Glass greenhouse aluminum material for connecting laminboards
By designing a structure including steel frame, sandwich panel main body, insulation connection mechanism and insertion mechanism in glass greenhouse aluminum, the existing aluminum materials have poor sealing, insufficient insulation and prone to water accumulation, and better insulation and waterproof performance have been achieved.
Patent Information
- Application Number
- CN202421632002.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2034-07-11
AI Technical Summary
The existing glass greenhouse aluminum materials connected to sandwich panels have poor sealing properties and are not heat-insulating enough. In addition, when the temperature difference between the inside and outside of the glass greenhouse is large, water droplets are easily condensed, and the failure to drainage causes liquid to accumulate for a long time, causing damage to the structure.
A glass greenhouse aluminum material including a steel frame, a sandwich plate body, an insulation connection mechanism and an inlay mechanism is designed. The insulation connection mechanism realizes sealing and insulation through components such as water-filling plates, partitions, sealing and insulation strips; the inlay mechanism realizes rapid assembly and waterproofing through components such as aluminum strips, slots, slots and panels.
This design effectively improves the thermal insulation performance of the glass greenhouse, ensures sealing, prevents water from flowing into the greenhouse, extends service life, and reduces unnecessary repairs.
Smart Images

Figure CN222885140U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass greenhouses, in particular to an aluminum material for a glass greenhouse connecting sandwich panels. Background Technique
[0002] In an agricultural park, there are not only production greenhouses, but also supporting facilities such as equipment rooms and packaging rooms. Production greenhouses need light and are generally covered with glass or PC boards. Currently, in large parks, glass coverage is mainly used. Among them, supporting facilities such as equipment rooms do not require strong light. For energy conservation, steel structures or iron structure skeletons are generally used, covered with composite sandwich panels, and aluminum structures are used for connection and fixation to achieve practicality and aesthetics after being combined together. Therefore, there is a particular need for an aluminum material for a glass greenhouse connecting sandwich panels.
[0003] However, for the existing aluminum materials for glass greenhouses connecting sandwich panels, when the aluminum materials are currently used to connect and fix the sandwich panels, the sealing performance is relatively poor, the heat preservation is insufficient, and when the temperature difference between the inside and outside of the glass greenhouse is large, water droplets are easily condensed. Moreover, in some glass greenhouses, drainage is not provided for the aluminum materials, resulting in long-term accumulation of liquid and damage to the structure. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an aluminum material for a glass greenhouse connecting sandwich panels to solve the problems in the above background technique, that is, for the existing aluminum materials for glass greenhouses connecting sandwich panels, when the aluminum materials are currently used to connect and fix the sandwich panels, the sealing performance is relatively poor, the heat preservation is insufficient, and when the temperature difference between the inside and outside of the glass greenhouse is large, water droplets are easily condensed. Moreover, in some glass greenhouses, drainage is not provided for the aluminum materials, resulting in long-term accumulation of liquid and damage to the structure.
[0005] To achieve the above purpose, the utility model provides the following technical solution: An aluminum material for a glass greenhouse connecting sandwich panels, including a steel frame, a sandwich panel main body is connected to the surface of the steel frame, a heat preservation connection mechanism is arranged on one side of the surface of the steel frame, an embedding mechanism is arranged on one side of the surface of the sandwich panel main body, and a water blocking aluminum plate is connected to one side of the surface of the sandwich panel main body;
[0006] The heat preservation connection mechanism includes a flashing plate, a partition plate, a sealing and heat insulation gasket, a first sealing and heat preservation strip, a bracket, a second sealing and heat preservation strip, a concave embedding strip and a blocking strip. A flashing plate is connected to one side of the surface of the steel frame, a partition plate is connected to one side of the surface of the steel frame, a sealing and heat insulation gasket is connected to one side of the surface of the steel frame, a first sealing and heat preservation strip is connected to one side of the surface of the sandwich panel main body, a bracket is connected to one side of the surface of the flashing plate, a second sealing and heat preservation strip is connected to one side of the surface of the flashing plate, a concave embedding strip is connected to the surface of the first sealing and heat preservation strip, and a blocking strip is connected to one side of the surface of the concave embedding strip.
[0007] Preferably, the outer side of the retaining strip is fitted with the recessed strip, and one side of the surface of the first sealing and heat-insulating strip is closely fitted with the sandwich panel body.
[0008] Preferably, one side of the surface of the bracket is dimensionally consistent with the sandwich panel body, and one side of the surface of the second sealing and heat-insulating strip is fitted with the flashing plate.
