A flashlight-integrated sunshade awning and its usage method
By optimizing the connection mechanism between telescopic components and connecting plates in the sunshade louver, switching between manual and electric adjustment modes is achieved, the problem of difficulty in taking into account functions and vulnerability to blades in the prior art is solved, and the convenience of use and the reliability of the equipment is improved.
Patent Information
- Application Number
- CN202411537529.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2044-10-31
AI Technical Summary
The existing sunshade louvers are difficult to balance between electric and manual functions, and the blades are prone to damage in severe weather and long-term use, making replacement complicated.
A flashlight integrated sunshade louver is designed to switch between manual and electric adjustment modes by optimizing the connection mechanism between telescopic components and connecting plates. It adopts snap connection and sensor technology to automatically switch modes to simplify user operation.
It is realized that when the power supply is normal or the power is out, users can choose the most appropriate adjustment method according to their needs to ensure the normal use of the sunshade louver, reduce user operation steps and improve the convenience of use.
Smart Images

Figure CN119288248B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of tents, and particularly relates to a flashlight-integrated sunshade louver awning and its usage method. Background Art
[0002] As a common outdoor or semi-outdoor sunshade facility, the main function of a sunshade awning is to block the direct sunlight and reduce the heat entering the indoor or outdoor space, thereby creating a more comfortable living or working environment. With the progress of materials science, structural design, and driving technology, the functions and forms of sunshade awnings are constantly evolving and improving. The sunshade louver awning combines the characteristics of louver blinds on the basis of the traditional sunshade awning, enabling it to not only provide a large area of sunshade effect but also flexibly control the amount of light entering the room by adjusting the angle of the blades. This design makes the sunshade awning not just a single sunshading tool but a multifunctional device that can adjust the light intensity and direction according to actual needs. However, in the actual use process, some problems have emerged in the existing sunshade louver awnings:
[0003] First of all, the sunshade louver awnings on the market mainly have two modes: electric control and manual adjustment. Although electric sunshade awnings are convenient, they cannot be used normally during power outages or unstable power supplies, and battery-powered devices also require regular battery replacement and maintenance. Over time, electronic components may age or malfunction. Manual sunshade awnings can still be used without electricity, but for the elderly or those with limited mobility, the operation is rather laborious, especially when frequent adjustments are needed. To combine the advantages of both, a design of motor-gear drive plus manual cooperation has emerged on the market, improving the flexibility and reliability of use. However, this gear system is relatively complex and prone to wear, increasing the maintenance cost and difficulty.
[0004] Secondly, as an outdoor or semi-outdoor sunshade facility, the sunshade louver awning is exposed to the outside for a long time, and the blades are easily affected by natural factors such as wind, rain, and snow. Especially when encountering severe weather such as strong winds or hailstorms, the blades are extremely prone to deformation or damage. In addition, long-term exposure to ultraviolet rays will cause the material to age, reduce its toughness, make the blades more fragile, and easily break or fracture. Considering that the blades are usually made of lightweight materials to facilitate angle adjustment, this design helps to reduce the overall weight and is convenient for operation, but at the same time, it also means that the blades lack sufficient strength and durability when facing external impacts. Coupled with the frequent opening and closing actions in daily use, mechanical fatigue further accelerates the wear of the blades, making the blades more likely to be damaged. However, in the existing design of sunshade louver awnings, it is often difficult to replace the blades conveniently after they are damaged.
[0005] In summary, although the existing sunshade louvre awning performs well in providing flexible light adjustment, there are still problems in balancing electric and manual functions. In addition, the blades of the sunshade louvre awning are easily eroded by wind and rain when exposed to the natural environment for a long time. Especially in strong wind weather, the damage rate of the blades is relatively high. Moreover, the replacement procedure of the existing design after the blade is damaged is relatively complicated, which brings inconvenience to the users. Summary of the Invention
[0006] In view of the above, the purpose of the present invention is to provide a sunshade louvre awning integrated with electric and manual functions and its usage method to solve the problems in the above-mentioned background technology.
[0007] To solve the above technical problems, the first technical solution of the present invention is a sunshade louvre awning integrated with electric and manual functions. The sunshade louvre awning includes a frame for structural support of the sunshade louvre awning; a blade group composed of louvres arranged at equal intervals. The louvres are rotatably installed on the frame and can be adjusted in angle; a driving assembly including a manual flipping component, a telescopic flipping component and a connecting plate. The connecting plate is rotatably connected to the louvres. The position of the connecting plate is changed by the manual flipping component or the telescopic flipping component to make the louvres rotate, so as to realize the angle adjustment of the louvres. The manual flipping component and the connecting plate are rotatably connected, and the telescopic flipping component and the connecting plate are detachably connected. The connection between the telescopic flipping component and the connecting plate is divided into a connected state and a disconnected state. When the telescopic flipping component and the connecting plate are in the connected state, the sunshade louvre awning is electrically adjustable. When the telescopic flipping component and the connecting plate are in the disconnected state, the sunshade louvre awning is manually adjustable. By controlling the connection between the telescopic flipping component and the connecting plate, the switching between electric adjustment and manual adjustment of the sunshade louvre awning is realized.
