Glass structure capable of blocking transverse light propagation

By introducing glass components and blocking components into the glass structure, combined with technologies such as polarizing film, grating strips and baffles, the problem that existing glass structures cannot block lateral light is solved, effectively light control and privacy protection are achieved, and the energy efficiency of the building is improved.

CN222879556UActive Publication Date: 2025-05-16QINGDAO BAIYOU GLASS TECH CO LTD
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Patent Information

Application Number
CN202421842321.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-16
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing glass structure cannot effectively block the propagation of lateral light, resulting in the failure to meet privacy leakage, light interference and building energy saving needs.

Method used

A glass structure including a glass assembly and a blocking assembly is adopted. The glass assembly is composed of a glass plate, a polarizing film, a grating strip and a grating groove. The blocking assembly is composed of a frame, a baffle and an adjusting member. Through the cooperation of these components, the propagation of transverse light can be effectively blocked.

Benefits of technology

This structure can not only effectively block lateral light, reduce side light and heat in summer, and reduce energy consumption of cooling equipment, but also reduce indoor heat loss in winter, keep indoor warm, reduce energy consumption of heating equipment, and flexibly adjust the angle of the baffle to control the amount of light entering and protect privacy.

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Abstract

The glass structure comprises a glass assembly and a blocking assembly, the glass assembly comprises a first glass plate, a second glass plate, a polarizing film, a grating strip and a grating groove, the polarizing film is bonded between the first glass plate and the second glass plate, the grating strip and the grating groove are formed in the surface of the front side of the first glass plate, and the blocking assembly is arranged between the first glass plate and the second glass plate. The front side surface of the glass plate I is fixedly provided with a blocking component through a fixing piece, and the blocking component comprises a frame I, a frame II, a fixing piece, a baffle plate and an adjusting piece. Compared with the prior art, the glass plate has the following beneficial effects that the blocking component is arranged, so that the angle of the baffle plate can be flexibly rotated through the adjusting piece when the glass plate is used; under different time periods and illumination conditions, a user can control the entering amount of transverse light rays according to actual requirements, or when the baffle is in a closed state through the adjusting piece, sight from the side face can be effectively blocked, and privacy of indoor space is protected.
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Description

Technical Field

[0001] The utility model belongs to the field of glass equipment, and in particular relates to a glass structure capable of blocking lateral light propagation. Background Art

[0002] Glass structures block the propagation of lateral light for the following reasons: First, it protects privacy and prevents activities in places such as residences and offices from being spied on from the side; second, it reduces light interference and avoids reflections caused by lateral light in places such as photography studios and optical laboratories, interference with experimental equipment and effects on shooting and experimental results; third, it meets the needs of building energy conservation, reduces the indoor heat brought by lateral light in summer, and reduces the energy consumption of cooling equipment. However, the existing ordinary glass structures have many problems because they cannot effectively block the propagation of lateral light. In terms of privacy protection, the high transparency of this glass makes it easy for indoor scenes to be seen from the side. Whether it is daily activities in family life or work content in an office environment, it may be spied on by the outside world's lateral sight. The reason is that the material properties of glass make it non-selective and non-blocking for the transmission of light. To solve these problems, a common solution is to use curtains. Although curtains can block light when needed, the opening and closing of curtains requires manual operation, which is more troublesome; and the existence of curtains will block part of the natural light, making the room dim. In addition, curtains need to be cleaned regularly, otherwise they are prone to dust accumulation and breeding of bacteria, affecting indoor hygiene and air quality. Therefore, a new structure is needed to solve the above technical problems. Summary of the invention

[0003] In view of the deficiencies in the prior art, the utility model aims to provide a glass structure that can block the lateral propagation of light and solve the problems raised in the above-mentioned background technology.

[0004] The utility model is realized through the following technical scheme: a glass structure capable of blocking lateral light propagation, comprising: a glass component and a blocking component, the glass component comprising: a glass plate 1, a glass plate 2, a polarizing film, grating strips and grating grooves, a polarizing film bonded between the glass plate 1 and the glass plate 2, a grating strip and a grating groove are provided on the front side surface of the glass plate 1, a blocking component is fixed to the front side surface of the glass plate 1 through a fixing member, the blocking component comprising: a frame 1, a frame 2, a fixing member, a baffle and an adjusting member, two frames 1 and 2 are provided, two frames 2 are symmetrically installed between the two frames 1, a baffle is rotatably installed between the two frames 1, and an adjusting member and a fixing member are installed on the upper side surface of the frame 1.

[0005] As a preferred embodiment, the length and width of the first glass plate are the same as those of the second glass plate, the thickness of the first glass plate is greater than that of the second glass plate, a polarization film is adhesively bonded between the first glass plate and the second glass plate through glass glue, the polarization film is a horizontal polarization film. If the glass of the window uses the above structure, at this time, the structure of the polarization film, grating bars and grating grooves that can block the propagation of horizontal light can reduce the strong light and heat from the side direction of the sun in summer, reduce the usage frequency and energy consumption of indoor cooling equipment, and in winter, it can reduce the loss of indoor heat through the side windows, help to keep the room warm, and reduce the energy consumption of heating equipment.

