Arc-shaped hyperbolic daylighting roof for architectural design

By combining laminated glass with an adjustable angle circular support, fluorocarbon coating, and a sealing structure, the problems of difficult installation and poor appearance of curved hyperbolic skylight glass have been solved, achieving convenient installation and improved aesthetics.

CN223738823UActive Publication Date: 2025-12-30SHANDONG JINDAN CURTAIN WALL CO LTD
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Patent Information

Application Number
CN202520082441.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-30
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing curved hyperbolic skylight glass is difficult to install, has a poor appearance, is easily damaged, is difficult to process, has high costs, and is difficult to control in terms of quality.

Method used

Laminated glass is fixed to an aluminum alloy support plate, and a combination of adjustable angle circular supports, fluorocarbon spraying, nylon gaskets and sealant is used to achieve stable installation and improve the aesthetics of the glass.

Benefits of technology

It facilitates glass installation, improves the convenience and aesthetics of installation, enhances the stability and service life of the glass, and reduces installation difficulty and cost.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223738823U_ABST
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Abstract

The utility model discloses an arc-shaped hyperbolic daylighting roof for architectural design, which comprises laminated glass, and the bottom of the laminated glass is fixed on an aluminum alloy supporting plate through structural adhesive; the device is characterized in that the bottom of the aluminum alloy supporting plate is fixed to an aluminum alloy pressing plate through stainless steel machine-made screws, the aluminum alloy pressing plate is connected with an angle adjusting round support through stainless steel rivets, and the bottom of the angle adjusting round support rotates in an aluminum alloy base; the bottom of the aluminum alloy base is connected with the top of a steel rectangular pipe opening through a stainless steel machine-made screw, a steel inserting core is fixed to the top of the steel rectangular pipe opening, and a right-angle steel pipe opening penetrates through the top of the steel rectangular pipe opening. The arc-shaped hyperbolic daylighting roof for building design is provided with the angle adjusting round supports, the angle of the laminated glass can be adjusted through the angle adjusting round supports, the laminated glass is convenient to install, and therefore the purpose of convenient installation is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of arc-shaped hyperbolic skylight technology, specifically an arc-shaped hyperbolic skylight for architectural design. Background Technology

[0002] A curved hyperbolic skylight is a special structural form used for lighting in buildings. It combines the features of a curved shape and a hyperbolic surface, which can not only meet the functional requirements of building lighting, but also add a unique visual effect to the building's appearance;

[0003] The hyperboloid skylight has an irregular planar projection, and the four-point height difference exists between the four square glass panels. When most glass panels are installed, the four installation points are not coplanar.

[0004] To address the aforementioned shortcomings, the hyperbolic irregular skylight curtain wall with publication number CN207776187U adopts an integrated design and installation of the curtain wall frame and the main beam. It fully utilizes the high precision characteristics of aluminum alloy main structure processing and installation. In addition to its modern, simple and transparent overall appearance, it can also make full use of the main beam to evenly bear the curtain wall load.

[0005] In actual use, although the above-mentioned device can improve the installation accuracy, glass is a brittle material with low flexibility. When using flat glass to fit a hyperbolic glass curtain wall structure, there may be situations where installation is impossible or even the glass breaks. Moreover, hyperbolic curved glass is difficult to process, costly, and difficult to control in terms of quality.

[0006] Therefore, we proposed an arched hyperbolic skylight for architectural design that can effectively solve the above problems. Utility Model Content

[0007] The purpose of this utility model is to provide an arc-shaped hyperbolic skylight for architectural design, so as to solve the problems mentioned in the background art of the difficulty in installing skylight glass and the poor appearance effect of the current skylight glass on the market.

[0008] To achieve the above objectives, this utility model provides the following technical solution: an arc-shaped hyperbolic skylight for architectural design, comprising laminated glass, wherein the bottom of the laminated glass is fixed to an aluminum alloy support plate by structural adhesive;

[0009] Its features are:

[0010] The bottom of the aluminum alloy support plate is fixed to the aluminum alloy pressure plate by stainless steel machine screws, and the aluminum alloy pressure plate is connected to the adjustable angle circular support by stainless steel rivets. The bottom of the adjustable angle circular support rotates inside the aluminum alloy base. The bottom of the aluminum alloy base is connected to the top of the steel rectangular tube opening by stainless steel machine screws. A steel insert is fixed to the top of the steel rectangular tube opening, and a right-angle steel tube opening passes through the top of the steel rectangular tube opening. A steel square tube opening is fixed to the top of the steel rectangular tube opening, and the bottom of the steel square tube opening is connected to the main steel body.

