CN217400734U - Two-glass three-cavity hot mirror film hollow glass - Google Patents

Two-glass three-cavity hot mirror film hollow glass Download PDF

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Publication number
CN217400734U
CN217400734U CN202221383717.5U CN202221383717U CN217400734U CN 217400734 U CN217400734 U CN 217400734U CN 202221383717 U CN202221383717 U CN 202221383717U CN 217400734 U CN217400734 U CN 217400734U
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glass
frame
hot mirror
cavity
mirror film
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CN202221383717.5U
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王建晓
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ZHEJIANG JINGTAI GLASS TECHNOLOGY CO LTD
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ZHEJIANG JINGTAI GLASS TECHNOLOGY 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers

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Abstract

The application discloses two glasss, three hot mirror membrane cavity glass of chamber belongs to cavity glass's technical field, and its technical scheme main points include: a frame; a glass disposed on the frame; a hot mirror film disposed on the frame; wherein, glass is provided with two, forms well cavity between the glass, hot mirror film is provided with two, hot mirror film arranges well cavity in, the periphery of hot mirror film is provided with fixed frame, fixed frame with be provided with T type portion, the frame be provided with the T type groove of T type portion adaptation, T type portion is provided with connecting portion, connecting portion are provided with the screw hole, the frame is provided with the mount pad the same with the screw hole axis, the mount pad is provided with the threaded connection spare with the screw hole adaptation. The application provides a cavity glass improves the installation stability between hot mirror membrane and the frame, and improves the installation convenience of hot mirror membrane.

