High-safety fusible daylighting panel
By installing waterproof, flame retardant, light-transmitting and corrosion-resistant layers in the lighting panel and equipped with sealing components, the safety and sealing problems of the lighting panel structure are solved, and high safety and good light-transmitting are achieved to prevent rain leakage and fire.
Patent Information
- Application Number
- CN202422535415.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The existing lighting panels have poor functional structures, low safety performance, and are prone to leaking gaps during overlapping, affecting practicality.
The double-layer fusible daylighting plate body is adopted, and the internal functional layer components include waterproof, flame retardant, light-transmitting and corrosion-resistant layers. They are equipped with sealing components to seal the gaps and melt themselves at high temperatures using fusible materials.
It improves the safety and sealing of the skylight, prevents rain leakage, enhances light transmittance and service life, and avoids fire risks.
Smart Images

Figure CN223305288U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of skylight panels, and in particular to a fusible skylight panel with high safety. Background Art
[0002] Skylights are created by creating a hole in the roof panel, with a surrounding lining, and installing a skylight made of a flat, translucent material. The hole can be large or small, and sometimes a roof panel can be removed to create a skylight. In this case, a lining is created on the adjacent roof panel, with purlins added to accommodate the flat, translucent material. Fusible skylights can also be used as smoke exhaust ducts.
[0003] A search of the announcement number CN214461777U reveals a skylight panel, which "comprises: an upper panel; a lower panel, one end of which is hinged to one end of the upper panel and the other end of which is detachably connected to the other end of the upper panel via a switch structure; a skylight layer, which is sandwiched between the upper and lower panels; and an unlocking plate, which is formed to match the switch structure to control the locking or unlocking of the switch structure. This technical solution solves the problem of poor performance of existing skylight panels."
[0004] With regard to the above-mentioned related technologies, the inventors believe that the existing skylight structure has poor functionality and low safety performance when in use; secondly, the existing skylight structure generally overlaps one skylight on another skylight during installation, which easily produces a certain overlap gap, which is easy to leak rain on rainy days, and does not have a sealing component, making it inconvenient to seal the overlap gap of the skylight, reducing the practicality of the skylight structure. Utility Model Content
[0005] The purpose of the present application is to provide a fusible skylight with high safety, so as to improve the problems of low safety performance of the existing skylight structure during use and the inconvenience of sealing the gaps between the skylights.
[0006] The present application provides a highly safe fusible skylight panel that adopts the following technical solution:
[0007] A highly safe fusible skylight panel comprises a skylight panel body, wherein two skylight panel bodies are provided, the two skylight panel bodies are movably overlapped, a sealing component is commonly provided at the top ends of the two skylight panel bodies, a functional layer component is provided inside the two skylight panel bodies, the functional layer component comprises a waterproof layer, the top end of the waterproof layer is fixedly connected to the upper inner wall of the skylight panel body, the bottom end of the waterproof layer is fixedly connected to a flame retardant layer, and the bottom end of the flame retardant layer is fixedly connected to a light-transmitting layer, the bottom end of the light-transmitting layer is fixedly connected to a corrosion-resistant layer, and the bottom end of the corrosion-resistant layer is fixedly connected to the lower inner wall of the skylight panel body.
[0008] By adopting the above technical solution, the sealing component is used to seal the gaps generated when the skylight body is overlapped. Through the setting of the functional layer component, the waterproof layer plays a waterproof role, the flame retardant layer plays a role in making the skylight body have a flame retardant effect, effectively avoiding the occurrence of fire accidents, and the light-transmitting layer plays a role in making the skylight body have good light transmittance, so that sufficient natural light can be obtained in the room and the feeling of darkness can be avoided. The setting of the corrosion-resistant layer makes it easier for the skylight body to be used for a longer service life, thereby improving the safety performance of the skylight structure.
[0009] Optionally, the sealing assembly includes a sealing sleeve, which is movably clamped on one side of the top of the two light-collecting panel bodies, and the upper inner wall of the sealing sleeve is fixedly connected to two clamping blocks, wherein the top of one of the light-collecting panel bodies is provided with two through-type first clamping slots for use with the two clamping blocks, and the top of the other light-collecting panel body is provided with two second clamping slots for use with the clamping blocks, and the clamping blocks are movably clamped on the inner walls of the two corresponding first clamping slots and the second clamping slots.
[0010] By adopting the above technical solution, the first card slot and the second card slot cooperate with the card block to facilitate the sealing sleeve to be placed at the overlap of the two lighting board bodies, thereby sealing the overlap of the lighting board bodies.
