Node structure of external wall thermal insulation integrated board
By adopting a combination of sliding connection and fixed components in the joints of the integrated external wall insulation panel, the problem of misalignment between the floor slab and the insulation board was solved, achieving a stable connection and efficient construction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- MCC TIANGONG GROUP
- Filing Date
- 2024-11-22
- Publication Date
- 2026-04-21
AI Technical Summary
During the pouring of the joints of the integrated external wall insulation panel, the connection position between the floor slab and the insulation board is prone to shift, resulting in gaps that affect structural safety and service life.
The integrated insulation panel is slidably connected to the floor slab and fixed by components such as fixing parts, limit rods, sealing plates and sealing components to form a stable pouring space and ensure a firm connection between the floor slab and the insulation panel.
This achieves a stable connection between the floor slab and the insulation board, preventing displacement during the pouring process, improving construction quality and efficiency, and reducing costs.
Smart Images

Figure CN224148918U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building construction technology, and in particular relates to a joint structure of an integrated external wall insulation panel. Background Technology
[0002] In existing technologies, HFC high-strength polymer insulation composite panels are a new type of non-removable integrated exterior wall panel, characterized by fast construction speed, good insulation performance, and good durability. However, during the pouring process of the integrated exterior wall insulation panel joints, because the integrated exterior wall insulation panel is installed before the wall panels and floor slabs are poured, the connection position between the floor slab and the insulation board is prone to misalignment. This can lead to gaps between the insulation board and the wall after pouring, affecting structural safety and service life. Technical problems exist such as quality hazards caused by misalignment of the connection position between the floor slab and the insulation board during the pouring process. Utility Model Content
[0003] To solve the above-mentioned technical problems, this utility model provides a joint structure for an integrated external wall insulation panel, which is particularly suitable for low-cost and efficient installation of the integrated insulation panel and the floor slab, so that the connection between the insulation panel and the floor slab is stable and prevents quality problems such as mutual displacement during pouring.
[0004] The technical solution adopted by this utility model is: a joint structure of an integrated external wall insulation panel, including an integrated insulation panel and a floor slab, and also including a fixing component, wherein the integrated insulation panel and the floor slab are slidably connected and fixed by the fixing component.
[0005] Furthermore, the integrated insulation panel has a connecting groove on the side for installing the floor slab, and the floor slab can be inserted into the connecting groove and fixed by fixing components.
[0006] Furthermore, the floor slab is provided with limiting holes, and the fixing components include limiting rods that correspond to the limiting holes. The limiting rods are located in the connecting grooves and connected to the integrated insulation panel.
[0007] Furthermore, it also includes a sealing component, which includes a sealing plate that can be connected to the integrated insulation panel and the floor slab. When the floor slab is inserted into the connecting groove, a pouring space is formed between the floor slab and the integrated insulation panel and sealed by the sealing plate.
[0008] Furthermore, the fixing components also include connectors, which are connected to the enclosure plate and the floor slab respectively.
[0009] Furthermore, the integrated insulation panel is provided with a slot, and the sealing plate is provided with a clip that can correspond to the slot to fit into the integrated insulation panel.
[0010] Furthermore, the enclosure component also includes a sealing assembly connected to the enclosure plate, which is located between the enclosure plate and the integrated insulation plate.
[0011] Furthermore, the sealing assembly includes thermal insulation material, which is connected to the sealing plate.
[0012] Furthermore, pouring holes are provided in the integrated insulation panel, and the pouring holes are connected to the pouring space.
[0013] The advantages and positive effects of this utility model are: by adopting the above technical solution, the floor slab can be installed quickly, making the connection between the floor slab and the insulation board more stable and preventing the insulation board from shifting position with the floor slab during pouring; it has the advantages of simple structure, high construction efficiency, and can ensure construction cost while improving construction quality. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of one embodiment of the present utility model;
[0015] Figure 2 This is a schematic diagram of the end structure of the integrated insulation panel used for installing the floor slab in one embodiment of this utility model;
[0016] Figure 3 This is a schematic diagram of the end structure of the floor slab used for installation in one embodiment of this utility model;
[0017] Figure 4 yes Figure 1 Enlarged structural diagram at point A;
[0018] Figure 5 This is a schematic diagram of the end structure of the integrated insulation panel used for installing the floor slab in another embodiment of this utility model;
[0019] In the picture:
[0020] 1. Integrated insulation panel; 2. Floor slab; 3. Connecting groove.
[0021] 4. Limiting rod; 5. Sealing plate; 6. Connecting parts
[0022] 7. Sealing gasket; 8. Thermal insulation cotton; 11. Card slot
[0023] 12. Pouring hole; 21. Limiting hole; 22. Connecting hole
[0024] 31. Horizontal groove 32. Vertical groove Detailed Implementation
[0025] The embodiments of this utility model will be described below with reference to the accompanying drawings. The described embodiments are only some embodiments of the utility model, and not all embodiments.
