Photovoltaic glass and colored glaze glass splicing construction method for light shed

By combining the design and installation methods of colored glaze glass, photovoltaic glass and insulated laminated glass, the problems of single function and spontaneous breakage of curtain wall glass are solved, realizing the multifunctionality and aesthetics of the lighthouse, and reducing the risk of temperature stress and water seepage.

CN117052025BActive Publication Date: 2025-11-25广东省第四建筑工程有限公司
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Patent Information

Application Number
CN202311218905.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-20
Publication Date
2025-11-25
Estimated Expiration
2043-09-20

AI Technical Summary

Technical Problem

Existing curtain wall glass has limited functionality and cannot meet the diverse needs of buildings. In irregularly shaped curtain walls, the coordination and compatibility of different glass components are poor, and temperature stress can lead to the risk of spontaneous breakage.

Method used

It uses a combination of colored enamel glass, photovoltaic glass, and insulated laminated glass, all made from the same type of glass sheet. The colored enamel glass and photovoltaic glass surround the insulated laminated glass. The height of the secondary keel is adjusted to coordinate temperature stress, and the aesthetics and waterproofing are improved through ring wrapping and sealing treatment.

Benefits of technology

It achieves the multi-functionality of the lighthouse, possessing the energy-saving effects of aesthetics, lighting, protection, and solar energy utilization, reducing the risk of glass spontaneous breakage, and improving the aesthetics and waterproof performance of the installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a photovoltaic glass and colored glaze glass splicing construction method for a light shed, and relates to the technical field of building curtain wall construction. In order to solve the problem that the functionality of curtain wall glass is relatively single and cannot meet the diversified needs of buildings, the application comprises the following steps: S1, supporting system installation: hoisting the main beam of a steel structure to a roof and fixing the main beam on a support, fixing a main batten on the main beam through a connecting piece, fixing a secondary batten on the main batten, and crosswise arranging the secondary batten and the main batten; S2, glass installation: installing glass on the secondary batten, wherein the glass comprises colored glaze glass, photovoltaic glass and hollow laminated glass, the photovoltaic glass is internally provided with a photovoltaic panel, and the colored glaze glass and the photovoltaic glass are both made of the same kind of glass original sheet as the hollow laminated glass; and S3, glass joint treatment: adding a filler in the joint between adjacent glasses and making the filler flush with the glasses. The application has the effect of making the light shed have diversified functions.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of building curtain wall construction, in particular to a photovoltaic glass and colored glaze glass splicing construction method for a light shed. BACKGROUND

[0002] With the rapid development of the construction industry, people are no longer satisfied with a single architectural style, curtain walls, as an important part of modern architectural decoration, are more and more widely used in public building outer walls, and the style of the curtain wall is no longer single and conservative, and the shape is more and more rich, and the lines are more and more lively. Although the use of special-shaped curtain walls meets the pursuit of people for the architectural shape with rich and aesthetic sense, in practice, many curtain walls are installed by using the same type of glass, resulting in single functionality and failing to meet the diversified needs of buildings. SUMMARY

[0003] In order to make the light shed have diversified functions, the application provides a photovoltaic glass and colored glaze glass splicing construction method for a light shed.

[0004] The photovoltaic glass and colored glaze glass splicing construction method for a light shed provided by the application adopts the following technical scheme:

[0005] A photovoltaic glass and colored glaze glass splicing construction method for a light shed comprises the following steps:

[0006] S1, support system installation: first, hoist the main beam of the steel structure to the roof and fix it on the support, then fix the main ridge on the main beam through the connecting piece, and fix the secondary ridge on the main ridge, and the secondary ridge and the main ridge are arranged in a cross shape;

[0007] S2, glass installation: install the glass on the secondary ridge, the glass comprises colored glaze glass, photovoltaic glass and hollow laminated glass, the photovoltaic glass has a photovoltaic panel inside, and the colored glaze glass and the photovoltaic glass are both made of the same glass original sheet as the hollow laminated glass;

[0008] S3, glass joint treatment: add a filler to the joint between the adjacent glasses, and make the filler flush with the glass.