[0011] Preferably, the outer walls of both the rectangular steel tube opening and the square steel tube opening are coated with fluorocarbon.

[0012] Preferably, a first nylon pad is attached to the inner end of the laminated glass, and the bottom of the first nylon pad is attached to the aluminum alloy support plate. A first sealant is provided between the laminated glass panes, and the first sealant is located on the top of the aluminum alloy support plate.

[0013] Preferably, the top side of the aluminum alloy tray is provided with a double-sided adhesive, and the top of the double-sided adhesive is bonded with laminated glass.

[0014] Preferably, the aluminum alloy support plate is provided with a second sealant, and the second sealant is connected to the aluminum alloy pressure plate.

[0015] Preferably, the bottom of the aluminum alloy base is fitted with a second nylon pad, and the bottom of the second nylon pad is fitted with a steel rectangular tube opening, and the thickness of the second nylon pad is 2 mm.

[0016] Preferably, the stainless steel rivets are provided in three sets, and the three sets of stainless steel rivets are equally spaced on the aluminum alloy support plate.

[0017] Compared with the prior art, the beneficial effects of this utility model are: the curved hyperbolic skylight design facilitates installation and is aesthetically pleasing; the adjustable circular support facilitates the installation of laminated glass, thus achieving an easy installation effect; and the fluorocarbon coating enhances the aesthetics of the installation and use. The specific details are as follows:

[0018] (1) An adjustable angle circular support is provided. The angle of the laminated glass can be adjusted by adjusting the angle circular support, and it is also convenient to install the laminated glass, thereby achieving the purpose of easy installation.

[0019] (2) A rectangular steel pipe opening is provided. Fluorocarbon spraying is applied to the rectangular steel pipe opening to make it aesthetically pleasing, resulting in a better appearance after installation.

[0020] (3) A first nylon pad is provided, which is attached to the inner end of the laminated glass and the bottom of the first nylon pad is attached to the aluminum alloy support plate. A first sealant is provided between the laminated glass and the first sealant is placed on the top of the aluminum alloy support plate, so that the first nylon pad can prevent damage to the laminated glass.

[0021] (4) A double-sided adhesive is provided. A double-sided adhesive is provided on the side of the top of the aluminum alloy support plate, and the top of the double-sided adhesive is attached to the laminated glass, so that the double-sided adhesive can further protect the laminated glass.

[0022] (5) A second nylon pad is provided, which is attached to the bottom of the aluminum alloy base and the bottom of the second nylon pad is attached to the steel rectangular tube opening. The thickness of the second nylon pad is 2MM, so that the second nylon pad can protect the aluminum alloy base and the steel rectangular tube opening. Attached Figure Description

[0023] Figure 1 This is a front view structural diagram of the present invention;

[0024] Figure 2 This is a side view of the structure of this utility model;

[0025] Figure 3 This utility model Figure 1 Enlarged structural diagram at point A in the middle;

[0026] Figure 4 This is a front view structural diagram of the stainless steel machine screw of this utility model;

[0027] Figure 5 This is a front view structural diagram of the stainless steel rivet of this utility model.

[0028] In the diagram: 1. Laminated glass; 2. First nylon gasket; 3. Aluminum alloy support plate; 4. Stainless steel machine screw; 5. First sealant; 6. Double-sided adhesive; 7. Second sealant; 8. Stainless steel rivet; 9. Aluminum alloy pressure plate; 10. Right-angle steel pipe opening; 11. Steel insert; 12. Adjustable angle round support; 13. Aluminum alloy base; 14. Second nylon gasket; 15. Rectangular steel pipe opening; 16. Square steel pipe opening. Detailed Implementation

[0029] 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.

