Waterproof heat-preservation energy-saving building curtain wall

By setting the cavity and partition in the curtain wall body and fixing the first insulation board in the installation box, the airbag and adjustment chamber are used to adjust the pressure of the insulation board, combined with the complete planar structure and chamfer design, the problems of poor waterproof performance of the curtain wall and easy damage to the insulation board are solved, and efficient insulation and rapid replacement and maintenance are achieved.

CN120061503AActive Publication Date: 2025-05-30SICHUAN UNIV
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Patent Information

Application Number
CN202510541740.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-05-30
Estimated Expiration
2045-04-28

AI Technical Summary

Technical Problem

During the use of existing curtain walls, the thermal expansion and contraction of insulation materials lead to degumming, which seriously affects the service life of the curtain wall and has poor waterproof performance, resulting in easy damage to the insulation board.

Method used

A waterproof and thermal insulation energy-saving building curtain wall is designed. By setting a cavity and partition in the curtain wall body, and installing multiple sets of installation boxes in the cavity, the first insulation board is fixedly installed in the installation box, and the airbag and adjustment chamber are used to adjust the pressure of the first insulation board according to the change of day and night temperature difference, thereby improving its stability and insulation ability. At the same time, by designing a complete planar structure and chamfered design, the waterproof performance of the curtain wall is improved.

Benefits of technology

It effectively improves the waterproof performance and insulation effect of the curtain wall, extends the service life of the insulation board, and realizes the rapid replacement and maintenance of the first insulation board, reduces the difficulty of replacement, and improves the practicality of the equipment.

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Abstract

The invention belongs to the technical field of curtain walls, and provides a waterproof heat-preservation energy-saving building curtain wall which comprises a curtain wall body, multiple sets of installation plates are fixedly installed on one side of the curtain wall body, a cavity is formed in the curtain wall body, a partition plate is fixedly installed in the cavity, and multiple sets of installation boxes located on the partition plate are arranged in the cavity of the curtain wall body. First heat preservation plates are arranged in the installation boxes, the multiple sets of installation boxes are distributed on the same plane, every two adjacent sets of installation boxes make contact, and the two sets of installation boxes on the outer side make contact with the inner wall of the curtain wall body. Compared with the prior art, the waterproof curtain wall has the advantages that the first grooves, where the first heat preservation plates are installed, of the curtain wall bodies are formed in the inner sides, so that the planes, making contact with rainwater, of the outer sides of the curtain wall bodies are complete planes, every two adjacent curtain wall bodies make contact during installation to form the complete planes, and the waterproof capacity of the curtain wall bodies is improved; rainwater is prevented from entering the curtain wall body.
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Description

Technical Field

[0001] The present invention belongs to the technical field of curtain walls, and particularly relates to an energy-saving building curtain wall with waterproof and heat-insulating functions. Background Art

[0002] A curtain wall is the exterior wall enclosure of a building, which does not bear weight and is hung on the building wall like a curtain, so it is also called a suspended wall. It is a lightweight wall with decorative effects commonly used in modern large-scale and high-rise buildings. There are various types of curtain wall panels, among which glass curtain walls, stone curtain walls, and metal curtain walls are the main ones.

[0003] In order to enable the curtain wall to have a heat-insulating effect, generally, the curtain wall needs to be compounded with heat-insulating materials, etc., and the compounding method is generally glue bonding. During use, due to the thermal expansion and contraction of the heat-insulating materials, phenomena such as degumming are likely to occur over a long time, ultimately resulting in the detachment of the heat-insulating materials, seriously affecting the service life of the curtain wall. For the above technical problems, the Chinese patent with the patent publication number CN211774887U, when in use, sets the heat-insulating board between the substrate and the fixing board, and fixes and connects the two through the limiting member and the fixing member, so that the heat-insulating board can be stably clamped between the substrate and the fixing board. However, the gap between the substrate and the fixing board is located on the side of the curtain wall away from the wall, and the connection between the substrate and the fixing board is clamped by a transverse block. The block can only provide a supporting force for the substrate and cannot apply an upward pressure to the substrate, resulting in an insecure connection at the joint between the substrate and the fixing board. When it rains, the surface of the curtain wall on the side away from the wall comes into contact with rainwater, and the rainwater can enter the area enclosed by the substrate and the fixing board along the gap between the substrate and the fixing board. The high-humidity environment will cause the heat-insulating materials to absorb moisture, leading to a decline in their heat-insulating performance, loose structure, and even problems such as mildew, reducing the service life. Summary of the Invention