[0011] Optionally, the waterproof layer, flame retardant layer, light-transmitting layer and corrosion-resistant layer are of the same size.
[0012] By adopting the above technical solution, the waterproof layer, the flame retardant layer, the light-transmitting layer and the corrosion-resistant layer are used in combination, so that the skylight body is more functional when in use.
[0013] Optionally, both the lighting panel bodies and the sealing sleeve are made of fusible materials.
[0014] By adopting the above technical solution, the lighting board body can melt automatically when it reaches a certain temperature, and no droplets will be generated during the melting.
[0015] Optionally, four first mounting holes are opened at the top of the sealing shell, and four second mounting holes and four third mounting holes are opened at the top of the two lighting panel bodies respectively, and the inner walls of the corresponding first mounting holes, second mounting holes and third mounting holes are commonly threadedly connected with bolts.
[0016] By adopting the above technical solution, the corresponding first mounting holes and the second mounting holes are used together with the bolts to facilitate the stable connection of the sealing sleeve to the two lighting board bodies, thereby preventing the sealing sleeve from falling off.
[0017] Optionally, protective sleeves are movably connected to the outer surfaces of the four bolts.
[0018] By adopting the above technical solution, the protective sleeve plays a role in protecting the bolts, preventing the bolts from being exposed to the outside for a long time and rusting.
[0019] Optionally, inner walls of the first mounting hole, the second mounting hole and the third mounting hole are all provided with threads, and the inner wall threads of the first mounting hole, the second mounting hole and the third mounting hole all match the outer surface threads of the bolt.
[0020] By adopting the above technical solution, the first mounting hole, the second mounting hole and the third mounting hole can be better matched with the bolts, so that the connection of the sealing sleeve is more stable.
[0021] Optionally, the inner wall of the sealing sleeve is inclined, and the inner wall of the sealing sleeve is made of rubber.
[0022] By adopting the above technical solution, the inclined setting makes it easier for the sealing sleeve to fit better with the surface of the lighting board body when it is sleeved, and the sealing effect of the sealing sleeve made of rubber is better.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. The utility model provides functional layer components to facilitate the use of the skylight board with waterproof, flame retardant, light-transmitting and corrosion-resistant properties. At the same time, the skylight board has fusible properties. When the temperature reaches a certain level, the skylight board will melt automatically without generating molten droplets to cause secondary damage, thereby improving the safety performance of the skylight board structure.
[0025] 2. The utility model provides a sealing component to facilitate sealing the gaps between the overlapping light panels, thereby preventing the light panel structure from leaking when in use and improving the practicality of the light panel structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic structural diagram of the utility model.
[0027] Figure 2 It is a schematic diagram of the cross-sectional structure of the functional layer component of the utility model.
[0028] Figure 3 It is a schematic diagram of the explosive structure of the sealing component of the utility model.
[0029] Figure 4 This utility model Figure 3 A magnified schematic diagram of the structure in the middle.
[0030] Figure 5 It is an exploded schematic diagram of a partial structure of the sealing component of the utility model.
[0031] In the figure, 1. Skylight board body; 2. Functional layer assembly; 21. Corrosion-resistant layer; 22. Light-transmitting layer; 23. Flame-retardant layer; 24. Waterproof layer; 3. Sealing assembly; 31. Sealing sleeve; 32. Block; 33. First slot; 34. Second slot; 35. First mounting hole; 36. Bolt; 37. Protective cover; 38. Third mounting hole; 39. Second mounting hole. DETAILED DESCRIPTION
[0032] The following is combined with Figure 1 -Attached Figure 5 , further details of this application are given.
[0033] Example
[0034] A highly safe fusible skylight comprises two skylight bodies 1. The two skylight bodies 1 are movably overlapped to facilitate splicing of the skylight bodies 1. Both skylight bodies 1 are made of fusible material, so that the skylight bodies 1 melt automatically when a certain temperature is reached without generating molten droplets, making the skylight structure safer when in use.
[0035] The interior of the two skylight bodies 1 is provided with a functional layer assembly 2. The arrangement of the functional layer assembly 2 facilitates the skylight structure to have certain functionality. The functional layer assembly 2 includes a waterproof layer 24. The waterproof layer 24 plays a waterproof role. The top of the waterproof layer 24 is fixedly connected to the upper inner wall of the skylight body 1.
