UHPC (Ultra High Performance Concrete) ultra-thin thermal-insulation externally
By installing protective and connecting components on the UHPC ultra-thin insulated external wall panels, the stability and moisture-proof issues of the wall panels during on-site storage are resolved, achieving stable stacking and moisture-proof effects, and improving installation quality and efficiency.
Patent Information
- Application Number
- CN202422998992.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2034-12-05
AI Technical Summary
When existing UHPC ultra-thin thermal insulation wall panels are stored on the construction site, the surface is difficult to maintain stable contact, which can lead to slippage or damage from damp ground, affecting the installation progress and quality.
A UHPC ultra-thin thermal insulation external wall panel was designed, which uses protective components and connecting components on the surface of the wall panel, including inclined extension plates, contact grooves, support blocks and ventilation grooves, to form a stable stack and isolation layer to prevent sliding and moisture erosion.
This allows for stable stacking of wall panels on the construction site, preventing slippage and moisture damage, improving installation efficiency and quality, and ensuring no damage in humid environments.
Smart Images

Figure CN223937520U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of thermal insulation exterior wall panel technology, and in particular to a UHPC ultra-thin thermal insulation exterior wall panel. Background Technology
[0002] UHPC stands for Ultra-High Performance Concrete. Ultra-thin thermal insulation wall panels are building exterior wall panels made of ultra-high performance concrete materials. They are characterized by their ultra-thinness, thermal insulation, and high structural strength, and are commonly used in building exterior wall decoration and insulation systems.
[0003] As shown in the reference case "A lightweight prefabricated composite thermal insulation exterior wall panel and wall structure" with authorization announcement number "CN219060418U", the composite thermal insulation exterior wall panel is installed on the steel frame column and located on the outside of the steel frame column. The keel frame is connected to the steel frame column through connecting components, which has the effects of being lightweight, easy to construct and having good thermal performance.
[0004] Existing exterior wall panels are usually prefabricated in the factory and transported to the construction site in batches. However, the installation progress is affected by the weather, construction site environment and construction process, which means that the wall panels cannot be installed immediately after arriving at the construction site and need to be stored on the construction site for a short period of time. However, when storing exterior wall panels, it is difficult for the surfaces to make stable contact, so that two wall panels can be stacked stably without slipping. Moreover, the construction site environment is complex, and directly stacking them on the ground can easily damage the exterior wall panels due to the influence of the damp ground.
[0005] Therefore, a UHPC ultra-thin thermal insulation external wall panel is proposed to solve the above problems. Utility Model Content
[0006] The purpose of this utility model is to provide a UHPC ultra-thin thermal insulation external wall panel to solve the above problems. It improves the problem that when storing external wall panels, the surfaces are difficult to make stable contact, so that two wall panels can be stacked stably without slipping. In addition, the complex construction site environment makes it easy for the external wall panels to be damaged by the damp ground when directly stacked on the ground.
[0007] This utility model achieves the above-mentioned objectives through the following technical solution: a UHPC ultra-thin thermal insulation exterior wall panel, comprising: an thermal insulation exterior wall panel, the top of which has two lifting holes; a stacking mechanism, the stacking mechanism being disposed on the outside of the thermal insulation exterior wall panel for protective stacking of the thermal insulation exterior wall panel on the construction site; wherein, the stacking mechanism includes a contact plate fixedly installed at the bottom of the thermal insulation exterior wall panel, the surface of the thermal insulation exterior wall panel is provided with protective components for guiding stacking, and connecting components are provided on both sides of the thermal insulation exterior wall panel. When multiple thermal insulation exterior wall panels are stacked on the construction site, the protective components can keep two adjacent thermal insulation exterior wall panels fixed during stacking, and the contact plate is installed at the bottom of the thermal insulation exterior wall panel to form an isolation layer, thereby preventing ground moisture from eroding the exterior wall panel and ensuring that the thermal insulation exterior wall panel is not damaged in a humid environment. The connecting components can protect the edges and corners of the thermal insulation exterior wall panel.
[0008] Preferably, the protective component includes multiple extension plates fixedly installed on one side of the insulated exterior wall panel. Both sides of the multiple extension plates are set as bevels. Multiple contact grooves are opened on the other side of the insulated exterior wall panel. The multiple contact grooves are aligned with the multiple extension plates, and the shape of the contact grooves is adapted to the shape of the extension plates. A first ventilation groove is opened at the bottom of the contact plate. When two insulated exterior wall panels approach each other, the corresponding contact grooves of the adjacent insulated exterior wall panels are guided to slowly align by the bevels on both sides of the extension plates to prevent direct collision. The shape of the contact groove is adapted to the extension plates, forming a stable alignment state when stacked, effectively preventing the panels from sliding or tilting during the stacking process. The first ventilation groove at the bottom of the contact plate is used to provide ventilation during stacking, reduce the accumulation of ground moisture, and improve the moisture-proof performance of the stacked area.
