Window capable of emitting light
By setting out light modules and light sources on the edge of the window, using Rayleigh boards to form a blue sky effect and simulate sunlight exposure, it solves the problem that windows cannot provide sky vision and improves the comfort of the indoor environment.
Patent Information
- Application Number
- PCT/CN2024/076559
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-02-07
- Publication Date
- 2025-08-14
AI Technical Summary
The existing window structure cannot provide a visual effect with sky, resulting in a low comfort in the indoor environment, especially in areas where natural light cannot be exposed to. Long-term life can easily make people feel irritated.
A luminous window is designed, and a light-emitting module is provided on the edge of the window frame, including a light-transmitting window cover and a light source heat dissipation bracket, fixed the first and second light sources, use Rayleigh boards to form a blue sky effect, and simulate sunlight irradiation through the second light source, and optimize the light distribution with a decorative layer plate and light-absorbing isolation ring.
The windows are realized with the visual effect of sun exposure and blue sky effects, enriching the use scenarios of lamps, alleviating the depressed indoor environment, and improving comfort.
Smart Images

Figure CN2024076559_14082025_PF_FP_ABST
Abstract
Description
A luminous window Technical Field
[0001] The present invention relates to the technical field of lamps, and in particular to a luminous window. Background Art
[0002] In architecture, a window refers to an opening built in a wall or roof, which is mainly used to allow light to enter the room, or as a channel for the exchange of air and heat between indoor and outdoor, creating a comfortable environment indoors. Technical issues
[0003] With the development of modern architecture, many buildings and interior spaces are now blocked from sunlight, such as some basements and rooms on the same floor surrounded by surrounding trees. While these environments can rely on lighting fixtures to provide additional light, living in windowless spaces for long periods of time can easily lead to irritability and a low level of comfort. Existing lighting fixtures and window structures are unable to create a window structure that allows for a visual effect of the sky. Technical Solutions
[0004] The object of the present invention is to provide a luminous window in view of the defects and shortcomings of the prior art.
[0005] To achieve the above object, the technical solution adopted by the present invention is:
[0006] The luminous window described in the present invention includes a window frame; light emitting modules are provided on each edge of the window frame; the light emitting modules include a light-transmitting window cover and a light source heat dissipation bracket; a first light source is fixed to each of the light source heat dissipation brackets; a second light source is provided on at least one of the light source heat dissipation brackets; the light emitting direction of the second light source is toward the light-transmitting window cover; a Rayleigh plate is fixed inside the window frame; the light emitting direction of the first light source is toward the side surface of the Rayleigh plate; the window frame and the light-transmitting window cover are both fixed to the light source heat dissipation bracket.
[0007] Furthermore, a decorative layer plate is provided on a side of the Rayleigh plate away from the light-transmitting window cover; and the decorative layer plate is fixed on the light source heat dissipation bracket through a cover plate.
[0008] Furthermore, the decorative layer plate is transparent glass.
[0009] Furthermore, the decorative layer board is reflective paper.
[0010] Furthermore, the decorative layer plate is a reflector.
[0011] Furthermore, a bracket pressing plate is provided on the light source heat dissipation bracket; the bracket pressing plate presses the Rayleigh plate onto the decorative layer plate.
[0012] Furthermore, the light-transmitting window cover is provided with a first card slot and a second card slot; the light source heat dissipation bracket is provided with a first card strip and a second card strip; the first card strip is inserted into the second card slot; the second card strip is inserted into the first card slot.
[0013] Furthermore, light-transmitting window covers are provided on both the front and rear sides of the Rayleigh plate; two bracket pressing plates are provided on the light source heat dissipation bracket; the Rayleigh plate is inserted between the two bracket pressing plates; and the first light source is fixed between the two bracket pressing plates.
[0014] Furthermore, a buffer isolation pad is provided between the decorative layer plate and the cover plate; the cover plate presses the buffer isolation pad onto the decorative layer plate.