[0006] As a preferred embodiment, a plurality of grating bars are evenly arranged on the front surface of the first glass plate, a grating groove is formed between every two of the grating bars, and a first frame is symmetrically installed on the upper side edge and the lower side edge of the front surface of the first glass plate respectively.

[0007] As a preferred embodiment, a second frame is symmetrically installed on the left side edge and the right side edge of the front surface of the first glass plate respectively, the first frame and the second frame form a rectangular structure, the cross section of the first frame is in a C-shaped structure, and fixing members are evenly installed on the rear side edge of the upper surface of the first frame.

[0008] As a preferred embodiment, a plurality of adjusting members are evenly installed on the upper surface of the first frame, the number and position of the adjusting members match the number and position of the baffles, a baffle is rotatably installed on the inner surface between the two first frames, and the angle of the baffle can be flexibly rotated through the adjusting members. Under different time periods and lighting conditions, users can control the amount of horizontal light entering according to actual needs, or when the baffle is in a closed state through the adjusting members, it can effectively block the line of sight from the side and protect the privacy of the indoor space.

[0009] As a preferred embodiment, each baffle has the same structure, and each baffle abuts against each other.

[0010] After adopting the above technical solution, the beneficial effect of the present utility model is: by setting the glass assembly, the glass assembly includes: the first glass plate, the second glass plate, the polarization film, the grating bars and the grating grooves. A polarization film is adhesively bonded between the first glass plate and the second glass plate, and grating bars and grating grooves are formed on the front surface of the first glass plate. When in use, if the glass of the window uses the above structure, at this time, the structure of the polarization film, grating bars and grating grooves that can block the propagation of horizontal light can reduce the strong light and heat from the side direction of the sun in summer, reduce the usage frequency and energy consumption of indoor cooling equipment, and in winter, it can reduce the loss of indoor heat through the side windows, help to keep the room warm, and reduce the energy consumption of heating equipment.

[0011] By setting a blocking component, the front surface of the glass plate 1 is fixed with the blocking component through a fixing part, and the blocking component includes: frame 1, frame 2, fixing part, baffle and adjustment part. Two frames 1 and 2 are provided, and two frames 2 are symmetrically installed between the two frames 1. A baffle is rotatably installed between the two frames 1. The upper surface of the frame 1 is installed with an adjustment part and a fixing part. When in use, the angle of the baffle can be flexibly rotated through the adjustment part. In different time periods and lighting conditions, the user can control the amount of lateral light entering according to actual needs, or when the baffle is in a closed state through the adjustment part, it can effectively block the line of sight from the side and protect the privacy of the indoor space. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0013] Figure 1 The utility model is a schematic diagram of a glass component of a glass structure capable of blocking lateral light propagation.

[0014] Figure 2 It is a schematic diagram of a blocking structure of a glass structure capable of blocking lateral light propagation according to the utility model.

[0015] Figure 3 For this utility model Figure 1 Schematic diagram of the enlarged view of point A.

[0016] In the figure, 100-glass plate 1, 101-grating strips, 102-grating grooves, 110-glass plate 2, 120-polarizing film;

[0017] 200 - frame one, 210 - fixing part, 220 - frame two, 230 - adjusting part, 240 - baffle. DETAILED DESCRIPTION

[0018] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0019] See also Figures 1 to 3The utility model provides a technical solution: a glass structure capable of blocking lateral light propagation, comprising: a glass component and a blocking component, the glass component comprising: a glass plate 1 100, a glass plate 2 110, a polarizing film 120, grating strips 101 and grating grooves 102, a polarizing film 120 bonded between the glass plate 100 and the glass plate 2 110, a grating strip 101 and a grating groove 102 are provided on the front side surface of the glass plate 100, a blocking component is fixed to the front side surface of the glass plate 100 through a fixing member 210, the blocking component comprises: a frame 1 200, a frame 220, a fixing member 210, a baffle 240 and an adjusting member 230, two frames 1 200 and two frames 220 are provided, two frames 220 are symmetrically installed between the two frames 1 200, a baffle 240 is rotatably installed between the two frames 1 200, and an adjusting member 230 and a fixing member 210 are installed on the upper side surface of the frame 1 200.

[0020] See also Figures 1 to 3 As the first embodiment of the utility model: the length and width of the glass plate 100 are the same as the length and width of the glass plate 2 110, the thickness of the glass plate 100 is greater than the thickness of the glass plate 2 110, and a polarizing film 120 is bonded between the glass plate 100 and the glass plate 2 110 by glass glue, and the polarizing film 120 is a transverse polarizing film 120;

[0021] A plurality of grating strips 101 are evenly arranged on the front surface of the glass plate 100, and a grating groove 102 is provided between every two grating strips 101. A frame 200 is symmetrically installed on the upper edge and the lower edge of the front surface of the glass plate 100;

