Fabricated thermal insulation decorative component
By leaving inner perforations in the insulation and decorative components and blocking the connectors inside the reinforced concrete layer, the secondary decoration problem caused by the exposure of the connectors during the assembly of traditional insulation and decorative components is solved, reducing construction difficulty and improving efficiency.
Patent Information
- Application Number
- CN202421727223.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-22
AI Technical Summary
During the assembly of traditional external insulation decorative components, the connectors that fix the insulation board need to be penetrated from the outside, resulting in the exposed connectors that need to be processed in the later decoration, which wastes labor, materials and construction period, and is difficult to construct and has a high risk factor.
A prefabricated insulation decorative member is designed, by reserved internal perforations inside the insulation layer, the inner perforations are blocked inside the reinforced concrete layer after pouring, and the thickness of the insulation layer is adjusted by using the inner perforations, and assembled before pouring.
The flatness of the facade of the insulation board is achieved, and the secondary construction of assembled insulation decorative components is avoided, the construction difficulty is reduced, and the construction efficiency is improved.
Smart Images

Figure CN222991058U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of thermal insulation and decoration components, and particularly relates to an assembled thermal insulation and decoration component. Background Art
[0002] An assembled component is to assemble prefabricated parts through a system integration method to realize the prefabrication of building main structure components. At present, thermal insulation and decoration components can also be assembled by using the production method of assembled components, which saves time and effort.
[0003] During the assembly process of traditional external thermal insulation and decoration components, since most of the connecting pieces for fixing the thermal insulation board penetrate from the outside, holes for the connecting pieces need to be reserved on the thermal insulation board, resulting in the need to process the connecting pieces exposed on the outside during later decoration, wasting labor, materials and construction period.
[0004] Traditional assembled components of thermal insulation structures have complex manufacturing processes, slow production cycles, and the fixed connecting pieces need to penetrate from the outside of the thermal insulation board. Construction workers need to stand outside for construction, with high construction difficulty and high risk coefficient. Summary of the Utility Model
[0005] The technical problem to be solved by the utility model is to provide an assembled thermal insulation and decoration component, which can avoid secondary decoration of the thermal insulation and decoration component, reduce the construction difficulty and improve the construction efficiency.
[0006] To solve the above technical problems, the technical solutions adopted by the utility model are as follows.
[0007] An assembled thermal insulation and decoration component includes a fireproof structure layer, a thermal insulation layer on the left side of the fireproof structure layer, and a reinforced concrete layer on the left side of the thermal insulation layer. An inner through hole is reserved inside the thermal insulation layer, and an inner through hole connecting piece capable of adjusting the thickness of the thermal insulation layer is assembled in the inner through hole; both ends of the inner through hole connecting piece are respectively arranged inside the reinforced concrete layer and inside the fireproof structure layer.
[0008] For the above-mentioned assembled thermal insulation and decoration component, the inner through hole connecting piece includes an external sleeve on the side close to the fireproof structure layer and an internal adjusting piece on the side close to the reinforced concrete layer. The internal adjusting piece is threadedly fitted with the external sleeve; a fixed chuck closely attached to the right side of the thermal insulation layer is fixedly arranged on the external sleeve, and a movable chuck is slidably sleeved on the other end of the external sleeve.
[0009] For the above-mentioned assembled thermal insulation and decoration component, a wire mesh for ensuring the stiffness, strength and stability of the decoration component is arranged inside the fireproof structure layer.
[0010] For the above-mentioned assembled thermal insulation and decoration component, a cavity for accommodating thermal insulation materials is further arranged inside the thermal insulation layer.
[0011] The above-mentioned prefabricated thermal insulation and decorative component, the reinforced concrete layer includes a steel structure frame installed on the left side of the thermal insulation layer and a concrete layer that pours concrete into the steel structure frame to cover the assembled internal perforated connectors.
[0012] Due to the adoption of the above technical solutions, the technical progress achieved by the present utility model is as follows.
[0013] The present utility model provides a prefabricated thermal insulation and decorative component. By reserving internal perforations, the internal perforated connectors are shielded inside the poured reinforced concrete layer, ensuring the flatness of the outer surface of the insulation board, avoiding secondary construction of the assembled thermal insulation and decorative component. At the same time, the internal perforated connectors are assembled before pouring, reducing the construction difficulty and improving the construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the specific structure of the present utility model;
[0015] Figure 2 is a schematic structural diagram of the specific structure of the internal perforated connector of the present utility model.
[0016] Among them: 1. Fireproof structure layer, 2. Thermal insulation layer, 3. Reinforced concrete layer, 4. Internal perforated connector, 5. Cavity, 6. Wire mesh, 7. Internal adjusting member, 8. External sleeve, 9. Fixed chuck, 10. Movable chuck. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] The present utility model will be further described in detail below in conjunction with the drawings and specific embodiments.
