CN220487422U - High-strength radiation-proof heat-insulating hollow glass - Google Patents

High-strength radiation-proof heat-insulating hollow glass Download PDF

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Publication number
CN220487422U
CN220487422U CN202321858617.8U CN202321858617U CN220487422U CN 220487422 U CN220487422 U CN 220487422U CN 202321858617 U CN202321858617 U CN 202321858617U CN 220487422 U CN220487422 U CN 220487422U
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China
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glass
groups
glass plate
hollow glass
sealing
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CN202321858617.8U
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林嘉宏
李广玉
赵建新
官仁伟
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Tg Wuhan Architectural Glass Co ltd
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Tg Wuhan Architectural Glass Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B80/00Architectural or constructional elements improving the thermal performance of buildings
    • Y02B80/22Glazing, e.g. vaccum glazing

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Abstract

The utility model relates to the technical field of hollow glass, and discloses high-strength radiation-proof heat-insulating hollow glass, which comprises a fixed frame and a hollow glass body arranged in the fixed frame; the hollow glass body comprises a first glass plate and a second glass plate, an adhesive frame is adhered to one side, opposite to the first glass plate and the second glass plate, of the first glass plate, and the adhesive frame is arranged in a rectangular frame; through the cooperation between sealing mechanism and the bonding frame, be convenient for fill inert gas in to the cavity glass body through connecting side pipe and connecting the trachea to insert through the dead lever and connect the intraductal interference fit of side, thereby improve the internal inert gas's of cavity glass leakproofness, and carry out dual seal through sealing washer and stopper, improve holistic sealed effect, improve cavity glass's leakproofness, and avoid producing water smoke in the cavity glass, improve the aesthetic property that cavity glass used.