[0008] Preferably, the blade group further includes a connecting rod for connecting all the louvres in the blade group to ensure the unified angle adjustment of the louvres in the blade group. The louvre includes a blade body and louvre covers arranged at both ends of the blade body. The center and the periphery of the louvre cover respectively have a rotating shaft, a first connection structure and a second connection structure. The rotating shaft is used for connecting the louvre and the frame. The first connection structure is used for connecting the louvre and the connecting plate. The second connection structure is used for connecting the louvre and the connecting rod.
[0009] Furthermore, the sunshade louvre awning further includes a plastic buckle composed of a base and a plug-in. The base has an opening groove and a slot. The opening groove is used for placing the rotating shaft. The slot and the plug-in cooperate to close the opening groove to prevent the louvre from falling off.
[0010] Further, the manual flipping component includes a first connecting rod, a second connecting rod and a driving module. The driving module is provided with an output shaft and a manual end. One end of the first connecting rod is rotatably connected to the connecting plate, the other end of the first connecting rod is rotatably connected to one end of the second connecting rod, and the other end of the second connecting rod is fixedly connected to the output shaft.
[0011] Preferably, the telescopic flipping component is a telescopic component swingably mounted on the frame. The output end of the telescopic component and the connecting plate are connected by a pin connection or a threaded connection. The driving assembly further includes a connecting piece. Connecting holes are formed in the output end of the telescopic component and the connecting plate; when the telescopic flipping component and the connecting plate are in a connected state, the connecting piece passes through the connecting hole; when the telescopic flipping component and the connecting plate are in a disconnected state, the connecting piece does not pass through the connecting hole.
[0012] To solve the above technical problems, the second technical solution of the present invention is a flashlight-integrated sunshade louver awning.
[0013] Preferably, the telescopic flipping component is a telescopic component swingably mounted on the frame. The output end of the telescopic component and the connecting plate are connected by a snap connection. A docking groove is formed on the side surface of the connecting plate, and a clamping hole is provided on the side wall of the docking groove. A clamping piece acting on the clamping hole is provided at the output end of the telescopic component; by controlling the connection situation between the clamping piece and the clamping hole, the telescopic flipping component and the connecting plate are switched between a connected state and a disconnected state.
[0014] Further, the clamping piece includes a sensor for detecting whether the clamping piece is located in the docking groove; a telescopic assembly acting on the clamping hole, and the telescopic direction of the telescopic assembly is perpendicular to the telescopic direction of the telescopic component; when the clamping piece is located in the docking groove and the telescopic assembly extends, the telescopic flipping component and the connecting plate enter a connected state; when the telescopic assembly retracts, the telescopic flipping component and the connecting plate enter a disconnected state.
[0015] To solve the above technical problems, the third technical solution of the present invention is a usage method of a flashlight-integrated sunshade louver awning, applying the flashlight-integrated sunshade louver awning described in Technical Solution 1. The usage method is divided into manual adjustment and electric adjustment. The usage method of manual adjustment is as follows: Remove the connecting piece to disconnect the telescopic and flipping component and the connecting plate, and then one can manually control the manual flipping component to change the position of the connecting plate, causing the louvers to rotate, thereby realizing the angle adjustment of the louvers. The usage method of electric adjustment is as follows: Pass the connecting piece through the connection hole to connect the telescopic and flipping component and the connecting plate, and then the telescopic and flipping component can change the position of the connecting plate, causing the louvers to rotate, thereby realizing the angle adjustment of the louvers.
[0016] To solve the above technical problems, the fourth technical solution of the present invention is a usage method of a flashlight-integrated sunshade louver awning, applying the flashlight-integrated sunshade louver awning described in Technical Solution 2. The louvers on the sunshade louver awning are divided into a closed state and an open state. The usage method is as follows: Initially, both the telescopic component and the telescopic assembly are in a retracted state.
[0017] 1) Adjustment of the sunshade louver awning from the closed state to the open state
[0018] Manual adjustment: Manually control the manual flipping component to change the position of the connecting plate, causing the louvers to rotate, thereby realizing the angle adjustment of the louvers.
[0019] Electric adjustment: The telescopic component extends, pushes the connecting plate from the side, and by changing the position of the connecting plate, causes the louvers to rotate, thereby realizing the angle adjustment of the louvers. After reaching the adjustment angle, the telescopic component retracts.
[0020] 2) Adjustment of the sunshade louver awning from the open state to the closed state
[0021] Manual adjustment: Manually control the manual flipping component to change the position of the connecting plate, causing the louvers to rotate, thereby realizing the angle adjustment of the louvers.
[0022] Electric adjustment: The telescopic component extends. When the sensor detects that the clamping piece is located in the docking groove, the telescopic assembly extends to connect the telescopic and flipping component and the connecting plate; the telescopic component retracts. After reaching the adjustment angle, both the telescopic component and the telescopic assembly retract.