[0004] The purpose of the present invention is to provide an energy-saving building curtain wall with waterproof and heat-insulating functions, aiming to solve the technical problem that the waterproof performance in the area where the heat-insulating board is located is poor in the prior art, resulting in easy damage to the heat-insulating board.

[0005] The present invention is implemented as follows. An energy-saving building curtain wall with waterproof and heat insulation functions includes a curtain wall body. On one side of the curtain wall body, multiple groups of mounting plates are fixedly installed. A cavity is provided inside the curtain wall body, and a partition is fixedly installed in the cavity. Multiple mounting boxes are arranged on the partition in the cavity of the curtain wall body. A first heat insulation board is arranged in the mounting box. The multiple mounting boxes are distributed in the same plane and two adjacent mounting boxes are in contact. The two outer mounting boxes are in contact with the inner wall of the curtain wall body. The width of the cavity inside the curtain wall body is twice the thickness of the mounting box. A first fixing screw for fixing the mounting box is arranged on the partition. A first groove is formed on the side surface of the curtain wall body where the mounting plate is located. The mounting box enters and exits the cavity from the first groove. A first shutter for closing the first groove is hinged on the curtain wall body. A second groove is formed on the side surface of the curtain wall body where the mounting plate is located, and a second shutter for closing the second groove is hinged on the curtain wall body. A second heat insulation board is fixedly installed on the surface of the second shutter entering the cavity of the curtain wall body.

[0006] Further technical solution: One side surface of the mounting box is of an open structure and the first heat insulation board is located inside the mounting box. A cover plate is fixedly installed at the opening of the mounting box through fixing screws. A sinking groove is arranged on the end surface of the mounting box, and the cover plate abuts against the end surface of the sinking groove of the mounting box. The outer surface of the cover plate is flush with the end surface of the mounting box.

[0007] Further technical solution: An airbag is fixedly installed on the cover plate. The airbag is located inside the mounting box and is used to press the first heat insulation board. A first card slot is formed on the cover plate, and an adjusting chamber is fixedly installed in the first card slot. The adjusting chamber is communicated with the airbag. A piston plate is slidably installed in the adjusting chamber. A piston rod is fixedly installed on the piston plate. The piston rod extends out of the adjusting chamber and a connecting plate is fixedly installed at the end. An adjusting screw for driving the connecting plate to move is rotatably installed in the first card slot.

[0008] Further technical solution: A sliding groove is formed on the partition. Second card slots connected to the sliding groove are formed at positions corresponding to the mounting boxes on the partition. Multiple mounting columns are rotatably installed on the partition. The mounting columns are distributed corresponding to the second card slots. A support plate is fixedly installed at the end of the mounting column. The first fixing screw is threadedly installed on the support plate and is used in cooperation with a connecting hole formed at the bottom of the mounting box.

[0009] Further technical solution: A cross plate is fixedly installed below the partition in the curtain wall body. A first slider slides on the cross plate. A second slider slides on the first slider. Two guide rods are fixedly installed on the second slider. A third slider slides on the two guide rods together. A connecting rod used in cooperation with the connecting hole is fixedly installed on the third slider.

[0010] Further technical solution: A support rod is fixedly installed on the third slider. A second fixing screw is threadedly connected to the third slider.

