Adjustable sun shield assembly and system
By designing adjustable sunshade components and utilizing non-circular rotating shafts and circular turntables, the angle of photovoltaic modules on the terminal building facade can be adjusted, solving the problem of ineffective utilization of the terminal building facade area, improving power generation efficiency and reducing operating costs.
Patent Information
- Application Number
- CN202423267128.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-27
AI Technical Summary
In the existing technology, the huge facade area of the terminal building is not effectively utilized, and the photovoltaic power generation modules lack an angle adjustment structure, resulting in low power generation efficiency and limited functionality. The existing technology has failed to effectively reduce operating costs.
Design an adjustable sunshade assembly, including a non-circular rotating shaft and a circular turntable, which are connected to the panel body by an adapter, and photovoltaic modules are installed. The angle of the sunshade is adjusted by a drive connector to form an adjustable sunshade system.
It improved the efficiency of photovoltaic power generation, reduced the operating costs of the terminal building, reduced the load on the air conditioning system, and achieved the effective utilization of green energy.
Smart Images

Figure CN223738872U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic technology field especially, relate to a kind of adjustable sun shield assembly and system. BACKGROUND
[0002] With the rapid development of aviation industry, as the important traffic node of city and even country, the building scale and complexity of large hub terminal are increasing day by day. A significant feature of modern terminal is to have a huge facade area, which is not only to meet the functional requirements of the interior space of the building, such as boarding gate, baggage handling system, commercial service facilities, etc., but also to provide sufficient natural light to improve the indoor environmental quality and reduce the dependence on artificial lighting during the day.
[0003] However, the energy consumption of terminal is high, especially in terms of electrical usage, including but not limited to lighting, air conditioning system, security inspection equipment, information display screen and various passenger service facilities. The operation of these devices requires a large amount of power support, resulting in high operating cost and carbon emission. In the face of growing energy demand and environmental pressure, how to effectively reduce energy consumption has become a key challenge in terminal design and management.
[0004] In the prior art, although there have been some attempts to apply solar photovoltaic technology to buildings, most of the schemes mainly focus on installing photovoltaic panels on the roof, ignoring the effective use of the huge facade area of the terminal, and the photovoltaic power generation components laid on the surface of the building do not have the structure basis of angle adjustment, resulting in low power generation efficiency of the photovoltaic power generation components and single functionality. SUMMARY
[0005] In order to overcome at least one of the defects of the prior art described above, the utility model provides an adjustable sun shield assembly and system, which can solve the problem that the huge facade area of the terminal cannot be effectively utilized, reduce the operating cost of the terminal, and the problem that the photovoltaic power generation components do not have the structure basis of angle adjustment, resulting in low power generation efficiency of the photovoltaic power generation components and single functionality.
[0006] The technical scheme adopted by the utility model to solve the problem is:
[0007] An adjustable sun shield assembly, comprising:
[0008] A rotating shaft, the cross section of the rotating shaft is non-circular, and the two ends of the rotating shaft are provided with a circular turntable;
[0009] A plurality of adapter seats are provided, the middle part of the adapter seat is provided with an assembly hole, the shape of the assembly hole corresponds to the shape of the rotating shaft, and the rotating shaft passes through all the adapter seats to make all the adapter seats rotate synchronously with the rotating shaft;
[0010] a plate body, the plate body is connected with the adapter through a clamping connection, and a side of the plate body away from the adapter is provided with a photovoltaic module.