[0036] The bottom end of the waterproof layer 24 is fixedly connected to a flame retardant layer 23, which makes the skylight structure flame retardant and effectively avoids the occurrence of fire accidents. The bottom end of the flame retardant layer 23 is fixedly connected to a light-transmitting layer 22, which makes the skylight structure more transparent, so that sufficient light can be obtained indoors.
[0037] The bottom end of the light-transmitting layer 22 is fixedly connected to the corrosion-resistant layer 21. The setting of the corrosion-resistant layer 21 facilitates the corrosion resistance of the skylight structure, thereby extending the service life of the skylight structure. The bottom end of the corrosion-resistant layer 21 is fixedly connected to the lower inner wall of the skylight body 1.
[0038] The waterproof layer 24, the flame retardant layer 23, the light-transmitting layer 22 and the corrosion-resistant layer 21 are of the same size, and the waterproof layer 24, the flame retardant layer 23, the light-transmitting layer 22 and the corrosion-resistant layer 21 are conveniently used in conjunction with each other to improve the safety of the skylight structure.
[0039] The tops of the two skylight bodies 1 are jointly provided with a sealing assembly 3, which serves to seal the overlap seams produced when the skylight bodies 1 are overlapped, thereby preventing the skylight structure from leaking when in use;
[0040] The sealing assembly 3 includes a sealing sleeve 31, which is movably connected to one side of the top of the two skylight bodies 1. The sealing sleeve 31 serves to cover the overlapping gap between the two adjacent skylight bodies 1. The inner wall of the sealing sleeve 31 is inclined, so that the sealing sleeve 31 fits better with the surface of the skylight body 1.
[0041] The inner wall of the sealing shell 31 is made of rubber material, which makes the sealing shell 31 more sealing. The sealing shell 31 is made of fusible material, so that the sealing shell 31 can also melt by itself.
[0042] The upper inner wall of the sealing sleeve 31 is fixedly connected to two clamping blocks 32. The top of one of the lighting panel bodies 1 is provided with two through-type first clamping grooves 33 for use with the two clamping blocks 32, and the top of the other lighting panel body 1 is provided with two second clamping grooves 34 for use with the clamping blocks 32. The outer surface of the clamping block 32 is movably connected to the inner walls of the two corresponding first clamping grooves 33 and second clamping grooves 34. The first clamping grooves 33 and second clamping grooves 34 cooperate with the clamping block 32 to facilitate the sealing sleeve 31 to be sleeved on two adjacent lighting panel bodies 1, thereby achieving sealing of the overlapping gap.
[0043] The inner wall shapes of the first card slot 33 and the second card slot 34 are the same as the outer surface shape of the card block 32, so that the first card slot 33 and the second card slot 34 can better cooperate with the card block 32 for use;
[0044] Four first mounting holes 35 are defined at the top of the sealing sleeve 31, and four second mounting holes 39 and four third mounting holes 38 are defined at the tops of the two skylight bodies 1, respectively. Bolts 36 are threadedly connected to the inner walls of the corresponding first mounting holes 35, second mounting holes 39, and third mounting holes 38. The first mounting holes 35, second mounting holes 39, and third mounting holes 38 cooperate with the bolts 36 to facilitate the secure attachment of the sealing sleeve 31 to the two adjacent skylight bodies 1.
[0045] The inner walls of the first mounting hole 35, the second mounting hole 39 and the third mounting hole 38 are all provided with threads, and the inner wall threads of the first mounting hole 35, the second mounting hole 39 and the third mounting hole 38 are matched with the outer surface threads of the bolt 36, which makes it easier for the bolt 36 to be screwed into the corresponding first mounting hole 35, the second mounting hole 39 and the third mounting hole 38 more firmly, thereby making the sealing housing 31 more stably connected to the lighting board body 1;
[0046] The outer surfaces of the four bolts 36 are all movably connected with protective sleeves 37, which serve to protect the bolts 36 and prevent the bolts 36 from rusting due to being exposed to the outside for a long time. The four bolts 36 are distributed at equal intervals, which makes the connection effect of the bolts 36 better.
[0047] Working principle: First, through the setting of the functional layer component 2, the skylight body 1 is made of a fusible material, which makes it easy for the skylight body 1 to melt by itself when it reaches a certain temperature without producing molten droplets, making the skylight structure safer when in use;
[0048] The waterproof layer 24 plays a waterproof role, and the flame retardant layer 23 plays a role in making the lighting board structure flame retardant, thereby effectively avoiding the occurrence of fire accidents.
