Daylighting roof system
By introducing glass louvers and high-reverse film into the lighting roof system, the problem that the existing lighting roof system cannot effectively block the sunlight is solved, and higher sunshade performance and building energy-saving effects are achieved.
Patent Information
- Application Number
- CN202421500065.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-27
AI Technical Summary
The existing lighting roof system cannot effectively block the sunlight, resulting in high temperature inside the building and increasing the power consumption of air conditioners.
A daylighting roof system is designed, including a support frame, a light-transmitting plate and glass louvers. The glass blinds are located above the translucent plate and are arranged at a preset angle from the translucent plate to block some sunlight. A high-reverse film is provided on the side of the glass louvers away from the light-transmitting plate to improve the sunlight reflection effect.
By improving the reflection effect of glass louvers on sunlight, the sunshade performance of the lighting roof system is enhanced, a large amount of sunlight is avoided from entering the room, reducing the energy consumption of air conditioners, and improving the energy-saving effect of the building.
Smart Images

Figure CN222862711U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to a skylight system. Background Art
[0002] With the development of the times and the advancement of science and technology, glass curtain walls have become the mainstream of current public buildings. Large-space buildings such as theaters also use more glass skylights. Traditional skylights are formed by splicing glass panels and roof keels. However, existing skylights can only transmit light but cannot block light or have poor shading effects, which causes sunlight to enter from the outside during the day, causing high temperatures inside the building and increasing air conditioning power consumption. Utility Model Content
[0003] In view of this, the utility model provides a skylight system to solve the problem that the skylight cannot block light or has a poor light blocking effect, resulting in sunlight entering from the outside during the day, causing high temperatures inside the building and increasing air conditioning power consumption.
[0004] The utility model provides a skylight system, comprising:
[0005] A supporting frame is arranged on the top of the building, and a light-transmitting opening is formed on the supporting frame;
[0006] A light-transmitting plate is fixedly connected to the supporting frame and covers the light-transmitting opening;
[0007] The glass louver is located above the light-transmitting plate and is arranged at a preset angle with the light-transmitting plate to block part of the sunlight directed toward the light-transmitting plate. A high-reflective film is arranged on the side of the glass louver away from the light-transmitting plate.
[0008] Beneficial effect: By setting glass louvers above the light-transmitting panels and setting high-reflective films on the side of the glass louvers away from the light-transmitting panels, the reflection effect of the glass louvers on sunlight can be improved, thereby improving the sunshade performance of the skylight system, avoiding a large amount of sunlight entering the room during the day and causing high temperatures inside the building, which is beneficial to reducing air-conditioning energy consumption.
[0009] In an optional embodiment, a colored glaze film is provided on a side of the glass louver close to the light-transmitting plate.
[0010] Beneficial effect: a colored glaze film is arranged on the side of the glass louver facing the light-transmitting plate to block sunlight through the colored glaze film, which is beneficial to further improve the sunshade effect of the glass louver.
[0011] In an optional embodiment, a base is provided between the supporting frame and the glass louver, and a hinge assembly and a support rod are provided on the base. The support rod includes various specifications, the hinge assembly is connected to the bottom of the glass louver, and the support rod is connected to the top area of the glass louver, so as to be suitable for supporting and fixing the glass louver.
[0012] Beneficial effect: The base supports and fixes the glass blinds through the hinge assembly and the support rod, and the relative angle between the glass blinds and the light-transmitting plate can be adjusted by adjusting the hinge assembly and changing the length of the support rod, thereby realizing multi-angle adjustment of the glass blinds.
[0013] In an optional embodiment, the hinge assembly includes a fixed seat fixedly connected to the base, and a movable block hinged to the fixed seat, a groove is formed on the side of the movable block facing the glass louver, a partial area of the bottom of the glass louver extends into the groove and abuts against the inner wall of the groove.
[0014] Beneficial effect: by making the inner wall of the channel abut against the bottom of the glass louver, the movable block can support the bottom of the glass louver, and the movable block is hinged with the fixed seat to make the angle of the channel and the glass louver match.
[0015] In an optional embodiment, the fixed seat has a ball joint groove, and the movable block is fixedly connected to a ball joint body at one end close to the fixed seat. The ball joint body is located in the ball joint groove and movably connected to the inner wall of the ball joint groove, so as to form a hinge between the movable block and the fixed seat.