[0009] Preferably, the embedding mechanism includes an aluminum strip, a card slot, an embedding groove and an embedding plate. One side of the surface of the sandwich panel body is fitted with an aluminum strip, one side of the surface of the sandwich panel body is provided with a card slot, one side of the surface of the sandwich panel body is provided with an embedding groove, and one side of the surface of the sandwich panel body is connected with an embedding plate.
[0010] Preferably, one side of the surface of the aluminum strip is dimensionally consistent with the card slot, and one end of the embedding plate is dimensionally consistent with the embedding groove.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows: For the glass greenhouse aluminum materials connecting the sandwich panels, by adding the sealing and heat-insulating gaskets, the first sealing and heat-insulating strip and the second sealing and heat-insulating strip, the glass greenhouse can be effectively heat-insulated, and at the same time, the sandwich panel body can be quickly assembled. Only one group of sandwich panel bodies needs to be fixed, and the other group of sandwich panel bodies can be fitted and fixed. Moreover, sufficient waterproof treatment is carried out to prevent water from flowing into the greenhouse interior. At the same time, while being beautiful, it can prevent the bolts from being exposed to rain, thereby prolonging the service life and reducing unnecessary maintenance. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is a schematic cross-sectional appearance structure diagram of the present utility model;
[0013] Figure 2 is a schematic cross-sectional exploded structure diagram of the heat-insulating connection mechanism of the present utility model;
[0014] Figure 3 is a schematic exploded structure diagram of the embedding mechanism of the present utility model;
[0015] Figure 4 is the present utility model Figure 2 magnified structure diagram at A in;
[0016] Figure 5 is the present utility model Figure 3 magnified structure diagram at B in.
[0017] In the figure: 1, steel frame; 2, sandwich panel body; 3, heat-insulating connection mechanism; 301, flashing plate; 302, partition board; 303, sealing and heat-insulating gasket; 304, first sealing and heat-insulating strip; 305, bracket; 306, second sealing and heat-insulating strip; 307, recessed strip; 308, retaining strip; 4, embedding mechanism; 401, aluminum strip; 402, card slot; 403, embedding groove; 404, embedding plate; 5, water-retaining aluminum plate. Specific embodiments
[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0019] Please refer to Figures 1-5 , the present utility model provides a technical solution: a glass greenhouse aluminum material for connecting sandwich panels, including a steel frame 1, a sandwich panel main body 2 is connected to the surface of the steel frame 1, a heat preservation connection mechanism 3 is arranged on one side of the surface of the steel frame 1, an embedding mechanism 4 is arranged on one side of the surface of the sandwich panel main body 2, and a water blocking aluminum plate 5 is connected to one side of the surface of the sandwich panel main body 2;
[0020] The heat preservation connection mechanism 3 includes a flashing plate 301, a partition plate 302, a sealing and heat insulation gasket 303, a first sealing and heat preservation strip 304, a bracket 305, a second sealing and heat preservation strip 306, a concave embedding strip 307 and a retaining strip 308. A flashing plate 301 is connected to one side of the surface of the steel frame 1, a partition plate 302 is connected to one side of the surface of the steel frame 1, a sealing and heat insulation gasket 303 is connected to one side of the surface of the steel frame 1, a first sealing and heat preservation strip 304 is connected to one side of the surface of the sandwich panel main body 2, a bracket 305 is connected to one side of the surface of the flashing plate 301, a second sealing and heat preservation strip 306 is connected to one side of the surface of the flashing plate 301, a concave embedding strip 307 is connected to the surface of the first sealing and heat preservation strip 304, and a retaining strip 308 is connected to one side of the surface of the concave embedding strip 307. When sealing and connecting the sandwich panel main body 2, first install the flashing plate 301 on one side of the steel frame 1, then fit the partition plate 302 with the flashing plate 301. When water appears on the surface of the flashing plate 301, the water can be discharged through the holes in time. Subsequently, use bolts to fix the bracket 305, the flashing plate 301 and the partition plate 302 to the steel frame 1. Then place the second sealing and heat preservation strip 306 on the surfaces of the flashing plate 301 and the partition plate 302, and at the same time install the sealing and heat insulation gasket 303 on one side of the surface of the steel frame 1. After installation, install the sandwich panel main body 2 on the surface of the bracket 305, and the second sealing and heat preservation strip 306 starts to deform after being squeezed by the sandwich panel main body 2, naturally filling the gap to achieve a better sealing and heat preservation effect. Subsequently, splice and fix the sandwich panel main body 2. After the sandwich panel main body 2 is spliced and fixed, place the first sealing and heat preservation strip 304 between two groups of sandwich panel main bodies 2, then install the concave embedding strip 307 on one side of the first sealing and heat preservation strip 304 and fix it with bolts. Then embed the retaining strip 308 into one side of the concave embedding strip 307 to prevent the bolts from being corroded by rain. At this time, the installation and heat preservation work of the sandwich panel main body 2 using the aluminum material are completed.
