A multifunctional insulating glass

By using vacuum sputtering transparent metal oxide glass in hollow glass and combining the connecting sealing assembly and breathable assembly, the glass surface is prevented from fogging and icing under the temperature difference in winter, and the insulation performance is improved, solving the problem of inconvenience in use in winter.

CN116658045BActive Publication Date: 2025-06-20ZHEJIANG QINGHAN TECH CO LTD
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Patent Information

Application Number
CN202310501372.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-06
Publication Date
2025-06-20
Estimated Expiration
2043-05-06

AI Technical Summary

Technical Problem

Existing hollow glass is prone to fog and freeze under the temperature difference in winter, which makes windows inconvenient and lacks in heat insulation and sound insulation.

Method used

The multi-functional hollow glass design is adopted, where the heating glass is vacuum sputtered transparent metal oxide glass, which is heated by both poles. The principle of hot gas rise is used to open ventilation holes up and down, and the sealing component and breathable component are combined to achieve anti-frost, anti-fog, anti-freeze, heating and heat insulation functions.

Benefits of technology

Effectively prevents fogging and icing on the glass surface, improves the thermal insulation performance of the glass, is simple to operate and easy to use, and is suitable for automotive, construction and home glass fields.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of insulating glass, and specifically relates to a multifunctional insulating glass, which includes a heating glass, an assembled glass, a connection and sealing assembly, a fixing assembly, and a plurality of air-permeable assemblies. The heating glass is a vacuum sputtered transparent metal oxide glass, and the assembled glass is an ordinary glass with the same size as the heating glass, adopting an insulating glass structure. The inner layer uses a coated metal oxide glass, and both poles are energized for heating. Utilizing the principle of hot air rising, ventilation holes are respectively opened at the upper and lower sides, and under the air curtain principle, it has functions of frost prevention, anti-fogging, anti-icing, heating, and heat insulation. Moreover, in cooperation with the connection and sealing assembly, it is simple and convenient to operate during maintenance and production assembly. And the design of the conversion pipe and the protective cover can keep the hollow part clean to the greatest extent while allowing air permeability. It is simple to operate, convenient to use, and has a wide range of functions. It can be used in fields such as automobiles and building household glass, and has a wide application range.
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Description

Technical Field

[0001] The present invention relates to the technical field of insulating glass, and particularly to a multifunctional insulating glass. Background Art

[0002] Insulating glass, as the name implies, is a composite glass with a certain gap distance in the center. It mainly consists of two pieces of glass and a connecting structure assembly. The connecting structure mainly plays the role of installation and fixation, and then it is installed and used through furniture frames such as aluminum alloy.

[0003] With the continuous progress of society and the continuous improvement of people's living environment, there are laminated glass, insulating glass, coated glass, vacuum glass, etc. on the market at present. Currently, the products are widely used in heat insulation and sound insulation, but they are prone to fogging under the temperature difference between inside and outside in winter, and even easy to freeze on the glass in cold weather. The most important problem of energy loss in houses lies in the windows, resulting in extremely inconvenient use. Summary of the Invention

[0004] The purpose of the present invention is to provide a multifunctional insulating glass to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A multifunctional insulating glass, the multifunctional insulating glass includes:

[0006] Heating glass, the heating glass is vacuum sputtered transparent metal oxide glass;

[0007] Assembled glass, the assembled glass is ordinary glass with the same size as the heating glass;

[0008] Connecting and sealing assembly, the connecting and sealing assembly is arranged between the heating glass and the assembled glass, and the connecting and sealing assembly includes a connecting and sealing frame and a connecting and sealing beam;

[0009] Fixing assembly, the fixing assembly is arranged on one side of the connecting and sealing frame and the connecting and sealing beam, and the fixing assembly includes two fixing rods;

[0010] A number of air permeable components, a number of the air permeable components are respectively inserted and arranged on both sides of the heating glass, and the air permeable components include a conversion tube and a protective cover.

[0011] Preferably, a splicing groove is opened on one side of both the heating glass and the assembled glass. The splicing groove is arranged in a square frame structure, and hanging grooves are opened on all four sides in the splicing groove.

