Disassembly-free heat preservation formwork aluminum formwork supporting structure
By introducing components such as insulation template subkeleton and aluminum mold subkeleton into the silicon monene disassembly insulation template and aluminum mold components, the weak node problem at the junction of silicon monene disassembly insulation template and aluminum mold is solved, and better concrete structure molding quality is achieved.
Patent Information
- Application Number
- CN202422406743.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-30
AI Technical Summary
When the existing silicon monene disassembly insulation formwork is combined with aluminum mold, the nodes at the junction are weak, resulting in slurry leakage, staggered stage, mold rise and offset during concrete pouring, affecting the quality of the structure forming.
Silicone monene disassembly insulation template and aluminum template components are used, combined with insulation template secondary keel and aluminum mold secondary keel, through aluminum mold back corrugated, aluminum mold reinforced screw and male angle tension reinforced screw, the support structure at the junction is enhanced to form an integral reinforcement system.
The staggered stage, mold and offset position at the junction are improved, the integrity of the reinforcement system is improved, and the quality of concrete structure molding is improved.
Smart Images

Figure CN223189878U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to a disassembly-free thermal insulation template aluminum formwork supporting structure. Background Art
[0002] Graphene is a common exterior wall insulation material used in residential projects. Graphene forms come in two types: reverse-injected graphene and non-removable graphene insulation forms. This exterior wall insulation system utilizes factory-produced graphene insulation forms, which serve as the exterior formwork for vertical concrete components and exterior wall insulation panels (horizontal concrete components utilize internal formwork). This system is poured once and remains in place, creating an integrated insulation and structural exterior wall insulation system.
[0003] At the same time, with the rapid promotion of aluminum formwork in the construction industry, more and more buildings are choosing to use aluminum formwork as formwork for construction. The combination of silicon graphene non-disassembly insulation formwork and aluminum formwork is also becoming more and more common. The special nodes between the exterior wall of the existing silicon graphene non-disassembly insulation formwork and the non-insulated part of the interior are weak due to the difference in the two reinforcement materials. As a result, the concrete here is subjected to different lateral pressures on the non-disassembly formwork and the aluminum formwork during the pouring process, resulting in leakage, misalignment, expansion and deviation at the junction, which seriously affects the structural forming quality of this part. At present, the only way to compensate is to increase sealing measures, which cannot meet the actual construction standard requirements. Summary of the Invention
[0004] In order to overcome the shortcomings of the existing technology, the utility model proposes a non-disassembly insulation formwork aluminum formwork support structure to improve the misalignment, formwork expansion and deviation at the junction, and also improve the integrity of the reinforcement system, so that the concrete structure molding quality of the cast-in-place wall is better.
[0005] To achieve the above-mentioned purpose, the utility model provides an aluminum formwork support structure for a non-disassembly insulation formwork, including a silicon graphene non-disassembly insulation formwork and an aluminum formwork assembly. The surface of the silicon graphene non-disassembly insulation formwork is provided with an insulation formwork secondary keel. The aluminum formwork assembly includes a junction aluminum formwork arranged at the edge of the silicon graphene non-disassembly insulation formwork, an internal aluminum formwork is provided on the inner side of the junction aluminum formwork, a plurality of aluminum formwork back ribs are provided on the surface of the junction aluminum formwork, and an aluminum formwork secondary keel is provided between the aluminum formwork back ribs and the junction aluminum formwork. The aluminum formwork back ribs extend in the horizontal direction and are buckled on the insulation formwork secondary keel.
[0006] Furthermore, the insulation formwork secondary keel and the aluminum formwork secondary keel are arranged in a vertical direction, and the aluminum formwork back ribs are provided with aluminum formwork reinforcing screws for fixing the aluminum formwork secondary keel.
[0007] Furthermore, a special anchor bolt for silicon graphene is provided between the secondary keel of the insulation formwork and the silicon graphene disassembly-free insulation formwork.
[0008] Furthermore, the junction aluminum formwork and the internal aluminum formwork are supported on the constructed substructure.
[0009] Furthermore, a beam lower aluminum formwork is provided on the top of the aluminum formwork at the junction, an aluminum formwork support rod is provided on the bottom of the beam lower aluminum formwork, and the aluminum formwork support rod is arranged on the constructed lower structure.
[0010] Furthermore, the aluminum formwork at the junction and the aluminum formwork back ribs on the internal aluminum formwork are provided with external angle pulling reinforcement screws.
[0011] The non-disassembly insulation formwork aluminum formwork support structure of the utility model improves the problems of misalignment, formwork expansion and deviation at the junction, and also improves the integrity of the reinforcement system, so that the concrete structure molding quality of the cast-in-place wall is better. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present invention will be further described and elaborated below in conjunction with the accompanying drawings.
[0013] Figure 1 This is a structural diagram of the aluminum formwork support structure of the non-disassembly insulation formwork of the preferred embodiment of the present utility model.