[0016] In an optional embodiment, the support rod includes a sleeve fixedly connected to the base, and a movable rod slidably connected to the sleeve, the movable rod having a first state in which the position is fixed relative to the sleeve, and a second state in which the position is sliding relative to the sleeve, and one end of the movable rod away from the base is movably fixedly connected to the glass blind to adapt to the relative angle between the glass blind and the support rod.
[0017] Beneficial effect: When the movable rod is in the second state, the relative position of the movable rod and the sleeve is adjusted so that the length of the support rod is matched with the spacing between the top area of the glass louver and the base, thereby improving the applicability of the skylight system.
[0018] In an optional embodiment, a connecting plate is provided at one end of the movable rod away from the base, a docking joint is provided at the position of the glass blind corresponding to the connecting plate, a strip groove is opened on the connecting plate corresponding to the moving path of the screw portion of the docking joint, and the screw portion of the docking joint is passed through the strip groove to form a movable fixed connection between the docking joint and the connecting plate.
[0019] Beneficial effect: By starting the strip groove on the connecting plate, when the angle of the glass blinds changes and the position of the movable rod changes accordingly, the screw portion of the docking joint can still be inserted into the strip groove and fixedly connected to the connecting plate at different positions of the strip groove, so that the support rod can support and fix the glass blinds at different angles through the movable fixed connection between the docking joint and the connecting plate.
[0020] In an optional embodiment, a third keel is fixedly connected between the base and the support frame, the third keel is arranged across the support frame, the light-transmitting plate is fixedly connected to the third keel, and a sealant layer is arranged at the joint between the third keel and the light-transmitting plate.
[0021] Beneficial effect: By setting a sealant layer at the joint between the third keel and the light-transmitting plate, and because the third keel is set across the supporting frame to ensure the continuity of the sealant layer, the sealing and waterproof effect of the skylight system is improved.
[0022] In an optional embodiment, the base is extended along the length direction of the third keel, and at least a portion of the base is located above the light-transmitting plate; a rubber strip is connected between the base and the light-transmitting plate, and the rubber strip is suitable for covering the sealant layer to prevent the sealant layer from being exposed to sunlight.
[0023] Beneficial effect: By setting a rubber strip between the base and the light-transmitting plate to cover the sealant layer, the sealant layer is prevented from being aged due to long-term exposure to sunlight, thereby causing aging of the sealant and affecting the waterproof effect.
[0024] In an optional embodiment, a heat insulating member is provided between the base and the third keel.
[0025] Beneficial effect: By arranging a heat insulating member between the base and the third keel to block the heat conduction between the base and the third keel, the thermal insulation performance of the skylight system is improved, the energy consumption of air conditioning or heating in the building is reduced, and energy-saving effects are achieved. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0027] Figure 1 It is a cross-sectional schematic diagram of a part of the skylight system of the utility model along the length direction of the first keel;
[0028] Figure 2 for Figure 1 A partial enlarged view of the middle A;
[0029] Figure 3 It is a cross-sectional schematic diagram of a part of the skylight system of the utility model along the length direction of the second keel;
[0030] Figure 4 for Figure 3 A partial enlarged view of point B in the middle;
[0031] Figure 5 for Figure 3 A partial enlarged view of point C in the middle;
[0032] Figure 6 for Figure 3 A partial enlarged view of point D in the middle.
[0033] Description of reference numerals:
[0034] 1. Support frame; 101; first keel; 102, second keel; 2. third keel; 3. first auxiliary frame; 4. second auxiliary frame; 5. light-transmitting plate; 6. base; 7. first bolt; 8. heat insulation; 9. hinge assembly; 901, movable block; 902, fixed seat; 10. glass louver; 11. support rod; 12. docking joint; 13. second bolt; 14. groove; 15. ball joint; 16. rubber strip; 17. sealant layer; 18. connecting plate; 181, strip groove; 19. fixing plate; 20. rubber pad; 21. screw; 22. fourth bolt. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solution and advantages of the embodiment of the utility model clearer, the technical solution in the embodiment of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiment of the utility model. Obviously, the described embodiment is a part of the embodiment of the utility model, not all the embodiments. Based on the embodiment of the utility model, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the utility model.