[0012] Preferably, the connecting and sealing frame is arranged in a U-shaped structure. Two docking strips are symmetrically arranged on one side of both the connecting and sealing frame and the connecting and sealing beam. The three docking strips of the connecting and sealing frame are respectively inserted into the three hanging slots of the heating glass and the connecting and sealing frame, and the docking strips of the connecting and sealing beam are respectively inserted into the hanging slots on one side of the heating glass and the assembled glass. And the connecting and sealing beam is horizontally arranged between the two vertical structures of the connecting and sealing frame.

[0013] Preferably, connecting grooves are horizontally opened on both sides of the connecting and sealing frame close to the connecting and sealing beam. Extrusion screws are vertically inserted and arranged at the upper ends on one side of the connecting grooves of the connecting and sealing frame. The lower ends of the extrusion screws are inserted into the connecting grooves. And sealing gaskets are arranged on the sides of the connecting and sealing frame and the connecting and sealing beam in contact with the heating glass and the assembled glass.

[0014] Preferably, spring grooves are opened on both sides of the connecting and sealing beam close to the connecting and sealing frame. Telescopic grooves are vertically penetrated and opened on both sides of the connecting and sealing beam close to the spring grooves. A through groove is horizontally penetrated between the telescopic groove and the fixed rod. Two fixed rods are respectively movably penetrated and inserted into the two through grooves.

[0015] Preferably, pressing plates are integrally arranged on one side of the fixed rods placed in the spring grooves. Springs are sleeved on one side of the fixed rods located at the pressing plates. And one side of the springs is in contact with one side in the spring grooves.

[0016] Preferably, fixing blocks are horizontally arranged on one side of the fixed rods placed in the telescopic grooves. One side of the fixing blocks penetrates through the telescopic grooves and is inserted into the connecting grooves. The lower end on one side of the fixing blocks placed in the connecting grooves is arranged as an inclined surface. A limiting hole is opened at the upper end of the fixing blocks placed in the connecting grooves. The lower ends of the extrusion screws placed in the connecting grooves are inserted into the limiting holes. And the height in the connecting grooves is greater than the thickness of the telescopic grooves.

[0017] Preferably, a plurality of ventilation holes are symmetrically opened on both the upper and lower sides of the heating glass. Grooves are opened on one side of the heating glass where the ventilation holes are located. A plurality of conversion tubes are respectively penetrated and inserted into the plurality of ventilation holes. Anti-detachment rings are arranged on one side of the conversion tubes placed in the grooves. Constraint grooves are opened in the protective covers. A plurality of protective covers are respectively inserted into the plurality of grooves. And one side of the anti-detachment rings of the plurality of conversion tubes is respectively inserted into the constraint grooves of the plurality of protective covers.

[0018] Preferably, a pad platform is arranged on one side of the protective cover sleeving the conversion tube. The diameter of the pad platform is greater than the diameter of the ventilation holes. A plurality of air holes are symmetrically opened on one side of the protective cover close to the conversion tube. The plurality of air holes are respectively communicated with the constraint grooves. External threads are arranged on the conversion tubes located between the heating glass and the assembled glass. A fixing nut is threadedly sleeved on one side of the external threads of the conversion tubes. And air guiding grooves are opened on the opposite sides of the plurality of conversion tubes on both the upper and lower sides of the heating glass.

[0019] Preferably, power connection grooves are provided on both sides of the heating glass, and screen-printed conductive silver paste is vertically provided in the power connection grooves.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0021] Adopting a hollow glass structure, with a coated metal oxide glass used for the inner layer, energized heating at both poles, and making use of the principle of hot air rising, ventilation holes are respectively provided at the upper and lower parts, achieving functions of frost prevention, anti-atomization, anti-icing, heating, and heat insulation under the air curtain principle. Moreover, in cooperation with the connecting and sealing assembly, it is simple and convenient to operate during maintenance and production assembly. The design of the conversion pipe and the protective cover keeps the hollow part clean to the greatest extent while allowing ventilation. It is simple to operate, convenient to use, and has a wide range of functions. It can be used in fields such as automobiles and building household glass, with a wide application range. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural diagram of the present invention;

[0023] Figure 2 is a schematic diagram of a partial cross-section of the structure of the present invention;

[0024] Figure 3 is of part A of the present invention Figure 2 schematic diagram;

[0025] Figure 4 is a schematic structural diagram of the heating glass of the present invention;

[0026] Figure 5 is a schematic structural diagram of the connecting and sealing assembly of the present invention;

[0027] Figure 6 is a schematic structural diagram of the air permeation assembly of the present invention.