[0015] Furthermore, a light-absorbing isolation ring is provided on the edge of the Rayleigh plate away from the light-transmitting window cover, which surrounds the edge of the Rayleigh plate; the surface color of the light-absorbing isolation ring is black; the decorative layer plate presses the light-absorbing isolation ring onto the Rayleigh plate; and the outer surface of the light-absorbing isolation ring extends to the circuit board of the first light source. Beneficial effects
[0016] After adopting the above structure, the beneficial effects of the present invention are as follows: when using the luminous window described in the present invention, a driving power supply is fixed inside the window frame; the window frame is directly embedded in the wall; after the first light source on each edge of the Rayleigh plate emits light, the front of the Rayleigh plate presents a blue sky effect, and the light transmitted by the Rayleigh plate can be used for indoor lighting supplement; a second light source is arranged on the transparent window cover at some edges to form an effect of sunlight irradiating the window frame; the transparent window cover on the other side without the second light source forms an effect of a window frame not irradiated by light; through this structure, the visual effect of sunlight irradiating the window and the effect of being able to see the blue sky through the window frame can be formed, which enriches the use scenarios of the lamp, helps to alleviate the depressing environment indoors, and improves comfort. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] FIG1 is a schematic structural diagram of the present invention;
[0018] FIG2 is a cross-sectional view of a single-side light-emitting window lamp;
[0019] FIG3 is a cross-sectional view of a double-sided light-emitting window lamp;
[0020] FIG4 is a structural diagram of a light-transmitting window cover;
[0021] FIG5 is a structural diagram of a light source heat dissipation bracket in a single-side light-emitting window lamp;
[0022] FIG6 is a structural diagram of a light source heat dissipation bracket in a double-sided light-emitting window lamp;
[0023] FIG7 is a structural diagram of a biparting window module;
[0024] FIG8 is a schematic diagram of a double-sided light-emitting solution for a luminous window after the first light source is turned off.
[0025] Description of reference numerals:
[0026] 1. Window frame; 2. Transparent window cover; 201. First card slot; 202. Second card slot; 3. Handle;
[0027] 4. Rayleigh plate; 5. Second light source; 6. Light source heat dissipation bracket; 601. Bracket pressure plate;
[0028] 602, first card strip; 603, second card strip; 7, first light source; 8, cover plate; 9, decorative layer plate;
[0029] 10. Driving power supply; 11. Light-absorbing isolation ring; 12. Buffer isolation pad; A. Window frame. Best Mode for Carrying Out the Invention
[0030] The present invention will be further described below with reference to the accompanying drawings.
[0031] As shown in Figures 1 to 7, a luminous window according to the present invention includes a window frame 1; light emitting modules are provided on each edge of the window frame 1; the light emitting modules include a light-transmitting window cover 2 and a light source heat dissipation bracket 6; a first light source 7 is fixed to each of the light source heat dissipation brackets 6; a second light source 5 is provided on at least one of the light source heat dissipation brackets 6; the light emitting direction of the second light source 5 is toward the light-transmitting window cover 2; a Rayleigh plate 4 is fixed inside the window frame 1; the light emitting direction of the first light source 7 is toward the side surface of the Rayleigh plate 4; the window frame 1 and the light-transmitting window cover 2 are both fixed to the light source heat dissipation bracket 6;
[0032] The Rayleigh board 4 is essentially the same as the prior art and therefore will not be described in detail. The window frame 1 has an internal fixed driving power source 10. The window frame 1 is directly embedded in the wall. After the first light source 7 on each edge of the Rayleigh board 4 emits light, the front of the Rayleigh board 4 presents a blue sky effect, and the light transmitted by the Rayleigh board 4 can be used for indoor lighting supplementary lighting. A second light source 5 is provided on the transparent window cover 2 at certain edges to create an effect of sunlight shining on the window frame. The transparent window cover 2 on the other side without the second light source 5 creates an effect of a window frame that is not illuminated by light. This structure can create a visual effect of sunlight shining on the window and an effect of seeing the blue sky through the window frame 1, enriching the use scenarios of the lamp and helping to alleviate the depressing indoor atmosphere.