[0011] Further, the adapter comprises:
[0012] a first clamping seat, one end of the first clamping seat is provided with a first clamping plate, and the other end is provided with a first bent plate;
[0013] a second clamping seat, one end of the second clamping seat is provided with a second clamping plate, and the other end is provided with a second bent plate;
[0014] a shaft seat, the assembly hole is arranged on the shaft seat, and a top of the shaft seat is provided with a first assembly groove;
[0015] Further, the first clamping plate is connected with one side of the plate body through a clamping connection, the second clamping plate is connected with the other side of the plate body through a clamping connection, the first bent plate of the first clamping seat is arranged towards the second clamping seat, the second bent plate of the second clamping seat is arranged towards the first clamping seat, the first bent plate and the second bent plate are both inclined away from the plate body, the first bent plate, the second bent plate and the plate body constitute a shaft seat mounting hole, the shaft seat is assembled in the shaft seat mounting hole, an end of the first bent plate away from the first clamping seat is provided with a first clamping strip, an end of the second bent plate away from the second clamping seat is provided with a second clamping strip, and the first clamping strip and the second clamping strip are both clamped in the first assembly groove.
[0016] Further, opposite sides of the shaft seat are respectively provided with a second assembly groove and a third assembly groove, the first clamping seat is provided with a third clamping strip corresponding to the second assembly groove in a direction towards the second assembly groove, the third clamping strip is slidably arranged in the second assembly groove, and the second clamping seat is provided with a fourth clamping strip corresponding to the third assembly groove in a direction towards the third assembly groove, the fourth clamping strip is slidably arranged in the third assembly groove.
[0017] Further, the third clamping strip is larger than the slot of the second assembly groove in size, so as to prevent the third clamping strip from being pulled out through the slot of the second assembly groove;
[0018] and / or, the fourth clamping strip is larger than the slot of the third assembly groove in size, so as to prevent the fourth clamping strip from being pulled out through the slot of the third assembly groove.
[0019] Further, the first clamping strip is provided with a first protrusion strip in a direction away from the second clamping strip, so that the cross section of the first clamping strip is hook-shaped; the second clamping strip is provided with a second protrusion strip in a direction away from the first clamping strip, so that the cross section of the second clamping strip is hook-shaped; the two side walls of the first assembly groove are provided with a third protrusion strip in a direction of the center line of the first assembly groove; when the first clamping strip and the second clamping strip are assembled in the first assembly groove, the first protrusion strip is clamped with the third protrusion strip in the direction close to the first protrusion strip, and the second protrusion strip is clamped with the third protrusion strip in the direction close to the second protrusion strip.
[0020] Further, the first clamping seat, the first clamping plate and the first bent plate are integrally formed.
[0021] Further, the second clamping seat, the second clamping plate and the second bent plate are integrally formed.
[0022] Further, the opposite ends of the plate body are bent in the same direction to form a U-shaped groove; the U-shaped groove on one side of the plate body is clamped with the first clamping plate; and the U-shaped groove on the other side of the plate body is clamped with the second clamping plate.
[0023] Further, the two ends of the rotating shaft are provided with a rotating shaft adapter; one end of the rotating shaft adapter is connected with the rotating shaft; and the circular turntable is assembled at the other end of the rotating shaft adapter.
[0024] Further, the rotating shaft adapter at one end of the rotating shaft is provided with a structure plate; the structure plate is fixedly connected with the rotating shaft adapter; the circular turntable penetrates through the structure plate; one side of the structure plate away from the rotating shaft adapter is provided with a driving connecting piece; and the driving connecting piece is located on one side of the rotating shaft, so as to connect an external driving structure to drive the rotating shaft adapter to rotate around the center of the circular turntable, and drive the plate body clamped on the rotating shaft adapter to rotate around the center of the circular turntable.
[0025] The utility model also provides a adjustable sun shield system, including adjustable sun shield subassembly above, the driving connecting piece is driving connecting plate, one end of driving connecting plate is rotatably connected with structure plate, and the other end is provided with transmission hole, is provided with connecting rod in transmission hole, connecting rod is fixedly connected with driving connecting plate, so that when connecting rod moves along the axial direction of connecting rod, driving connecting plate rotates on driving connecting plate, and drives structure plate rotates around the center of circular turntable.