[0028] In the figure: heating glass 1, assembled glass 2, connecting and sealing frame 3, connecting and sealing beam 4, hanging groove 5, docking strip 6, ventilation hole 7, conversion pipe 8, protective cover 9, fixing nut 10, restraint groove 11, air hole 12, air guide groove 13, connecting groove 14, extrusion screw 15, spring groove 16, telescopic groove 17, fixing rod 18, fixing block 19, limiting hole 20, screen-printed conductive silver paste 21, spring 22. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0030] Please refer to the attachedFigures 1-6 This application provides embodiments of the following five preferred solutions.

[0031] Embodiment 1

[0032] A multifunctional insulating glass, the multifunctional insulating glass includes:

[0033] A heating glass 1, the heating glass 1 is a vacuum sputtered transparent metal oxide glass;

[0034] An assembled glass 2, the assembled glass 2 is a common glass with the same size as the heating glass 1;

[0035] A connecting and sealing assembly, the connecting and sealing assembly is arranged between the heating glass 1 and the assembled glass 2. The connecting and sealing assembly includes a connecting and sealing frame 3 and a connecting and sealing beam 4. Splicing grooves are provided on one side of both the heating glass 1 and the assembled glass 2. The splicing grooves are arranged in a square frame structure, and hanging grooves 5 are provided on all four sides inside the splicing grooves. The connecting and sealing frame 3 is arranged in a U-shaped structure. Two docking strips 6 are symmetrically provided on one side of both the connecting and sealing frame 3 and the connecting and sealing beam 4. The three docking strips 6 of the connecting and sealing frame 3 are respectively inserted into the three hanging grooves 5 of the heating glass 1 and the connecting and sealing frame 3. The docking strips 6 of the connecting and sealing beam 4 are respectively inserted into the hanging grooves 5 on one side of the heating glass 1 and the assembled glass 2, and the connecting and sealing beam 4 is horizontally arranged between the two vertical structures of the connecting and sealing frame 3;

[0036] A fixing component, the fixing component is arranged on one side of the connecting and sealing frame 3 and the connecting and sealing beam 4. The fixing component includes two fixing rods 18. Connecting grooves 14 are horizontally provided on both sides of the connecting and sealing frame 3 close to the connecting and sealing beam 4. Extrusion screws 15 are vertically inserted and arranged at the upper ends on one side of the connecting and sealing frame 3 located at the connecting grooves 14. The lower ends of the extrusion screws 15 are inserted into the connecting grooves 14. Spring grooves 16 are provided on one side of the connecting and sealing beam 4 close to the connecting and sealing frame 3. Through grooves are horizontally provided through the spring grooves 16 and the fixing rods 18. The two fixing rods 18 are respectively movably inserted and arranged through the two through grooves. Pressing plates are integrally provided on one side of the fixing rods 18 placed in the spring grooves 16. Springs 22 are sleeved on one side of the fixing rods 18 located at the pressing plates, and one side of the springs 22 is in contact with one side inside the spring grooves 16. Fixing blocks 19 are horizontally provided on one side of the fixing rods 18 placed in the expansion grooves 17. One side of the fixing blocks 19 penetrates through the expansion grooves 17 and is inserted into the connecting grooves 14. The lower ends of one side of the fixing blocks 19 placed in the connecting grooves 14 are arranged as inclined surfaces;