[0009] By adopting the technical scheme, the colored glaze glass can be used to realize the beautiful effect of writing on the glass, the photovoltaic panel in the photovoltaic glass can be used to realize the energy-saving effect of solar energy utilization, the hollow laminated glass has good lighting performance, and the light shed formed by the combination of the three kinds of glass can realize the functions of lighting, protection and solar energy collection, so as to achieve the energy-saving goal of natural lighting and solar energy utilization. In addition, since the production process and composition of the three kinds of glass are different, the compatibility of the glass assembly is poor, and the colored glaze glass and the photovoltaic glass are made of the same glass sheet as the hollow laminated glass, so that the different glasses can be perfectly compatible.

[0010] Preferably, in the step S2, the glass is arranged in a ring shape, the inner ring is the colored glaze glass, the middle ring is the photovoltaic glass, and the outer ring is the hollow laminated glass.

[0011] By adopting the technical scheme, three different glasses are used, and different glasses will produce different deformations under temperature changes, so that the glasses have different self-explosions. The arrangement of the glasses is in the form of colored glaze glass→photovoltaic glass→hollow laminated glass, which realizes the transition compatibility and dispersion of temperature stress of different glasses and reduces the extrusion self-explosion caused by the different temperature stresses of the hollow laminated glass, the photovoltaic glass and the colored glaze glass.

[0012] Preferably, in the step S2, the installation height of the secondary keel under the colored glaze glass and the hollow laminated glass is equal, and the installation height of the secondary keel under the photovoltaic glass is lower than that of the secondary keel under the other positions.

[0013] By adopting the technical scheme, since the photovoltaic glass contains photovoltaic panels, the photovoltaic glass is thicker than the colored glaze glass and the hollow laminated glass. By adjusting the installation height of the secondary keel under the photovoltaic glass, the outer surfaces of the colored glaze glass, the photovoltaic glass and the hollow laminated glass are flush after installation, which not only improves the aesthetic effect but also facilitates drainage.

[0014] Preferably, in the step S1, the main keel is located between two connecting pieces, the connecting piece is an L-shaped steel plate, one side of the connecting piece is welded to the main beam, and the other side of the connecting piece is connected to the main keel through bolts.

[0015] By adopting the technical scheme, the connecting piece is used to fix the main keel on the steel beam, so as to ensure the connection stability of the support system.

[0016] Preferably, in the step S1, a plurality of bases are installed on the secondary keel, a glass frame is connected to the base, and the glass is installed in the glass frame.

[0017] By adopting the technical scheme, the glass is fixed in the frame, and the frame is installed on the base, so that the glass frame can fix the glass on the secondary keel.

[0018] As preferred, the step S3 further comprises the following steps:

[0019] A1, cleaning the joint between the glass plates with a cleaning agent;

[0020] A2, adding a filler to the joint between the adjacent glass, the filler filling the joint, the filler being a thermal insulation material;

[0021] A3, injecting glue into the joint to fix the filler in the joint;

[0022] A4, smoothing the surface of the filled joint.

[0023] By adopting the above technical scheme, the joint is first cleaned and the filler is added to the joint, then the filler is fixed in the joint by injecting glue, and the filler in the joint is smoothed to be flush with the surface of the glass. On the one hand, it increases the beauty, and on the other hand, it seals the joint to reduce the possibility of water seepage.

[0024] As preferred, the step A3 further comprises pasting protective tape on the glass on both sides of the joint before injecting glue.

[0025] By adopting the above technical scheme, the protective tape can reduce the possibility of glue sticking to the glass during construction.

[0026] As preferred, the step S3 further comprises installing a water tank, the water tank comprising a tank body and a plurality of hanging ears fixedly connected to the tank body, the hanging ears being fixed to the base by screws.

