LOW-E sound-insulation and heat-insulation anti-fog hollow glass

The design of LOW-E sound-insulating, heat-insulating, and anti-fog insulated glass solves the problem of fogging in traditional insulated glass under temperature differences or humid environments, and realizes automatic water droplet removal and light-blocking functions, improving sound insulation, heat insulation performance and user experience.

CN223621475UActive Publication Date: 2025-12-02HEBEI SHOUJING GLASS PRODUCTS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422723336.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-12-02
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Traditional double-glazed windows are prone to fogging in environments with temperature differences or humidity, affecting visibility and user experience. They also lack effective light-blocking capabilities, limiting their application in specific situations.

Method used

The design features LOW-E sound and heat insulation anti-fog double-glazed glass, including sealing components, scraping components, and sunshade components. Through the cooperation of anti-fog coating, scraper motor system, and sunshade cloth, it can automatically scrape away water droplets and block sunlight, enhancing sound insulation, heat insulation, and light-blocking effects.

Benefits of technology

It effectively reduces fogging on glass surfaces, ensures clear visibility, enhances the user experience, and provides a convenient shading solution, improving quality of life and energy efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses LOW-E sound insulation and heat insulation anti-fog hollow glass which comprises a fixing frame, a sealing assembly is arranged on the fixing frame, the sealing assembly comprises a fixing groove, an inner glass layer, an outer glass layer, anti-fog coating and a filling layer, the fixing groove is formed in the fixing frame, the inner glass layer and the outer glass layer are placed in the fixing groove, and the filling layer is arranged on the inner glass layer and the outer glass layer. The inner glass layer and the outer glass layer are coated with the anti-fog coating, the filling layer is arranged between the inner glass layer and the outer glass layer, the fixed frame is provided with a scraping assembly, the scraping assembly comprises a baffle, a double-shaft motor and a rotating shaft, the baffle is fixedly installed on the fixed frame, the double-shaft motor is fixedly installed on the baffle, and the rotating shaft is fixedly installed on the baffle. The rotating shaft is connected to the output end of the double-shaft motor, so that the technical problem that the surface of traditional hollow glass is prone to fogging in the background technology is solved.
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Description

Technical Field

[0001] This utility model relates to the field of insulated glass technology, and more specifically, it relates to a LOW-E sound-insulating and heat-insulating anti-fog insulated glass. Background Technology

[0002] In existing technologies, when there is a large temperature difference between indoors and outdoors or in humid environments, the surface of traditional insulated glass is prone to fogging. This is because the temperature difference between the two sides of the glass causes water vapor in the air to condense on the inner surface of the glass. This fogging not only affects the transparency of the glass and reduces the visual effect, but also brings inconvenience to the user's daily life.

[0003] Furthermore, in environments with high temperature and humidity or low temperature and humidity, even if users try to remove the fog with a squeegee, the contact between the squeegee and the glass surface may leave behind fine moisture. Due to the influence of temperature and humidity, this moisture will quickly condense back into fog, making the glass surface even more blurry and affecting the transparency of the glass and the user experience.

[0004] Existing anti-fog insulated glass cannot effectively block light during use. In other words, when anti-fog glass needs to have a light-blocking function at the same time, the existing technology is inadequate. This undoubtedly limits the application of anti-fog insulated glass in certain specific occasions, such as offices, theaters, and hospital wards where strict control of light environment is required. Utility Model Content

[0005] (a) Technical problems to be solved

[0006] In view of the problems existing in the prior art, this utility model provides a LOW-E sound and heat insulation anti-fog insulated glass to solve the technical problem mentioned in the background art that the surface of traditional insulated glass is prone to fogging.