[0018] A prefabricated thermal insulation and decorative component, as Figures 1 to 2 shown, includes a fireproof structure layer 1, a thermal insulation layer 2, and a reinforced concrete layer 3. The fireproof structure layer 1 is arranged on the right side of the thermal insulation layer 2, and the reinforced concrete layer 3 is arranged on the left side of the thermal insulation layer 2.
[0019] Inside the fireproof structure layer 1, there is a wire mesh 6 to ensure the stiffness, strength, and stability of the decorative component.
[0020] Inside the thermal insulation layer 2, there is also a cavity 5, and better thermal insulation materials such as vacuum insulation panels can be placed inside the cavity 5.
[0021] The thermal insulation layer 2 is provided with internal perforations, and an internal perforated connector 4 that can adjust the thickness of the thermal insulation layer 2 is assembled inside the internal perforations.
[0022] The internal perforated connector 4 includes an external sleeve 8 on the side close to the fireproof structure layer 1 and an internal adjusting member 7 on the side close to the reinforced concrete layer 3. The internal adjusting member 7 is thread-fitted with the external sleeve 8.
[0023] A fixed chuck 9 that closely adheres to the right side of the thermal insulation layer 2 is fixedly arranged on the outer sleeve 8. The other end of the outer sleeve 8 is slidably sleeved with a movable chuck 10. The thickness of the thermal insulation layer 2 is adjusted by adjusting the distance between the movable chuck 10 and the fixed chuck 9.
[0024] The reinforced concrete layer 3 includes a steel structure frame installed on the left side of the thermal insulation layer 2 and a concrete layer poured into the steel structure frame.
[0025] During assembly, first, the fireproof structure layer 1 is laid on the right side of the thermal insulation layer 2, and the movable chuck 10 on the inner perforated connecting member 4 is adjusted to a suitable position and fixed according to the required width of the thermal insulation layer 2.
[0026] Then, a steel structure frame is installed on the left side of the thermal insulation layer 2, and the internal adjusting member 7 is connected to the outer sleeve 8 through the steel structure frame.
[0027] Finally, concrete is poured into the steel structure frame to form the reinforced concrete layer 3, and at the same time, the inner perforated connecting member 4 is sealed inside the insulation board, ensuring the flatness of the outer surface of the insulation board.
[0028] The utility model provides an assembled thermal insulation and decoration component. By reserving inner perforations, the inner perforated connecting member is shielded inside the reinforced concrete layer after pouring, ensuring the flatness of the outer surface of the insulation board, avoiding secondary construction of the assembled thermal insulation and decoration component. At the same time, the inner perforated connecting member is assembled before pouring, reducing the construction difficulty and improving the construction efficiency.
Claims
1. An assembled thermal insulation decorative component, characterized in that: The invention comprises a fireproof structure layer (1), a thermal insulation layer (2) located on the left side of the fireproof structure layer (1), and a reinforced concrete layer (3) located on the left side of the thermal insulation layer (2); an inner perforation is reserved inside the thermal insulation layer (2); an inner perforation connector (4) capable of adjusting the thickness of the thermal insulation layer (2) is installed inside the inner perforation; two ends of the inner perforation connector (4) are respectively arranged inside the reinforced concrete layer (3) and inside the fireproof structure layer (1).
2. The assembled thermal insulation decorative component according to claim 1, characterized in that: The inner perforated connector (4) comprises an outer sleeve (8) on one side close to the fireproof structural layer (1) and an inner adjusting member (7) on one side close to the reinforced concrete layer (3), wherein the inner adjusting member (7) is threadedly assembled with the outer sleeve (8); a fixed chuck (9) is fixedly arranged on the outer sleeve (8) and is in close contact with the right side of the thermal insulation layer (2), and a movable chuck (10) is slidably mounted on the other end of the outer sleeve (8).
3. The assembled thermal insulation decorative component according to claim 1, characterized in that: A steel wire mesh (6) is arranged inside the fireproof structural layer (1) to ensure the rigidity, strength and stability of the decorative component.
4. The assembled thermal insulation decorative component according to claim 1, characterized in that: A cavity (5) for accommodating a thermal insulation material is also provided inside the thermal insulation layer (2).
5. The assembled thermal insulation decorative component according to claim 1, characterized in that: The reinforced concrete layer (3) comprises a steel structure frame installed on the left side of the thermal insulation layer (2) and a concrete layer for pouring concrete into the steel structure frame and shielding the assembled internal perforated connector (4).