[0014] Figure numerals: 1. Silicon graphene non-disassembly insulation formwork; 11. Insulation formwork secondary purlin; 2. Junction aluminum formwork; 3. Internal aluminum formwork; 4. Beam lower aluminum formwork; 51. Aluminum formwork back rib; 52. Aluminum formwork secondary purlin; 53. Aluminum formwork reinforcement screw; 54. External corner tension reinforcement screw; 55. Aluminum formwork support rod. DETAILED DESCRIPTION
[0015] The technical solution of the present invention will be more clearly and completely explained below by describing the preferred embodiments of the present invention in conjunction with the accompanying drawings.
[0016] like Figure 1 As shown, the preferred embodiment of the present invention comprises a non-disassembly insulation formwork aluminum formwork support structure, comprising a silicon-graphene non-disassembly insulation formwork 1 and an aluminum formwork assembly. The aluminum formwork assembly comprises an aluminum junction formwork 2 disposed at the edge of the silicon-graphene non-disassembly insulation formwork 1, an inner aluminum formwork 3 disposed on the inner side of the aluminum junction formwork 2, and a lower beam aluminum formwork 4 disposed on top of the aluminum junction formwork.
[0017] Several aluminum mold back ribs 51 are provided on the surface of the junction aluminum formwork 2 and the internal aluminum formwork 3, and aluminum mold secondary purlins 52 are provided between the aluminum mold back ribs 51 and the junction aluminum formwork 2 and the internal aluminum formwork 3. The surface of the silicon graphene non-disassembly insulation formwork 1 is provided with an insulation formwork secondary purlin 11, and silicon graphene special anchor bolts are provided between the insulation formwork secondary purlin 11 and the silicon graphene non-disassembly insulation formwork 1.
[0018] The insulation formwork secondary keel 11 and the aluminum formwork secondary keel 52 are arranged in the vertical direction. The aluminum formwork back rib 51 is provided with an aluminum formwork reinforcing screw 53 for fixing the aluminum formwork secondary keel 52. The aluminum formwork back rib 51 extends in the horizontal direction and is buckled on the insulation formwork secondary keel 11.
[0019] The junction aluminum formwork 2 and the internal aluminum formwork 3 are supported on the already constructed substructure. Aluminum formwork support rods 55 are installed at the bottom of the lower aluminum formwork, which are mounted on the already constructed substructure. External corner reinforcement screws 54 are installed on the aluminum formwork back ribs 51 on the junction aluminum formwork 2 and the internal aluminum formwork 3.
[0020] The non-disassembly insulation formwork aluminum formwork support structure of the utility model improves the problems of misalignment, formwork expansion and deviation at the junction, and also improves the integrity of the reinforcement system, so that the concrete structure molding quality of the cast-in-place wall is better.
[0021] The above-described specific embodiments merely describe preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Any modifications, substitutions, and improvements to the technical solution of the present invention made by a person of ordinary skill in the art based on the textual description and accompanying drawings provided herein, without departing from the design concept and spirit of the present invention, shall fall within the scope of protection of the present invention. The scope of protection of the present invention is determined by the claims.
Claims
1. A non-disassembly insulation template aluminum formwork support structure, characterized in that: The invention comprises a silicon graphene disassembly-free thermal insulation template (1) and an aluminum template assembly, wherein the surface of the silicon graphene disassembly-free thermal insulation template (1) is provided with a thermal insulation template secondary keel (11), and the aluminum template assembly comprises a junction aluminum template (2) arranged at the edge of the silicon graphene disassembly-free thermal insulation template (1), an inner aluminum template (3) is provided on the inner side of the junction aluminum template (2), a plurality of aluminum mold back ribs (51) are provided on the surface of the junction aluminum template (2), an aluminum mold secondary keel (52) is provided between the aluminum mold back ribs (51) and the junction aluminum template (2), and the aluminum mold back ribs (51) extend in the horizontal direction and are buckled on the thermal insulation template secondary keel (11).
2. The aluminum formwork support structure for the non-disassembly insulation template according to claim 1 is characterized in that: The insulation template secondary keel (11) and the aluminum mold secondary keel (52) are arranged in a vertical direction, and the aluminum mold back rib (51) is provided with an aluminum mold reinforcing screw (53) for fixing the aluminum mold secondary keel (52).
3. The aluminum formwork support structure for the non-disassembly insulation template according to claim 2 is characterized in that: A silicon-graphene-specific anchor bolt is provided between the insulation template secondary keel (11) and the silicon-graphene-disassembly-free insulation template (1).
4. The aluminum formwork support structure for the non-disassembly insulation template according to claim 3 is characterized in that: The junction aluminum formwork (2) and the internal aluminum formwork (3) are supported on the constructed lower structure.
5. The aluminum formwork support structure for heat preservation templates according to claim 4 is characterized in that: The top of the aluminum formwork at the junction is provided with a beam lower aluminum formwork (4), the bottom of the beam lower aluminum formwork (4) is provided with an aluminum formwork support rod (55), and the aluminum formwork support rod (55) is arranged on the constructed lower structure.
6. The non-disassembly insulation formwork aluminum formwork support structure according to claim 5 is characterized in that: The aluminum template (2) at the junction and the aluminum template back rib (51) on the inner aluminum template (3) are provided with a positive angle pulling reinforcement screw (54).