[0011] Further technical solution: A plurality of limiting columns are fixedly installed on the partition board. The limiting columns correspond to the position of the support board, and the limiting columns are used to limit the rotation limit position of the support board.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. The first groove for installing the first heat preservation board on the curtain wall body is opened on the inner side, so that the plane of the outer side of the curtain wall body in contact with rainwater is a complete plane, avoiding rainwater from directly entering the curtain wall body from the outer surface of the curtain wall body, preventing rainwater from crossing the curtain wall body, improving the waterproof ability of the curtain wall body. During installation, adjacent curtain wall bodies are in contact with each other to form a complete plane. The chamfer provided at the upper end of the curtain wall body can make the rainwater flowing down from the upper curtain wall body flow downward quickly, reducing the amount of rainwater along the connection of the two curtain wall bodies, reducing the probability of rainwater seeping in from the connection of the two curtain wall bodies, further improving the waterproof ability of the curtain wall body, preventing rainwater from entering the curtain wall body, and ensuring the service life of the first heat preservation board and the second heat preservation board in the curtain wall body. Through the first heat preservation board and the second heat preservation board in the curtain wall body for heat insulation, the heat preservation effect of the curtain wall body is improved. By covering from above the first groove with the top plate, it further prevents rainwater from falling to the connection between the first baffle and the curtain wall body, preventing rainwater from entering the curtain wall body, and further improving the waterproof ability of the curtain wall body.

[0013] 2. If the day-night temperature difference changes greatly, the degree of thermal expansion and contraction deformation of the first heat preservation board is large. At this time, the adjusting screw rod drives the connecting plate to move, and the connecting plate drives the piston plate to move through the piston rod to make more gas enter the adjusting chamber. At this time, the pressure of the airbag on the first heat preservation board decreases. If the day-night temperature difference changes little, the piston plate moves in the reverse direction to make more gas enter the airbag, increasing the pressure of the airbag on the first heat preservation board. Thus, it can adjust the pressure of the airbag on the first heat preservation board according to the day-night temperature difference change situation in the installation area of the curtain wall body, and can ensure the pressing of the first heat preservation board while adapting to the deformation of the first heat preservation board, thereby improving the stability of the use of the first heat preservation board and the heat preservation ability of the first heat preservation board.

[0014] 3. The first slider, the second slider, and the third slider drive the connecting rod to move below the corresponding installation box and connect the connecting rod with the connecting hole. Then, the installation box can be driven to move to the position of the first groove. Disconnect the connection between the connecting rod and the connecting hole to take out the installation box, and then replace the first heat preservation board inside it. After the replacement is completed, reverse the above steps to reset and fix the installation box. It can conveniently replace the damaged first heat preservation board at a fixed point without taking out all the installation boxes, without interfering with the use of other first heat preservation boards, realizing the rapid replacement and maintenance of the first heat preservation board, reducing the difficulty of replacing the first heat preservation board, and improving the practicality of equipment use.

[0015] 4. During installation, the installation box is fixed by the first fixing screw. During subsequent replacement, the position of the mounting plate is positioned by the limiting post. Then, the movement of the first slider is restricted by the first fixing screw to position the connection hole and the connecting rod, enabling the connecting rod to quickly align with the connection hole and position the installation box, further improving the speed of replacing the first insulation board. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic structural view of the whole of the present invention from the first perspective.

[0017] Figure 2 It is a schematic structural view of the whole of the present invention from the second perspective.

[0018] Figure 3 It is a schematic structural view inside the curtain wall body of the present invention.

[0019] Figure 4 It is a schematic structural view of the installation box of the present invention.

[0020] Figure 5 is Figure 4 an enlarged schematic view of area A in

[0021] Figure 6 It is a schematic cross-sectional view of the adjustment chamber of the present invention.

[0022] Figure 7 It is a schematic structural view of the partition of the present invention.

[0023] Figure 8 It is a schematic structural view of the first fixing screw of the present invention.

[0024] Figure 9 It is a schematic structural view of the first slider of the present invention.