[0009] Preferably, each of the multiple extension plates has a support block fixedly installed at its bottom. The bottom volume of the multiple support blocks is larger than the top volume, and the bottom volume of the multiple support blocks is larger than the top volume, forming a right-angled trapezoidal cross section. This results in a larger bottom contact area of the support blocks, thereby dispersing the weight of the thermal insulation exterior wall panel and making it more stable when placed on the ground.
[0010] Preferably, the multiple support blocks are aligned with the multiple contact grooves, and the bottom end of the contact groove is adapted to the shape of the support block. When the extension plate enters the contact groove, it simultaneously drives the support block into one side of the corresponding contact groove, so that the thermal insulation wall panel forms support and fixation in the vertical direction when stacked, improving the stability between the upper and lower parts during the stacking process and avoiding sliding or misalignment.
[0011] Preferably, the support block and the corresponding contact groove surface are provided with the same second ventilation groove. The second ventilation groove is connected to the first ventilation groove. The through first and second ventilation grooves can effectively maintain the air circulation at the bottom of the thermal insulation wall panel. In humid weather or poor construction site conditions, moisture accumulation can be effectively avoided.
[0012] Preferably, the connecting assembly includes multiple protective plates fixedly installed on the surface of the insulated exterior wall panel. The multiple protective plates are evenly distributed at the four corners of the insulated exterior wall panel. When moving and stacking, the four corners of the insulated exterior wall panel can be protected by the multiple protective plates, reducing the risk of bumps and wear.
[0013] Preferably, the connecting assembly further includes a connecting plate fixedly installed on one side of the insulated exterior wall panel, and a connecting groove is provided on the other side of the insulated exterior wall panel. The connecting plate is set as an isosceles rectangular column, and the edges of the connecting plate are set as rounded corners. The shape of the connecting groove is adapted to the connecting plate. When the insulated exterior wall panel is assembled, it can be slidably connected with the connecting groove of the adjacent insulated exterior wall panel by sliding the connecting plate, so as to quickly complete the assembly and installation. Moreover, the rounded corners of the connecting plate reduce the friction or scratch damage generated during the connection process.
[0014] Preferably, the interior of the insulated exterior wall panel has a connecting hole, and the two ends of the connecting hole are connected to two lifting holes respectively. The lifting rope can be passed through one lifting hole, through the connecting hole and out of the other lifting hole, so that the insulated exterior wall panel can be stably lifted and installed during installation, which is very convenient.
[0015] The beneficial effects of this utility model are:
[0016] 1. When multiple thermal insulation wall panels are stacked on the construction site, protective components can be used to keep two adjacent thermal insulation wall panels fixed during stacking. The contact plate is installed at the bottom of the thermal insulation wall panel to form an isolation layer, thereby preventing ground moisture from corroding the wall panel and ensuring that the thermal insulation wall panel is not damaged in a humid environment. The connecting components can protect the edges and corners of the thermal insulation wall panel.
[0017] 2. The contact plate is installed at the bottom of the insulated exterior wall panel to form an isolation layer, thereby preventing ground moisture from eroding the exterior wall panel. At the same time, the first and second ventilation slots can effectively maintain air circulation at the bottom of the insulated exterior wall panel, and can effectively prevent moisture accumulation in humid weather or poor site conditions. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the stacking mechanism of this utility model;
[0020] Figure 3 This is a schematic diagram of the protective component structure of this utility model;
[0021] Figure 4 This is a schematic diagram of the connection component structure of this utility model.
[0022] In the diagram: 1. Insulated exterior wall panel; 2. Lifting hole; 21. Connecting hole; 3. Stacking mechanism; 31. Contact plate; 32. Protective component; 321. Extension plate; 322. Contact groove; 323. Support block; 324. First ventilation slot; 325. Second ventilation slot; 33. Connecting component; 331. Protective plate; 332. Connecting plate; 333. Connecting groove. Detailed Implementation
[0023] 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.