[0026] In conclusion, the adjustable sun shield assembly and system have the following technical effects:
[0027] 1. The sunshade plate assembly of the present application is arranged on the outer facade of the terminal building by arranging the photovoltaic assembly on the plate body, so as to generate green energy, for large hub terminals and the like buildings with large facade area, a large number of sunshade plate bodies can be arranged, so as to increase the power generation, and further reduce the operation cost of the terminal building;
[0028] 2. By arranging the non-circular section rotating shaft and the corresponding assembly hole, it is ensured that all the adapter seats can rotate synchronously with the rotating shaft, the circular rotating disc can be assembled in the external groove, so that the circular rotating disc can rotate in the groove, thereby providing a rotating structural basis for the entire sunshade plate assembly, and further enabling the photovoltaic assembly arranged on the plate body to adjust the angle according to the position of the sun, thereby increasing the time of the photovoltaic assembly receiving direct sunlight, and improving the photovoltaic power generation efficiency;
[0029] 3. When a plurality of sunshade plate assemblies are arranged together, they can work like traditional blinds, allowing users to freely control the amount of light and the degree of sunshade according to needs, thereby reducing the load of the air conditioning system, and further reducing the operation cost of the terminal building. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is a first perspective view of the structure of the present application.
[0031] Figure 2 It is a second perspective view of the structure of the present application.
[0032] Figure 3 It is a partial exploded view of the structure of the present application
[0033] Figure 4 It is a structure diagram of the adapter seat and the plate body connection state of the present application.
[0034] Figure 5 It is an enlarged view of A part of the present application. Figure 4
[0035] Figure 6 It is a practical application state diagram of the present application.
[0036] Figure 7 It is a method diagram of B part of the present application. Figure 6
[0037] Wherein, the reference mark meaning as follows: 1, the pivot; 11, the circular turntable; 12, the adapter shaft; 2, the adapter seat; 21, the first clamping seat; 211, the first clamping plate; 212, the first bent plate; 213, the first clamping strip; 214, the third clamping strip; 215, the first convex strip; 22, the second clamping seat; 221, the second clamping plate; 222, the second bent plate; 223, the second clamping strip; 224, the fourth clamping strip; 225, the second convex strip; 23, the shaft seat; 231, the assembly hole; 232, the first assembly slot; 233, the second assembly slot; 234, the third assembly slot; 235, the third convex strip; 24, the shaft seat mounting hole; 3, the plate body; 31, the U-shaped slot; 4, the structural plate; 41, the driving connecting piece; 411, the transmission hole; 5, the external mounting carrier. DETAILED DESCRIPTION
[0038] In order to better understand and implement, the following will be combined with the drawings of the utility model, the technical scheme in the embodiment of the utility model is clearly and completely described and discussed, obviously, only a part of the utility model described here, not all examples, based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without making creative efforts, belong to the protection scope of the utility model.
[0039] In order to facilitate the understanding of the embodiment of the utility model, the following will be combined with the drawings to further explain and illustrate the specific embodiment, and each embodiment does not constitute the limitation of the embodiment of the utility model.
[0040] In the description of the utility model, it is necessary to explain that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation of the utility model.
[0041] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the utility model herein are only for the purpose of describing the specific embodiments, and are not intended to limit the utility model.
[0042] Reference Figures 1-7The utility model discloses a kind of adjustable sun shield assemblies, comprising: pivot 1, adapter seat 2 and plate body 3, the section of pivot 1 is non-circular, the both ends of pivot 1 are equipped with circular turntable 11, adapter seat 2 is equipped with multiple, the middle part of adapter seat 2 is equipped with assembly hole 231, the shape of assembly hole 231 corresponds with the shape of pivot 1, pivot 1 passes through all adapter seat 2, to make all adapter seat 2 and pivot 1 synchronous rotation, plate body 3 and adapter seat 2 are connected with clamping, the side of plate body 3 away from adapter seat 2 is equipped with photovoltaic module.