[0025] In the drawings: 1. Curtain wall body; 2. Mounting plate; 3. First groove; 4. First baffle; 5. Top plate; 6. Installation box; 7. Cover plate; 8. Airbag; 9. First insulation board; 10. First card slot; 11. Adjustment chamber; 12. Piston plate; 13. Piston rod; 14. Adjusting screw; 15. Connecting plate; 16. Connection hole; 17. Partition; 18. Slide groove; 19. Second card slot; 20. Installation column; 21. Support plate; 22. First fixing screw; 23. Cross plate; 24. First slider; 25. Second slider; 26. Guide rod; 27. Third slider; 28. Connecting rod; 29. Support rod; 30. Second fixing screw; 31. Second groove; 32. Second baffle; 33. Second insulation board; 34. Limiting post. DETAILED DESCRIPTION OF THE INVENTION

[0026] In order to make the objectives, technical solutions and advantages of the present invention more clear and understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0027] The following describes the specific implementation of the present invention in detail with reference to specific embodiments.

[0028] As Figures 1 - 9 shown, a waterproof and heat-insulating energy-saving building curtain wall provided by the present invention includes a curtain wall body 1. A plurality of mounting plates 2 are fixedly installed on one side of the curtain wall body 1. A cavity is provided inside the curtain wall body 1 and a partition 17 is fixedly installed in the cavity. A plurality of mounting boxes 6 are provided on the partition 17 in the cavity of the curtain wall body 1. A first heat-insulating board 9 is provided in the mounting box 6. The plurality of mounting boxes 6 are distributed in the same plane and two adjacent mounting boxes 6 are in contact. The two outer mounting boxes 6 are in contact with the inner wall of the curtain wall body 1. The width of the inner cavity of the curtain wall body 1 is twice the thickness of the mounting box 6. A first fixing screw 22 for fixing the mounting box 6 is provided on the partition 17. A chute 18 is provided on the partition 17. Second card slots 19 connected to the chute 18 are provided at positions corresponding to the mounting boxes 6 on the partition 17. A plurality of mounting columns 20 are rotatably installed on the partition 17. The mounting columns 20 are correspondingly distributed with the second card slots 19. A support plate 21 is fixedly installed at the end of the mounting column 20. The first fixing screw 22 is threadedly installed on the support plate 21. The first fixing screw 22 is used in cooperation with a connection hole 16 provided at the bottom of the mounting box 6. A first groove 3 is provided on the curtain wall body 1 on the side where the mounting plate 2 is located. The mounting box 6 enters and exits the cavity from the first groove 3. A first shielding plate 4 for closing the first groove 3 is hinged on the curtain wall body 1. A top plate 5 is fixedly installed on the curtain wall body 1 above the first groove 3. A second groove 31 is provided on the side of the curtain wall body 1 where the mounting plate 2 is located and a second shielding plate 32 for closing the second groove 31 is hinged on the curtain wall body 1. A second heat-insulating board 33 is fixedly installed on the surface of the second shielding plate 32 entering the cavity of the curtain wall body 1.