[0033] As a preferred embodiment of the present utility model, a decorative layer plate 9 is provided on the side of the Rayleigh plate 4 away from the light-transmitting window cover 2; the decorative layer plate 9 is fixed on the light source heat dissipation bracket 6 through the cover plate 8; after the light source heat dissipation bracket 6 and the cover plate 8 are fixed, the decorative layer plate 9 is pressed and fixed on the Rayleigh plate 4.
[0034] As a preferred embodiment of the present utility model, the decorative layer plate 9 is made of transparent glass; when the lamp is turned off, the decorative effect of the transparent glass is consistent with the display effect of an ordinary window.
[0035] As a preferred embodiment of the present utility model, the decorative layer plate 9 is reflective paper; in addition to concentrating light as much as possible on the Rayleigh plate 4 to improve the brightness of the lamp, the reflective paper can also prevent the outside from prying into the indoor environment.
[0036] As a preferred embodiment of the present utility model, the decorative layer plate 9 is a reflector; the reflector can not only concentrate the light as much as possible on the Rayleigh plate 4 to improve the brightness of the lamp, but also prevent the outside from prying into the indoor environment.
[0037] As a preferred embodiment of the present utility model, a bracket pressing plate 601 is provided on the light source heat dissipation bracket 6 ; the bracket pressing plate 601 presses the Rayleigh plate 4 onto the decorative layer plate 9 .
[0038] As a preferred embodiment of the present utility model, the light-transmitting window cover 2 is provided with a first card slot 201 and a second card slot 202; the light source heat dissipation bracket 6 is provided with a first card strip 602 and a second card strip 603; the first card strip 602 is snapped into the second card slot 202; the second card strip 603 is snapped into the first card slot 201; before the window frame 1 and the light-transmitting window cover 2 are fixed to the light source heat dissipation bracket 6, the light-transmitting window cover 2 is fixed to the window frame 1 and positioned after the first card strip 602 and the second card strip 603 are snapped into the second card slot 202 and the first card slot 201 respectively.
[0039] As a preferred embodiment of the present utility model, a translucent window cover 2 is provided on both the front and rear sides of the Rayleigh plate 4; two bracket pressing plates 601 are provided on the light source heat dissipation bracket 6; the Rayleigh plate 4 is inserted between the two bracket pressing plates 601; the first light source 7 is fixed between the two bracket pressing plates 601; this structure is set as a double-sided luminous structure, and through a group of first light sources 7 and a Rayleigh plate 4, both the inside and outside of the window can present the effect of a blue sky, and the structure is more compact.
[0040] As a preferred embodiment of the present utility model, a buffer isolation pad 12 is provided between the decorative layer plate 9 and the cover plate 8; the cover plate 8 presses the buffer isolation pad 12 onto the decorative layer plate 9; it can absorb the vibration of the Rayleigh plate 4 and the decorative layer plate 9, and has a shock-absorbing effect on the decorative layer plate 9.
[0041] As a preferred embodiment of the present utility model, the edge of the Rayleigh plate 4 away from the light-transmitting window cover 2 is provided with a light-absorbing isolation ring 11 surrounding the edge of the Rayleigh plate 4; the surface color of the light-absorbing isolation ring 11 is black; the decorative layer plate 9 presses the light-absorbing isolation ring 11 against the Rayleigh plate 4. The outer surface of the light-absorbing isolation ring 11 extends to the circuit board of the first light source 7. The first light source 7 is composed of a lamp board and lamp beads; a cavity is formed by the light-absorbing isolation ring 11, the circuit board, the light source heat dissipation bracket, and the side surface of the Rayleigh plate 4, and the lamp beads are placed in this cavity;
[0042] The light-absorbing isolation ring 11 can be made of EVA black material and is used to block the edge of the Rayleigh plate 4 and absorb stray light.
[0043] The black EVA layer on the light-absorbing isolation ring 11 can absorb stray light emitted by the Rayleigh plate 4 and reduce stray light and glare emitted from the Rayleigh plate 4 .