[0026] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar units or units having the same or similar functions throughout.
[0027] The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention. In the description of the present invention, it should be understood that terms such as "installation", "connection", and "fixing" should be interpreted broadly, and can refer to direct connection, installation or fixing, or indirect connection, installation or fixing, and the present invention does not impose any limitation in this regard.
[0028] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the structure or unit referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0029] Example 1:
[0030] like Figures 1 to 4 As shown in the schematic diagram, this utility model provides an embodiment of an integrated external wall insulation panel node structure, which includes an integrated insulation panel 1 and a floor slab 2, as well as a fixing component. The integrated insulation panel 1 and the floor slab 2 are slidably connected and fixed by the fixing component.
[0031] In this embodiment, the integrated insulation panel 1 has a connecting groove 3 on its side for installing the floor slab 2. The floor slab 2 can be inserted into the connecting groove 3 and fixed by fixing components. The structure is simple, the installation efficiency is high, and the matching connecting groove 3 can prevent the floor slab 2 from shifting during installation, ensuring the installation quality.
[0032] In this embodiment, the floor slab 2 has a limiting hole 21, and the fixing component includes a limiting rod 4 corresponding to the limiting hole 21. The limiting rod 4 is disposed in the connecting groove 3 and connected to the integrated insulation panel 1. In this embodiment, the limiting rod 4 consists of two round rods, symmetrically arranged, and the inner diameter of the limiting rod 4 is adapted to the limiting hole 21. The limiting rod 4 can be fabricated inside the integrated insulation panel 1 during prefabrication. The bottom of each limiting rod 4 is disposed inside the integrated insulation panel 1, and the top is disposed in the connecting groove 3. In other embodiments, the limiting rod 4 can also be in the form of a square rod, etc. In this embodiment, when the floor slab 2 is inserted into the connecting groove 3, the limiting hole 21 is aligned with the limiting rod 4, so that the floor slab 2 is fitted outside the limiting rod 4. This not only makes installation more convenient through mutual limiting, but also increases the stability of the connection between the floor slab 2 and the integrated insulation panel 1, avoiding quality problems such as displacement during subsequent concrete pouring. In this embodiment, the floor slab 2 is inserted into the connecting groove 3 in a vertical direction; in other embodiments, the floor slab 2 can be designed to be inserted into the connecting groove 3 in a horizontal direction according to installation requirements, and this utility model does not limit this.
[0033] This embodiment also includes a sealing component, which includes a sealing plate 5 that can be connected to the integrated insulation panel 1 and the floor slab 2. When the floor slab 2 is inserted into the connecting groove 3, a pouring space is formed between the floor slab 2 and the integrated insulation panel 1, and is sealed by the sealing plate 5. In this embodiment, the sealing plate 5 is located on the top of the floor slab 2; in other embodiments, the sealing plate 5 can be located on the side or bottom of the integrated insulation panel 2 according to construction requirements, and the installation position of the sealing plate 5 can be adjusted adaptively. The sealing plate 5 can also further limit the floor slab 2 and reduce the risk of displacement. In this embodiment, the width of the sealing plate 5 is the same as the width of the floor slab 2, and the connecting groove 3 is a rectangular groove; in other embodiments, such as Figure 5 As shown, the width of the enclosed plate 5 is greater than the width of the floor slab 2. The connecting groove 3 is T-shaped, including a horizontal groove 31 and a vertical groove 32 that are perpendicular to each other and interconnected. The width of the floor slab 2 matches the width of the vertical groove 32, and the width of the horizontal groove 31 matches the width of the enclosed plate 5; that is, the width of the horizontal groove 31 is greater than the width of the vertical groove 32. The connecting groove 3 is adapted to the dimensions of the floor slab 2 and the enclosed plate 5, fitting together for easy installation and better ensuring connection stability, reducing differences in installation methods among different personnel.
[0034] In this embodiment, the fixing component also includes a connector 6, which is connected to the sealing plate 5 and the floor slab 2 respectively. In this embodiment, the connector 6 includes fixing bolts. The floor slab 2 has multiple threaded connecting holes 22, and the sealing plate 5 also has multiple fastening holes corresponding to the connecting holes 22. These fastening holes are also threaded. When the floor slab 2 and the sealing plate 5 are sequentially inserted into the connecting groove 3, the connecting holes 22 and the fastening holes correspond one-to-one, and are threadedly connected to the fixing bolts to improve the stability of the connection between the sealing plate 5 and the floor slab 2. This better prevents the components from shifting during pouring and improves construction quality.