[0027] By adopting the above technical scheme, the water tank is usually fixed to the ceiling by welding. However, the ceiling is exposed to the sun and rain for a long time, and the temperature stress is large, which causes the water tank to crack and fall off after a long time, resulting in water leakage and seepage in the water tank drainage ditch. By fixing the hanging ears to the base by screws, the base protects the connection and prolongs the service life of the water tank.

[0028] As preferred, a joint is reserved between adjacent water tanks, and the joint is sealed.

[0029] By adopting the above technical scheme, there is a joint when the water tanks are connected. In order to reduce the water seepage at the joint, the joint needs to be sealed and waterproofed.

[0030] In summary, the present application has at least one of the following beneficial technical effects:

[0031] 1. The colored glaze glass can be used for writing and achieving aesthetic effect, the photovoltaic panel in the photovoltaic glass can generate electricity by collecting heat to achieve the energy-saving effect of solar energy utilization, and the hollow laminated glass has good lighting property. The light shed formed by the combination of various glasses can realize the functions of light shed lighting, protection and solar heat collection, and achieve the energy-saving goal of natural lighting and solar energy utilization. Since the production process and composition of different glasses are different, the compatibility of the assembled glass is poor. The colored glaze glass and the photovoltaic glass are made of the same glass sheet as the hollow laminated glass, which can perfectly coordinate and match different glasses.

[0032] 2. Three different glasses are used, and different glasses will produce different deformation under temperature change, resulting in different self-explosion of the glass. The arrangement of the glass is in the form of colored glaze glass→ photovoltaic glass→ hollow laminated glass in turn, which realizes the transition, compatibility and dispersion of temperature stress of different glasses, and reduces the extrusion self-explosion caused by the different temperature stresses of the hollow laminated glass, the photovoltaic glass and the colored glaze glass.

[0033] 3. Since the photovoltaic glass contains photovoltaic panels, the photovoltaic glass is thicker than the colored glaze glass and the hollow laminated glass. The installation height of the secondary keel under the photovoltaic glass is adjusted, so that the outer surfaces of the colored glaze glass, the photovoltaic glass and the hollow laminated glass are flush after installation, which not only improves the aesthetic effect but also facilitates drainage. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 is the construction process diagram of the embodiment of the application;

[0035] Figure 2 is the arrangement diagram of the glass of the embodiment of the application;

[0036] Figure 3 is the sectional view of the support system of the embodiment of the application.

[0037] BRIEF DESCRIPTION OF DRAWINGS 1. support system; 11, main beam; 12, main keel; 13, secondary keel; 14, connecting piece; 21, colored glaze glass; 22, photovoltaic glass; 23, hollow laminated glass. DETAILED DESCRIPTION

[0038] The following will be described in detail with reference to the accompanying drawings Figures 1-3 The application will be further described in detail.

[0039] The embodiment of the application discloses a photovoltaic glass and colored glaze glass splicing construction method for a light shed.

[0040] A photovoltaic glass and colored glaze glass splicing construction method for a light shed, referring to Figure 1 , comprising the following steps:

[0041] S1, support system 1 installation: first, the main beam 11 of the steel structure is hoisted to the roof by the crane, the main beam 11 adopts H-shaped steel, and a full scaffold operation platform is erected under the light shed before hoisting the main beam 11, thereby serving as an operation platform for construction personnel and a high-altitude safety protection measure. Before hoisting the main beam 11, traction ropes are arranged at both ends of the main beam 11, which can adjust the orientation of the main beam 11, thereby reducing the possibility of collision between the main beam 11 and the curtain wall or scaffold during hoisting. At the same time, the orientation of the main beam 11 can be adjusted by the traction ropes when the main beam 11 falls, so that the main beam 11 can be accurately aligned with the support panel. After the main beam 11 is hoisted, the position of the main beam 11 needs to be corrected, and then the main beam 11 is welded and fixed with the support panel.