[0049] The light-transmitting layer 22 makes the light-transmitting plate structure more transparent, and the corrosion-resistant layer 21 is provided to facilitate the corrosion-resistant performance of the light-transmitting plate structure, thereby extending the service life of the light-transmitting plate structure and achieving a stronger functionality of the light-transmitting plate structure during use;
[0050] When the skylight structure needs to be installed, one skylight body 1 is overlapped on the other skylight body 1 at a suitable position;
[0051] Then, through the sealing assembly 3, the first card slot 33 and the second card slot 34 cooperate with the card block 32 to use the sealing shell 31 on the two adjacent lighting board bodies 1 to achieve sealing of the overlapping gap;
[0052] At the same time, the setting of the rubber material makes the sealing shell 31 more sealing, and the fusible material makes the sealing shell 31 melt by itself;
[0053] Next, screw the bolts 36 into the corresponding first mounting holes 35, second mounting holes 39, and third mounting holes 38, so that the sealing housing 31 is stably connected to the two adjacent lighting board bodies 1.
[0054] At the same time, the protective cover 37 plays a role in protecting the bolt 36, preventing the bolt 36 from being exposed to the outside for a long time and rusting.
[0055] The examples of this specific embodiment are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, any equivalent changes made based on the structure, shape, and principle of this application should be included in the scope of protection of this application.
Claims
1. A fusible skylight with high safety, comprising a skylight body (1), characterized in that: Two skylight board bodies (1) are provided, the two skylight board bodies (1) are movably overlapped, a sealing component (3) is commonly provided at the top ends of the two skylight board bodies (1), and a functional layer component (2) is provided inside the two skylight board bodies (1); The functional layer assembly (2) comprises a waterproof layer (24), the top end of the waterproof layer (24) is fixedly connected to the upper inner wall of the skylight board body (1), the bottom end of the waterproof layer (24) is fixedly connected to the flame retardant layer (23), and the bottom end of the flame retardant layer (23) is fixedly connected to the light-transmitting layer (22), the bottom end of the light-transmitting layer (22) is fixedly connected to the corrosion-resistant layer (21), and the bottom end of the corrosion-resistant layer (21) is fixedly connected to the lower inner wall of the skylight board body (1).
2. A highly safe fusible skylight panel according to claim 1, characterized in that: The sealing assembly (3) comprises a sealing sleeve (31), the sealing sleeve (31) being movably engaged with one side of the top end of the two skylight board bodies (1), and the upper inner wall of the sealing sleeve (31) being fixedly connected with two clamping blocks (32), wherein the top end of one of the skylight board bodies (1) is provided with two through-type first clamping grooves (33) for use with the two clamping blocks (32), and the top end of the other skylight board body (1) is provided with two second clamping grooves (34) for use with the clamping blocks (32), and the clamping blocks (32) are movably engaged with the inner walls of the two corresponding first clamping grooves (33) and second clamping grooves (34).
3. The high-safety fusible skylight panel according to claim 1, characterized in that: The waterproof layer (24), the flame retardant layer (23), the light-transmitting layer (22) and the corrosion-resistant layer (21) are of the same size.
4. A fusible skylight with high safety according to claim 2, characterized in that: The two lighting panel bodies (1) and the sealing sleeve (31) are both made of fusible materials.
5. The highly safe fusible skylight panel according to claim 2, characterized in that: The top of the sealing shell (31) is provided with four first mounting holes (35), and the tops of the two lighting board bodies (1) are respectively provided with four second mounting holes (39) and four third mounting holes (38), and the inner walls of the corresponding first mounting holes (35), second mounting holes (39) and third mounting holes (38) are commonly threadedly connected with bolts (36).
6. The highly safe fusible skylight panel according to claim 5, characterized in that: The outer surfaces of the four bolts (36) are all movably clamped with protective sleeves (37).
7. The highly safe fusible skylight panel according to claim 5, characterized in that: The inner walls of the first mounting hole (35), the second mounting hole (39) and the third mounting hole (38) are all provided with threads, and the inner wall threads of the first mounting hole (35), the second mounting hole (39) and the third mounting hole (38) are all matched with the outer surface threads of the bolt (36).
8. The highly safe fusible skylight panel according to claim 2, characterized in that: The inner wall of the sealing sleeve (31) is inclined, and the inner wall of the sealing sleeve (31) is made of rubber.
Citation Information
Patent Citations
Daylighting panel
CN214461777U