A splicable prefabricated composite insulation board structure
By using the interlocking structure of the inner convex strip and the inner groove, and the outer convex strip and the outer groove, as well as the threaded insertion method, the problem of inconvenient multi-layer installation of composite insulation boards is solved, achieving convenient installation and stable fixation.
Patent Information
- Application Number
- CN202423066314.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing composite insulation boards are not easy to pre-fix when installed in multiple layers, which makes the installation operation inconvenient.
The insulation board is pre-installed and fixed by using an inner, middle and outer layer insulation component with a snap-fit structure of inner protrusions and inner grooves, and outer protrusions and outer grooves, combined with a threaded plug-in method.
This allows for convenient installation of the insulation board, avoids gaps during installation, and ensures the stability and fixation of the components.
Smart Images

Figure CN223593593U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to composite thermal insulation board technical field especially relates to a prefabricated composite thermal insulation board structure of splicing. BACKGROUND
[0002] At present, with the promotion and development of building energy-saving policy, the prefabricated composite thermal insulation board structure of splicing has become an important research direction in the current building thermal insulation field because of its characteristics such as convenient construction, stable thermal insulation effect, environmental protection and the like.
[0003] Among them, through the retrieval, the patent number CN211369102U discloses a kind of thermal insulation board structure of splicing use, above-mentioned patent realizes the function of thermal insulation board assembly with the structure scheme of clamping block and clamping groove, but multiple thermal insulation boards are not convenient for pre-fixing when installation, it is inconvenient for operating personnel to install thermal insulation board operation, therefore, in order to industry technology progress, better facilitate thermal insulation board installation function, improve core technology competitiveness, the present application proposes a new implementation scheme different from the thermal insulation board structure and use mode in prior art. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the problem that multiple thermal insulation boards are not convenient for pre-fixing when installation in the use process of existing composite thermal insulation board, and inconvenient for operating personnel to install thermal insulation board operation, and proposes a prefabricated composite thermal insulation board structure of splicing.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A prefabricated composite thermal insulation board structure of splicing, comprising inner layer thermal insulation assembly, middle layer thermal insulation assembly and outer layer thermal insulation assembly, the inner layer thermal insulation assembly is assembled and clamped by a plurality of inner layer thermal insulation splicing boards, the middle layer thermal insulation assembly is assembled and clamped by a plurality of middle layer thermal insulation splicing boards, the outer layer thermal insulation assembly is assembled and clamped by a plurality of outer layer thermal insulation splicing boards, a plurality of inner convex strips are fixedly connected to one side of the inner layer thermal insulation splicing board, a plurality of inner grooves are arranged on one side of the middle layer thermal insulation splicing board, the inner convex strip is clamped with the inner groove, a plurality of outer convex strips are fixedly connected to one side of the outer layer thermal insulation splicing board, a plurality of outer grooves are arranged on the other side of the middle layer thermal insulation splicing board, and the outer convex strip is clamped with the outer groove.
[0007] Further, a plurality of inner layer center screws are threadedly inserted into one side of the inner layer thermal insulation splicing board.
[0008] Further, a plurality of middle layer center screws are threadedly inserted into one side of the middle layer thermal insulation splicing board.
[0009] Further, a plurality of outer layer center screws are threadedly inserted into one side of the outer layer thermal insulation splicing board.
[0010] Further, the inner layer heat preservation assembly is clamped on multiple sides and is provided with an inner layer heat preservation frame plate, and a plurality of inner layer peripheral screws are threadedly inserted on one side of the inner layer heat preservation frame plate.
[0011] Further, the middle layer heat preservation assembly is clamped on multiple sides and is provided with a middle layer heat preservation frame plate, and a plurality of middle layer peripheral screws are threadedly inserted on one side of the middle layer heat preservation frame plate.
[0012] Further, the outer layer heat preservation assembly is clamped on multiple sides and is provided with an outer layer heat preservation frame plate, and a plurality of outer layer peripheral screws are threadedly inserted on one side of the outer layer heat preservation frame plate.
[0013] The utility model discloses the beneficial effects are:
[0014] 1. through the inner convex strip and the inner recess clamping and the outer convex strip and the outer recess clamping, thereby facilitating the preinstallation of the inner layer heat preservation splicing board, the middle layer heat preservation splicing board and the outer layer heat preservation splicing board, and avoiding the gap between the inner layer heat preservation splicing board, the middle layer heat preservation splicing board and the outer layer heat preservation splicing board.