[0007] (II) Technical Solution

[0008] To achieve the above objectives, this utility model provides the following technical solution: a LOW-E sound-insulating and heat-insulating anti-fog insulated glass, comprising a fixed frame, a sealing assembly on the fixed frame, the sealing assembly comprising a fixing groove, an inner glass layer, an outer glass layer, an anti-fog coating, and a filling layer, the fixing groove being formed on the fixed frame, the inner and outer glass layers being placed in the fixing groove, the anti-fog coating being applied to the inner and outer glass layers, the filling layer being disposed between the inner and outer glass layers, and a scraping assembly on the fixed frame, the scraping assembly comprising a baffle, a dual-axis motor, and a rotating shaft, the baffle being fixedly mounted on the fixed frame, the dual-axis motor being fixedly mounted on the baffle, and the rotating shaft being connected to the output end of the dual-axis motor.

[0009] The present invention is further configured such that a sealing film is encapsulated on one side of the inner glass layer and the outer glass layer, a sound-absorbing cotton is sleeved on the outer side of the inner glass layer and the outer glass layer, an inflation tube is connected to the sound-absorbing cotton, a sealing strip is sleeved on the outer side of the sound-absorbing cotton, the sealing strip is tightly attached to the inner side of the fixing frame, an installation hole is opened on the sealing strip, the installation hole is adapted to the inflation tube, and a sealing plug is detachably installed on the inflation tube. The use of the various components together completes the use of the sealing strip.

[0010] The present invention is further configured such that a pull rod is connected to the sealing plug, a fixing plate is installed at one end of the fixing frame, a limit hole is opened on the fixing plate, a locking block is detachably installed on the limit hole, a connecting block is installed on the fixing frame, and a bolt is detachably installed between the connecting block and the locking block. The fixing process of the locking block is completed by the cooperation of the various components.

[0011] The present invention is further configured such that one end of the rotating shaft is connected to a driving bevel gear, and fixed blocks are installed at the four corners of the fixed frame. A threaded rod is rotatably connected to the fixed block, and one end of the threaded rod is connected to a driven bevel gear. The driving bevel gear and the driven bevel gear are meshed together. A connecting plate is threadedly connected to the threaded rod, and a positioning rod is connected to the connecting plate. The rotation process of the threaded rod is completed through the cooperation of the various components.

[0012] The present invention is further configured such that a limiting block is connected to the positioning rod, a sleeve is sleeved on the outside of the positioning rod, a scraper is connected to one end of the sleeve, a sponge is connected to the scraper, the sound-absorbing sponge is in close contact with the sealing film, a return spring is connected between the positioning rod and the scraper, a limiting groove is formed on the sleeve, and a limiting block is slidably connected to the limiting groove. Through the cooperative use of each component, the compression process of the return spring is completed.

[0013] The present invention is further configured such that a sunshade assembly is provided on the fixed frame, the sunshade assembly includes a mounting plate, a wrapping roller and a light-blocking cloth, the mounting plate is located at one of the four corners of the fixed frame, the wrapping roller is located between the upper mounting plate, and the light-blocking cloth is wrapped around the wrapping roller. The use of the various components together completes the process of using the light-blocking cloth.

[0014] The present invention is further configured such that a connecting rod is connected to one end of the light-blocking cloth, a locking hook is installed on the fixing frame, the connecting rod is hooked on the locking hook, and a rotating handwheel is connected to one end of the wrapping roller through the mounting plate. The rotation of the rotating handwheel is completed through the cooperation of the various components.

[0015] The present invention is further configured such that a movable rod is slidably connected to the rotating handwheel, an insertion hole is provided on the mounting plate, the insertion hole is adapted to the movable rod, and a telescopic spring is sleeved on the movable rod. The compression process of the telescopic spring is completed through the cooperation of the various components.

[0016] (III) Beneficial Effects

[0017] Compared with the prior art, this utility model provides a LOW-E sound-insulating and heat-insulating anti-fog insulated glass, which has the following beneficial effects:

[0018] 1. The sealing assembly, through the cooperation of the fixing groove, inner glass layer, outer glass layer, anti-fog coating and filling layer, effectively improves the sound insulation and heat insulation performance of the insulated glass. The application of anti-fog coating reduces the possibility of fogging on the glass surface and improves the visual effect. The filling layer further enhances the heat insulation and sound insulation effect, while the setting of sealing film and sound-absorbing cotton further reduces the interference of external noise. At the same time, the use of LOW-E material also reduces energy loss and improves energy efficiency.