[0024] In practical implementation: such as Figure 1-4 As shown, a UHPC ultra-thin thermal insulation exterior wall panel includes: an thermal insulation exterior wall panel 1, with two lifting holes 2 on the top of the thermal insulation exterior wall panel 1; and a stacking mechanism 3, which is located on the outside of the thermal insulation exterior wall panel 1 for protective stacking of the thermal insulation exterior wall panel 1 on the construction site. The stacking mechanism 3 includes a contact plate 31 fixedly installed at the bottom of the thermal insulation exterior wall panel 1, protective components 32 for guiding stacking are provided on the surface of the thermal insulation exterior wall panel 1, and connecting components 33 are provided on both sides of the thermal insulation exterior wall panel 1. The thermal insulation exterior wall panel 1 is specifically an ultra-thin exterior wall panel made of ultra-high performance concrete. When multiple thermal insulation exterior wall panels 1 are stacked on the construction site, the protective component 32 can keep two adjacent thermal insulation exterior wall panels 1 fixed during stacking. The contact plate 31 is installed at the bottom of the thermal insulation exterior wall panel 1 to form an isolation layer, thereby preventing ground moisture from eroding the exterior wall panel and ensuring that the thermal insulation exterior wall panel 1 is not damaged in a humid environment. The connecting component 33 can protect the edges and corners of the thermal insulation exterior wall panel 1.
[0025] like Figure 2 , Figure 3 and Figure 4As shown, the protective component 32 includes multiple extension plates 321 fixedly installed on one side of the thermal insulation exterior wall panel 1. Both sides of the multiple extension plates 321 are set as bevels. Multiple contact grooves 322 are opened on the other side of the thermal insulation exterior wall panel 1. The multiple contact grooves 322 are aligned with the multiple extension plates 321, and the shape of the contact grooves 322 and the extension plates 321 are adapted to each other. A first ventilation groove 324 is opened at the bottom of the contact plate 31. When two thermal insulation exterior wall panels 1 approach each other, the corresponding contact grooves 322 of the adjacent thermal insulation exterior wall panels 1 are slowly connected by the bevels on both sides of the extension plate 321 to prevent direct collision. The shape of the contact groove 322 is adapted to the extension plate 321, forming a stable connection state when stacked, effectively preventing the panels from sliding or tilting during the stacking process. The first ventilation groove 324 at the bottom of the contact plate 31 is used to provide ventilation during stacking, reduce the accumulation of ground moisture, and improve the moisture-proof performance of the stacked area.
[0026] Each of the multiple extension plates 321 has a support block 323 fixedly installed at its bottom. The bottom volume of the multiple support blocks 323 is larger than its top volume, and the bottom volume of the multiple support blocks 323 is larger than its top volume, forming a right-angled trapezoidal cross section. This results in a larger bottom contact area for the support blocks 323, thereby distributing the weight of the thermal insulation exterior wall panel 1 and making it more stable on the ground. The multiple support blocks 323 are aligned with multiple contact grooves 322, and the bottom end of the contact groove 322 is adapted to the shape of the support block 323. When the extension plate 321 enters the contact groove 322, it simultaneously moves the support block 323. 3. When the insulation wall panel 1 enters the corresponding contact groove 322, it forms support and fixation in the vertical direction during stacking, which improves the stability between the upper and lower parts during stacking and avoids sliding or misalignment. The support block 323 and the corresponding contact groove 322 have the same second ventilation groove 325 through it. The second ventilation groove 325 is connected to the first ventilation groove 324. The through first ventilation groove 324 and second ventilation groove 325 can effectively maintain the air circulation at the bottom of the insulation wall panel 1. In humid weather or poor construction site conditions, it can effectively prevent moisture accumulation.
[0027] like Figure 2 , Figure 3 and Figure 4As shown, the connecting assembly 33 includes multiple protective plates 331 fixedly installed on the surface of the insulated exterior wall panel 1. These protective plates 331 are evenly distributed at the four corners of the insulated exterior wall panel 1. During movement and stacking, the four corners of the insulated exterior wall panel 1 are protected by the multiple protective plates 331, reducing the risk of bumps and wear. The connecting assembly 33 also includes a connecting plate 332 fixedly installed on one side of the insulated exterior wall panel 1. A connecting groove 333 is provided on the other side of the insulated exterior wall panel 1. The connecting plate 332 is configured as an isosceles rectangular column with rounded edges. The connecting groove 332... The shape of the connecting plate 332 is compatible with that of the connecting plate 332. When the insulated exterior wall panel 1 is assembled, it can slide to connect with the connecting groove 333 of the adjacent insulated exterior wall panel 1 through the connecting plate 332, so that the assembly and installation can be completed quickly. The rounded corners of the connecting plate 332 reduce the friction or scratch damage generated during the connection process. The interior of the insulated exterior wall panel 1 is provided with a connecting hole 21. The two ends of the connecting hole 21 are connected to two lifting holes 2 respectively. The lifting rope can be passed through one lifting hole 2, through the connecting hole 21, and out through the other lifting hole 2, so that the insulated exterior wall panel 1 can be stably lifted and installed during installation, which is very convenient.