[0021] Further, the outer side of the baffle strip 308 is fitted to the recessed strip 307, and one side of the surface of the first sealing and heat-insulating strip 304 is closely fitted to the sandwich panel main body 2. Through the arrangement of the first sealing and heat-insulating strip 304 and the baffle strip 308, during use, the first sealing and heat-insulating strip 304 is used for sealing and heat-insulating the direct gap of the sandwich panel main body 2, thereby reducing the outflow of heat inside the glass greenhouse. When the baffle strip 308 is clamped to one side of the recessed strip 307, the baffle strip 308 can block external rainwater, preventing the rainwater from corroding the bolts fixing the recessed strip 307, thus extending the service life.
[0022] Further, one side of the surface of the bracket 305 is dimensionally consistent with the sandwich panel main body 2, and the second sealing and heat-insulating strip 306 is fitted to one side of the surface of the flashing 301. Through the arrangement of the flashing 301, the bracket 305 and the second sealing and heat-insulating strip 306, during use, drainage holes are provided on one side of the surface of the flashing 301. When water droplets appear on one side of the sandwich panel main body 2 due to dampness or other reasons and drip and accumulate on the surface of the flashing 301, the water can quickly flow out from the outflow holes, preventing the corrosion of internal materials. The bracket 305 is used for quickly positioning and supporting the sandwich panel main body 2, thereby facilitating the subsequent splicing and fixing of the sandwich panel main body 2. The second sealing and heat-insulating strip 306 is used for heat-insulating the glass greenhouse. After being extruded by the sandwich panel main body 2, the second sealing and heat-insulating strip 306 starts to deform and will naturally fill the gap, thereby reducing the air flow and thus achieving heat insulation.
[0023] Further, the embedding mechanism 4 includes an aluminum strip 401, a card slot 402, an embedding groove 403 and an embedding plate 404. One side of the surface of the sandwich panel main body 2 is fitted with an aluminum strip 401, a card slot 402 is provided on one side of the surface of the sandwich panel main body 2, an embedding groove 403 is provided on one side of the surface of the sandwich panel main body 2, and an embedding plate 404 is connected to one side of the surface of the sandwich panel main body 2. Through the arrangement of the aluminum strip 401, the card slot 402, the embedding groove 403 and the embedding plate 404 and the sandwich panel main body 2, during use, when splicing and installing the sandwich panel main body 2, first place the sandwich panel main body 2 on the surface of the steel frame 1 and connect it to the heat-insulating connection mechanism 3, then embed the aluminum strip 401 into the inside of the card slot 402 and fix it with bolts. After that, fit the embedding plate 404 on the surface of another group of sandwich panel main bodies 2 with the embedding groove 403 on the surface of this sandwich panel main body 2. At this time, the embedding plate 404 blocks the card slot 402, preventing rainwater from entering the card slot 402 and corroding the bolts. Then splice the sandwich panel main body 2 in the same way. After splicing, install the water-blocking aluminum plate 5 on the steel frame 1 and the topmost sandwich panel main body 2 and then fix it with bolts, effectively preventing rainwater from flowing into the inside of the glass greenhouse along the gap between the sandwich panel main body 2 and the steel frame 1.
[0024] Furthermore, one side of the surface of the aluminum strip 401 matches the size of the card slot 402, and one end of the panel 404 matches the size of the slot 403. With the settings of the aluminum strip 401 and the panel 404, during use, after the aluminum strip 401 presses the sandwich panel body 2, bolts are used for fixation, which can make the sandwich panel body 2 fixed more firmly. When one end of the panel 404 is inserted into the slot 403, it can block the card slot 402 to prevent rainwater from corroding the bolts in the card slot 402.