[0019] 2. The scraping assembly, through the cooperation of baffles, dual-axis motors, rotating shafts, and gear systems, achieves the function of automatically scraping water droplets off the glass surface. This design not only ensures the cleanliness of the glass surface but also ensures clear visibility. The motor-driven gear system enables the scraper to move smoothly, while the return spring ensures continuous contact and cleaning effect of the scraper, improving ease of use and maintenance efficiency.

[0020] 3. The sunshade assembly, including the mounting plate, wrapping rollers, and blackout fabric, provides users with a convenient sunshade solution. The blackout fabric effectively blocks direct sunlight, reduces indoor temperature rise, and protects privacy. The combination of the rotating handwheel and the moving rod makes it simple and quick to retract and extend the blackout fabric, while the telescopic spring ensures smooth operation and component stability, greatly improving user comfort and quality of life. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of a LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to this utility model.

[0022] Figure 2 This is an enlarged structural diagram of A in this utility model;

[0023] Figure 3 This is a side view of the structure of this utility model;

[0024] Figure 4 This is an enlarged structural diagram of B in this utility model;

[0025] Figure 5This is a partial structural schematic diagram of the present invention;

[0026] Figure 6 This is a schematic diagram of a partially disassembled structure in this utility model.

[0027] In the diagram: 1. Fixing frame; 2. Fixing groove; 3. Inner glass layer; 4. Outer glass layer; 5. Anti-fog coating; 6. Filler layer; 7. Baffle; 8. Dual-axis motor; 9. Rotating shaft; 10. Sealing film; 11. Sound-absorbing cotton; 12. Inflation tube; 13. Sealing strip; 14. Mounting hole; 15. Sealing plug; 16. Pull ring; 17. Fixing plate; 18. Limiting hole; 19. Locking block; 20. Connecting block; 21. Bolt; 22. Active cone 23. Gear; 24. Fixing block; 25. Threaded rod; 26. Driven bevel gear; 27. Connecting plate; 28. Positioning rod; 29. ​​Limiting block; 30. Sleeve; 31. Scraper; 32. Sponge; 33. Return spring; 34. Limiting groove; 35. Mounting plate; 36. Cloth wrapping roller; 37. Blackout cloth; 38. Connecting rod; 39. Locking hook; 40. Rotating handwheel; 41. Moving rod; 42. Insertion hole; 43. Telescopic spring. Detailed Implementation

[0028] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0029] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.

[0030] In this utility model, unless otherwise stated, the orientations used, such as "up" and "down", usually refer to the direction shown in the accompanying drawings, or to the vertical, perpendicular, or gravitational direction; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the accompanying drawings; "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.

[0031] Please see Figures 1-6A LOW-E sound-insulating and heat-insulating anti-fog insulated glass includes a fixed frame 1. A sealing component is provided on the fixed frame 1. The sealing component includes a fixing groove 2, an inner glass layer 3, an outer glass layer 4, an anti-fog coating 5, and a filling layer 6. The fixing groove 2 is formed on the fixed frame 1. The inner glass layer 3 and the outer glass layer 4 are placed in the fixing groove 2. The anti-fog coating 5 is applied to the inner glass layer 3 and the outer glass layer 4. The filling layer 6 is placed between the inner glass layer 3 and the outer glass layer 4. A scraping component is provided on the fixed frame 1. The scraping component includes a baffle 7, a dual-axis motor 8, and a rotating shaft 9. The baffle 7 is fixedly installed on the fixed frame 1. The dual-axis motor 8 is fixedly installed on the baffle 7. The rotating shaft 9 is connected to the output end of the dual-axis motor 8.