[0029] In actual application of this embodiment, first, the first heat preservation board 9 is installed in the installation box 6, and then the installation box 6 is placed into the cavity of the curtain wall body 1 through the first groove 3. At this time, the upper and lower surfaces of the installation box 6 are respectively in contact with the curtain wall body 1 and the partition board 17, and one side surface of the installation box 6 is attached to the inner wall of the curtain wall body 1 away from the first groove 3. Then, the installation box 6 is horizontally pushed to move away from the area corresponding to the first groove 3. Repeat the above steps to install multiple groups of installation boxes 6 into the cavity of the curtain wall body 1. At this time, multiple groups of installation boxes 6 form a complete plane. Then, the installation column 20 is rotated through the support plate 21 to align the position of the first fixing screw 22 with the connection hole 16. Then, the first fixing screw 22 is rotated to move it in the direction close to the installation box 6. The first fixing screw 22 will pass through the second card slot 19 and enter the connection hole 16. After the first fixing screw 22 abuts against the installation box 6, the installation box 6 is fixed. Then, the first baffle 4 and the second baffle 32 are closed and locked. Subsequently, the curtain wall body 1 is fixedly installed on the wall through the installation plate 2. The first groove 3 for installing the first heat preservation board 9 on the curtain wall body 1 is opened on the inner side, so that the plane on the outer side of the curtain wall body 1 in contact with rainwater is a complete plane, avoiding rainwater directly entering the curtain wall body 1 from the outer surface of the curtain wall body 1, preventing rainwater from crossing over the curtain wall body 1, improving the waterproof ability of the curtain wall body 1. And during installation, adjacent two groups of curtain wall bodies 1 are in contact with each other to form a complete plane. The plane on the outer side of the curtain wall body 1 in contact with rainwater is a complete plane, avoiding rainwater from crossing over the curtain wall body 1, improving the waterproof ability of the curtain wall body 1. Moreover, the chamfer provided at the upper end of the curtain wall body 1 can make the rainwater flowing down from the upper curtain wall body 1 flow downward quickly, reducing the amount of rainwater along the joint of the two groups of curtain wall bodies 1, reducing the probability of rainwater seeping in from the joint of the two groups of curtain wall bodies 1, further improving the waterproof ability of the curtain wall body 1, avoiding rainwater from entering the curtain wall body 1, ensuring the service life of the first heat preservation board 9 and the second heat preservation board 33 in the curtain wall body 1. Heat insulation is carried out through the first heat preservation board 9 and the second heat preservation board 33 in the curtain wall body 1 to improve the heat preservation effect of the curtain wall body 1. The top plate 5 is used to block from above the first groove 3 to further prevent rainwater from falling onto the joint of the first baffle 4 and the curtain wall body 1, avoiding rainwater from entering the curtain wall body 1, and further improving the waterproof ability of the curtain wall body 1.

[0030] As Figures 3 - 6 shown, it is an energy-saving building curtain wall with waterproof and heat preservation provided by the present invention. One side surface of the installation box 6 is of an open structure and the first heat preservation board 9 is located inside the installation box 6. A cover plate 7 is fixedly installed at the opening of the installation box 6 through a fixing screw. A sinking groove is provided on the end surface of the installation box 6 and the cover plate 7 abuts against the end surfaces of the upper and lower sinking grooves of the installation box 6. The outer surface of the cover plate 7 is flush with the end surface of the installation box 6.

[0031] Specifically, an airbag 8 is fixedly installed on the cover plate 7. The airbag 8 is located inside the installation box 6 and is used to press the first heat insulation board 9. A first card slot 10 is formed on the cover plate 7, and an adjustment chamber 11 is fixedly installed inside the first card slot 10. The adjustment chamber 11 is communicated with the airbag 8. A piston plate 12 is slidably installed inside the adjustment chamber 11. A piston rod 13 is fixedly installed on the piston plate 12. The piston rod 13 extends out of the adjustment chamber 11 and a connecting plate 15 is fixedly installed at the end. An adjustment screw rod 14 for driving the connecting plate 15 to move is rotatably installed inside the first card slot 10.

[0032] When this embodiment is actually applied, the first heat insulation board 9 is placed inside the installation box 6, and then the cover plate 7 is fixedly installed on the installation box 6 through fixing screws to close the installation box 6. At this time, the airbag 8 is in full contact with the first heat insulation board 9 and presses the first heat insulation board 9 inside the installation box 6. According to the change of the day-night temperature difference at the installation position of the curtain wall body 1, the position of the piston plate 12 inside the adjustment chamber 11 is adjusted. If the day-night temperature difference changes greatly, the degree of thermal expansion and contraction deformation of the first heat insulation board 9 is large. At this time, the adjustment screw rod 14 drives the connecting plate 15 to move, and the connecting plate 15 drives the piston plate 12 to move through the piston rod 13 so that more gas enters the adjustment chamber 11. At this time, the pressure of the airbag 8 on the first heat insulation board 9 decreases. If the day-night temperature difference changes little, the piston plate 12 is moved in the reverse direction so that more gas enters the airbag 8, increasing the pressure of the airbag 8 on the first heat insulation board 9. Thus, the pressure of the airbag 8 on the first heat insulation board 9 can be adjusted according to the change of the day-night temperature difference in the installation area of the curtain wall body 1, and the pressing of the first heat insulation board 9 can be ensured while adapting to the deformation of the first heat insulation board 9, thereby improving the stability of the use of the first heat insulation board 9 and the heat insulation ability of the first heat insulation board 9.