[0043] Specifically, the section of pivot 1 is designed as non-circular (for example, polygon, oval or other irregular section) to ensure that adapter seat 2 can rotate synchronously with it. The both ends of pivot 1 are equipped with circular turntable 11, which can be assembled in an external frame or support structure, allowing the circular turntable 11 to rotate freely within the structure. Each adapter seat 2 has a assembly hole 231 in the middle, and the shape of the assembly hole 231 matches the cross-sectional shape of the pivot 1, ensuring that the pivot 1 can pass through all the adapter seats 2 and drive all the adapter seats 2 to rotate together. Multiple adapter seats 2 are arranged along the pivot 1 and achieve synchronous movement through the pivot 1. Plate body 3 is connected with adapter seat 2 by clamping, which facilitates installation and disassembly. The side of plate body 3 away from adapter seat 2 is equipped with a photovoltaic module for converting solar energy into electrical energy.
[0044] In some embodiments, the adapter seat 2 includes a first clamping seat 21, a second clamping seat 22, and a shaft seat 23. One end of the first clamping seat 21 is equipped with a first clamping plate 211, and the other end is equipped with a first bent plate 212. One end of the second clamping seat 22 is equipped with a second clamping plate 221, and the other end is equipped with a second bent plate 222. The assembly hole 231 is provided on the shaft seat 23, and the top of the shaft seat 23 is equipped with a first assembly groove 232. The first clamping plate 211 is connected with one side of the plate body 3 by clamping, the second clamping plate 221 is connected with the other side of the plate body 3 by clamping, the first bent plate 212 of the first clamping seat 21 is arranged towards the second clamping seat 22, the second bent plate 222 of the second clamping seat 22 is arranged towards the first clamping seat 21, the first bent plate 212 and the second bent plate 222 are both inclined towards the direction away from the plate body 3, the first bent plate 212, the second bent plate 222 and the plate body 3 constitute a shaft seat mounting hole 24, the shaft seat 23 is assembled in the shaft seat mounting hole 24, the end of the first bent plate 212 away from the first clamping seat 21 is equipped with a first clamping strip 213, the end of the second bent plate 222 away from the second clamping seat 22 is equipped with a second clamping strip 223, and the first clamping strip 213 and the second clamping strip 223 are both clamped in the first assembly groove 232.
[0045] Specifically, one end of the first clamping seat 21 is provided with a first clamping plate 211, and the other end is provided with a first bent plate 212; one end of the second clamping seat 22 is provided with a second clamping plate 221, and the other end is provided with a second bent plate 222. The first clamping plate 211 is clamped and connected with one side of the plate body 3, and the second clamping plate 221 is clamped and connected with the other side of the plate body 3. Such a design ensures that the plate body 3 can be stably installed between the two clamping seats. The shaft seat 23 is located between the two clamping seats, and is provided with a mounting hole 231 thereon, the shape of the mounting hole 231 matches the cross-sectional shape of the rotating shaft 1, so that the rotating shaft 1 can pass through all the adapter seats 2 and drive them to rotate synchronously. The top of the shaft seat 23 is provided with a first assembly groove 232 for accommodating the first clamping strip 213 and the second clamping strip 223. The first bent plate 212 is arranged towards the second clamping seat 22, and the second bent plate 222 is arranged towards the first clamping seat 21. The first bent plate 212 and the second bent plate 222 are both inclined away from the plate body 3, forming a shaft seat mounting hole 24 for guiding the shaft seat 23 into the shaft seat mounting hole 24 formed by the first bent plate 212, the second bent plate 222 and the plate body 3, and also enhancing the stability of the entire structure. The end of the first bent plate 212 away from the first clamping seat 21 is provided with a first clamping strip 213, and the end of the second bent plate 222 away from the second clamping seat 22 is provided with a second clamping strip 223. When the shaft seat 23 is assembled into the shaft seat mounting hole 24, the first clamping strip 213 and the second clamping strip 223 are clamped into the first assembly groove 232 at the top of the shaft seat 23, thereby firmly fixing all the components together and preventing loosening or falling off.