[0025] Working principle: First, when hermetically connecting the sandwich panel body 2, install the flashing 301 on one side of the steel frame 1, then fit the partition 302 to the flashing 301. When water appears on the surface of the flashing 301, the water can be discharged through the holes in a timely manner. Subsequently, use bolts to fix the bracket 305, the flashing 301, and the partition 302 to the steel frame 1. Then, place the second sealing and heat-insulating strip 306 on the surfaces of the flashing 301 and the partition 302. At the same time, install the sealing and heat-insulating gasket 303 on one side of the surface of the steel frame 1. After installation, install the sandwich panel body 2 on the surface of the bracket 305. When the second sealing and heat-insulating strip 306 is squeezed by the sandwich panel body 2, it starts to deform and naturally fills the gap to achieve a better sealing and heat-insulating effect. Subsequently, splice and fix the sandwich panel body 2. Then, when splicing and installing the sandwich panel body 2, first place the sandwich panel body 2 on the surface of the steel frame 1 and connect it to the heat-insulating connection mechanism 3. Then, insert the aluminum strip 401 into the inside of the card slot 402 and fix it with bolts. Then, fit the panel 404 on the surface of another group of sandwich panel bodies 2 with the slot 403 on the surface of this sandwich panel body 2. At this time, the panel 404 blocks the card slot 402, which can prevent rainwater from entering the card slot 402 and corroding the bolts. Then, splice the sandwich panel body 2 in the same way. After splicing is completed, install the water-blocking aluminum plate 5 on the steel frame 1 and the topmost sandwich panel body 2, and then use bolts for fixation to effectively prevent rainwater from flowing into the interior of the glass greenhouse along the gap between the sandwich panel body 2 and the steel frame 1. Then, place the first sealing and heat-insulating strip 304 between the two groups of sandwich panel bodies 2. Then, install the concave strip 307 on one side of the first sealing and heat-insulating strip 304 and fix it with bolts. Subsequently, fit the blocking strip 308 to one side of the concave strip 307 to prevent the bolts from getting wet and corroded. At this time, the installation and heat-insulation work of the sandwich panel body 2 using aluminum materials are completed.
[0026] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A glass greenhouse aluminum material for connecting sandwich panels, comprising a steel frame (1), characterized in that: The surface of the steel frame (1) is connected to a sandwich panel body (2), one side of the surface of the steel frame (1) is provided with a heat-insulating connection mechanism (3), one side of the surface of the sandwich panel body (2) is provided with an embedding mechanism (4), and one side of the surface of the sandwich panel body (2) is connected to a water-retaining aluminum plate (5); The thermal insulation connection mechanism (3) comprises a flashing plate (301), a partition plate (302), a sealing and heat-insulating gasket (303), a first sealing and heat-insulating strip (304), a bracket (305), a second sealing and heat-insulating strip (306), a recessed strip (307) and a stop strip (308); one side of the surface of the steel frame (1) is connected to the flashing plate (301); one side of the surface of the steel frame (1) is connected to the partition plate (302); one side of the surface of the steel frame (1) is connected to the sealing and heat-insulating gasket (303); one side of the surface of the sandwich panel body (2) is connected to the first sealing and heat-insulating strip (304); one side of the surface of the flashing plate (301) is connected to the bracket (305); one side of the surface of the flashing plate (301) is connected to the second sealing and heat-insulating strip (306); the surface of the first sealing and heat-insulating strip (304) is connected to the recessed strip (307); and one side of the surface of the recessed strip (307) is connected to the stop strip (308).
2. The glass greenhouse aluminum material for connecting sandwich panels according to claim 1, characterized in that: The outer side of the blocking strip (308) is in contact with the recessed strip (307), and one side of the surface of the first sealing and heat-insulating strip (304) is in close contact with the sandwich panel body (2).
3. The glass greenhouse aluminum material for connecting sandwich panels according to claim 1, characterized in that: One side of the surface of the bracket (305) matches the size of the sandwich panel body (2), and the second sealing and heat-insulating strip (306) fits the surface of the flashing board (301).
4. The glass greenhouse aluminum material for connecting sandwich panels according to claim 1, characterized in that: The embedding mechanism (4) comprises an aluminum strip (401), a clamping groove (402), an embedding groove (403) and an embedding plate (404); the aluminum strip (401) is embedded on one side of the surface of the sandwich panel body (2); the clamping groove (402) is provided on one side of the surface of the sandwich panel body (2); the embedding groove (403) is provided on one side of the surface of the sandwich panel body (2); and the embedding plate (404) is connected to one side of the surface of the sandwich panel body (2).
5. The glass greenhouse aluminum material for connecting sandwich panels according to claim 4, characterized in that: One side of the surface of the aluminum strip (401) matches the size of the slot (402), and one end of the insert plate (404) matches the size of the insert slot (403).