[0015] 2. through the inner layer heat preservation frame plate, the middle layer heat preservation frame plate and the outer layer heat preservation frame plate to the inner layer heat preservation assembly, the middle layer heat preservation assembly and the outer layer heat preservation assembly are fixed in position, thereby preventing the looseness of the inner layer heat preservation assembly, the middle layer heat preservation assembly and the outer layer heat preservation assembly. DRAWINGS
[0016] Figure 1 It is a L three-dimensional structure schematic view of the prefabricated composite heat preservation board structure that can be spliced that the utility model proposes;
[0017] Figure 2 It is an explosion separation structure schematic view of the prefabricated composite heat preservation board structure that can be spliced that the utility model proposes;
[0018] Figure 3 It is a part inclined plane section structure schematic view of the prefabricated composite heat preservation board structure that can be spliced that the utility model proposes;
[0019] Figure 4 It is a part right side explosion three-dimensional structure schematic view of the prefabricated composite heat preservation board structure that can be spliced that the utility model proposes;
[0020] Figure 5 It is a part left side explosion three-dimensional structure schematic view of the prefabricated composite heat preservation board structure that can be spliced that the utility model proposes.
[0021] In the figure: 1, inner layer heat preservation assembly; 101, inner layer heat preservation splicing plate; 2, middle layer heat preservation assembly; 201, middle layer heat preservation splicing plate; 3, outer layer heat preservation assembly; 301, outer layer heat preservation splicing plate; 4, inner layer center screw; 5, middle layer center screw; 6, outer layer center screw; 7, inner layer heat preservation frame plate; 8, inner layer peripheral screw; 9, middle layer heat preservation frame plate; 10, middle layer peripheral screw; 11, outer layer heat preservation frame plate; 12, outer layer peripheral screw; 13, inner protruding strip; 14, inner recess; 15, outer recess; 16, outer protruding strip. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly 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, not all the embodiments.
[0023] Referring to Figures 1-5 A splicable prefabricated composite heat preservation plate structure, comprising an inner layer heat preservation assembly 1, a middle layer heat preservation assembly 2 and an outer layer heat preservation assembly 3, the inner layer heat preservation assembly 1 is formed by splicing and clamping a plurality of inner layer heat preservation splicing plates 101, the middle layer heat preservation assembly 2 is formed by splicing and clamping a plurality of middle layer heat preservation splicing plates 201, and the outer layer heat preservation assembly 3 is formed by splicing and clamping a plurality of outer layer heat preservation splicing plates 301, a plurality of inner protruding strips 13 are integrally formed on one side of the inner layer heat preservation splicing plate 101, a plurality of inner recesses 14 are arranged on one side of the middle layer heat preservation splicing plate 201, the inner protruding strip 13 is clamped with the inner recess 14, so that the middle layer heat preservation splicing plate 201 is pre-installed on the inner layer heat preservation splicing plate 101, a plurality of outer protruding strips 16 are integrally formed on one side of the outer layer heat preservation splicing plate 301, a plurality of outer recesses 15 are arranged on the other side of the middle layer heat preservation splicing plate 201, the outer protruding strip 16 is clamped with the outer recess 15, so that the outer layer heat preservation splicing plate 301 is pre-installed on the middle layer heat preservation splicing plate 201.
[0024] The inner layer center screw 4 is inserted into the inner layer thermal splicing plate 101 on one side in a threaded manner, so as to fix the inner layer thermal splicing plate 101 on the wall, the middle layer center screw 5 is inserted into the middle layer thermal splicing plate 201 on one side in a threaded manner, so as to fix the middle layer thermal splicing plate 201 on the inner layer thermal splicing plate 101, the outer layer center screw 6 is inserted into the outer layer thermal splicing plate 301 on one side in a threaded manner, so as to fix the outer layer thermal splicing plate 301 on the middle layer thermal splicing plate 201, the inner layer thermal frame plate 7 is connected to the inner layer thermal assembly 1 on multiple sides, the inner layer peripheral screw 8 is inserted into the inner layer thermal frame plate 7 on one side in a threaded manner, so as to fix the inner layer thermal frame plate 7 on the wall, the middle layer thermal frame plate 9 is connected to the middle layer thermal assembly 2 on multiple sides, the middle layer peripheral screw 10 is inserted into the middle layer thermal frame plate 9 on one side in a threaded manner, so as to fix the middle layer thermal frame plate 9 on the inner layer thermal frame plate 7, and the outer layer thermal frame plate 11 is connected to the outer layer thermal assembly 3 on multiple sides, the outer layer peripheral screw 12 is inserted into the outer layer thermal frame plate 11 on one side in a threaded manner, so as to fix the outer layer thermal frame plate 11 on the middle layer thermal frame plate 9.