[0032] A sealing film 10 is encapsulated on one side of the inner glass layer 3 and the outer glass layer 4. A sound-absorbing cotton 11 is sleeved on the outer side of the inner glass layer 3 and the outer glass layer. An inflation tube 12 is connected to the sound-absorbing cotton 11. A sealing strip 13 is sleeved on the outer side of the sound-absorbing cotton 11. The sealing strip 13 is in close contact with the inner side of the fixing frame 1. An installation hole 14 is opened on the sealing strip 13. The installation hole 14 is adapted to the inflation tube 12. A sealing plug 15 is detachably installed on the inflation tube 12.

[0033] A pull rod 16 is connected to the sealing plug 15. A fixing plate 17 is installed at one end of the fixing frame 1. A limit hole 18 is opened on the fixing plate 17. A locking block 19 is detachably installed on the limit hole 18. A connecting block 20 is installed on the fixing frame 1. A bolt 21 is detachably installed between the connecting block 20 and the locking block 19.

[0034] One end of the rotating shaft 9 is connected to a driving bevel gear 22, and a fixing block 23 is installed at the four corners of the fixing frame 1. A threaded rod 24 is rotatably connected to the fixing block 23. One end of the threaded rod 24 is connected to a driven bevel gear 25. The driving bevel gear 22 and the driven bevel gear 25 are meshed together. A connecting plate 26 is threadedly connected to the threaded rod 24, and a positioning rod 27 is connected to the connecting plate 26.

[0035] A limiting block 28 is connected to the positioning rod 27. A sleeve 29 is sleeved on the outside of the positioning rod 27. A scraper 30 is connected to one end of the sleeve 29. A sponge 31 is connected to the scraper 30. The sound-absorbing sponge 31 is in close contact with the sealing film 10. A return spring 32 is connected between the positioning rod 27 and the scraper 30. A limiting groove 33 is opened on the sleeve 29. The limiting block 28 is slidably connected to the limiting groove 33.

[0036] In this embodiment, during use, anti-fog coating 5 is sprayed onto one side of the inner glass layer 3 and the outer glass layer 4. Then, a filling layer 6 is filled between the inner glass layer 3 and the outer glass layer 4. Next, a sealing film 10 is sealed at the other end of the inner glass layer 3 and the outer glass layer 4, and sound-absorbing cotton 11 is fitted onto its outer side and connected to an inflation tube 12. Then, a sealing strip 13 is fitted onto its outer side, and the inflation tube 12 is passed through the mounting hole 14. Then, it is placed in the fixing groove 2 in the fixing frame 1. Then, air is injected into it using the inflation tube 12. After the inflation process is completed, the sealing process is completed by using the pull ring 16 in conjunction with the sealing plug 15. The sealing film 10 is made of LOW-E material to achieve sound insulation. After everything is completed, the locking block 19 is placed in the limiting hole 18 of the fixing plate 17, and then the fixing plate 17 is connected to the connecting plate 17 using bolts 21. Blocks 20 are connected together to complete the fixing process. During use, when water droplets need to be scraped off the surface, the dual-axis motor 8 on the baffle 7 is started, which drives the output shaft 9 to rotate, thereby driving the active bevel gear 22 to rotate and driving the driven bevel gear 25 meshing with it to rotate, thereby adjusting the threaded rod 24 on the fixed block 23 to rotate, causing the connecting plate 26 on the threaded rod 24 to move. During its movement, the sponge 31 on the scraper 30 scrapes off the surface of the sealing film 10. In addition, during use, the positioning rod 27, under the action of the return spring 32 in the sleeve 29, continuously drives the limiting block 28 to slide along the limiting groove 33 on the sleeve 29, thereby driving the scraper 30 to move and promoting the cleaning process of the surface of the sealing film 10.