[0046] In some embodiments, the shaft seat 23 is provided with a second assembly groove 233 and a third assembly groove 234 on the opposite sides, respectively. The first clamping seat 21 is provided with a third clamping strip 214 corresponding to the second assembly groove 233 in the direction of the second assembly groove 233, and the third clamping strip 214 is slidably arranged in the second assembly groove 233. The second clamping seat 22 is provided with a fourth clamping strip 224 corresponding to the third assembly groove 234 in the direction of the third assembly groove 234, and the fourth clamping strip 224 is slidably arranged in the third assembly groove 234.
[0047] Specifically, the shaft seat 23 is provided with a second assembly slot 233 and a third assembly slot 234 on opposite sides. The first clamping seat 21 is provided with a third clamping strip 214 on the side facing the second assembly slot 233, which matches the second assembly slot 233. The third clamping strip 214 is slidingly arranged in the second assembly slot 233, allowing the first clamping seat 21 to be assembled relative to the shaft seat 23 with a certain sliding movement, thereby facilitating the production and assembly of the sun visor assembly. The second clamping seat 22 is provided with a fourth clamping strip 224 on the side facing the third assembly slot 234, which also matches the third assembly slot 234. The fourth clamping strip 224 is also slidingly arranged in the third assembly slot 234, so that the second clamping seat 22 can also be assembled relative to the shaft seat 23 with a sliding movement, to ensure accurate installation and stable operation of the entire assembly.
[0048] In some embodiments, the third clamping strip 214 is larger in size than the slot of the second assembly slot 233, to prevent the third clamping strip 214 from being pulled out through the slot of the second assembly slot 233;
[0049] And / or, the fourth clamping strip 224 is larger in size than the slot of the third assembly slot 234, to prevent the fourth clamping strip 224 from being pulled out through the slot of the third assembly slot 234.
[0050] Specifically, the third clamping strip 214 is located on the first clamping seat 21, and its width (i.e. the maximum dimension perpendicular to the sliding direction) is designed to be slightly larger than the slot width of the second assembly slot 233. When the third clamping strip 214 is inserted into the second assembly slot 233, the third clamping strip 214 can slide within the second assembly slot 233, but due to its larger size, it cannot be pulled out from the slot. This ensures a firm connection between the first clamping seat 21 and the shaft seat 23. The fourth clamping strip 224 is located on the second clamping seat 22, and similarly, its width is designed to be larger than the slot width of the third assembly slot 234. After being inserted into the third assembly slot 234, the fourth clamping strip 224 can slide within the third assembly slot 234, but due to its size limitation, the fourth clamping strip 224 cannot be pulled out from the slot, thereby ensuring a stable connection between the second clamping seat 22 and the shaft seat 23.
[0051] In some embodiments, the first clamping strip 213 is provided with a first protrusion 215 in a direction away from the second clamping strip 223, so that the cross section of the first clamping strip 213 is hook-shaped, the second clamping strip 223 is provided with a second protrusion 225 in a direction away from the first clamping strip 213, so that the cross section of the second clamping strip 223 is also hook-shaped, and the two side walls of the first assembly slot 232 are provided with a third protrusion 235 in a direction towards the center line of the first assembly slot 232. When the first clamping strip 213 and the second clamping strip 223 are assembled in the first assembly slot 232, the first protrusion 215 is clamped with the third protrusion 235 in the direction close to the first protrusion 215, and the second protrusion 225 is clamped with the third protrusion 235 in the direction close to the second protrusion 225.
[0052] Specifically, the first clamping strip 213 is provided with a first protrusion 215 in a direction away from the second clamping strip 223, so that the cross section of the first clamping strip 213 is hook-shaped. Similarly, the second clamping strip 223 is provided with a second protrusion 225 in a direction away from the first clamping strip 213, so that the cross section of the second clamping strip 223 is also hook-shaped. The two side walls of the first assembly slot 232 are provided with a third protrusion 235 in a direction towards the center line of the first assembly slot 232. The two third protrusions 235 of the first assembly slot 232 are used to form a clamping fit with the first protrusion 215 of the first clamping strip 213 and the second protrusion 225 of the second clamping strip 223. When the first clamping strip 213 and the second clamping strip 223 are inserted into the first assembly slot 232, the hook-shaped structure formed by the first protrusion 215 and the second protrusion 225 will contact the third protrusions 235 on the two side walls of the assembly slot. Since the third protrusions 235 are arranged in a direction towards the center line of the assembly slot, it is ensured that the clamping strip will not easily come out of the assembly slot once it is assembled, thereby enhancing the stability of the entire structure.
