Internal corner connecting piece of solid waste composite thermal insulation system
By adopting L-shaped insulation blocks and connecting components in the solid waste composite insulation system, the problem of unreliable connections at the inside corners was solved, achieving better bonding and structural strength, and preventing leakage.
Patent Information
- Application Number
- CN202520421361.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2035-03-12
AI Technical Summary
In existing technologies, the solid waste composite insulation system has poor connectivity at the inside corners of building walls and poor integration with the main building structure, resulting in unreliable installation and easy occurrence of cracks and leaks.
L-shaped thermal insulation blocks are used as the main body of the connector. Through the design of insert blocks and fixing sleeves, combined with the connecting components, a tight connection between the thermal insulation blocks, connecting blocks and building walls is achieved. The connection strength and stability are enhanced by the cooperation of positioning rods and grouting pipes.
It improves the installation fit and structural strength of the solid waste composite insulation system at the inside corner, prevents cracks and leakage, and enhances the reliability of the connection with the main building.
Smart Images

Figure CN223647223U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to solid waste heat preservation connecting piece technical field, concretely is a solid waste composite heat preservation system internal corner connecting piece. BACKGROUND
[0002] Solid waste composite heat preservation system is a kind of new type heat preservation material using solid waste (such as fly ash, slag, construction waste etc.) as filler with polyurethane.
[0003] In the application process of solid waste composite heat preservation system, solid waste composite heat preservation system needs to be fixed on wall body, however, in the internal corner position of building wall body, conventional installation connecting piece cannot carry out horizontal connection to the solid waste composite heat preservation system of two sides of internal corner, so combination is poor, and even if the solid waste composite heat preservation system of two sides is connected using conventional internal corner connecting piece, the connectivity with building main structure is also poor, cannot further increase the connection of solid waste composite heat preservation system, in view of this, in-depth research is conducted to the above problems, and the case is generated. UTILITY MODEL CONTENT
[0004] In view of the deficiencies of prior art, the utility model provides solid waste composite heat preservation system internal corner connecting piece, and solves the prior art problems.
[0005] To achieve the above object, the utility model is realized by the following technical scheme: a solid waste composite heat preservation system internal corner connecting piece, including heat preservation block, a pair of insertion blocks are arranged on the two sides of heat preservation block, a pair of insertion blocks are integrally formed with heat preservation block, a pair of insertion blocks extend from the outside of heat preservation block, a pair of fixing sleeves are arranged in a pair of insertion blocks, a pair of connecting assemblies are arranged in the center of a pair of fixing sleeves;
[0006] The cross section of heat preservation block is L-shaped structure, and the outside of heat preservation block is flush with a pair of insertion blocks.
[0007] The connecting assembly includes connecting seat, the head end of fixing sleeve is provided with connecting seat, the connecting seat is provided with positioning hole, the positioning hole is assembled with positioning rod, the positioning rod is inserted into fixing sleeve through positioning hole, a pair of grouting pipes are arranged on the fixing sleeve, and the sidewall of insertion block is penetrated by a pair of grouting pipes.
[0008] A pair of connecting blocks are arranged on the two sides of heat preservation block, a pair of insertion slots are arranged in a pair of insertion blocks on a pair of connecting blocks, a pair of insertion blocks are inserted into a pair of insertion slots, a pair of fixed pipe sleeves are embedded in a pair of insertion slots, and the end of positioning rod penetrates into fixed pipe sleeve.
[0009] Preferably, a pair of grouting pipes are L-shaped structure and communicated with fixing sleeve, and a pair of grouting pipes are arranged in parallel on the two sides of fixing sleeve.
[0010] Preferably, the pair of inserts are a pair of rectangular plates, and the width of the pair of slots matches that of the pair of inserts.
[0011] Preferably, the head end of the positioning rod is a polygonal structure, and the end of the positioning hole is provided with a positioning groove of a polygonal structure.
[0012] Preferably, the diameter of the positioning hole of the connecting seat matches the diameter of the positioning rod.