[0037] Please see Figure 3-4 As an embodiment of a LOW-E sound insulation and heat insulation anti-fog insulated glass for sunshading components: a sunshading component is provided on the fixed frame 1. The sunshading component includes a mounting plate 34, a wrapping roller 35 and a light-blocking cloth 36. The mounting plate 34 is located at one of the four corners of the fixed frame 1. The wrapping roller 35 is located between the upper mounting plates 34. The light-blocking cloth 36 is wrapped around the wrapping roller 35.

[0038] A connecting rod 37 is connected to one end of the blackout cloth 36, and a locking hook 38 is installed on the fixed frame 1. The connecting rod 37 is hooked onto the locking hook 38, and a rotating handwheel 39 is connected to one end of the wrapping roller 35 through the mounting plate 34.

[0039] A movable rod 40 is slidably connected to the rotating handwheel 39. An insertion hole 41 is provided on the mounting plate 34. The insertion hole 41 is adapted to the movable rod 40. A telescopic spring 42 is sleeved on the movable rod 40.

[0040] More specifically, when it is necessary to cover the surface during use, the moving rod 40 slides along the rotating handwheel 39. During this sliding movement, the telescopic spring 42 is stretched and moved out of the insertion hole 41, thereby releasing the fixing process of the rotating handwheel 39. The handwheel 39 is then rotated, causing the winding roller 35 to rotate, thereby winding the blackout cloth 36. The connecting rod 37 connected to one end of the blackout cloth 36 is then hung on the locking hook 38, completing the fixing process.

[0041] In summary, during the use or operation of the overall equipment: During use, anti-fog coating 5 is sprayed onto one side of the inner glass layer 3 and the outer glass layer 4. Then, a filling layer 6 is filled between the inner glass layer 3 and the outer glass layer 4. Next, a sealing film 10 is sealed at the other end of the inner glass layer 3 and the outer glass layer 4, and sound-absorbing cotton 11 is fitted onto its outer side and connected to an inflation tube 12. A sealing strip 13 is then fitted onto its outer side, and the inflation tube 12 passes through the mounting hole 14. It is then placed in the fixing groove 2 in the fixing frame 1. Gas is then injected into its interior using the inflation tube 12. After the inflation process is complete, a sealing process is completed using a pull ring 16 in conjunction with a sealing plug 15. The sealing film 10 uses LOW-E material for sound insulation. After all this is completed, the locking block 19 is placed in the limiting hole 18 of the fixing plate 17, and then the fixing plate is secured using bolts 21. 17 is connected to the connecting block 20 to complete the fixing process. During use, when it is necessary to scrape off water droplets on its surface, the dual-axis motor 8 on the baffle 7 is started, which drives the output shaft 9 to rotate, thereby driving the active bevel gear 22 to rotate and driving the driven bevel gear 25 meshing with it to rotate, thereby adjusting the threaded rod 24 on the fixing block 23 to rotate, causing the connecting plate 26 on the threaded rod 24 to move. During its movement, the sponge 31 on the scraper 30 scrapes off the surface of the sealing film 10. In addition, during use, the positioning rod 27, under the action of the return spring 32 in the sleeve 29, continuously drives the limiting block 28 to slide along the limiting groove 33 on the sleeve 29, thereby driving the scraper 30 to move and promoting the cleaning process of the surface of the sealing film 10.

[0042] When it is necessary to cover the surface during use, the moving rod 40 slides along the rotating handwheel 39. During this sliding movement, the telescopic spring 42 is stretched and moved out of the insertion hole 41, thus releasing the fixing process of the rotating handwheel 39. The handwheel 39 is then rotated, causing the winding roller 35 to rotate, thereby winding the blackout cloth 36. The connecting rod 37 connected to one end of the blackout cloth 36 is then hung on the locking hook 38, completing the fixing process.

[0043] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, welding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.