[0025] The working principle of the embodiment is as follows: in use, first, the inner layer center screw 4 is used to fix the inner layer thermal splicing plate 101 on the wall, then a plurality of inner layer thermal splicing plates 101 are assembled and connected together to form the inner layer thermal assembly 1, then the inner layer thermal frame plate 7 is connected to the inner layer thermal assembly 1 on multiple sides, and then the inner layer peripheral screw 8 is used to fix the inner layer thermal frame plate 7 on the wall;
[0026] Then, the inner convex strip 13 and the inner groove 14 are connected to pre-install the middle layer thermal splicing plate 201 on the inner layer thermal splicing plate 101, then the middle layer center screw 5 is used to fix the middle layer thermal splicing plate 201 on the inner layer thermal splicing plate 101, then a plurality of middle layer thermal splicing plates 201 are assembled and connected together to form the middle layer thermal assembly 2, then the middle layer thermal frame plate 9 is connected to the middle layer thermal assembly 2 on multiple sides, and then the middle layer peripheral screw 10 is used to fix the middle layer thermal frame plate 9 on the inner layer thermal frame plate 7;
[0027] Then, the outer convex strip 16 and the outer groove 15 are connected to pre-install the outer layer thermal splicing plate 301 on the middle layer thermal splicing plate 201, then the outer layer center screw 6 is used to fix the outer layer thermal splicing plate 301 on the middle layer thermal splicing plate 201, then a plurality of outer layer thermal splicing plates 301 are assembled and connected together to form the outer layer thermal assembly 3, then the outer layer thermal frame plate 11 is connected to the outer layer thermal assembly 3 on multiple sides, and then the outer layer peripheral screw 12 is used to fix the outer layer thermal frame plate 11 on the middle layer thermal frame plate 9, so that the installation is completed.
[0028] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A splicable prefabricated composite insulation panel structure comprising an inner layer insulation assembly (1), a middle layer insulation assembly (2) and an outer layer insulation assembly (3), characterized in that, The inner layer heat preservation assembly (1) is assembled and connected by a plurality of inner layer heat preservation splicing plates (101), the middle layer heat preservation assembly (2) is assembled and connected by a plurality of middle layer heat preservation splicing plates (201), the outer layer heat preservation assembly (3) is assembled and connected by a plurality of outer layer heat preservation splicing plates (301), a plurality of inner convex strips (13) are fixedly connected to one side of the inner layer heat preservation splicing plate (101), a plurality of inner grooves (14) are arranged on one side of the middle layer heat preservation splicing plate (201), the inner convex strip (13) is connected with the inner groove (14), a plurality of outer convex strips (16) are fixedly connected to one side of the outer layer heat preservation splicing plate (301), a plurality of outer grooves (15) are arranged on the other side of the middle layer heat preservation splicing plate (201), and the outer convex strip (16) is connected with the outer groove (15).
2. A splicable precast composite insulation panel structure according to claim 1, characterised in that, A plurality of inner layer center screws (4) are threadedly inserted into one side of the inner layer heat preservation splicing plate (101).
3. A splicable precast composite insulation panel structure according to claim 1, wherein, A plurality of middle layer center screws (5) are threadedly inserted into one side of the middle layer heat preservation splicing plate (201).
4. The splicable precast composite insulating panel structure of claim 1, wherein, A plurality of outer layer center screws (6) are threadedly inserted into one side of the outer layer heat preservation splicing plate (301).
5. A splicable precast composite insulation panel structure according to claim 1, wherein, Inner layer heat preservation frame plates (7) are connected to multiple sides of the inner layer heat preservation assembly (1), and a plurality of inner layer peripheral screws (8) are threadedly inserted into one side of the inner layer heat preservation frame plate (7).
6. A splicable precast composite insulation panel structure according to claim 1, wherein, Middle layer heat preservation frame plates (9) are connected to multiple sides of the middle layer heat preservation assembly (2), and a plurality of middle layer peripheral screws (10) are threadedly inserted into one side of the middle layer heat preservation frame plate (9).
7. The splicable pre-fabricated composite insulating panel structure according to claim 1, characterized in that, Outer layer heat preservation frame plates (11) are connected to multiple sides of the outer layer heat preservation assembly (3), and a plurality of outer layer peripheral screws (12) are threadedly inserted into one side of the outer layer heat preservation frame plate (11).
Citation Information
Patent Citations
Insulation board structure capable of being spliced for use
CN211369102U