Description

Two-glass three-cavity hot mirror film hollow glass
Technical Field
The application belongs to the technical field of cavity glass, especially relates to a two glasss three chamber hot mirror membrane cavity glass.
Background
At present, the most keen and market-accepted energy-saving glass in the market belongs to Low-E hollow glass, however, with the increasing requirements of the building market on the heat insulation performance of a glass system, the glass develops from single silver to double silver to three silver … … step by step to the present, the energy-saving effect can be improved only by adding cavities, but the thickness and the weight of the common hollow glass can be greatly increased, and meanwhile, a series of new requirements on the building structure and the load are provided. The hot mirror film hollow glass provides an option for achieving better heat insulation and preservation effects under the conditions of not increasing the weight and obviously increasing the thickness. The hollow glass of the hot mirror is formed by combining two layers of glass and a special hot mirror film, and is divided into a double-cavity hollow structure by a double-layer special isolating strip.
The prior chinese patent publication No. CN206111010U discloses a two-glass three-cavity heat mirror film hollow glass, which comprises two pieces of glass and two layers of heat mirror films, wherein the two layers of heat mirror films are sandwiched between the two pieces of glass, aluminum spacing strips are fixed between adjacent glass and heat mirror films and between adjacent heat mirror films to form a hollow cavity, and pressure balance holes are formed on film surfaces at corners of the heat mirror films.
Although the self weight of the hollow glass is reduced, the hot mirror film is flexible, the structure of the hollow glass after being installed with the glass is unstable, and the hollow glass is easy to fall off, so that the heat insulation effect is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the technical problem that above-mentioned exists, provide a cavity glass, improve the installation stability between hot mirror membrane and the frame, and improve the installation convenience of hot mirror membrane.
The application provides a hot mirror membrane cavity glass of two glasss, three chambeies includes: a frame; a glass disposed on the frame; a hot mirror film disposed on the frame; wherein, glass is provided with two, forms well cavity between the glass, the hot mirror membrane is provided with two, the cavity is arranged in to the hot mirror membrane, the periphery of hot mirror membrane is provided with fixed frame, fixed frame with be provided with T type portion, the frame be provided with the T type groove of T type portion adaptation, T type portion is provided with connecting portion, connecting portion are provided with the screw hole, the frame is provided with the mount pad the same with the screw hole axis, the mount pad is provided with the threaded connection spare with the screw hole adaptation.
Through the frame with glass, hot mirror membrane erection joint, make cavity glass have higher structure steadiness, form well cavity between two glass, continue separating into 3 cavities through two hot mirror membranes with well cavity, through the inside and outside heat transfer of cavity glass of well cavity prevention, improve thermal-insulated efficiency, hot mirror membrane is fixed through fixed frame earlier, the size of fixed frame and the big or small adaptation of frame, peg graft T type portion in T type groove during fixed frame installation, improve the convenience of installation, after T type portion and T type groove cooperation, make the screw hole correspond with the axis of mount pad, screw up through threaded connection spare and screw hole cooperation, fix fixed frame and frame, improve the installation steadiness of fixed frame, weld between connecting portion and the T type portion.
Further, the fixing frame includes: a main frame body; the fixing seat is connected with the main frame body in an installing way; the T-shaped part is arranged on the main frame body, and an occlusion structure is arranged between the main frame body and the fixed seat.
The main frame is the rectangle form, lays hot mirror film and arranges in the main frame on, through screw or rivet connection between main frame and the fixing base, and the interlock structure is the cusp, mutually supports between with hot mirror film and fixed frame installation fixed connection, guarantees the structure steadiness of fixed frame and hot mirror film, T type portion and main frame body coupling.
Further, the frame is provided with the flange of arranging T type groove both sides in, be certain contained angle between the flange, fixed frame is provided with the inclined plane with the flange adaptation.
The flanges and the frame are integrally connected, the stability of the frame to the fixing frame is improved through the interaction between the flanges and the inclined plane, and the included angle between the flanges is 60-90 degrees.
Further, a first sealing gasket is arranged between the flange and the inclined plane.
First sealed the bonding of filling up at the internal face of flange, through the leakproofness of first sealed pad improvement between fixed frame and the frame, reduce steam and circulate in well cavity, first sealed pad is elastic form, improves the suitability between inclined plane and the flange through first sealed pad.
Furthermore, the mounting seat is provided with a counter bore, the axis of the counter bore is the same as that of the mounting seat, and a second sealing gasket is arranged between the threaded connecting piece and the counter bore.
The counter bore is through milling process shaping, and during the counter bore was arranged in to threaded connection spare's tip, guaranteed the level and smooth of frame outer wall face, the sealed pad of second was arranged in between threaded connection spare and the counter bore, and after threaded connection spare and connecting portion cooperation were fixed, threaded connection spare's tip was sealed the effect to the second, improved the leakproofness between threaded connection spare and the frame.
Furthermore, a sealant is arranged between the glass and the frame.
After the glass and the frame are installed, 3-5mm of sealant is applied to the joint between the glass and the frame, the sealing performance between the glass and the frame is improved through the sealant, and the heat insulation performance of the hollow cavity is guaranteed.
The beneficial effect of this application is:
1. the hot mirror film is fixed through the fixed frame earlier, pegs graft T type portion in T type groove during fixed frame installation, improves the convenience of installation, and after T type portion and the cooperation of T type groove, messenger's screw hole corresponds with the axis of mount pad, screws up through threaded connection spare and screw hole cooperation, fixes fixed frame and frame.
2. Lay hot mirror film flat on arranging the main frame in, through screw or rivet connection between main frame and the fixing base, the interlock structure is the cusp, with hot mirror film and fixed frame installation fixed connection between mutually supporting, guarantees the structure steadiness of fixed frame and hot mirror film.
3. The counter bore is formed by milling, the end part of the threaded connecting piece is arranged in the counter bore, the flatness of the outer wall surface of the frame is guaranteed, the first sealing gasket, the second sealing gasket and the sealing gum improve the overall sealing performance of the hollow glass, and the heat insulation performance of the hollow glass is guaranteed.
Drawings
FIG. 1 is a schematic structural view of an insulating glass of the present application;
FIG. 2 is an enlarged view at A of FIG. 1 of the present application;