[0030] Example 1: This utility model solves the problems of difficult installation and poor appearance of existing skylight glass. By adjusting the angle of the circular support 12, the installation of the laminated glass 1 can be facilitated. The following is disclosed:

[0031] The laminated glass 1 is fixed to the aluminum alloy support plate 3 by structural adhesive at its bottom. The bottom of the aluminum alloy support plate 3 is fixed to the aluminum alloy pressure plate 9 by stainless steel machine screws 4. The aluminum alloy pressure plate 9 is connected to the angle adjustment round support 12 by stainless steel rivets 8. The bottom of the angle adjustment round support 12 rotates inside the aluminum alloy base 13. The bottom of the aluminum alloy base 13 is connected to the top of the steel rectangular tube opening 15 by stainless steel machine screws 4. A steel insert 11 is fixed to the top of the steel rectangular tube opening 15. A right-angle steel tube opening 10 passes through the top of the steel rectangular tube opening 15. A steel square tube opening 16 is fixed to the top of the steel rectangular tube opening 15. The bottom of the steel square tube opening 16 is connected to the main steel body.

[0032] refer to Figures 1 to 5 The aluminum alloy support plate 3 is fixed to the laminated glass 1 with structural adhesive, which can fix the laminated glass 1. Then, the first nylon pad 2 can separate the laminated glass 1 to avoid scratching between the laminated glass 1 and thus protect the laminated glass 1. Then, the first sealant 5 can seal between the laminated glass 1 to prevent gaps from forming between the laminated glass 1. Then, by adjusting the angle circular support 12, the aluminum alloy support plate 3 can be rotated to adjust the laminated glass 1. Therefore, by facilitating the installation of the laminated glass 1, the ease of installation is improved.

[0033] Example 2: This utility model solves the problem of poor aesthetics in existing products by using fluorocarbon spraying to improve aesthetics. The following is disclosed:

[0034] The outer walls of both the rectangular steel tube opening 15 and the square steel tube opening 16 are coated with fluorocarbon.

[0035] refer to Figures 1 to 5 By spraying fluorocarbon onto the outer walls of the rectangular steel tube opening 15 and the square steel tube opening 16, the fluorocarbon coating can cover the rectangular steel tube opening 15 and the square steel tube opening 16, thereby improving the aesthetics of the installation. Furthermore, the double-sided adhesive 6 can further improve the stability of the laminated glass 1 after installation, and the second sealant 7 can further improve the sealing performance of the installation.

[0036] Example 3: This utility model solves the problem of insufficient stability in the installation of laminated glass 1 in existing systems. The stability of the laminated glass 1 installation can be improved by using double-sided adhesive 6. The following is disclosed:

[0037] A first nylon pad 2 is attached to the inner end of the laminated glass 1, and the bottom of the first nylon pad 2 is attached to the aluminum alloy support plate 3. A first sealant 5 is provided between the laminated glass 1s. The first sealant 5 is located on the top of the aluminum alloy support plate 3. A double-sided adhesive 6 is provided on the side of the top of the aluminum alloy support plate 3, and the laminated glass 1 is attached to the top of the double-sided adhesive 6. A second sealant 7 is provided on the aluminum alloy support plate 3, and the second sealant 7 is connected to the aluminum alloy pressure plate 9. A second nylon pad 14 is attached to the bottom of the aluminum alloy base 13, and a steel rectangular tube opening 15 is attached to the bottom of the second nylon pad 14. The thickness of the second nylon pad 14 is 2 mm. Three sets of stainless steel rivets 8 are provided, and the three sets of stainless steel rivets 8 are equally spaced on the aluminum alloy support plate 3.

[0038] refer to Figures 1 to 5 The aluminum alloy support plate 3 is fixed by the stainless steel rivets 8, which facilitates the rotation of the angle-adjustable circular support 12. The aluminum alloy pressure plate 9 provides support, thereby improving the stability of the laminated glass 1. The right-angle steel tube opening 10 provides support, and the aluminum alloy base 13 and the steel rectangular tube opening 15 are connected by the stainless steel machine screws 4. The second nylon pad 14 reduces the rigid connection between the steel rectangular tube opening 15 and the aluminum alloy base 13, thereby improving the service life. The right-angle steel tube opening 10 is fixed by the steel insert 11, and the laminated glass 1 is stably installed by the steel square tube opening 16.