Description

High-strength radiation-proof heat-insulating hollow glass
Technical Field
The utility model relates to the technical field of hollow glass, in particular to high-strength radiation-proof heat-insulating hollow glass.
Background
The hollow glass is high-performance sound-insulation heat-insulation glass which is manufactured by bonding two (or three) glass sheets with an aluminum alloy frame containing a drying agent by using a high-strength high-air-tightness composite bonding agent. The hollow glass has various performances superior to that of common double-layer glass, so that the hollow glass is accepted by countries around the world, and two or more pieces of glass are uniformly supported and spaced, and the periphery of the glass is bonded and sealed, so that a dry gas space is formed between the glass layers;
the hollow glass is a novel building material, and along with the improvement of building requirements of people, a plurality of building enterprises and families begin to select the hollow glass with higher strength and more various functions as the outer wall glass for use;
however, the existing hollow glass needs to be filled with a certain amount of inert gas between glass layers, so that the overall tightness is relatively poor, a small amount of water mist is easy to appear in the glass, the overall light transmittance is influenced, and meanwhile, the overall attractiveness of the glass is also influenced, so that the high-strength radiation-proof heat-insulating hollow glass needs to be provided.
Disclosure of Invention
The utility model aims to provide high-strength radiation-proof heat-insulating hollow glass, which is convenient for filling inert gas between glass layers, improves the heat-insulating and sound-insulating effects of hollow wave flow, and improves the air tightness of the hollow glass, so as to prevent water mist from being generated in the inner cavity of the hollow glass, and is convenient for prolonging the service life and improving the overall aesthetic property of the hollow glass, thereby solving the problems in the prior art.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a high-strength radiation-proof heat-insulating hollow glass comprises a fixed frame and a hollow glass body arranged in the fixed frame;
the hollow glass body comprises a first glass plate and a second glass plate, an adhesive frame is adhered to one side of the first glass plate opposite to the second glass plate, the adhesive frame is rectangular, and sealing holes for embedding the sealing mechanism are formed in two sides in the adhesive frame;
sealing mechanism is including connecting the side pipe, connect the both ends of side pipe and all communicate and have the connection trachea, two sets of connect the trachea and connect the intraductal sealing rod that has pegged graft of side, and the one end fixedly connected with stopper of sealing rod, the one end outside cover of sealing rod is equipped with sealing washer, sealing washer's internal diameter is greater than sealing rod's internal diameter, and sealing washer's external diameter is greater than the internal diameter of connecting the trachea, sealing rod's external diameter is greater than the external diameter of connecting the tracheal, sealing hole's internal diameter is less than the external diameter of connecting.
Preferably, the fixed frame comprises two groups of limiting frames which are symmetrically arranged, the opposite sides of the two groups of limiting frames are provided with storage grooves, and the bottoms of the two groups of storage grooves are provided with rectangular grooves.
Preferably, a plurality of groups of first mounting holes are formed in one side of the limiting frame, a plurality of groups of second mounting holes are formed in one side of the other limiting frame, a plurality of groups of first mounting holes are respectively matched with a plurality of groups of second mounting holes, and a plurality of groups of first mounting holes are arranged in a rectangular array.
Preferably, a plurality of groups of the first mounting holes are inserted with connecting bolts, a plurality of groups of the second mounting holes are embedded with locking nuts, and one ends of the connecting bolts are respectively in threaded connection with the locking nuts.
Preferably, the two sides of the limiting frame are provided with first limiting grooves, the tops of the first limiting grooves are communicated with second limiting grooves, the first limiting grooves are matched with the sealing gasket, and the second limiting grooves are matched with the limiting blocks.
Preferably, the first glass plate is embedded in the storage groove of one group of limiting frames, the second glass plate is embedded in the storage groove of the other group of limiting frames, and a hollow layer is arranged among the first glass plate, the second glass plate and the bonding rubber frame.
Preferably, a plurality of groups of connection lugs are fixedly connected to one side of the first glass plate, a connection groove for embedding the plurality of groups of connection lugs is formed in one side of the adhesive frame, and the plurality of groups of connection lugs are arranged in a rectangular array.
Preferably, one side of the first glass plate is provided with an outer radiation protection film, one side of the outer radiation protection film is provided with a first reinforcing layer, the other side of the first glass plate is provided with a first wear-resistant layer, and one side of the first wear-resistant layer is provided with a first hydrophobic film.
Preferably, an inner radiation protection film is arranged on one side of the second glass plate, a second reinforcing layer is arranged on one side of the inner radiation protection film, a second wear-resistant layer is arranged on the other side of the second glass plate, and a second hydrophobic film is arranged on one side of the second wear-resistant layer.
Preferably, the first reinforcing layer is a heat absorption film, the second reinforcing layer is a heat insulation film, and the first hydrophobic film and the second hydrophobic film are both polycarbonate films.