[0013] Preferably, both the connecting block and the insulation block are made of solid waste composite insulation material. Beneficial effects
[0014] This utility model provides a corner connector for a solid waste composite insulation system. It offers the following advantages: In the connection process of modern solid waste composite insulation systems, this corner connector uses insulation blocks made of solid waste composite insulation material as the main structure of the connector. During installation, the insulation blocks are inserted between a pair of connecting blocks in a plug-in manner to protect the building's internal corner. A pair of inserts are provided on both sides of the insulation block, and the connecting components on the inserts achieve an integrated connection with the connecting blocks and the building wall, thereby improving the installation and bonding of the solid waste composite insulation system at the internal corner and enhancing structural strength. Attached Figure Description
[0015] Fig. 1 This is a three-dimensional structural diagram of the internal corner connector of the solid waste composite insulation system described in this utility model.
[0016] Fig. 2 This is a partially enlarged structural diagram of the internal corner connector of the solid waste composite insulation system described in this utility model.
[0017] Fig. 3 This is a schematic diagram of a partial explosion structure of the internal corner connector of the solid waste composite insulation system described in this utility model.
[0018] In the diagram: 1. Insulation block; 2. Insert block; 3. Fixing sleeve; 4. Connecting seat; 5. Positioning hole; 6. Positioning rod; 7. Grouting pipe; 8. Connecting block; 9. Slot; 10. Fixing sleeve; 11. Positioning groove. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Please see Figs. 1-3 This utility model provides an implementation scheme: In the application of modern solid waste composite insulation systems, the installation of solid waste composite insulation blocks 1 at the inside corner mainly relies on L-shaped external connectors for connection, or simply filling the gaps to connect the inside corners. As a result, cracks are very likely to appear at the inside corners. Moreover, since the connectors are not connected to the wall, the connection between the insulation system at the inside corners and the main building is not reliable and leakage is very likely to occur.
[0021] To address the aforementioned problems, this application discloses a corner connector for a solid waste composite insulation system, comprising an insulation block 1. The insulation block 1, made of the same material as the connecting block 8 at the corner requiring fixation, serves as the main body of the connector. During installation, it is inserted into the corner of the building using an insert method, allowing the connector to directly participate in the building structure of the insulation system. A pair of inserts 2 are provided on both sides of the insulation block 1, integrally formed with the insulation block 1, thus serving to fix the solid waste composite insulation system within the corner area. The pair of inserts 2 extend from the outside of the insulation block 1. The pair of inserts 2 match the pair of slots 9 of the connecting block 8, which serve as a locking and limiting function between the pair of connecting blocks 8 and the insulation block 1. Furthermore, a pair of fixing sleeves 3 are provided inside the pair of inserts 2, and a pair of connecting components are provided in the center of the pair of fixing sleeves 3. The cross-section of the insulation block 1 is L-shaped, and the outer sides of the insulation block 1 and the pair of inserts 2 are flush. The entire insulation block 1 matches the shape of the inside corner, and the two sides of the insulation block 1 are parallel to the pair of connecting blocks 8 on both sides of the inside corner. After the insulation block 1 is installed into the inside corner, the insulation block 1 and the pair of connecting blocks 8 are installed simultaneously through the pair of connecting components.
[0022] According to the instruction manual Figs. 1-3 It can be seen that the above-mentioned connecting component includes a connecting seat 4. The head end of the fixed sleeve 3 is provided with a connecting seat 4. A positioning hole 5 is opened on the connecting seat 4. A positioning rod 6 is installed in the positioning hole 5. The positioning rod 6 passes through the positioning hole 5 and is inserted into the fixed sleeve 3. A pair of grouting pipes 7 are provided on the fixed sleeve 3. The pair of grouting pipes 7 pass through the side wall of the insert block 2.
[0023] A pair of connecting blocks 8 are provided on both sides of the thermal insulation block 1. A pair of slots 9 are provided on the pair of connecting blocks 8 corresponding to a pair of inserts 2. The pair of inserts 2 are inserted into the pair of slots 9. A pair of fixing sleeves 10 are embedded in the pair of slots 9. The end of the positioning rod 6 passes through the fixing sleeve 10.
[0024] In the specific implementation process, the connecting seat 4 extends from one end of the fixed sleeve 3. The positioning hole 5 on the connecting seat 4 allows the positioning rod 6 to pass through. The positioning rod 6 passes through the fixed sleeve 3 and extends into the fixed pipe sleeve 10. In this way, the fixed sleeve 3 and the fixed pipe sleeve 10 are connected by the positioning rod 6. Furthermore, a pair of grouting pipes 7 are also provided on the fixed pipe sleeve 10. After the positioning rod 6 is installed, grout is injected into the bottom grouting pipe 7. When the mortar completely fills the positioning rod 6, the fixed sleeve 3, and the fixed pipe sleeve 10, it overflows from the upper grouting pipe 7. At the same time, the fixed pipe sleeves 10 on the pair of connecting blocks 8 also serve to connect with the exposed steel bars of the building wall. In this way, after the grouting is completed, the entire insulation block 1 and the pair of connecting blocks 8 on both sides form a complete inside corner structure.