FIG. 3 is an enlarged view of the present application at B of FIG. 2;
reference number in the figure, 100, frame; 110. a T-shaped groove; 120. a mounting seat; 130. a flange; 140. a counter bore; 200. glass; 210. a hollow cavity; 300. a hot mirror film; 400. a fixing frame; 401. a T-shaped portion; 402. a connecting portion; 403. a threaded hole; 404. a bevel; 410. a main frame body; 420. a fixed seat; 430. an occlusion structure; 500. a connecting member; 600. a first gasket; 700. a second gasket; 800. and (7) sealing the glue.
Detailed Description
The technical solutions in the embodiments of the present application will be described clearly below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are some, but not all, embodiments of the present application. All other embodiments that can be derived by one of ordinary skill in the art from the embodiments given herein are intended to be within the scope of the present disclosure.
The terms first, second and the like in the description and in the claims of the present application are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It will be appreciated that the data so used may be interchanged under appropriate circumstances such that embodiments of the application may be practiced in sequences other than those illustrated or described herein, and that the terms "first," "second," and the like are generally used herein in a generic sense and do not limit the number of terms, e.g., the first term can be one or more than one. In addition, "and/or" in the specification and claims means at least one of connected objects, a character "/" generally means that a preceding and succeeding related objects are in an "or" relationship.
The portable server provided by the embodiment of the present application is described in detail below with reference to the accompanying drawings by specific embodiments and application scenarios thereof.
Example 1:
as shown in fig. 1 and fig. 2, an embodiment of the present application provides a hollow glass 200 of a two-glass three-cavity hot mirror film 300, including: a frame 100; a glass 200 disposed on the frame 100; a hot mirror film 300 disposed on the frame 100; wherein, glass 200 is provided with two, forms cavity 210 between glass 200, hot mirror membrane 300 is provided with two, hot mirror membrane 300 arranges in cavity 210 in, the periphery of hot mirror membrane 300 is provided with fixed frame 400, fixed frame 400 with be provided with T type portion 401, frame 100 is provided with the T type groove 110 with T type portion 401 adaptation, T type portion 401 is provided with connecting portion 402, connecting portion 402 is provided with screw hole 403, frame 100 is provided with mount pad 120 the same with screw hole 403 axis, mount pad 120 is provided with the threaded connection spare 500 with screw hole 403 adaptation.
Further, a sealant 800 is disposed between the glass 200 and the frame 100.
Glass 200 and hot mirror film 300 are installed and connected through frame 100, so that hollow glass 200 has higher structural stability, hollow cavity 210 is formed between two pieces of glass 200, hollow cavity 210 is continuously separated into 3 cavities through two pieces of hot mirror films 300, heat transfer inside and outside hollow glass 200 is prevented through hollow cavity 210, heat insulation efficiency is improved, hot mirror film 300 is firstly fixed through fixing frame 400, the size of fixing frame 400 is matched with that of frame 100, T-shaped part 401 is inserted into T-shaped groove 110 when fixing frame 400 is installed, installation convenience is improved, after T-shaped part 401 is matched with T-shaped groove 110, threaded hole 403 corresponds to the axis of mounting seat 120, threaded connector 500 is screwed with threaded hole 403 in a matched mode, fixing frame 400 and frame 100 are fixed, installation stability of fixing frame 400 is improved, and connecting part 402 is welded with T-shaped part 401.
After the glass 200 and the frame 100 are installed, a 3-5mm sealant 800 is applied to the joint between the glass 200 and the frame 100, and the sealant 800 improves the sealing property between the glass 200 and the frame 100 to ensure the heat insulation property of the hollow cavity 210.
Example 2:
as shown in fig. 2 and 3, the embodiment of the present application provides a hollow glass 200 of a two-glass three-cavity thermal mirror film 300, and in addition to the above technical features, the fixing frame 400 includes: a main frame body 410; a fixing base 420 installed and connected with the main frame 410; the T-shaped portion 401 is disposed on the main frame 410, and an engaging structure 430 is disposed between the main frame 410 and the fixing base 420.
Further, the frame 100 is provided with flanges 130 arranged at two sides of the T-shaped groove 110, a certain included angle is formed between the flanges 130, and the fixing frame 400 is provided with an inclined plane 404 adapted to the flanges 130.
Further, a first gasket 600 is disposed between the flange 130 and the inclined surface 404.
Further, the mounting seat 120 is provided with a counterbore 140, the axis of the counterbore 140 is the same as that of the mounting seat 120, and a second sealing gasket 700 is arranged between the threaded connector 500 and the counterbore 140.
The main frame 100 is rectangular, the hot mirror film 300 is flatly laid on the main frame 100, the main frame 100 is connected with the fixing seat 420 through screws or rivets, the meshing structure 430 is toothed, the hot mirror film 300 and the fixing frame 400 are fixedly connected in an installing mode between the meshing structure 430 and the fixing seat, the structural stability of the fixing frame 400 and the hot mirror film 300 is guaranteed, and the T-shaped portion 401 is integrally connected with the main frame 100.
The flanges 130 are integrally connected with the frame 100, and the stability of the frame 100 to the fixing frame 400 is improved through the interaction between the flanges 130 and the inclined planes 404, and the included angle between the flanges 130 is 60-90 degrees.
First sealed pad 600 bonds at the internal wall face of flange 130, improves the leakproofness between fixed frame 400 and the frame 100 through first sealed pad 600, reduces steam and circulates in well cavity 210, and first sealed pad 600 is elastic form, improves the suitability between inclined plane 404 and the flange 130 through first sealed pad 600.
The counter bore 140 is formed by milling, the end part of the threaded connector 500 is arranged in the counter bore 140 to ensure the flatness of the outer wall surface of the frame 100, the second sealing gasket 700 is arranged between the threaded connector 500 and the counter bore 140, and after the threaded connector 500 is matched and fixed with the connecting part 402, the end part of the threaded connector 500 acts on the second sealing gasket 700 to improve the sealing performance between the threaded connector 500 and the frame 100.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises the element. Further, it should be noted that the scope of the methods and apparatus of the embodiments of the present application is not limited to performing the functions in the order illustrated or discussed, but may include performing the functions in a substantially simultaneous manner or in a reverse order based on the functions involved, e.g., the methods described may be performed in an order different than that described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
While the present embodiments have been described with reference to the accompanying drawings, it is to be understood that the present embodiments are not limited to those precise embodiments, which are intended to be illustrative rather than restrictive, and that various changes and modifications may be effected therein by one skilled in the art without departing from the scope of the appended claims.