[0037] A number of breathable components are respectively inserted on both sides of the heating glass 1. The breathable components include a conversion tube 8 and a protective cover 9. A number of ventilation holes 7 are symmetrically opened on both the upper and lower sides of the heating glass 1. Grooves are opened on one side of the heating glass 1 where the ventilation holes 7 are located. A number of conversion tubes 8 respectively penetrate and are inserted into a number of ventilation holes 7. An anti - detachment ring is provided on one side of the conversion tube 8 placed in the groove. A restraint groove 11 is opened in each of the protective covers 9. A number of protective covers 9 are respectively inserted into a number of grooves, and one side of the anti - detachment ring of a number of conversion tubes 8 is respectively inserted into the restraint grooves 11 of a number of protective covers 9. A pad platform is provided on one side of the protective cover 9 sleeving the conversion tube 8, and the diameter of the pad platform is greater than the diameter of the ventilation hole 7. A number of air holes 12 are symmetrically opened on one side of the protective cover 9 close to the conversion tube 8, and a number of air holes 12 are respectively communicated with the restraint groove 11. External threads are provided on both sides of the conversion tube 8 located between the heating glass 1 and the assembled glass 2. A fixing nut 10 is sleeved on the external thread side of the conversion tube 8 through threads, and guide air grooves 13 are opened on the opposite sides of a number of conversion tubes 8 on both the upper and lower sides of the heating glass 1.

[0038] Embodiment Two

[0039] On the basis of Embodiment One, a limiting hole 20 is opened at the upper end of the fixing block 19 placed in the connecting groove 14. The extrusion screw 15 is placed at the lower end of the connecting groove 14 and is inserted into the limiting hole 20. And the height in the connecting groove 14 is greater than the thickness of the telescopic groove 17. When preventing the fixing block 19 from moving, by pressing down the extrusion screw 15, the connection effect between the connection sealing beam 4 and the connection sealing frame 3 is improved, and the purpose of strengthening the connection sealing frame 3 and the connection sealing beam 4 to press the heating glass 1 and the hanging groove 5 is achieved.

[0040] Embodiment Three

[0041] On the basis of Embodiment Two, sealing gaskets are provided on the sides of the connection sealing frame 3 and the connection sealing beam 4 in contact with the heating glass 1 and the assembled glass 2, which is used to strengthen the sealing and stability effect between the heating glass 1 and the assembled glass 2. When necessary, adhesive can also be locally filled for sealing and bonding.

[0042] Embodiment Four

[0043] On the basis of Embodiment Three, connection slots are opened on both sides of the heating glass 1. Screen - printed conductive silver paste 21 is vertically provided in the connection slots, and copper foil is covered on the upper part as an electrode. When defogging is required, it is electrified to realize heating and defogging of the heating glass 1.

[0044] Embodiment Five

[0045] On the basis of Embodiment Four, the screen - printed conductive silver paste 21 is printed black around it. When installed on a French door or a window, it is more beautiful and firm when wrapped by an aluminum frame or a plastic frame. When the protective cover 9 needs to be wrapped synchronously, a certain gap needs to be left for air circulation.

[0046] When in use, electricity is conducted through the screen-printed conductive silver paste 21 to heat the heating glass 1 to generate heat, which can prevent fogging on the surface of the heating glass 1. If it is used as the glass of a sunroof, it can assist in slightly heating the heating glass 1, or directly heat the heating glass 1 in contact with the outside to achieve snow removal. After being energized, 2 generates heat, and the air inside the insulating glass gets heated. With ventilation holes 7 respectively arranged on the upper and lower sides of the heating glass 1, the principle of air curtain is utilized due to the rising of hot air. Since the air conditioner inside the mall is cold in summer and the outside is hot, in order to prevent the indoor cold air from escaping, it can play a certain role in stabilizing the barrier between the inside and the outside. Moreover, the whole device is connected by inserting the telescopic groove 17 into the connecting groove 14, which is convenient for production and splicing. Then, under the pressing action of the pressing screw 15, the connection is reliable and the sealing effect is good. In addition, the setting of the protective cover 9 and the conversion pipe 8 can effectively isolate external pollutants and mosquitoes when ventilating the hollow parts inside the heating glass 1 and the assembled glass 2, improving the overall cleanliness of the glass.