[0042] Referring to Figure 2 , the main beam 11 is provided with a main keel 12, and the main keel 12 and the main beam 11 are cross-shaped, the main keel 12 and the main beam 11 are fixed by a connecting piece 14, the connecting piece 14 is an L-shaped steel plate, the connecting piece 14 is arranged on both sides of the main keel 12, and the two connecting pieces 14 are symmetrically arranged with the axis of the main keel 12. One side of the connecting piece 14 is attached to the upper surface of the main beam 11 and is welded and fixed, and the other side of the connecting piece 14 is attached to the side wall of the main keel 12 and is fixed and connected by bolts. The main keel 12 is welded with a secondary keel 13, and the secondary keel 13 is cross-shaped with the main keel 12.

[0043] The secondary keel 13 is provided with a plurality of bases, and the base is fixedly connected with a glass frame for accommodating glass. The glass frame can protect the corners of the glass and reduce the damage to the corners of the glass.

[0044] S2, glass installation: the glass includes colored glaze glass 21, photovoltaic glass 22 and hollow laminated glass 23, referring to Figure 3 The photovoltaic glass 22 has a photovoltaic panel, which generates electricity through solar energy and enters the low-voltage system in the building, reducing the power consumption and achieving energy-saving effect. The colored glaze glass 21 can increase the aesthetic appearance of the light shed, and the hollow laminated glass 23 can enhance the lighting of the light shed. The light shed formed by the combination of the three types of glass can realize lighting, protection and solar heat collection, etc., achieving the energy-saving goal of natural lighting and solar energy utilization.

[0045] The photovoltaic glass 22 and the colored glaze glass 21 are made by using the same glass raw sheet as the hollow laminated glass 23, and the colored glaze glass 21, the photovoltaic glass 22 and the hollow laminated glass 23 are arranged in a ring shape, wherein the inner ring is the colored glaze glass 21, the middle ring is the photovoltaic glass 22, and the outer ring is the hollow laminated glass 23. Since the production process and the glass composition of the photovoltaic glass 22, the hollow laminated glass 23 and the colored glaze glass 21 are different, the glass thicknesses are inconsistent, and different deformations are generated under temperature changes, so that the glass has different self-explosion properties. The photovoltaic glass 22 and the colored glaze glass 21 are made by using the same glass raw sheet as the hollow laminated glass 23, and the colored glaze glass 21 is arranged in the ring shape, the photovoltaic glass 22 is arranged in the middle ring, and the hollow laminated glass 23 is arranged in the outer ring, so that the transition compatibility and the dispersion of temperature stress of different glasses are realized, and the extrusion self-explosion caused by the different temperature stresses of the hollow laminated glass 23, the photovoltaic glass 22 and the colored glaze glass 21 is reduced.

[0046] Since the photovoltaic glass 22 contains photovoltaic panels, the thickness of the photovoltaic glass 22 is higher than that of the colored glaze glass 21 and the hollow laminated glass 23, and the installation height of the secondary keel 13 under the photovoltaic glass 22 is lower than that of the secondary keel 13 under the colored glaze glass 21 and the hollow laminated glass 23, so that the outer surfaces of the colored glaze glass 21, the photovoltaic glass 22 and the hollow laminated glass 23 are flush after installation, which not only improves the aesthetic effect but also facilitates drainage.

[0047] S3, the joint between the glass plates is filled and sealed, mainly including the following steps:

[0048] A1, after the impurities in the joint are removed, the joint between the glass plates is cleaned with xylene as a cleaning agent.

[0049] A2, the filler is added to the joint between the adjacent glass plates to fill the joint, and the filler is a heat preservation material to reduce the heat transferred from the joint to the light shed. In this embodiment, the filler can be a foam rod or a foam strip.

[0050] A3, the protective tape is pasted on the glass on both sides of the joint, and then the glue is injected into the joint to fix the filler in the joint. The protective tape can prevent the glue from adhering to the glass, and the protective tape can protect the glass.

[0051] A4, after the glue is injected, the filler in the joint is smoothed to be flush with the surface of the glass, which not only increases the aesthetic effect but also seals the joint to reduce the possibility of water seepage. Then the protective tape is torn off. If the protective tape is too tightly bonded, the protective tape can be dissolved and removed by using a solvent.

