costs. Therefore, there is an urgent need for a light splicing insulation board to solve the above problems. SUMMARY

[0004] In view of the deficiencies of the prior art, the utility model aims to provide a light splicing insulation board to solve the problems raised in the background art.

[0005] The utility model realizes the following technical scheme: a light splicing insulation board, comprising: a frame and a fixing hole, the left end of the frame is provided with a plurality of groups of embedding grooves for embedded head fitting connection;

[0006] A group of partitions for spacing between two groups of embedded heads is arranged between every two groups of embedding grooves, and a front decorative plate groove for installing an external decorative plate is arranged on the front side of the frame;

[0007] A group of inner grooves for installing an inner plate core is arranged at the middle position inside the frame, a group of inner fire-retardant layers for wrapping the outer side of the inner plate core is arranged inside the inner groove, and a group of inner plate cores for improving the thermal insulation effect of the frame is arranged inside the inner fire-retardant layer, which can improve the thermal insulation effect of the frame by using the inner plate core.

[0008] As a preferred embodiment, a plurality of groups of embedded heads for mutual fitting with another group of frames are arranged on the right side of the frame, a plurality of groups of embedded heads are provided with two groups of fixing holes for screw rod penetration positioning inside, and a plurality of groups of partitions are provided with two groups of through holes for corresponding positioning with the screw rods inside the embedded heads, which can be correspondingly positioned with the screw rods inside the embedded heads by using the through holes.

[0009] As a preferred embodiment, the frame is in a rectangular structure, and the frame is integrated with a plurality of groups of inserts and a plurality of groups of partitions, the plurality of groups of inserts are arranged in a vertical structure, and the plurality of groups of inserts are of the same specification.

[0010] As a preferred embodiment, the inserts are of the same length and width as the slots, each group of the inserts is connected to another group of the slots in the frame, and a positioning slot is arranged between each two groups of the inserts to position the frame.

[0011] As a preferred embodiment, the positioning slot is connected to a group of the partitions, each group of the through holes is completely overlapped with a group of the fixing holes when the positioning slot is connected to the partitions, and a plurality of groups of the through holes and a plurality of groups of the fixing holes are connected by a group of the screws.

[0012] As a preferred embodiment, the inner core includes an outer adhering plate and an inner adhering plate, the outer adhering plate is provided with an outer thermal insulation inner layer for improving the thermal insulation effect of the outer core, and the outer thermal insulation inner layer is provided with a first reinforcing plate for improving the strength of the inner core.

[0013] As a preferred embodiment, the inner core is provided with a thermal insulation inner plate for improving the thermal insulation effect of the inner core, the thermal insulation inner plate is provided with a second reinforcing plate for improving the strength of the inner core, the second reinforcing plate is provided with an inner thermal insulation inner layer for improving the thermal insulation effect of the inner core, and the inner thermal insulation inner layer is provided with an inner adhering plate for adhering to the inner fireproof layer.

[0014] The use of the above technical solutions has the following beneficial effects: the use of the inner core improves the thermal insulation effect of the frame, the use of the through holes positions the screws in the inserts, the use of the positioning slot positions the frame, the use of the outer thermal insulation inner layer and the inner thermal insulation inner layer improves the thermal insulation effect of the inner core, and the use of the thermal insulation inner plate improves the thermal insulation effect of the inner core. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0016] Fig. 1 It is front side overhead structure schematic view of the light weight spliced thermal insulation board of the utility model;

[0017] Fig. 2 It is front side overhead structure position schematic view of the light weight spliced thermal insulation board of the utility model;

[0018] Fig. 3 It is overhead structure view of the inner core board of the light weight spliced thermal insulation board of the utility model;

[0019] In the drawing: 100-frame, 110-embedded slot, 120-baffle, 130-insertion hole, 140-front decorative plate slot, 150-inner fire-retardant layer, 160-inner board core, 170-embedded head, 180-fixing hole;

[0020] 16a-outer bonding plate, 16b-outer thermal insulation inner layer, 16c-strengthening plate one, 16d-thermal insulation inner plate, 16e-strengthening plate two, 16f-inner thermal insulation inner layer, 16g-inner bonding plate. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0022] Please refer to Figs. 1-3 A light weight spliced thermal insulation board, comprising: frame 100, inner board core 160, embedded head 170 and fixing hole 180, the left end inner side of frame 100 is equipped with several groups of embedded slots 110 for embedded head 170 embedded connection;

[0023] A group of baffles 120 for spacing between two groups of embedded heads 170 is arranged between every two groups of embedded slots 110, and a front decorative plate slot 140 for installing external decorative plate is arranged on the front side of frame 100;

[0024] A group of inner slots for installing inner board core 160 is arranged at the middle position inside frame 100, a group of inner fire-retardant layers 150 for wrapping the outer side of inner board core 160 is arranged inside the inner slot, a group of inner board cores 160 for improving the thermal insulation effect of frame 100 is arranged inside the inner fire-retardant layer 150, and the thermal insulation effect of frame 100 can be improved by using inner board core 160.