[0035] In this embodiment, the integrated insulation panel 1 is provided with a slot 11, and the sealing panel 5 is provided with a fastener that corresponds to the slot 11 to fit into the integrated insulation panel 1. In this embodiment, the slot 11 is located on the side of the connecting groove 3. Through the cooperation of the slot 11 and the fastener, not only can the sealing panel 5 be limited during installation to ensure the installation quality of different personnel, but the sealing panel 5 can also be temporarily erected in the connecting groove 3, which facilitates the installation and fixing of the sealing panel 5 to the floor slab 2 with bolts, making the operation convenient, improving construction efficiency, and ensuring construction quality.
[0036] In this embodiment, the sealing component further includes a sealing assembly connected to the sealing plate 5, which is disposed between the sealing plate 5 and the integrated insulation plate 1. In this embodiment, the sealing assembly includes a sealing gasket 7, which is installed on the side walls at both ends of the sealing plate 5 to ensure a tight connection between the sealing plate and the integrated insulation plate 1.
[0037] In this embodiment, the sealing component also includes thermal insulation cotton 8, which is connected to the sealing plate 5. It not only plays a sealing role, but also better ensures the thermal insulation effect.
[0038] In this embodiment, the integrated insulation panel 1 has a pouring hole 12, which communicates with the internal space of the connecting groove 3 to connect with the pouring space, so as to facilitate the injection of pouring material into the pouring space. In this embodiment, concrete can be used as the pouring material. By injecting concrete, the integrated insulation panel 1, the floor slab 2, and the sealing panel 5 are connected to each other as a whole, which can improve the stability of the connection.
[0039] The construction method of this utility model includes the following steps:
[0040] The floor slab 2 is inserted into the connecting groove 3 and fixed by the fixing components. The sealing plate 5 is installed and the pouring material is injected into the pouring hole to reinforce it.
[0041] The specific construction process of this embodiment is as follows:
[0042] The top of the floor slab 2 corresponds to the top of the connecting groove 3, and multiple limiting rods 4 correspond one-to-one with the limiting holes 21. The floor slab 2 is inserted into the connecting groove 3 from top to bottom, and the bottom of the floor slab 2 fits into the bottom of the connecting groove 3. The limiting rods 4 pass through their corresponding limiting holes 21.
[0043] After the floor slab 2 is installed, the sealing plate 5 is installed. The clips are aligned with the slots 11 so that the sealing plate 5 and the integrated insulation plate 1 fit together. The bottom of the sealing plate 5 is attached to the top of the floor slab 2. At this time, the connecting holes 22 and the fastening holes are aligned one by one. The fixing bolts are screwed in to improve the connection stability. The sealing plate 5 is tightly attached to the integrated insulation plate 1 through the sealing components.
[0044] Concrete is injected into the pouring space through the pouring hole 12.
[0045] This utility model provides a joint structure for an integrated external wall insulation panel, which uses a low-cost and efficient method to install the integrated insulation panel 1 and the floor slab 2, making the connection between the insulation panel and the floor slab 2 stable and preventing quality problems such as mutual displacement during pouring.
[0046] The embodiments of this utility model have been described in detail above, but the content described is only a preferred embodiment of this utility model and should not be considered as limiting the scope of implementation of this utility model. All equivalent changes and improvements made in accordance with the claims of this utility model should still fall within the patent coverage of this utility model.
Claims
1. An external wall insulation integrated board node structure comprising an insulation integrated board and a floor, characterized in that: It also includes a fixing component, wherein the integrated insulation panel is slidably connected to the floor slab and fixed by the fixing component; The integrated insulation panel has a connecting groove on its side for installing the floor slab, and the floor slab can be inserted into the connecting groove and fixed by the fixing component. It also includes a sealing component, which includes a sealing plate that can be connected to the integrated insulation panel and the floor slab. When the floor slab is inserted into the connecting groove, a casting space is formed between the floor slab and the integrated insulation panel and sealed by the sealing plate. The fixing component also includes a connector, which is connected to the enclosure plate and the floor slab respectively; The integrated insulation panel has a pouring hole, which is connected to the pouring space.
2. The node structure of the external wall insulation integrated board according to claim 1, characterized in that: The floor slab has a limiting hole, and the fixing component includes a limiting rod that corresponds to the limiting hole. The limiting rod is disposed in the connecting groove and connected to the integrated insulation panel.
3. The node structure of the external wall insulation integrated board according to claim 1, characterized in that: The integrated insulation panel is provided with a slot, and the sealing plate is provided with a clip that can be fitted into the integrated insulation panel to correspond to the slot.
4. The node structure of the external wall insulation integrated board according to claim 1, characterized in that: The sealing component also includes a sealing assembly connected to the sealing plate, the sealing assembly being disposed between the sealing plate and the integrated insulation plate.
5. The node structure of the external wall insulation integrated board according to claim 4, characterized in that: The sealing assembly includes thermal insulation cotton, which is connected to the sealing plate.