[0047] 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 principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A multifunctional insulating glass, characterized in that: The multi-functional insulating glass includes: a heating glass (1), which is a vacuum sputtered transparent metal oxide glass; a assembled glass (2), which is an ordinary glass with the same size as the heating glass (1); a connecting and sealing assembly, which is arranged between the heating glass (1) and the assembled glass (2), and the connecting and sealing assembly includes a connecting and sealing frame (3) and a connecting and sealing beam (4); a fixing assembly, which is arranged on one side of the connecting and sealing frame (3) and the connecting and sealing beam (4), and the fixing assembly includes two fixing rods (18); a plurality of air-permeable assemblies, which are respectively inserted on both sides of the heating glass (1), and the air-permeable assemblies include a conversion tube (8) and a protective cover (9); On one side of both the heating glass (1) and the assembled glass (2), a splicing groove is opened, the splicing groove is arranged in a square frame structure, and hanging grooves (5) are opened on all four sides in the splicing groove; The connecting and sealing frame (3) is arranged in a U-shaped structure. On one side of the connecting and sealing frame (3) and the connecting and sealing beam (4), two docking strips (6) are symmetrically arranged respectively. The three docking strips (6) of the connecting and sealing frame (3) are respectively inserted into the three hanging grooves (5) of the heating glass (1) and the connecting and sealing frame (3). The docking strips (6) of the connecting and sealing beam (4) are respectively inserted into the hanging grooves (5) on one side of the heating glass (1) and the assembled glass (2), and the connecting and sealing beam (4) is horizontally arranged between the two vertical structures of the connecting and sealing frame (3); On both sides of the connecting and sealing frame (3) close to the connecting and sealing beam (4), connecting grooves (14) are horizontally opened. On the upper end of one side of the connecting and sealing frame (3) located in the connecting grooves (14), extrusion screws (15) are vertically inserted. The lower ends of the extrusion screws (15) are inserted into the connecting grooves (14). And on the side where the connecting and sealing frame (3) and the connecting and sealing beam (4) are in contact with the heating glass (1) and the assembled glass (2), sealing gaskets are provided; On one side of the connecting and sealing beam (4) close to the connecting and sealing frame (3), spring grooves (16) are opened. On one side of the connecting and sealing beam (4) close to the spring grooves (16), through grooves (17) are vertically opened. A through groove is horizontally opened between the through grooves (17) and the fixing rods (18). The two fixing rods (18) are respectively movably inserted through the two through grooves; On one side of the fixing rod (18) placed in the spring groove (16), a pressing plate is integrally provided. On one side of the fixing rod (18) located at the pressing plate, a spring (22) is sleeved, and one side of the spring (22) is in contact with one side in the spring groove (16); On one side of the fixing rod (18) placed in the through groove (17), a fixing block (19) is horizontally provided. One side of the fixing block (19) penetrates through the through groove (17) and is inserted into the connecting groove (14). The lower end of one side of the fixing block (19) placed in the connecting groove (14) is arranged as an inclined surface. A limiting hole (20) is opened at the upper end of the fixing block (19) placed in the connecting groove (14). The lower end of the extrusion screw (15) placed in the connecting groove (14) is inserted into the limiting hole (20), and the height in the connecting groove (14) is greater than the thickness of the through groove (17); A number of ventilation holes (7) are symmetrically formed on both the upper and lower sides of the heating glass (1). Grooves are formed on one side of the heating glass (1) corresponding to the ventilation holes (7). A number of conversion tubes (8) are respectively inserted through and arranged in the ventilation holes (7). An anti - detachment ring is provided on one side of the conversion tube (8) placed in the groove. Constraint grooves (11) are formed in each of the protective covers (9). A number of protective covers (9) are respectively inserted into the grooves, and one side of the anti - detachment ring of each of the conversion tubes (8) is inserted into the constraint grooves (11) of the corresponding protective covers (9). A pad - table is provided on one side of the protective cover (9) sleeving the conversion tube (8). The diameter of the pad - table is larger than that of the ventilation hole (7). A number of air holes (12) are symmetrically formed on one side of the protective cover (9) close to the conversion tube (8). The air holes (12) are respectively communicated with the constraint grooves (11). External threads are provided on both sides of the conversion tube (8) located between the heating glass (1) and the assembled glass (2). A fixing nut (10) is sleeved on the external thread side of the conversion tube (8) by threading, and air guiding grooves (13) are formed on the opposite sides of the conversion tubes (8) on both the upper and lower sides of the heating glass (1). Power - connection grooves are formed on both sides of the heating glass (1), and screen - printed conductive silver paste (21) is vertically provided in each power - connection groove.

Citation Information

Patent Citations

  • Hollow glass

    CN210659772U

  • Hollow glass with electric heating defrosting function

    CN211230073U