[0039] Working principle: When using this type of arched hyperbolic skylight for architectural design, firstly, refer to... Figures 1 to 5 The aluminum alloy support plate 3 is fixed to the laminated glass 1 by structural adhesive. Then, the first nylon pad 2 can separate the laminated glass 1 to avoid scratching between the laminated glass 1. Then, the first sealant 5 can seal the laminated glass 1. Then, by adjusting the angle circular support 12, the aluminum alloy support plate 3 can rotate the laminated glass 1. Therefore, by facilitating the installation of the laminated glass 1, the ease of installation is improved.

[0040] refer to Figures 1 to 5 Fluorocarbon is sprayed onto the outer walls of the rectangular steel tube opening 15 and the square steel tube opening 16. The fluorocarbon spraying can cover the rectangular steel tube opening 15 and the square steel tube opening 16. The double-sided adhesive 6 can further improve the stability of the laminated glass 1 after installation, and the second sealant 7 can further improve the sealing performance of the installation.

[0041] refer to Figures 1 to 5The aluminum alloy support plate 3 can be fixed by the stainless steel rivets 8, which facilitates the rotation of the angled circular support 12 and improves the stability of the laminated glass 1. The right-angle steel tube opening 10 can provide support. The second nylon pad 14 can reduce the rigid connection between the steel rectangular tube opening 15 and the aluminum alloy base 13, thereby improving the service life. The right-angle steel tube opening 10 can be fixed by the steel insert 11, and the steel square tube opening 16 can allow the laminated glass 1 to be installed stably.

[0042] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0043] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. An arc-shaped hyperbolic daylighting roof for architectural design, comprising laminated glass (1), the bottom of the laminated glass (1) is fixed on an aluminum alloy supporting plate (3) through structural glue; Characterized in that: the bottom of the aluminum alloy supporting plate (3) is fixed with an aluminum alloy pressing plate (9) through stainless steel machine screws (4), the aluminum alloy pressing plate (9) is connected with an angle-adjusting round support (12) through stainless steel rivets (8), the bottom of the angle-adjusting round support (12) rotates in the inside of an aluminum alloy base (13), the top of the aluminum alloy base (13) is connected with the top of a steel rectangular pipe mouth (15) through stainless steel machine screws (4), the top of the steel rectangular pipe mouth (15) is fixed with a steel plug core (11), the top of the steel rectangular pipe mouth (15) penetrates a right-angle steel pipe mouth (10), the top of the steel rectangular pipe mouth (15) is fixed with a steel square pipe mouth (16), and the bottom of the steel square pipe mouth (16) is connected with the main body steel.

2. The arched hyperbolic daylighting roof for architectural design according to claim 1, characterized in that: The outer walls of the steel rectangular pipe mouth (15) and the steel square pipe mouth (16) are sprayed with fluorocarbon.

3. The arc-shaped hyperbolic daylighting roof for architectural design of claim 1, wherein: The inner end of the laminated glass (1) is attached with a first nylon pad (2), the bottom of the first nylon pad (2) is attached on the aluminum alloy supporting plate (3), and a first sealant (5) is arranged between the laminated glass (1), and the first sealant (5) is arranged on the top of the aluminum alloy supporting plate (3).

4. The arc-shaped hyperbolic daylighting roof for architectural design of claim 1, wherein: The side end of the top of the aluminum alloy supporting plate (3) is provided with a double-sided tape (6), and the top of the double-sided tape (6) is attached with the laminated glass (1).

5. The arc-shaped hyperbolic daylighting roof for architectural design of claim 1, wherein: The aluminum alloy supporting plate (3) is provided with a second sealant (7), and the second sealant (7) is arranged in connection with the aluminum alloy pressing plate (9).

6. The arched hyperbolic daylighting roof for architectural design of claim 1, wherein: The bottom of the aluminum alloy base (13) is attached with a second nylon pad (14), the bottom of the second nylon pad (14) is attached with the steel rectangular pipe mouth (15), and the thickness of the second nylon pad (14) is 2MM.

7. The arched hyperbolic daylighting roof for architectural design of claim 1, wherein: The stainless steel rivets (8) are provided in three groups, and the three groups of stainless steel rivets (8) are arranged at equal intervals on the aluminum alloy supporting plate (3).

Citation Information

Patent Citations

  • Hyperbolic dysmorphism daylighting top curtain

    CN207776187U