[0036] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.
[0037] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0038] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0039] Combine the following Figures 1 to 6 , describing an embodiment of the utility model.
[0040] According to an embodiment of the utility model, a skylight system is provided, comprising:
[0041] A support frame 1 is arranged on the top of the building, and a light-transmitting opening is formed on the support frame 1;
[0042] The light-transmitting plate 5 is fixedly connected to the supporting frame 1 and covers the light-transmitting opening;
[0043] The glass louver 10 is located above the light-transmitting plate 5 and is arranged at a preset angle with the light-transmitting plate 5 so as to block part of the sunlight directed toward the light-transmitting plate 5 . A high-reflective film is arranged on the side of the glass louver 10 away from the light-transmitting plate 5 .
[0044] The skylight system provided in this embodiment is configured with a glass louver 10 disposed above the light-transmitting plate 5 and a high-reflection film disposed on the side of the glass louver 10 away from the light-transmitting plate 5 to improve the reflection effect of the glass louver 10 on sunlight, thereby improving the sunshade performance of the skylight system, preventing a large amount of sunlight from entering the room during the day and causing a high temperature inside the building, which is beneficial to reducing the energy consumption of air conditioning.
[0045] Specifically, the support frame 1 can be arranged in the same horizontal plane or in a slope. The support frame 1 includes a first keel 101 and a second keel 102 arranged at an angle. Taking the support frame 1 arranged in a slope as an example, the first keel 101 is extended along the slope direction of the support frame 1, and the second keel 102 is extended along the slope surface of the support frame 1 and in a direction perpendicular to the length direction of the first keel 101. A plurality of first keels 101 and a plurality of second keels 102 are constructed to form a grid structure, thereby forming a plurality of light-transmitting openings. The light-transmitting plate 5 includes a light-transmitting glass plate, a light-transmitting acrylic plate, etc. The light-transmitting plate 5 covers the light-transmitting opening to ensure that the light-transmitting opening is transparent while preventing rainwater from falling into the building through the light-transmitting hole when it rains.
[0046] Since when light enters the glass, it will show three properties of reflection, absorption and transmission, and cannot completely pass through the glass, so by setting the glass louver 10, part of the sunlight can be blocked, and the side of the glass louver 10 away from the light-transmitting plate 5, that is, the side facing the sun, is provided with a high reflection film to reflect the sunlight, so as to prevent a large amount of sunlight from entering the interior of the building through the glass louver 10 and the light-transmitting plate 5, resulting in a high temperature inside the building, thereby helping to reduce the energy consumed by air conditioning cooling, and helping to achieve building energy saving, and also can prevent the interior of the building from being too bright, which affects the work or rest of the people in the building under the following circumstances, wherein the preset angle between the glass louver 10 and the light-transmitting plate 5 can be determined according to the actual construction needs, so that the glass louver 10 has a better sunlight reflection angle. Compared with the skylight in the related art, the glass louver 10 is added as decoration. When viewed from the outside, the glass louver can also reflect the surrounding sky and surrounding environment, which can not only play a sunshade effect, but also improve the effect of beauty and novelty. As a preferred implementation form, the glass louver 10 adopts 6mm+2.28SGP+6mm ultra-white tempered laminated glass.
[0047] In some embodiments, in combination Figures 1 to 6 As shown, a colored glaze film is provided on one side of the glass louver 10 close to the light-transmitting plate 5 .
[0048] The skylight system provided in this embodiment is provided with a colored glaze film on the side of the glass louver 10 facing the light-transmitting plate 5 so as to block the sunlight through the colored glaze film, which is beneficial to further improve the sunshade effect of the glass louver 10 .
[0049] As a feasible implementation form, the colored glaze film is distributed in the form of multiple spaced dots on the side of the glass blind 10 facing the light-transmitting plate 5, so as to block the sunlight through the dotted colored glaze film, which is beneficial to further improve the shading effect of the glass blind 10, and at night, the lights inside the building shining on the colored glaze dots are more conducive to the lighting.