[0033] As Figures 7 - 9 shown, a waterproof and heat-insulating energy-saving building curtain wall provided by the present invention. A cross plate 23 located below the partition plate 17 is fixedly installed inside the curtain wall body 1. A first slider 24 slides on the cross plate 23. A second slider 25 is slidably installed on the first slider 24. Two groups of guide rods 26 are fixedly installed on the second slider 25. A third slider 27 is slidably installed together on the two groups of guide rods 26. A connecting rod 28 used in cooperation with the connecting hole 16 is fixedly installed on the third slider 27.

[0034] Specifically, a support rod 29 is fixedly installed on the third slider 27. A second fixing screw rod 30 is threadedly connected to the third slider 27.

[0035] Specifically, multiple groups of limit posts 34 are fixedly installed on the partition plate 17. The limit posts 34 correspond to the position of the support plate 21. The limit posts 34 are used to limit the rotation limit position of the support plate 21.

[0036] In practical application of this embodiment, when some of the first heat-insulating plates 9 need to be replaced after long-term use, the first baffle 4 and the second baffle 32 are opened. Then, the position of the mounting box 6 where the first heat-insulating plate 9 to be replaced is located is found, and the corresponding first fixing screw 22 of this group of mounting boxes 6 is rotated so that the first fixing screw 22 leaves the mounting box 6. At this time, the fixing of this group of mounting boxes 6 is released. Then, the support plate 21 is rotated until the support plate 21 contacts the limit post 34. At this time, the first fixing screw 22 is continuously rotated so that its lower end contacts the cross plate 23 and fixes the position of the support plate 21. Then, the staff holds the support rod 29 and pulls the second slider 25 outwards. Then, the first slider 24 is driven by the support rod 29 to move horizontally until the first slider 24 contacts the first fixing screw 22. At this time, the position of the connecting rod 28 is aligned with the position of the connecting hole 16 on this group of mounting boxes 6. The second slider 25 is pushed inwards to the end position of the first slider 24 so that the connecting hole 16 and the connecting rod 28 are coaxial. Then, the third slider 27 is moved until the connecting rod 28 enters the connecting hole 16, and the second fixing screw 30 is rotated to fix the position of the third slider 27. At this time, the staff pulls the second slider 25 outwards through the support rod 29 to pull out the mounting box 6 from its installation plane. Since the other groups of mounting boxes 6 are fixed, this group of mounting boxes 6 will not affect the other groups of mounting boxes 6 during the moving process. Then, by moving the support rod 29 horizontally, the mounting box 6 can be moved to the position of the first groove 3. The connection between the connecting rod 28 and the connecting hole 16 is released to take out the mounting box 6. Then, the first heat-insulating plate 9 inside is replaced. After the replacement is completed, the above steps are operated in reverse to reset and fix the mounting box 6. It is possible to conveniently replace the damaged first heat-insulating plate 9 at a fixed point without taking out all the mounting boxes 6, without interfering with the use of other first heat-insulating plates 9, realizing the rapid replacement and maintenance of the first heat-insulating plate 9, reducing the difficulty of replacing the first heat-insulating plate 9, improving the practicability of equipment use. The position of the support plate 21 is positioned by the limit post 34, and then the movement of the first slider 24 is restricted by the first fixing screw 22 and the positioning of the connecting hole 16 and the connecting rod 28 is realized, so that the connecting rod 28 can be quickly aligned with the connecting hole 16 and the position of the mounting box 6 can be positioned, further improving the speed when replacing the first heat-insulating plate 9.