[0044] As a preferred embodiment of the present utility model, a handle 3 is fixed on the window frame 1 . Example
[0045] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0046] Figures 1 to 6 illustrate a specific embodiment of the present invention: a light-emitting window, wherein a long strip-shaped light source heat dissipation bracket 6 is fixed to each edge of a window frame 1; two light source mounting positions are provided on the light source heat dissipation bracket 6; one mounting position is used to fix a first light source 7; the other mounting position is used to fix a second light source 5;
[0047] A Rayleigh plate 4 is provided in the frame surrounded by each first light source 7; the light emitted by the first light source 7 directly enters the Rayleigh plate 4 from the side surface of the Rayleigh plate 4; part of the light is directly emitted from the front surface of the Rayleigh plate 4, and the other part of the light is emitted from the rear surface of the Rayleigh plate 4 and then reflected by the reflective paper and re-enters the Rayleigh plate 4, and finally all the light can be emitted from the front surface of the Rayleigh plate 4, so that the surface of the Rayleigh plate 4 forms a blue sky effect.
[0048] A transparent window cover 2 is provided in the direction of light emission from the second light source 5. Each second light source 5 is controlled by a separate circuit. The light emitted by the second light source 5 is projected through the transparent window cover 2, so that the position of the transparent window cover 2 creates the effect of sunlight shining on the edge of the window. When the four second light sources 5 are lit simultaneously, the sunlight is coaxial with the window, which is equivalent to illuminating all edges of the window.
[0049] When one side of the light-transmitting window cover 2 is lit and the other light-transmitting window cover 2 is not lit, it is equivalent to the state of horizontal sunlight in the morning or evening;
[0050] When the two adjacent light-transmitting window covers 2 are lit, it is equivalent to the state of sunlight shining obliquely on the window; by switching the second light source 5 at different positions, it is possible to simulate the scene of sunlight shining on the window frame at different times, making the indoor environment closer to nature and more realistic.
[0051] Before installing the lamp, it is necessary to open a hole that matches the window frame 1, and then embed the entire luminous window into the hole. Example
[0052] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0053] FIG3 illustrates a specific embodiment of the present invention: a first light source 7 of a luminous window is disposed directly opposite the side surface of a Rayleigh plate 4. A light-transmitting window cover 2 is disposed on both the front and rear sides of the Rayleigh plate 4. A second light source 5 is disposed within the light-transmitting window cover 2. Two support plates 601 are disposed on a light source heat dissipation bracket 6. The Rayleigh plate 4 is inserted between the two support plates 601. The first light source 7 is fixed between the two support plates 601.
[0054] Light from the first light source 7 enters through the side surface of the Rayleigh plate 4 and then exits from the front and rear ends of the plate 4, creating a visual effect of a blue sky through the window frame 1 and helping to alleviate the oppressive atmosphere indoors. Two rooms can share a single illuminated window. The two illuminated windows share the first light source 7, light source heat dissipation bracket 6, and Rayleigh plate 4, creating a double-sided window display effect and saving on lamp costs. Example
[0055] As shown in FIG8 , the luminous windows can be installed in a modular manner, by installing multiple luminous windows in a window frame A to form a modular structure.
[0056] The two luminous windows form a biparting window module, and the two luminous windows emit light at the same time, thereby increasing the brightness of the indoor environment. Example
[0057] As shown in Figure 8, luminous windows can be installed on the walls of two adjacent rooms, or between a room and a hallway. Because the Rayleigh panel 4 provides excellent light transmission, installing the luminous window on the window is equivalent to being separated only by the Rayleigh panel. Therefore, users can observe the environment on the other side through the Rayleigh panel 4, functioning similarly to a conventional transparent window. Example
[0058] As shown in FIG3 , a double-sided luminous window light can be installed on an outdoor wall. When luminous on both sides, light is emitted through the Rayleigh plates 4 on both sides, which can create sky and lighting effects for both indoors and outdoors in cloudy weather and at night, enriching the use of luminous windows and improving the decorative effect of buildings.