[0050] In some embodiments, in combination Figures 1 to 6 As shown, a base 6 is arranged between the supporting frame 1 and the glass louver 10, and a hinge assembly 9 and a support rod 11 are arranged on the base 6. The support rod 11 includes various specifications. The hinge assembly 9 is connected to the bottom of the glass louver 10, and the support rod 11 is connected to the top area of the glass louver 10, so as to be suitable for supporting and fixing the glass louver 10.
[0051] The skylight system provided in this embodiment has a base 6 that supports and fixes the glass blind 10 through a hinge assembly 9 and a support rod 11, and by adjusting the hinge assembly 9 and changing the length of the support rod 11, the angle of the glass blind 10 relative to the light-transmitting plate 5 can be adjusted, thereby realizing multi-angle adjustment of the glass blind 10.
[0052] Specifically, the length specifications of the support rod 11 include various types, the base 6 is fixedly connected to the support frame 1, the hinge assembly 9 is in contact with the bottom of the glass louver 10 to form a support limit for the bottom of the glass louver 10, and the glass louver 10 is suitable for rotating around the hinge axis of the hinge assembly 9. After adjusting the angle of the glass louver 10, the support rod 11 is adjusted to a suitable length, and one end of the support rod 11 is fixedly connected to the base 6, and the other end is fixedly connected to the top area of the glass louver 10 to form a support and fixation for the top area of the glass louver 10, so that the base 6 forms a support and fixation for the glass louver 10 through the hinge assembly 9 and the support rod 11, and then the glass louver 10 and the light-transmitting plate 5 are set at a preset angle. The adjustment of the length of the support rod 11 can be in the form of replacing the support rod 11 with different lengths, or in the form of telescopic adjustment described below, so as to change the length of the support rod 11 to form a support and fixation for the top area of the glass louver 10 with different inclination angles, thereby realizing multi-angle adjustment of the glass louver 10.
[0053] In some embodiments, in combination Figures 1 to 6 As shown, the hinge assembly 9 includes a fixed seat 902 fixedly connected to the base 6, and a movable block 901 hinged to the fixed seat 902. The movable block 901 has a groove 14 formed on the side facing the glass louver 10. A partial area of the bottom of the glass louver 10 extends into the groove 14 and abuts against the inner wall of the groove 14.
[0054] The skylight system provided in this embodiment makes the inner wall of the groove 14 abut against the bottom of the glass louver 10 so that the movable block 901 can support the bottom of the glass louver 10, and the movable block 901 is hinged with the fixed seat 902 so that the angle of the groove 14 and the glass louver 10 can be adapted.
[0055] Specifically, the fixing seat 902 is fixedly connected to the base 6 by the second bolt 13, the movable block 901 is hinged to the side of the fixing seat 902 away from the base 6, and the movable block 901 is recessed in a local area of the end surface facing the glass louver 10 to form a groove 14, and the groove 14 passes through the movable block 901 along the length direction parallel to the second keel 102. By adjusting the relative angle between the movable block 901 and the base 6, a part of the bottom area of the glass louver 10 falls into the groove 14 and abuts against the inner wall of the groove 14, so that the movable block 901 forms a support limit for the bottom of the glass louver 10. Preferably, a rubber pad 20 is fixedly connected to the inner wall of the groove 14, and the bottom of the glass louver 10 abuts against the inner wall of the groove 14 through the rubber pad 20, thereby forming a flexible abutment to avoid the rigid abutment between the glass louver 10 and the movable block 901, which may damage the glass louver 10.
[0056] In some embodiments, in combination Figures 1 to 6As shown, the fixed seat 902 has a ball joint groove, and the movable block 901 is fixedly connected to a ball joint body 15 at one end close to the fixed seat 902. The ball joint body 15 is located in the ball joint groove and movably connected to the inner wall of the ball joint groove, so as to enable the movable block 901 to form a hinge with the fixed seat 902.
[0057] Specifically, the fixed seat 902 has a ball joint groove on one side facing away from the base 6 , and the ball joint body 15 is located inside the ball joint groove and can rotate relative to the inner wall of the ball joint groove, so that the movable block 901 is hinged with the fixed seat 902 through the ball joint body 15 .