[0028] When this utility model is in use, when two thermal insulation exterior wall panels 1 approach each other, the corresponding contact grooves 322 of the adjacent thermal insulation exterior wall panels 1 are slowly connected by the inclined surfaces on both sides of the extension plate 321 to prevent direct collision. The shape of the contact groove 322 is adapted to the extension plate 321, forming a stable connection state when stacked, effectively preventing the panels from sliding or tilting during the stacking process. When the extension plate 321 enters the contact groove 322, it simultaneously drives the support block 323 into one side of the corresponding contact groove 322, so that the thermal insulation exterior wall panels 1 form support and fixation in the vertical direction when stacked, improving the stability between the upper and lower parts during the stacking process. The through first ventilation groove 324 and second ventilation groove 325 can effectively maintain the air circulation at the bottom of the thermal insulation exterior wall panel 1, and can effectively prevent moisture accumulation in humid weather or poor construction site conditions.
[0029] When moving and stacking, the four corners of the insulation wall panel 1 can be protected by multiple protective plates 331, reducing the risk of bumps and wear. When the insulation wall panel 1 is assembled, it can be slidably connected to the connecting groove 333 of the adjacent insulation wall panel 1 by the connecting plate 332, so that the assembly and installation can be completed quickly. The rounded corners of the connecting plate 332 reduce friction or scratch damage during the connection process.
[0030] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A UHPC ultra-thin thermal insulation exterior wall panel, characterized in that, include: Insulated exterior wall panel (1), the top of which has two hanging holes (2); Stacking mechanism (3), used to protect the thermal insulation wall panel (1) on the construction site, the stacking mechanism (3) is set on the outside of the thermal insulation wall panel (1); The stacking mechanism (3) includes a contact plate (31) fixedly installed at the bottom of the thermal insulation wall panel (1), a protective component (32) for guiding stacking is provided on the surface of the thermal insulation wall panel (1), and connecting components (33) are provided on both sides of the thermal insulation wall panel (1).
2. The UHPC ultra-thin thermal insulation external wall panel according to claim 1, characterized in that: The protective component (32) includes multiple extension plates (321) fixedly installed on one side of the thermal insulation exterior wall panel (1). Both sides of the multiple extension plates (321) are set as inclined surfaces. Multiple contact grooves (322) are opened on the other side of the thermal insulation exterior wall panel (1). The multiple contact grooves (322) are aligned with the multiple extension plates (321), and the shape of the contact grooves (322) and the extension plates (321) are adapted. A first ventilation groove (324) is opened at the bottom of the contact plate (31).
3. The UHPC ultra-thin thermal insulation external wall panel according to claim 2, characterized in that: Each of the extension plates (321) has a support block (323) fixedly installed at its bottom, and the bottom volume of the support block (323) is larger than its top volume.
4. The UHPC ultra-thin thermal insulation external wall panel according to claim 3, characterized in that: The multiple support blocks (323) are aligned with the multiple contact grooves (322), and the bottom end of the contact groove (322) is adapted to the shape of the support block (323).
5. The UHPC ultra-thin thermal insulation external wall panel according to claim 3, characterized in that: The support block (323) and the corresponding contact groove (322) have the same second ventilation groove (325) through them, and the second ventilation groove (325) is connected to the first ventilation groove (324).
6. The UHPC ultra-thin thermal insulation external wall panel according to claim 1, characterized in that: The connecting component (33) includes a plurality of protective plates (331) fixedly installed on the surface of the thermal insulation exterior wall panel (1), and the plurality of protective plates (331) are evenly distributed at the four corners of the thermal insulation exterior wall panel (1).
7. The UHPC ultra-thin thermal insulation external wall panel according to claim 1, characterized in that: The connecting assembly (33) further includes a connecting plate (332) fixedly installed on one side of the thermal insulation exterior wall panel (1). A connecting groove (333) is provided on the other side of the thermal insulation exterior wall panel (1). The connecting plate (332) is set as an isosceles rectangular column. The edge of the connecting plate (332) is set as rounded corners. The shape of the connecting groove (333) is adapted to the connecting plate (332).
8. The UHPC ultra-thin thermal insulation external wall panel according to claim 1, characterized in that: The interior of the thermal insulation wall panel (1) is provided with a connecting hole (21), and the two ends of the connecting hole (21) are respectively connected to two hanging holes (2).
Citation Information
Patent Citations
Light prefabricated composite thermal insulation external wall panel and wall body structure
CN219060418U