Compared with the prior art, the utility model has the beneficial effects that:
1. according to the utility model, the sealing mechanism is matched with the adhesive frame, the inert gas is conveniently filled into the hollow glass body through the connecting square tube and the connecting air tube, and the sealing rod is inserted into the connecting square tube for interference fit, so that the sealing performance of the inert gas in the hollow glass body is improved, the sealing gasket and the limiting block are used for double sealing, the overall sealing effect is improved, the sealing performance of the hollow glass is improved, water mist is avoided from being generated in the hollow glass, and the using aesthetic property of the hollow glass is improved.
2. According to the utility model, through the cooperation between the fixed frame and the hollow glass body, the two groups of limiting frames are fixed with the locking nuts through the plurality of groups of connecting bolts, so that the hollow glass body is convenient to assemble and disassemble, the protective effect of the hollow glass body is improved, and the service life of the hollow glass body is prolonged.
3. According to the utility model, through the cooperation between the first glass plate and the second glass plate, the hydrophobic film can prevent water drops from adhering to the surface of the hollow glass, the self-cleaning degree of the hollow glass is improved, the first reinforcing layer and the second reinforcing layer can isolate external heat, and the radiation-proof film can absorb and protect ultraviolet rays in sunlight.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is an exploded view of the fixed frame of the present utility model;
FIG. 3 is a schematic view showing an exploded structure of a hollow glass body according to the present utility model;
FIG. 4 is a schematic cross-sectional view of a hollow glass body according to the present utility model;
fig. 5 is a schematic structural view of a sealing mechanism of the present utility model.
In the figure: 100. a fixed frame; 101. a limit frame; 102. a storage groove; 103. rectangular grooves; 104. a first mounting hole; 105. a second mounting hole; 106. a connecting bolt; 107. a lock nut; 108. a first limit groove; 109. the second limit groove; 200. a hollow glass body; 201. a first glass plate; 202. a second glass plate; 203. a connection bump; 204. bonding the adhesive frame; 205. a connection groove; 206. sealing the hole; 207. a first hydrophobic membrane; 208. a first wear layer; 209. an outer radiation protective film; 210. a first reinforcing layer; 211. a second reinforcing layer; 212. an inner radiation protective film; 213. a second wear layer; 214. a second hydrophobic membrane; 300. a sealing mechanism; 301. connecting square tubes; 302. connecting an air pipe; 303. a sealing gasket; 304. a sealing rod; 305. and a limiting block.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, the present utility model provides a technical solution: a high-strength radiation-proof heat-insulating hollow glass, comprising a fixed frame 100 and a hollow glass body 200 arranged in the fixed frame 100;
the hollow glass body 200 comprises a first glass plate 201 and a second glass plate 202, wherein an adhesive frame 204 is adhered to one side of the first glass plate 201 opposite to the second glass plate 202, the adhesive frame 204 is rectangular, and sealing holes 206 for embedding the sealing mechanism 300 are formed in two sides in the adhesive frame 204;
sealing mechanism 300 is including connecting square pipe 301, all communicate at the both ends of connecting square pipe 301 and have connect trachea 302, all peg graft in two sets of connect trachea 302 and the connecting square pipe 301 and have sealing rod 304, and sealing rod 304's one end fixedly connected with stopper 305, sealing rod 304's one end outside cover is equipped with sealing washer 303, sealing washer 303's internal diameter is greater than sealing rod 304's internal diameter, and sealing washer 303's external diameter is greater than connecting trachea 302's internal diameter, sealing rod 304's external diameter is greater than connecting trachea 302's external diameter, sealing hole 206's internal diameter is less than connecting trachea 302's external diameter.
When the glass plate is used, the first glass plate 201 and the second glass plate 202 are connected and positioned through the adhesive frame 204, the stability of the first glass plate 201 and the second glass plate 202 is improved through the plurality of groups of connecting convex blocks 203, meanwhile, inert gas is introduced through one group of sealing mechanisms 300, water mist is avoided, the attractiveness is improved, air between the first glass plate 201 and the second glass plate 202 is discharged through the other group of sealing mechanisms 300, therefore, the sealing of hollow glass is realized through inserting a sealing rod 304 at the lower end of a limiting block 305 into a connecting air pipe 302, the containing grooves 102 of two groups of limiting frames 101 are simultaneously matched with the first glass plate 201 and the second glass plate 202, and the limiting blocks 305 and the sealing gaskets 303 of the two groups of limiting mechanisms are matched with the first limiting grooves 108 and the second limiting grooves 109, and the positioning and mounting of the hollow glass body 200 of the two groups of limiting frames 101 are realized through the threaded connection of the plurality of groups of connecting bolts 106 and the locking nuts 107;
sunlight irradiates and irradiates the room through the first hydrophobic film 207, the first abrasion-resistant layer 208, the first glass plate 201, the outer radiation-proof film 209, the first reinforcing layer 210, the second reinforcing layer 211, the inner radiation-proof film 212, the second abrasion-resistant layer 213 and the second hydrophobic film 214, self-cleaning performance of the hollow glass body 200 is improved through the first hydrophobic film 207 and the second hydrophobic film 214, cleanliness of the hollow glass body 200 is improved, the first reinforcing layer 210 and the second reinforcing layer 211 are heat absorption films and heat insulation films, external heat is isolated, and the inner radiation-proof film 212 and the outer radiation-proof film 209 can absorb ultraviolet rays in sunlight, so that human skin is protected, and practicability of the hollow glass is improved.