[0058] In some embodiments, in combination Figures 1 to 6 As shown, the support rod 11 includes a sleeve 111 fixedly connected to the base 6, and a movable rod 112 slidably connected in the sleeve 111. The movable rod 112 has a first state in which the position is fixed relative to the sleeve 111, and a second state in which the position is sliding relative to the sleeve 111. The end of the movable rod 112 away from the base 6 is movably fixedly connected to the glass blind 10 to adapt to the relative angle between the glass blind 10 and the support rod 11.
[0059] The skylight system provided in this embodiment adjusts the relative positions of the movable rod 112 and the sleeve 111 when the movable rod 112 is in the second state so that the length of the support rod 11 is matched with the spacing between the top area of the glass blind 10 and the base 6, thereby realizing multi-angle adjustment of the glass blind 10, which is beneficial to improving the applicability of the skylight system.
[0060] Specifically, the end of the sleeve 111 close to the base 6 is fixedly connected to the fixing plate 19, and the fixing plate 19 is fixedly connected to the base 6 through the fourth bolt 22. Preferably, the axial direction of the sleeve 111 is perpendicular to the plane where the support frame 1 is located. The movable rod 112 is slidably arranged at the end of the sleeve 111 away from the base 6, and a part of the area is located inside the sleeve 111. At least one threaded hole is provided on the side wall of the sleeve 111 corresponding to the movable rod 112. The screw 21 is inserted into the threaded hole and has a locked state in which the movable rod 112 is rotated around its own axis to press against the movable rod 112 inside the sleeve 111, and a loosened state in which the movable rod 112 is rotated around its own axis to move away from the movable rod 112 inside the sleeve 111. When the screw 21 is in the loosened state, the movable rod 112 is in the second state and can slide relative to the sleeve 111, thereby adjusting the spacing between the two ends of the support rod 11. After the support rod 11 is adjusted to an appropriate length to adapt to the spacing between the top area of the glass blind 10 and the base 6, the screw 21 is tightened to put it in a locked state. At this time, the movable rod 112 is in the first state, and its relative position with the sleeve 111 is fixed, so that the support rod 11 can support and fix the top area of the glass blind 10.
[0061] In some embodiments, in combination Figures 1 to 6As shown, a connecting plate 18 is provided at one end of the movable rod 112 away from the base 6, and a docking joint 12 is provided at a position of the glass blind 10 corresponding to the connecting plate 18. A strip groove 181 is provided on the connecting plate 18 corresponding to the moving path of the screw portion of the docking joint 12. The screw portion of the docking joint 12 is inserted into the strip groove 181, so as to form a movable fixed connection between the docking joint 12 and the connecting plate 18.
[0062] The skylight system provided in this embodiment starts with a strip groove 181 on the connecting plate 18, so that when the angle of the glass blind 10 changes and the position of the movable rod 112 changes accordingly, the screw portion of the docking joint 12 can still be inserted into the strip groove 181 and fixedly connected to the connecting plate 18 at different positions of the strip groove 181, so that the support rod 11 can support and fix the glass blind 10 at different angles through the movable fixed connection between the docking joint 12 and the connecting plate 18.
[0063] Specifically, as the inclination angle of the glass louver 10 changes, and as the length of the support rod 11 changes, the relative positions of the connecting plate 18 at the top of the support rod 11 and the docking joint 12 also change. Therefore, a strip groove 181 is provided on the connecting plate 18 corresponding to the moving path of the screw portion of the docking joint 12, so that when the glass louver 10 is at different inclination angles, the screw portion of the docking joint 12 is always located inside the strip groove 181, and a fixed connection is formed with the connecting plate 18 through a nut at different positions of the strip groove 181. The support rod 11 forms a movable fixed connection with the docking joint 12 through the connecting plate 18, so as to form a fixed connection with the top area of the glass louver 10 at different inclination angles. It should be noted that the docking joint 12 is one of the accessories widely used in connecting glass curtain walls, and belongs to the prior art in this field, so the structural form of the docking joint 12 will not be described in detail here.
[0064] In some embodiments, in combination Figures 1 to 6 As shown, a third keel 2 is fixedly connected between the base 6 and the support frame 1. The third keel 2 is arranged across the support frame 1. The light-transmitting plate 5 is fixedly connected to the third keel 2. A sealant layer 17 is arranged at the joint between the third keel 2 and the light-transmitting plate 5.