[0025] The right side of the frame 100 is provided with a plurality of groups of embedding heads 170 for mutual embedding with another group of frames 100, the inside of each group of embedding heads 170 is provided with two groups of fixed holes 180 for screw rod positioning, the inside of each group of partition plates 120 is provided with two groups of insertion holes 130 for corresponding positioning with the screw rod inside the embedding head 170. The insertion hole 130 can be used to correspondingly position the screw rod inside the embedding head 170.

[0026] The cross section of the frame 100 is a rectangular structure, the frame 100 and the plurality of groups of embedding heads 170 and the plurality of groups of partition plates 120 are integrated structures, the plurality of groups of embedding heads 170 are arranged in a vertical structure, and the plurality of groups of embedding heads 170 are of the same specification.

[0027] The cross-sectional length and width of the embedding head 170 are the same as those of the embedding groove 110, each group of embedding heads 170 corresponds to the mutual embedding connection of the embedding grooves 110 inside another group of frames 100, and a positioning groove for positioning a plurality of frames 100 is arranged between each two groups of embedding heads 170. The positioning groove can be used to position a plurality of frames 100.

[0028] The positioning groove is embedded and connected with a group of partition plates 120, when the positioning groove and the partition plate 120 are embedded and connected, each group of insertion holes 130 is completely overlapped with a group of fixed holes 180, and a group of screw rods are penetrated to connect a plurality of groups of insertion holes 130 with the same axis and a plurality of groups of fixed holes 180.

[0029] The inner plate core 160 includes an outer adhering plate 16a, an outer thermal insulation inner layer 16b, and an inner adhering plate 16g, the inner side of the outer adhering plate 16a is provided with a group of outer thermal insulation inner layers 16b for improving the thermal insulation effect of the outer part of the inner plate core 160, the inner side of the outer thermal insulation inner layer 16b is provided with a group of reinforcing plates one 16c for strengthening the strength of the inner plate core 160, and the outer thermal insulation inner layer 16b and the inner thermal insulation inner layer 16f can be used to improve the thermal insulation effect of the inner core plate.

[0030] The inner side of the reinforcing plate one 16c is provided with a group of thermal insulation inner plates 16d for improving the thermal insulation effect of the inner plate core 160, the inner side of the thermal insulation inner plate 16d is provided with a group of reinforcing plates two 16e for cooperating with the reinforcing plate one 16c to improve the strength effect of the inner plate core 160, the inner side of the reinforcing plate two 16e is provided with a group of inner thermal insulation inner layers 16f for improving the thermal insulation effect inside the inner plate core 160, the inner side of the inner thermal insulation inner layer 16f is provided with a group of inner adhering plates 16g for adhering to the inner fire-retardant layer 150, and the thermal insulation inner plate 16d can be used to improve the thermal insulation effect of the inner plate core 160.

[0031] Please refer to Figs. 1-3, as the first embodiment of the utility model: in order to solve the problem that the thermal insulation wallboard cannot be quickly spliced and will seriously affect the construction progress, in the building construction, time is very valuable resource, if the splicing process of thermal insulation wallboard is complicated, time-consuming, it will lead to the whole project cannot be carried out according to the plan, thereby increasing the construction cost problem, first of all, the staff will place multiple utility models horizontally, since the right side of frame 100 is provided with a plurality of groups of inserts 170 for mutually embedding with another group of frame 100, a group of positioning grooves for keeping multiple frames 100 positioning is arranged between every two groups of inserts 170, the positioning groove is internally embedded with a group of partition plates 120, the multiple utility models are quickly spliced by using a plurality of inserts 170 and embedding grooves 110, then a plurality of groups of through holes 130 and fixing holes 180 are penetrated by using screw rod, thereby the splicing part is positioned, connected and fixed.