[0037] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

[0038] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment contains only one independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard 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 waterproof and heat-insulating energy-saving building curtain wall, comprising a curtain wall body (1), a plurality of mounting plates (2) being fixedly mounted on one side of the curtain wall body (1), characterized in that: The curtain wall body (1) is provided with a cavity inside and a partition (17) is fixedly installed in the cavity. A plurality of groups of installation boxes (6) located on the partition (17) are provided in the cavity of the curtain wall body (1). A first insulation board (9) is provided in the installation box (6). The plurality of groups of installation boxes (6) are distributed in the same plane and two adjacent groups of installation boxes (6) are in contact with each other. The two outer groups of installation boxes (6) are in contact with the inner wall of the curtain wall body (1). The width of the cavity inside the curtain wall body (1) is twice the thickness of the installation boxes (6). The partition (17) is provided with a first fixing screw ( 22), the curtain wall body (1) is provided with a first groove (3) located on the side where the mounting plate (2) is located, the mounting box (6) enters and exits the cavity from the first groove (3), a first shielding plate (4) for closing the first groove (3) is hingedly connected to the curtain wall body (1), a second groove (31) is provided on the side where the mounting plate (2) is located on the curtain wall body (1), and a second shielding plate (32) for closing the second groove (31) is hingedly connected to the curtain wall body (1), and a second insulation plate (33) is fixedly installed on the surface of the second shielding plate (32) entering the cavity of the curtain wall body (1).

2. A waterproof and heat-insulating energy-saving building curtain wall according to claim 1, characterized in that: One side surface of the installation box (6) is an open structure and the first insulation board (9) is located in the installation box (6); a cover plate (7) is fixedly mounted at the opening of the installation box (6) by means of fixing screws; a sinking groove is provided on the end surface of the installation box (6) and the cover plate (7) abuts against the end surfaces of the upper and lower sinking grooves of the installation box (6); and the outer surface of the cover plate (7) is flush with the end surface of the installation box (6).

3. A waterproof and heat-insulating energy-saving building curtain wall according to claim 2, characterized in that: An airbag (8) is fixedly mounted on the cover plate (7), the airbag (8) is located in the mounting box (6) and is used to compress the first insulation board (9), a first slot (10) is opened on the cover plate (7), an adjustment chamber (11) is fixedly mounted in the first slot (10), the adjustment chamber (11) is communicated with the airbag (8), a piston plate (12) is slidably mounted in the adjustment chamber (11), a piston rod (13) is fixedly mounted on the piston plate (12), the piston rod (13) extends out of the adjustment chamber (11) and a connecting plate (15) is fixedly mounted on the end thereof, and an adjustment screw (14) for driving the connecting plate (15) to move is rotatably mounted in the first slot (10).

4. The waterproof and heat-insulating energy-saving building curtain wall according to claim 1, characterized in that: The partition (17) is provided with a slide groove (18), and a second slot (19) connected to the slide groove (18) is provided at a position on the partition (17) corresponding to the installation box (6). A plurality of groups of installation columns (20) are rotatably installed on the partition (17), and the installation columns (20) are distributed corresponding to the second slots (19). A support plate (21) is fixedly installed at the end of the installation column (20), and a first fixing screw (22) is threadedly installed on the support plate (21). The first fixing screw (22) is used in conjunction with a connecting hole (16) provided at the bottom of the installation box (6).

5. The waterproof and heat-insulating energy-saving building curtain wall according to claim 4, characterized in that: A transverse plate (23) located below the partition plate (17) is fixedly installed in the curtain wall body (1), a first slider (24) slides on the transverse plate (23), a second slider (25) is slidably installed on the first slider (24), two groups of guide rods (26) are fixedly installed on the second slider (25), a third slider (27) is slidably installed on the two groups of guide rods (26), and a connecting rod (28) used in conjunction with the connecting hole (16) is fixedly installed on the third slider (27).

6. The waterproof and heat-insulating energy-saving building curtain wall according to claim 5, characterized in that: A support rod (29) is fixedly mounted on the third sliding block (27), and a second fixing screw rod (30) is threadedly connected to the third sliding block (27).

7. The waterproof and heat-insulating energy-saving building curtain wall according to claim 6, characterized in that: A plurality of groups of limit columns (34) are fixedly mounted on the partition plate (17), the limit columns (34) corresponding to the positions of the support plate (21), and the limit columns (34) are used to limit the rotation limit position of the support plate (21).

Citation Information

Patent Citations

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