Claims

1. A LOW-E sound-insulating and heat-insulating anti-fog insulated glass, comprising a fixed frame (1), characterized in that: A sealing assembly is provided on the fixed frame (1). The sealing assembly includes a fixing groove (2), an inner glass layer (3), an outer glass layer (4), an anti-fog coating (5), and a filling layer (6). The fixing groove (2) is opened on the fixed frame (1). The inner glass layer (3) and the outer glass layer (4) are placed in the fixing groove (2). The anti-fog coating (5) is applied to the inner glass layer (3) and the outer glass layer (4). The filling layer (6) is placed between the inner glass layer (3) and the outer glass layer (4). A scraping assembly is provided on the fixed frame (1). The scraping assembly includes a baffle (7), a dual-axis motor (8), and a rotating shaft (9). The baffle (7) is fixedly installed on the fixed frame (1). The dual-axis motor (8) is fixedly installed on the baffle (7). The rotating shaft (9) is connected to the output end of the dual-axis motor (8).

2. The LOW-E sound-insulating and heat-insulating anti-fog insulating glass according to claim 1, characterized in that: A sealing film (10) is provided on one side of the inner glass layer (3) and the outer glass layer (4). A sound-absorbing cotton (11) is sleeved on the outer side of the inner glass layer (3) and the outer glass layer (4). An inflation tube (12) is connected to the sound-absorbing cotton (11). A sealing strip (13) is sleeved on the outer side of the sound-absorbing cotton (11). The sealing strip (13) is in close contact with the inner side of the fixing frame (1). An installation hole (14) is opened on the sealing strip (13). The installation hole (14) is adapted to the inflation tube (12). A sealing plug (15) is detachably installed on the inflation tube (12).

3. The LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to claim 2, characterized in that: A pull rod (16) is connected to the sealing plug (15). A fixing plate (17) is installed at one end of the fixing frame (1). A limit hole (18) is opened on the fixing plate (17). A locking block (19) is detachably installed on the limit hole (18). A connecting block (20) is installed on the fixing frame (1). A bolt (21) is detachably installed between the connecting block (20) and the locking block (19).

4. The LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to claim 3, characterized in that: One end of the rotating shaft (9) is connected to a driving bevel gear (22), and a fixing block (23) is installed at the four corners of the fixing frame (1). A threaded rod (24) is rotatably connected to the fixing block (23), and a driven bevel gear (25) is connected to one end of the threaded rod (24). The driving bevel gear (22) and the driven bevel gear (25) are meshed together. A connecting plate (26) is threadedly connected to the threaded rod (24), and a positioning rod (27) is connected to the connecting plate (26).

5. The LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to claim 4, characterized in that: A sleeve (29) is sleeved on the outside of the positioning rod (27). A scraper (30) is connected to one end of the sleeve (29). A sponge (31) is connected to the scraper (30). The sponge (31) is in close contact with the sealing film (10). A return spring (32) is connected between the positioning rod (27) and the scraper (30). A limit groove (33) is opened on the sleeve (29). A limit block (28) is slidably connected on the limit groove (33).

6. A LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to any one of claims 1-5, characterized in that: A sunshade assembly is provided on the fixed frame (1). The sunshade assembly includes a mounting plate (34), a wrapping roller (35), and a light-blocking cloth (36). The mounting plate (34) is located at one of the four corners of the fixed frame (1). The wrapping roller (35) is located between the upper mounting plates (34). The light-blocking cloth (36) is wrapped around the wrapping roller (35).

7. The LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to claim 6, characterized in that: One end of the light-blocking cloth (36) is connected to a connecting rod (37), and a locking hook (38) is installed on the fixing frame (1). The connecting rod (37) is hooked on the locking hook (38), and one end of the wrapping roller (35) is connected to a rotating handwheel (39) through the mounting plate (34).

8. The LOW-E sound-insulating and heat-insulating anti-fog insulated glass according to claim 7, characterized in that: A movable rod (40) is slidably connected to the rotating handwheel (39), and an insertion hole (41) is provided on the mounting plate (34). The insertion hole (41) is adapted to the movable rod (40), and a telescopic spring (42) is sleeved on the movable rod (40).