[0025] As a preferred option, the pair of grouting pipes 7 are L-shaped and connected to the inside of the fixed sleeve 3, with the pair of grouting pipes 7 arranged in parallel on both sides of the fixed sleeve 3.
[0026] As a preferred option, the pair of inserts 2 are further designed as a pair of rectangular plates, and the width of the pair of slots 9 matches that of the pair of inserts 2, making the connection between the pair of connecting blocks 8 and the insulation blocks 1 even tighter.
[0027] As a preferred option, the head end of the positioning rod 6 is a polygonal structure, and the end of the positioning hole 5 is provided with a polygonal positioning groove 11.
[0028] As a preferred option, the diameter of the positioning hole 5 of the connecting seat 4 matches the diameter of the positioning rod 6, and the two are in a transition fit to ensure that no leakage occurs during grouting.
[0029] As a preferred option, both the connecting block 8 and the insulation block 1 are made of solid waste composite insulation material.
[0030] In summary, the corner connector of this solid waste composite insulation system utilizes an insulation block 1 made of solid waste composite insulation material as the main structure of the connector during the connection process of modern solid waste composite insulation systems. During installation, the insulation block 1 is inserted between a pair of connecting blocks 8 in a plug-in manner to protect the building's internal corner. A pair of inserts 2 are provided on both sides of the insulation block 1, and the connecting components on the inserts 2 achieve an integrated connection with the connecting blocks 8 and the building wall, thereby improving the installation integrity and structural strength of the solid waste composite insulation system at the internal corner.
[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A corner connector for a solid waste composite insulation system, comprising an insulation block (1), wherein a pair of inserts (2) are provided on both sides of the insulation block (1), the pair of inserts (2) being integrally formed with the insulation block (1), and the pair of inserts (2) extending out from the outside of the insulation block (1), characterized in that, A pair of fixed sleeves (3) are provided inside the pair of inserts (2), and a pair of connecting components are provided at the center of the pair of fixed sleeves (3); The thermal insulation block (1) has an L-shaped cross-section and is flush with the outer side of a pair of inserts (2); The connecting assembly includes a connecting seat (4), the head end of the fixed sleeve (3) is provided with a connecting seat (4), the connecting seat (4) is provided with a positioning hole (5), a positioning rod (6) is assembled in the positioning hole (5), the positioning rod (6) passes through the positioning hole (5) and is inserted into the fixed sleeve (3), and a pair of grouting pipes (7) are provided on the fixed sleeve (3), and the pair of grouting pipes (7) passes through the side wall of the insert block (2); A pair of connecting blocks (8) are provided on both sides of the thermal insulation block (1). A pair of slots (9) are provided on the pair of connecting blocks (8) corresponding to a pair of inserts (2). The pair of inserts (2) are inserted into the pair of slots (9). A pair of fixing sleeves (10) are embedded in the pair of slots (9). The end of the positioning rod (6) passes through the fixing sleeve (10).
2. The corner connector for a solid waste composite insulation system according to claim 1, characterized in that, The pair of grouting pipes (7) are L-shaped and connected to the inside of the fixed sleeve (3). The pair of grouting pipes (7) are arranged in parallel on both sides of the fixed sleeve (3).
3. The corner connector for a solid waste composite insulation system according to claim 2, characterized in that, The pair of inserts (2) are a pair of rectangular plates, and the width of the pair of slots (9) matches that of the pair of inserts (2).
4. The corner connector for a solid waste composite insulation system according to claim 3, characterized in that, The head end of the positioning rod (6) is a polygonal structure, and the end of the positioning hole (5) is provided with a positioning groove (11) of a polygonal structure.
5. The corner connector for a solid waste composite insulation system according to claim 4, characterized in that, The diameter of the positioning hole (5) of the connecting seat (4) matches the diameter of the positioning rod (6).
6. The corner connector for a solid waste composite insulation system according to claim 5, characterized in that, Both the connecting block (8) and the insulation block (1) are solid waste composite insulation material plates.