[0053] In some embodiments, the first clamping seat 21, the first clamping plate 211 and the first bent plate 212 are integrally formed; and / or, the second clamping seat 22, the second clamping plate 221 and the second bent plate 222 are integrally formed.
[0054] Specifically, the first clamping seat 21, the first clamping plate 211 and the first bent plate 212 are combined together through an integrally formed manufacturing process to form a whole, which facilitates the assembly of the first clamping seat 21 and improves the assembly accuracy of the first clamping seat 21. Similarly, the second clamping seat 22, the second clamping plate 221 and the second bent plate 222 can also be integrally formed to facilitate the assembly of the second clamping seat 22 and improve the assembly accuracy of the first clamping seat 21.
[0055] In some embodiments, the plate body 3 is bent towards the same direction at opposite ends to form a U-shaped slot 31, and the U-shaped slot 31 on one side of the plate body 3 is clamped with the first clamping plate 211, and the U-shaped slot 31 on the other side of the plate body 3 is clamped with the second clamping plate 221.
[0056] Specifically, the opposite ends of the plate body 3 are bent towards the same direction, forming a U-shaped groove 31 structure. The U-shaped groove 31 on one side of the plate body 3 is connected to the first clamping plate 211 on the first clamping seat 21. The U-shaped groove 31 on the other side of the plate body 3 is connected to the second clamping plate 221 on the second clamping seat 22. This matching structure allows the plate body 3 to be firmly fixed on the adapter seat 2, and facilitates quick installation and disassembly.
[0057] In some embodiments, the both ends of the rotating shaft 1 are provided with an adapter shaft 12, one end of the adapter shaft 12 is connected to the rotating shaft 1, and the circular turntable 11 is assembled at the other end of the adapter shaft 12.
[0058] Specifically, the rotating shaft 1 is used to drive all the adapter seats 2 to rotate synchronously. The adapter shaft 12 is installed at both ends of the rotating shaft 1. One end of the adapter shaft 12 is connected to the rotating shaft 1, and is usually fixedly connected by mechanical fasteners (such as bolts, pins, etc.) or welding, etc. to ensure the firmness and stability between the two. The other end of the adapter shaft 12 is provided with the circular turntable 11. As an implementable solution, the adapter shaft 12 can be inserted into the rotating shaft 1, and the rotating shaft 1 can rotate around the adapter shaft 12. The rotating shaft 1 can also be fixedly connected with the adapter shaft 12, and the circular turntable 11 is rotatably connected with the adapter shaft 12, so that when the external driving assembly drives the plate body 3 to rotate, the adapter shaft 12 rotates around the circular turntable 11. Of course, the circular turntable 11 can also be fixedly connected with the adapter shaft 12, and when the circular turntable 11 is installed with the external mounting carrier 5, a rotatable connection is selected for connection, so that when the external driving assembly drives the plate body 3 to rotate, the circular turntable 11 rotates around the external mounting carrier 5.
[0059] In some embodiments, the adapter seat 2 at one end of the rotating shaft 1 is provided with a structure plate 4, the structure plate 4 is fixedly connected with the adapter seat 2, the circular turntable 11 passes through the structure plate 4, and the structure plate 4 away from the adapter seat 2 is provided with a driving connecting piece 41, which is located on one side of the rotating shaft 1, and is used to connect an external driving structure to drive the adapter seat 2 to rotate around the center of the circular turntable 11, and drive the plate body 3 clamped on the adapter seat 2 to rotate around the center of the circular turntable 11.