[0052] The installation sink is made of stainless steel, and most of the sinks are fixed on the ceiling by welding. The ceiling is exposed to the sun and rain for a long time, and the temperature stress is large, which causes the sink weld to crack and fall off after a long time, resulting in sink drainage ditch leakage and seepage. In the present application, the sink includes a tank body and a lug fixedly connected to both ends of the tank body. The lug is fixed to the base by screws, and the base protects the connection and increases the service life of the sink. Adjacent sinks are provided with a joint, which is first cleaned, then a foam stick is inserted into the joint, and a protective sticker is attached to both sides of the joint, and silicone sealant is injected into the joint for sealing treatment. After injecting the glue, the surface of the glue joint is smoothed and the excess glue is removed. After the glue injection is completed, the protective sticker is removed. The sealant should not be contaminated with dust and scratched before it is completely hardened. After the sealant is completely hardened, the stainless steel sink is subjected to a water storage test. If a leak is found, the sealant in the joint is removed completely, the gap between the stainless steel sinks is cleaned again, and the repair is resealed.

[0053] The above are preferred embodiments of the present application, but do not limit the protection scope of the present application, therefore: any equivalent changes made in accordance with the structure, shape, principle of the present application should be covered within the protection scope of the present application.

[0054] The above are preferred embodiments of the present application, but do not limit the protection scope of the present application, therefore: any equivalent changes made in accordance with the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A photovoltaic glass and stained glass splicing construction method for a light booth, characterized in that, It comprises the following steps: S1, support system (1) installation: first, the main girder (11) of steel structure is hoisted to the roof, and is fixed on the support, then the main keel (12) is fixed on the main girder (11) through the connecting piece (14), the secondary keel (13) is fixedly connected on the main keel (12), and the secondary keel (13) and the main keel (12) are cross arranged; S2, glass installation: the glass is installed on the secondary keel (13), the glass includes colored glaze glass (21), photovoltaic glass (22) and hollow laminated glass (23), the photovoltaic glass (22) has a photovoltaic panel, and the colored glaze glass (21) and the photovoltaic glass (22) are made of the same glass original sheet as the hollow laminated glass (23); S3, glass joint treatment: the filler is added to the joint between the adjacent glass, and the filler is flush with the glass; In the step S2, the glass installation adopts annular winding design, the inner ring is colored glaze glass (21), the middle ring is photovoltaic glass (22), and the periphery is hollow laminated glass (23).

2. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 1, characterized in that, In the step S2, the installation height of the secondary keel (13) under the hollow laminated glass (23) and the colored glaze glass (21) is equal, and the installation height of the secondary keel (13) under the photovoltaic glass (22) is lower than that of the secondary keel (13) at other positions.

3. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 1, characterized in that, In the step S1, the main keel (12) is located between the two connecting pieces (14), the connecting piece (14) is an L-shaped steel plate, one side of the connecting piece (14) is welded with the main girder (11), and the other side of the connecting piece (14) is connected with the main keel (12) through bolts.

4. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 1, characterized in that, In the step S1, a plurality of bases are installed on the secondary keel (13), and a glass frame is connected to the base, and the glass is installed in the glass frame.

5. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 1, characterized in that, In the step S3, it further comprises the following steps: A1, the joint between the glass plates is cleaned with a cleaning agent; A2, the filler is added to the joint between the adjacent glass, and the filler fills the joint, and the filler is a heat preservation material; A3, the filler is fixed in the joint by injecting glue in the joint; A4, the surface of the filled joint is smoothed.

6. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 5, characterized in that, In the step A3, protective adhesive tape is pasted on the glass on both sides of the joint before injecting glue.

7. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 1, characterized in that, In the step S3, a water tank is further installed, the water tank comprises a tank body and a plurality of hanging ears fixedly connected to the tank body, and the hanging ears are fixed with the base through screws.

8. The photovoltaic glass and enamel glass splicing construction method for a light booth according to claim 7, characterized in that, A joint is reserved between adjacent water tanks, and the joint is sealed.

Citation Information

Patent Citations

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