[0032] Please refer to Figs. 1-3 , as the second embodiment of the utility model: based on the above embodiment, further, since the inner side of outer fitting plate 16a is provided with a group of outer heat insulation inner layer 16b for improving the external heat insulation effect of inner plate core 160, the inner side of reinforcing plate two 16e is provided with a group of inner heat insulation inner layer 16f for improving the internal heat insulation effect of inner plate core 160, when the user uses the utility model, the outer heat insulation inner layer 16b and the inner heat insulation inner layer 16f can effectively improve the heat insulation effect of the inner core plate, and the inner fire-retardant layer 150 can effectively limit the inner core plate from being burned.

[0033] The above only for the preferred embodiment of the utility model, and not to limit the utility model, any modification, equivalent replacement, improvement etc. within the spirit and principle of the utility model, should be included in the protection scope of the utility model.

Claims

1. A lightweight spliced thermal insulation board, comprising: The frame (100), the partition (120), the inner plate core (160) and the fixing hole (180) are characterized in that: a plurality of groups of embedding grooves (110) for embedding head (170) embedded connection are arranged on the left side of the frame (100); A group of partition plates (120) for spacing between two groups of embedding heads (170) is arranged between every two groups of embedding grooves (110), and a group of front decorative plate grooves (140) for mounting external decorative plates is arranged on the front side of the frame (100); A group of inner grooves for mounting the inner plate core (160) is arranged at the middle position of the inside of the frame (100), a group of inner fire-retardant layers (150) for wrapping the outer side of the inner plate core (160) is arranged inside the inner groove, and the inner plate core (160) for improving the heat preservation effect of the frame (100) is arranged inside the inner fire-retardant layer (150).

2. The light-weight spliced thermal insulation board according to claim 1, characterized in that: A plurality of groups of embedding heads (170) for mutual embedding with another group of frames (100) are arranged on the right side of the frame (100), a plurality of groups of fixing holes (180) for screw rod penetration positioning are arranged inside the plurality of groups of embedding heads (170), and a plurality of groups of insertion holes (130) for corresponding positioning with the inner screw rod of the embedding head (170) are arranged inside the plurality of groups of partition plates (120).

3. The light-weight spliced thermal insulation board according to claim 2, characterized in that: The cross section of the frame (100) is a rectangular structure, the frame (100), a plurality of groups of embedding heads (170) and a plurality of groups of partition plates (120) are an integral structure, a plurality of groups of embedding heads (170) are arranged in a vertical structure, and the specifications of the plurality of groups of embedding heads (170) are the same.

4. The light-weight spliced thermal insulation board according to claim 3, characterized in that: The cross section length and width of the embedding head (170) are the same as the cross section length and width of the embedding groove (110), each group of embedding heads (170) corresponds to the mutual embedding connection of the embedding grooves (110) inside another group of frames (100), and a positioning groove for positioning a plurality of frames (100) is arranged between every two groups of embedding heads (170).

5. The light-weight spliced thermal insulation board according to claim 4, characterized in that: The positioning groove is mutually embedded and connected with a group of partition plates (120), each group of insertion holes (130) is completely overlapped with a group of fixing holes (180) when the positioning groove is embedded and connected with the partition plate (120), and a plurality of groups of insertion holes (130) and a plurality of groups of fixing holes (180) on the same axis are connected by a group of screws.

6. The light-weight spliced thermal insulation board according to claim 1, characterized in that: The inner plate core (160) comprises an outer adhering plate (16a) and an inner adhering plate (16g), a group of outer heat insulation inner layers (16b) for improving the external heat insulation effect of the inner plate core (160) is arranged on the inner side of the outer adhering plate (16a), and a group of reinforcing plates (16c) for strengthening the strength of the inner plate core (160) is arranged on the inner side of the outer heat insulation inner layer (16b).

7. The light-weight spliced thermal insulation board according to claim 6, characterized in that: The inner side of the first reinforcing plate (16c) is provided with a group of heat preservation inner plates (16d) for improving the heat preservation effect of the inner plate core (160), the inner side of the heat preservation inner plate (16d) is provided with a group of second reinforcing plates (16e) for matching the first reinforcing plate (16c) to improve the strength effect of the inner plate core (160), the inner side of the second reinforcing plate (16e) is provided with a group of inner heat insulation inner layers (16f) for improving the internal heat insulation effect of the inner plate core (160), and the inner side of the inner heat insulation inner layer (16f) is provided with a group of inner matching plates (16g) for matching the inner side with the inner flame-retardant layer (150).