[0060] Specifically, a structure plate 4 is assembled on one adapter seat 2 at the end of the rotating shaft 1, and the structure plate 4 is fixedly connected with the adapter seat 2. The fixed connection can be realized by mechanical fasteners (such as bolts, screws, etc.) or welding, etc., to ensure the firmness and stability between the two. The circular turntable 11 is arranged through the structure plate 4, that is, part of the circular turntable 11 is located outside the structure plate 4, facilitating the connection of the circular turntable 11 with the external mounting carrier 5, and the other part passes through the structure plate 4 and is connected with the adapter shaft 12. The above structure allows the circular turntable 11 to rotate freely in the structure plate 4 while maintaining good connection with the adapter shaft 12, thereby transmitting the rotary motion. The side of the structure plate 4 away from the adapter seat 2 is provided with a driving connecting piece 41 located on one side of the rotating shaft 1. The driving connecting piece 41 is used to connect the external driving structure (such as a connecting rod, a motor or a manual adjusting mechanism) to drive the entire adapter seat 2 to rotate around the center of the circular turntable 11. The design of the driving connecting piece 41 ensures that it can effectively transmit the external driving force to the adapter seat 2, thereby driving the plate body 3 clamped on the adapter seat 2 to rotate together.
[0061] The utility model also provides a kind of adjustable sun shield system, including above adjustable sun shield assembly, driving connecting piece 41 is driving connecting plate, one end of driving connecting plate is rotatably connected with structure plate 4, and the other end is equipped with transmission hole 411, transmission hole 411 is equipped with connecting rod, connecting rod is fixedly connected with driving connecting plate, so that connecting rod moves along the axial direction of connecting rod, driving connecting plate rotates on driving connecting plate, while driving structure plate 4 rotates around the center of circular turntable 11.
[0062] The technical means disclosed by the utility model scheme is not limited to the technical means disclosed in the above embodiments, but also includes technical solutions composed of any combination of the above technical features. It should be noted that for ordinary skilled persons in the art, without departing from the principles of the utility model, a number of improvements and refinements can be made, and these improvements and refinements are also considered within the protection scope of the utility model.
Claims
1. An adjustable visor assembly, characterized by, The utility model relates to a photovoltaic module, including: A rotating shaft (1), the cross section of rotating shaft (1) is noncircular, and the both ends of rotating shaft (1) are equipped with circular rotating disc (11); A plurality of rotating adapters (2) are provided, the middle part of rotating adapter (2) is equipped with assembly hole (231), the shape of assembly hole (231) corresponds with the shape of rotating shaft (1), rotating shaft (1) passes all rotating adapter (2), so that all rotating adapter (2) rotates synchronously with rotating shaft (1); Plate body (3) is connected with rotating adapter (2) by clamping, and the back of plate body (3) is equipped with photovoltaic module.
2. An adjustable visor assembly according to claim 1, wherein, The rotating adapter (2) includes: First clamping seat (21), one end of first clamping seat (21) is equipped with first clamping plate (211), and the other end is equipped with first bent plate (212); Second clamping seat (22), one end of second clamping seat (22) is equipped with second clamping plate (221), and the other end is equipped with second bent plate (222); Shaft seat (23), assembly hole (231) is arranged on shaft seat (23), and the top of shaft seat (23) is equipped with first assembly groove (232); Wherein, the first clamping plate (211) is connected with one side of the plate body (3) by clamping, the second clamping plate (221) is connected with the other side of the plate body (3) by clamping, the first bent plate (212) of the first clamping seat (21) is arranged towards the second clamping seat (22), the second bent plate (222) of the second clamping seat (22) is arranged towards the first clamping seat (21), the first bent plate (212) and the second bent plate (222) are both inclined towards the direction away from the plate body (3), the first bent plate (212), the second bent plate (222) and the plate body (3) constitute shaft seat mounting hole (24), the shaft seat (23) is assembled in the shaft seat mounting hole (24), the end of the first bent plate (212) away from the first clamping seat (21) is equipped with the first clamping strip (213), the end of the second bent plate (222) away from the second clamping seat (22) is equipped with the second clamping strip (223), the first clamping strip (213) and the second clamping strip (223) are both clamped in the first assembly groove (232).