Claims (6)

1. The utility model provides a two glasss, three chambeies hot mirror film cavity glass which characterized in that includes:
a frame (100);
a glass (200) placed on the frame (100);
a hot mirror film (300) disposed on the frame (100);
wherein, glass (200) are provided with two, form cavity (210) in between glass (200), hot mirror membrane (300) are provided with two, hot mirror membrane (300) are arranged in cavity (210), the edge of hot mirror membrane (300) is provided with fixed frame (400), fixed frame (400) with be provided with T type portion (401), frame (100) are provided with T type groove (110) with T type portion (401) adaptation, T type portion (401) are provided with connecting portion (402), connecting portion (402) are provided with screw hole (403), frame (100) are provided with mount pad (120) the same with screw hole (403) axis, mount pad (120) are provided with threaded connection spare (500) with screw hole (403) adaptation.
2. The two-glass three-cavity heat mirror film insulating glass according to claim 1, wherein the fixing frame (400) comprises:
a main frame body (410);
a fixed seat (420) which is connected with the main frame body (410);
the T-shaped part (401) is arranged on the main frame body (410), and an engagement structure (430) is arranged between the main frame body (410) and the fixed seat (420).
3. The two-glass three-cavity hot mirror film insulating glass according to claim 2, wherein the frame (100) is provided with flanges (130) arranged at two sides of the T-shaped groove (110), the flanges (130) form a certain included angle, and the fixing frame (400) is provided with an inclined surface (404) matched with the flanges (130).
4. The two-glass three-cavity hot mirror film insulating glass according to claim 3, wherein a first sealing gasket (600) is arranged between the flange (130) and the inclined surface (404).
5. The two-glass three-cavity thermal mirror film hollow glass according to claim 1, wherein the mounting seat (120) is provided with a counter bore (140), the axis of the counter bore (140) is the same as that of the mounting seat (120), and a second sealing gasket (700) is arranged between the threaded connector (500) and the counter bore (140).
6. The two-glass three-cavity thermal mirror film insulating glass according to claim 1, wherein a sealant (800) is arranged between the glass (200) and the frame (100).
CN202221383717.5U 2022-05-31 2022-05-31 Two-glass three-cavity hot mirror film hollow glass Active CN217400734U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221383717.5U CN217400734U (en) 2022-05-31 2022-05-31 Two-glass three-cavity hot mirror film hollow glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221383717.5U CN217400734U (en) 2022-05-31 2022-05-31 Two-glass three-cavity hot mirror film hollow glass

Publications (1)

Publication Number Publication Date
CN217400734U true CN217400734U (en) 2022-09-09

Family

ID=83146036

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221383717.5U Active CN217400734U (en) 2022-05-31 2022-05-31 Two-glass three-cavity hot mirror film hollow glass

Country Status (1)

Country Link
CN (1) CN217400734U (en)

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