[0059] When using the present invention, a driving power source is fixed inside the window frame; the window frame is directly embedded in the wall; after light is emitted by the first light source on each edge of the Rayleigh plate, the front of the Rayleigh plate presents a blue sky effect, and the light transmitted by the Rayleigh plate can be used for indoor lighting supplementary lighting; a second light source is provided on the transparent window cover at certain edges to create the effect of sunlight shining on the window frame; the transparent window cover on the other side without the second light source creates the effect of a window frame not being illuminated by light; this structure can create the visual effect of sunlight shining on the window, and the effect of the blue sky can be seen through the window frame, enriching the use scenarios of the lamp and helping to alleviate the depressing indoor atmosphere. Before the window frame and transparent window cover are fixed to the light source heat dissipation bracket, the first clip and the second clip are respectively inserted into the second clip slot and the first clip slot, and then the transparent window cover is fixed to the window frame and positioned; this structure is set to a double-sided light-emitting structure, and a set of first light sources and a Rayleigh plate can make both the inside and outside of the window present the blue sky effect, and the structure is more compact.
[0060] The above description is only a preferred embodiment of the present invention. Therefore, any equivalent changes or modifications made according to the structure, characteristics and principles described in the scope of the patent application of the present invention are included in the scope of the patent application of the present invention.
Claims
1. A luminous window, characterized in that: It comprises a window frame (1); a light emitting module is provided on each edge of the window frame (1); the light emitting module comprises a light-transmitting window cover (2) and a light source heat dissipation bracket (6); a first light source (7) is fixed on each of the light source heat dissipation brackets (6); a second light source (5) is provided on at least one of the light source heat dissipation brackets (6); the light emitting direction of the second light source (5) is toward the light-transmitting window cover (2); a Rayleigh plate (4) is fixed inside the window frame (1); the light emitting direction of the first light source (7) is toward the side surface of the Rayleigh plate (4); the window frame (1) and the light-transmitting window cover (2) are both fixed on the light source heat dissipation bracket (6).
2. The luminous window according to claim 1, characterized in that: A decorative layer plate (9) is provided on the side of the Rayleigh plate (4) away from the light-transmitting window cover (2); the decorative layer plate (9) is fixed to the light source heat dissipation bracket (6) via a cover plate (8).
3. The luminous window according to claim 2, characterized in that: The decorative layer plate (9) is transparent glass.
4. The luminous window according to claim 2, characterized in that: The decorative layer board (9) is reflective paper.
5. The luminous window according to claim 2, characterized in that: The decorative layer plate (9) is a reflector.
6. The luminous window according to claim 2, characterized in that: A bracket pressing plate (601) is provided on the light source heat dissipation bracket (6); the bracket pressing plate (601) presses the Rayleigh plate (4) onto the decorative layer plate (9).
7. The luminous window according to claim 1, characterized in that: The light-transmitting window cover (2) is provided with a first card slot (201) and a second card slot (202); the light source heat dissipation bracket (6) is provided with a first card strip (602) and a second card strip (603); the first card strip (602) is inserted into the second card slot (202); and the second card strip (603) is inserted into the first card slot (201).
8. The luminous window according to claim 1, characterized in that: Transparent window covers (2) are provided on both the front and rear sides of the Rayleigh plate (4); two bracket pressing plates (601) are provided on the light source heat dissipation bracket (6); the Rayleigh plate (4) is inserted between the two bracket pressing plates (601); and the first light source (7) is fixed between the two bracket pressing plates (601).
9. The luminous window according to claim 2, characterized in that: A buffer isolation pad (12) is provided between the decorative layer plate (9) and the cover plate (8); the cover plate (8) presses the buffer isolation pad (12) onto the decorative layer plate (9).
10. The luminous window according to claim 2, characterized in that: The edge of the Rayleigh plate (4) away from the light-transmitting window cover (2) is provided with a light-absorbing isolation ring (11) surrounding the edge of the Rayleigh plate (4); the surface color of the light-absorbing isolation ring (11) is black; the decorative layer plate (9) presses the light-absorbing isolation ring (11) onto the Rayleigh plate (4); the outer surface of the light-absorbing isolation ring (11) extends to the circuit board of the first light source (7).
Citation Information
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