[0065] The skylight system provided in this embodiment is provided with a sealant layer 17 at the joint between the third keel 2 and the light-transmitting plate 5. Since the third keel 2 is arranged across the supporting frame 1, the continuity of the sealant layer 17 is ensured, thereby improving the sealing and waterproof effect of the skylight system.
[0066] Specifically, the third keel 2 includes T-shaped steel, box-shaped steel, I-shaped steel, etc. Preferably, the third keel 2 is made of T-shaped steel, which extends along the length direction of the first keel 101, and the flange of the T-shaped steel is fixedly connected to the first keel 101, so that the web of the T-shaped steel is located on the side of the flange of the T-shaped steel away from the first keel 101, the light-transmitting plate 5 is fixedly connected to the web of the T-shaped steel, and the sealant layer 17 is arranged at the joint between the light-transmitting plate 5 and the web of the T-shaped steel. When the first keel 101 is extended along the slope direction of the support frame 1, the length of the third keel 2 is adapted to the distance of the support frame 1 in the slope direction, so that the third keel 2 spans the support frame 1, and the third keel 2 is arranged along the slope direction of the support frame 1 to ensure the continuity of the sealant layer 17, which is conducive to improving the waterproof effect at the sealant layer 17. A first auxiliary frame 3 and a second auxiliary frame 4 are also provided between the third keel 2 and the light-transmitting plate 5. The first auxiliary frame 3 extends along the length direction of the third keel 2 and is fixedly connected to the third keel 2. The second auxiliary frame 4 extends along the direction of the second keel 102 and is fixedly connected to the third keel 2. The light-transmitting plate 5 is bonded to the first auxiliary frame 3 and the second auxiliary frame 4 by structural adhesive, thereby forming a fixed connection with the third keel 2 through the first auxiliary frame 3 and the second auxiliary frame 4. It should be noted that the auxiliary frame as a supporting component of the glass curtain wall belongs to the prior art in this field, so the structural form of the first auxiliary frame 3 and the second auxiliary frame 4 will not be described in detail here.
[0067] In some embodiments, in combination Figures 1 to 6 As shown, the base 6 is extended along the length direction of the third keel 2, and at least a part of the base 6 is located above the light-transmitting plate 5; a rubber strip 16 is connected between the base 6 and the light-transmitting plate 5, and the rubber strip 16 is suitable for covering the sealant layer 17 to prevent the sealant layer 17 from being exposed to sunlight.
[0068] The skylight system provided in this embodiment provides a rubber strip 16 between the base 6 and the light-transmitting plate 5 to cover the sealant layer 17, so as to prevent the sealant layer 17 from aging due to long-term exposure to sunlight, thereby causing aging of the sealant and affecting the waterproof effect.
[0069] Specifically, the base 6 is fixedly connected to the third keel 2 by the first bolt 7. A partial area of the base 6 is located above the light-transmitting plate 5. A rubber strip 16 is fixedly connected to the side of the area facing the light-transmitting plate 5. The rubber strip 16 abuts against the light-transmitting plate 5 so that the rubber strip 16 covers the gap between the base 6 and the light-transmitting plate 5 to block sunlight from irradiating the sealant layer 17, thereby preventing the sealant in the sealant layer 17 from aging under long-term exposure to the sun, which is beneficial to improving the waterproof effect.
[0070] In some embodiments, in combination Figures 1 to 6 As shown, a heat insulating member 8 is provided between the base 6 and the third keel 2 .
[0071] The skylight system provided in this embodiment improves the thermal insulation performance of the skylight system by arranging a heat insulating member 8 between the base 6 and the third keel 2 to block heat conduction between the base 6 and the third keel 2, thereby reducing the energy consumption of air conditioning or heating in the building, and achieving energy-saving effects.
[0072] Specifically, the thermal insulation member 8 includes a thermal insulation blanket and a thermal insulation board. At least one layer of thermal insulation member 8 is arranged between the base 6 and the third keel 2 to improve the effect of blocking heat conduction between the base 6 and the third keel 2, thereby improving the thermal insulation performance of the skylight system, which is beneficial to reducing the energy consumption of air conditioning and cooling inside the building when the outside temperature is high, and is beneficial to reducing the energy consumption of air conditioning and heating or heating inside the building when the outside temperature is low, thereby achieving the effect of building energy saving.