[0022] When in use, when light is irradiated from the front surface of the glass plate 100, the vertically arranged grating grooves 102 and grating strips 101 on the surface of the glass plate 100 can block the lateral propagation of the light, and at the same time, the light is blocked by the polarizing film 120 between the glass plate 100 and the glass plate 2 110, and finally passes through the glass plate 2 110. Due to the combination of the blocking component, the lateral light can be completely blocked, thereby achieving the effect of blocking the lateral light (the grating grooves 102 and the grating strips 101 and the glass plate 100 form a grating Glass, grating glass and polarizing film 120 are existing technologies, and their specific interception principles and working principles are not elaborated here). If the window glass uses the above structure, the polarizing film 120, grating strips 101 and grating grooves 102 can block the lateral propagation of light. In summer, it can reduce the strong light and heat from the side of the sun, reduce the frequency of use and energy consumption of indoor cooling equipment, and in winter, it can reduce the loss of indoor heat through the side windows, help keep the room warm, and reduce the energy consumption of heating equipment.

[0023] See also Figures 1 to 3 As a second embodiment of the utility model: a frame 220 is symmetrically installed on the left edge and the right edge of the front side surface of the glass plate 100, the frame 1 200 and the frame 2 220 are in a U-shaped structure, the cross section of the frame 1 200 is in a U-shaped structure, and the rear edge of the upper surface of the frame 1 200 is evenly installed with a fixing member 210;

[0024] A plurality of adjusting members 230 are evenly mounted on the upper surface of the frame 1 200 , and the number and position of the adjusting members 230 match the number and position of the baffles 240 , and the baffles 240 are rotatably mounted on the inner surface between the two frames 1 200 ;

[0025] Each baffle 240 has the same structure, and each baffle 240 abuts against each other;

[0026] When in use, when light is irradiated from the front surface of the glass plate 100, it will first pass through the baffle 240. The user can adjust the angle of the baffle 240 through the adjustment member 230 (in actual use, the user can drive the adjustment member 230 through the motor or manually adjust the angle of each baffle 240 through the adjustment member. The user can choose according to actual use). When the angle of each baffle 240 is adjusted to be perpendicular to the frame 200, the light entering is maximum at this time. When each baffle 240 is adjusted to a straight-line structure through the adjustment member 230, the light entering is completely blocked at this time. The user can rotate the appropriate angle of the baffle 240 according to actual use needs, thereby blocking the entry of lateral light. Since the angle of the baffle 240 can be flexibly rotated through the adjustment member 230, under different time periods and lighting conditions, the user can control the amount of lateral light entering according to actual needs, or when the baffle 240 is in a closed state through the adjustment member 230, it can effectively block the line of sight from the side to protect the privacy of the indoor space.

[0027] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A glass structure capable of blocking lateral light propagation, comprising: A glass assembly and a blocking assembly, characterized in that the glass assembly comprises: a first glass plate (100), a second glass plate (110), a polarizing film (120), grating strips (101) and grating grooves (102), and a polarizing film (120) is bonded between the first glass plate (100) and the second glass plate (110); The front surface of the glass plate 1 (100) is provided with grating strips (101) and grating grooves (102); the front surface of the glass plate 1 (100) is fixed with a blocking component via a fixing member (210); the blocking component comprises: a frame 1 (200), a frame 2 (220), a fixing member (210), a baffle (240), and an adjusting member (230); Two of the frame one (200) and frame two (220) are provided, two frame twos (220) are symmetrically mounted between the two frame ones (200), a baffle (240) is rotatably mounted between the two frame ones (200), and an adjusting member (230) and a fixing member (210) are mounted on the upper surface of the frame one (200).

2. A glass structure capable of blocking lateral light propagation as claimed in claim 1, characterized in that: The length and width of the glass plate 1 (100) are the same as those of the glass plate 2 (110); the thickness of the glass plate 1 (100) is greater than that of the glass plate 2 (110); a polarizing film (120) is bonded between the glass plate 1 (100) and the glass plate 2 (110) by glass glue; and the polarizing film (120) is a transverse polarizing film (120).

3. A glass structure capable of blocking lateral light propagation as claimed in claim 2, characterized in that: A plurality of grating strips (101) are evenly arranged on the front surface of the glass plate 1 (100), and a grating groove (102) is provided between every two of the grating strips (101). A frame 1 (200) is symmetrically installed on the upper edge and the lower edge of the front surface of the glass plate 1 (100).

4. A glass structure capable of blocking lateral light propagation as claimed in claim 3, characterized in that: A frame 2 (220) is symmetrically mounted on the left edge and the right edge of the front surface of the glass plate 1 (100), the frame 1 (200) and the frame 2 (220) are in a U-shaped structure, the cross section of the frame 1 (200) is in a U-shaped structure, and the rear edge of the upper surface of the frame 1 (200) is evenly mounted with fixing parts (210).

5. A glass structure capable of blocking lateral light propagation as claimed in claim 4, characterized in that: A plurality of adjustment members (230) are evenly mounted on the upper surface of the frame one (200); the number and position of the adjustment members (230) match the number and position of the baffles (240); and a baffle (240) is rotatably mounted on the inner surface between two frame ones (200).

6. A glass structure capable of blocking lateral light propagation as claimed in claim 5, characterized in that: Each of the baffles (240) has the same structure, and each of the baffles (240) abuts against each other.