The fixed frame 100 includes two sets of spacing frames 101 that the symmetry set up, and two sets of spacing frames 101's opposite one side has all been seted up and has been accomodate groove 102, and two sets of rectangular channel 103 have all been seted up to the bottom of accomodating groove 102, are convenient for to first glass board 201 and the second glass board 202 of cavity glass body 200 through accomodating groove 102 and agree with to improve the installation effectiveness and the installation stability of cavity glass body 200, and be convenient for sunshine through rectangular channel 103 and pass.
A plurality of groups of first mounting holes 104 are formed in one side of one group of limiting frames 101, a plurality of groups of second mounting holes 105 are formed in one side of the other group of limiting frames 101, the plurality of groups of first mounting holes 104 are respectively matched with the plurality of groups of second mounting holes 105, the plurality of groups of first mounting holes 104 are arranged in a rectangular array, connecting bolts 106 are conveniently inserted into the first mounting holes 104, and the second mounting holes 105 are conveniently embedded into the connecting bolts 106, so that the two groups of limiting frames 101 are fixedly connected, and the fitting degree is improved.
The connecting bolts 106 are inserted into the plurality of groups of first mounting holes 104, the locking nuts 107 are embedded into the plurality of groups of second mounting holes 105, one ends of the plurality of groups of connecting bolts 106 are respectively connected with the plurality of groups of locking nuts 107 in a threaded manner, and the stability of the two groups of limiting frames 101 after being connected is improved through the plurality of groups of connecting bolts 106 and the locking nuts 107 in a threaded manner, so that the protection effect on the hollow glass body 200 is improved.
The first spacing groove 108 has all been seted up to the both sides of spacing frame 101, and the top intercommunication of first spacing groove 108 has second spacing groove 109, first spacing groove 108 agrees with sealing washer 303, second spacing groove 109 agrees with stopper 305 mutually, it is spacing to stopper 305 to be convenient for through first spacing groove 108, sealing rod 304 rocks when preventing that cavity glass body 200 from using or carrying, improves the leakproofness, and carry out double seal through sealing washer 303, improved sealed effect, avoid inert gas leakage.
The first glass plate 201 is embedded in the accommodating groove 102 of one group of limiting frames 101, the second glass plate 202 is embedded in the accommodating groove 102 of the other group of limiting frames 101, a hollow layer is arranged among the first glass plate 201, the second glass plate 202 and the bonding rubber frame 204, inert gas is conveniently stored through the hollow layer, and the heat insulation and sound insulation performance of the hollow glass are improved through the hollow layer between the first glass plate 201 and the second glass plate 202.
One side of the first glass plate 201 is fixedly connected with a plurality of groups of connecting convex blocks 203, one side of the bonding glue frame 204 is provided with connecting grooves 205 for embedding the plurality of groups of connecting convex blocks 203, the plurality of groups of connecting convex blocks 203 are arranged in a rectangular array, and the stability of connection between the first glass plate 201 and the second glass plate 202 is improved through the plurality of groups of connecting convex blocks 203, so that the service life of the hollow glass body 200 is prolonged.
One side of the first glass plate 201 is provided with an outer radiation protection film 209, and one side of the outer radiation protection film 209 is provided with a first reinforcing layer 210, the other side of the first glass plate 201 is provided with a first wear-resistant layer 208, and one side of the first wear-resistant layer 208 is provided with a first hydrophobic film 207, self-cleaning property of the hollow glass body 200 is improved through the first hydrophobic film 207, thereby improving aesthetic property of the hollow glass body 200, and the first wear-resistant layer 208 improves wear resistance and strength of the hollow glass body 200.
One side of the second glass plate 202 is provided with an inner radiation protection film 212, one side of the inner radiation protection film 212 is provided with a second reinforcing layer 211, the other side of the second glass plate 202 is provided with a second wear-resistant layer 213, one side of the second wear-resistant layer 213 is provided with a second hydrophobic film 214, self-cleaning performance of the hollow glass body 200 is improved through the second hydrophobic film 214, and accordingly attractiveness of the hollow glass body 200 is improved, wear resistance and strength of the hollow glass body 200 are improved through the second wear-resistant layer 213, and the inner radiation protection film 212 is matched with the outer radiation protection film 209, ultraviolet rays in sunlight can be absorbed, and harm of the ultraviolet rays to human bodies is reduced.
The first reinforcing layer 210 is a heat absorption film, the second reinforcing layer 211 is a heat insulation film, the first hydrophobic film 207 and the second hydrophobic film 214 are polycarbonate films, and meanwhile, the first hydrophobic film 207 and the second hydrophobic film 214 can also be silicon tetrafluoride films, so that external heat can be isolated, the indoor and outdoor temperatures are poor, and the comfort of indoor activities is improved.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a high strength radiation protection heat insulation cavity glass, includes fixed frame (100) and sets up cavity glass body (200) in fixed frame (100), its characterized in that:
the hollow glass body (200) comprises a first glass plate (201) and a second glass plate (202), wherein an adhesive frame (204) is adhered to one side, opposite to the first glass plate (201) and the second glass plate (202), of the first glass plate, the adhesive frame (204) is arranged in a rectangular frame, and sealing holes (206) for embedding a sealing mechanism (300) are formed in two sides in the adhesive frame (204);
sealing mechanism (300) are including connecting square pipe (301), all communicate in the both ends of connecting square pipe (301) have connecting trachea (302), two sets of connecting trachea (302) all peg graft in with connecting square pipe (301) have sealing rod (304), and the one end fixedly connected with stopper (305) of sealing rod (304), the one end outside cover of sealing rod (304) is equipped with sealing washer (303), sealing washer (303)'s internal diameter is greater than sealing rod's (304) internal diameter, and sealing washer (303)'s external diameter is greater than connecting trachea (302) internal diameter, sealing rod (304)'s external diameter is greater than connecting trachea (302) external diameter, sealing hole (206)'s internal diameter is less than connecting trachea (302) external diameter.
2. The high strength radiation protective insulating hollow glass of claim 1, wherein: the fixed frame (100) comprises two groups of limit frames (101) which are symmetrically arranged, the opposite sides of the two groups of limit frames (101) are respectively provided with a storage groove (102), and the bottoms of the two groups of storage grooves (102) are respectively provided with a rectangular groove (103).
3. The high strength radiation protective insulating hollow glass of claim 2, wherein: one group of the limiting frames (101) is provided with a plurality of groups of first mounting holes (104), one side of the other group of limiting frames (101) is provided with a plurality of groups of second mounting holes (105), the plurality of groups of first mounting holes (104) are respectively matched with the plurality of groups of second mounting holes (105), and the plurality of groups of first mounting holes (104) are arranged in a rectangular array.
4. A high strength radiation protective insulating hollow glass as defined in claim 3, wherein: the plurality of groups of first mounting holes (104) are respectively internally inserted with connecting bolts (106), the plurality of groups of second mounting holes (105) are respectively embedded with locking nuts (107), and one ends of the plurality of groups of connecting bolts (106) are respectively in threaded connection with the plurality of groups of locking nuts (107).
5. The high strength radiation protective insulating hollow glass of claim 2, wherein: the two sides of the limiting frame (101) are provided with first limiting grooves (108), the tops of the first limiting grooves (108) are communicated with second limiting grooves (109), the first limiting grooves (108) are matched with the sealing gasket (303), and the second limiting grooves (109) are matched with the limiting blocks (305).
6. The high strength radiation protective insulating hollow glass of claim 1, wherein: the first glass plate (201) is embedded in the accommodating groove (102) of one group of limiting frames (101), the second glass plate (202) is embedded in the accommodating groove (102) of the other group of limiting frames (101), and a hollow layer is arranged among the first glass plate (201), the second glass plate (202) and the bonding rubber frame (204).
7. The high strength radiation protective insulating hollow glass of claim 6, wherein: one side of the first glass plate (201) is fixedly connected with a plurality of groups of connecting convex blocks (203), one side of the bonding rubber frame (204) is provided with connecting grooves (205) for embedding the plurality of groups of connecting convex blocks (203), and the plurality of groups of connecting convex blocks (203) are arranged in a rectangular array.
8. The high strength radiation protective insulating hollow glass of claim 1, wherein: one side of first glass board (201) is provided with outer radiation protection membrane (209), and one side of outer radiation protection membrane (209) is provided with first enhancement layer (210), the opposite side of first glass board (201) is provided with first wearing layer (208), and one side of first wearing layer (208) is provided with first hydrophobic membrane (207).
9. The high strength radiation protective insulating hollow glass of claim 8, wherein: an inner radiation protection film (212) is arranged on one side of the second glass plate (202), a second reinforcing layer (211) is arranged on one side of the inner radiation protection film (212), a second wear-resistant layer (213) is arranged on the other side of the second glass plate (202), and a second hydrophobic film (214) is arranged on one side of the second wear-resistant layer (213).
10. The high strength radiation protective insulating hollow glass of claim 9, wherein: the first reinforcement layer (210) is a heat absorption film, the second reinforcement layer (211) is a heat insulation film, and the first hydrophobic film (207) and the second hydrophobic film (214) are polycarbonate films.
CN202321858617.8U 2023-07-14 2023-07-14 High-strength radiation-proof heat-insulating hollow glass Active CN220487422U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321858617.8U CN220487422U (en) 2023-07-14 2023-07-14 High-strength radiation-proof heat-insulating hollow glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321858617.8U CN220487422U (en) 2023-07-14 2023-07-14 High-strength radiation-proof heat-insulating hollow glass

Publications (1)

Publication Number Publication Date
CN220487422U true CN220487422U (en) 2024-02-13

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ID=89829574

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321858617.8U Active CN220487422U (en) 2023-07-14 2023-07-14 High-strength radiation-proof heat-insulating hollow glass

Country Status (1)

Country Link
CN (1) CN220487422U (en)

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