[0073] Obviously, the above embodiments are only examples for clear explanation, and are not intended to limit the implementation methods. Although the embodiments of the present utility model are described in conjunction with the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present utility model, and such modifications and variations are all within the scope defined by the present utility model.
Claims
1. A skylight system, characterized in that: include: A support frame (1) is arranged on the top of a building, and a light-transmitting opening is formed on the support frame (1); A light-transmitting plate (5) is fixedly connected to the supporting frame (1) and covers the light-transmitting opening; The glass louver (10) is located above the light-transmitting plate (5) and is arranged at a preset angle with respect to the light-transmitting plate (5) so as to be suitable for shielding a portion of the sunlight directed toward the light-transmitting plate (5); a high-reflection film is arranged on a side of the glass louver (10) away from the light-transmitting plate (5).
2. The skylight system according to claim 1, characterized in that: A colored glaze film is provided on one side of the glass louver (10) close to the light-transmitting plate (5).
3. The skylight system according to claim 1, characterized in that: A base (6) is arranged between the support frame (1) and the glass louver (10), and a hinge assembly (9) and a support rod (11) are arranged on the base (6). The support rod (11) includes various specifications. The hinge assembly (9) is connected to the bottom of the glass louver (10), and the support rod (11) is connected to the top area of the glass louver (10), so as to be suitable for supporting and fixing the glass louver (10).
4. The skylight system according to claim 3, characterized in that: The hinge assembly (9) comprises a fixed seat (902) fixedly connected to the base (6), and a movable block (901) hinged to the fixed seat (902), wherein a groove (14) is formed on a side of the movable block (901) facing the glass louver (10), and a partial area of the bottom of the glass louver (10) extends into the groove (14) and abuts against an inner wall of the groove (14).
5. The skylight system according to claim 4, characterized in that: The fixed seat (902) has a ball joint groove, and one end of the movable block (901) close to the fixed seat (902) is fixedly connected with a ball joint body (15). The ball joint body (15) is located in the ball joint groove and is movably connected to the inner wall of the ball joint groove, so as to enable the movable block (901) to form a hinge with the fixed seat (902).
6. The skylight system according to claim 4, characterized in that: The support rod (11) comprises a sleeve (111) fixedly connected to the base (6), and a movable rod (112) slidably connected to the sleeve (111); the movable rod (112) has a first state in which the position is fixed relative to the sleeve (111), and a second state in which the position is slidable relative to the sleeve (111); an end of the movable rod (112) away from the base (6) is movably fixedly connected to the glass louver (10) to adapt to the relative angle between the glass louver (10) and the support rod (11).
7. The skylight system according to claim 6, characterized in that: A connecting plate (18) is provided at one end of the movable rod (112) away from the base (6); a docking joint (12) is provided at a position of the glass blind (10) corresponding to the connecting plate (18); a strip groove (181) is provided on the connecting plate (18) corresponding to the moving path of the screw portion of the docking joint (12); the screw portion of the docking joint (12) is inserted into the strip groove (181) so as to form a movable fixed connection between the docking joint (12) and the connecting plate (18).
8. The skylight system according to any one of claims 3 to 7, characterized in that: A third keel (2) is fixedly connected between the base (6) and the support frame (1); the third keel (2) is arranged across the support frame (1); the light-transmitting plate (5) is fixedly connected to the third keel (2); and a sealing adhesive layer (17) is arranged at the joint between the third keel (2) and the light-transmitting plate (5).
9. The skylight system according to claim 8, characterized in that: The base (6) is extended along the length direction of the third keel (2), and at least a part of the base (6) is located above the light-transmitting plate (5); a rubber strip (16) is connected between the base (6) and the light-transmitting plate (5), and the rubber strip (16) is suitable for covering the sealant layer (17) to prevent the sealant layer (17) from being exposed to sunlight.
10. The skylight system according to claim 9, characterized in that: A heat insulating member (8) is provided between the base (6) and the third keel (2).