3. An adjustable visor assembly according to claim 2, wherein, The opposite sides of the shaft seat (23) are respectively equipped with the second assembly groove (233) and the third assembly groove (234), the first clamping seat (21) is equipped with the third clamping strip (214) corresponding with the second assembly groove (233) towards the direction of the second assembly groove (233), the third clamping strip (214) is slidably arranged in the second assembly groove (233), the second clamping seat (22) is equipped with the fourth clamping strip (224) corresponding with the third assembly groove (234) towards the direction of the third assembly groove (234), the fourth clamping strip (224) is slidably arranged in the third assembly groove (234).
4. An adjustable visor assembly according to claim 3, wherein, The third clamping strip (214) is larger than the slot of the second assembly groove (233) in size to prevent the third clamping strip (214) from being pulled out through the slot of the second assembly groove (233); And / or, the fourth clamping strip (224) is larger than the slot of the third assembly groove (234) in size to prevent the fourth clamping strip (224) from being pulled out through the slot of the third assembly groove (234).
5. An adjustable visor assembly according to claim 4, wherein, The first clamping strip (213) is provided with a first protrusion (215) in a direction away from the second clamping strip (223) to make the cross section of the first clamping strip (213) hook-shaped, the second clamping strip (223) is provided with a second protrusion (225) in a direction away from the first clamping strip (213) to make the cross section of the second clamping strip (223) hook-shaped, and the two side walls of the slot of the first assembly groove (232) are provided with a third protrusion (235) in a direction of the center line of the first assembly groove (232), when the first clamping strip (213) and the second clamping strip (223) are assembled in the first assembly groove (232), the first protrusion (215) is clamped with the third protrusion (235) close to the direction of the first protrusion (215), and the second protrusion (225) is clamped with the third protrusion (235) close to the direction of the second protrusion (225).
6. An adjustable visor assembly according to claim 2, wherein, The first clamping seat (21), the first clamping plate (211) and the first bent plate (212) are integrally formed; And / or, the second clamping seat (22), the second clamping plate (221) and the second bent plate (222) are integrally formed.
7. An adjustable sun visor assembly according to any one of claims 2-6, wherein, The opposite ends of the plate body (3) are bent in the same direction to form a U-shaped groove (31), and the U-shaped groove (31) on one side of the plate body (3) is clamped with the first clamping plate (211), and the U-shaped groove (31) on the other side of the plate body (3) is clamped with the second clamping plate (221).
8. An adjustable visor assembly according to any one of claims 2-6, wherein, The both ends of the rotating shaft (1) are provided with a rotating shaft (12), one end of the rotating shaft (12) is connected with the rotating shaft (1), and the circular turntable (11) is assembled at the other end of the rotating shaft (12).
9. An adjustable visor assembly according to any one of claims 1-6, wherein, The rotating seat (2) at one end of the rotating shaft (1) is provided with a structure plate (4), the structure plate (4) is fixedly connected with the rotating seat (2), the circular turntable (11) penetrates through the structure plate (4), one side of the structure plate (4) away from the rotating seat (2) is provided with a driving connecting piece (41), the driving connecting piece (41) is located on one side of the rotating shaft (1), and the driving connecting piece (41) is used for connecting an external driving structure to drive the rotating seat (2) to rotate around the center of the circular turntable (11), and drive the plate body (3) clamped on the rotating seat (2) to rotate around the center of the circular turntable (11).
10. An adjustable sun visor system characterized by, The adjustable sun visor assembly of any one of claims 1-9, wherein the driving connecting piece (41) is a driving connecting plate, one end of the driving connecting plate is rotationally connected with the structure plate (4), the other end is provided with a transmission hole (411), a connecting rod is arranged in the transmission hole (411), the connecting rod is fixedly connected with the driving connecting plate, so that when the connecting rod moves along the axial direction of the connecting rod, the driving connecting plate rotates on the driving connecting plate, and the structure plate (4) is driven to rotate around the center of the circular turntable (11).