[0023] The technical effects of the present invention are mainly reflected in the following aspects:
[0024] By optimizing the connection mechanism between the telescopic component and the connecting plate (such as pin connection, threaded connection, and snap connection), the present invention realizes the switching between manual and electric adjustment modes, enabling users to select the most suitable adjustment method according to actual needs. Whether the power supply is normal or there is a power outage, the normal use of the sunshade awning can be ensured.
[0025] Meanwhile, when the telescopic component and the connecting plate adopt snap connection, by introducing sensors and telescopic components, the system can automatically switch modes after detecting the position of the card, truly realizing seamless switching between manual and electric adjustment modes, reducing the operation steps of users and improving the convenience of use. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 is a structural diagram of the present invention;
[0027] Figure 2 is Figure 1 a structural diagram of the blade group in
[0028] Figure 3 is Figure 1 a schematic structural diagram of the driving component in
[0029] Figure 4 is a partial schematic diagram of electric adjustment in Embodiment 1;
[0030] Figure 5 is a partial schematic diagram of manual adjustment in Embodiment 1;
[0031] Figure 6 is Figure 3 a structural diagram of the manual flipping component in
[0032] Figure 7 is a schematic structural diagram of the driving component in Embodiment 2 of the figure;
[0033] In the figure: 1. Frame; 2. Blade group, 21. Louvers, 22. Connecting rod, 23. Sheet body, 24. Louver cover, 25. Rotating shaft, 26. First connection structure, 27. Second connection structure; 3. Driving component, 31. Manual flipping component, 311. First connecting rod, 312. Second connecting rod, 313. Driving module, 314. Output shaft, 315. Manual end; 32. Telescopic flipping component, 321. Connecting piece, 322. Docking groove, 324. Card hole, 325. Telescopic component; 33. Connecting plate; 4. Plastic snap, 41. Base, 42. Plug-in. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0034] The following further details the specific embodiments of the present invention in conjunction with the drawings, so that the technical solutions of the present invention are easier to understand and master.
[0035] In this embodiment, it should be understood that the orientation or positional relationship indicated by terms such as "middle", "upper", "lower", "top", "right side", "left end", "above", "back", "middle part", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention, 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. Therefore, it should not be construed as a limitation to the present invention.
[0036] In addition, in this specific embodiment, if the connection or fixing method between components is not specifically described, the connection or fixing method can be bolt fixing or pin fixing commonly used in the prior art, or pin shaft connection and other methods. Therefore, it will not be elaborated in this embodiment.
[0037] Embodiment 1
[0038] See Figure 1 、 Figure 3, a flashlight-integrated sunshade louver awning, the sunshade louver awning comprising: a frame 1 for structurally supporting the sunshade louver awning; the frame 1 includes columns and crossbeams, the columns are used for supporting and erecting the frame 1, and the crossbeams are used for connecting the columns and providing a fulcrum for the assembly of the blade group 2, and a water trough is also provided on the crossbeams. A blade group 2, the blade group 2 is composed of louvers 21 arranged at equal intervals. The equal interval arrangement of the blades can ensure uniform sunshade effect and is also beneficial to aesthetics; the louvers 21 are rotatably installed on the frame 1 and can be adjusted in angle; through the rotatable installation, the blades can be adjusted to the required angle, thereby controlling the amount of light entering. This design provides flexibility and can be adjusted at any time according to actual needs. A drive assembly 3, the drive assembly 3 includes a manual flipping member 31, a telescopic flipping member 32 and a connecting plate 33. The connecting plate 33 is rotatably connected to the louvers 21. The position of the connecting plate 33 is changed by the manual flipping member 31 or the telescopic flipping member 32 to make the louvers 21 rotate, thereby realizing the angle adjustment of the louvers 21; the manual flipping member 31 and the connecting plate 33 are rotatably connected, and the telescopic flipping member 32 and the connecting plate 33 are detachably connected; the connection between the telescopic flipping member 32 and the connecting plate 33 is divided into a connected state and a disconnected state. When the telescopic flipping member 32 and the connecting plate 33 are in the connected state, the sunshade louver awning is electrically adjustable, and the telescopic flipping member 32 provides convenience and intelligence, and the user can easily control the opening and closing of the sunshade awning through means such as a remote control. When the telescopic flipping member 32 and the connecting plate 33 are in the disconnected state, the sunshade louver awning is manually adjustable; in the case where the electric system is unavailable, the manual flipping member 31 can be used as a backup solution to ensure that the basic functions of the sunshade awning are not affected. By controlling the connection between the telescopic flipping member 32 and the connecting plate 33, the switching between electric adjustment and manual adjustment of the sunshade louver awning is realized.
[0039] See Figure 3 , the blade group 2 further includes a connecting rod 22 for connecting all the louvers 21 in the blade group 2 in series to ensure the unified angle adjustment of the louvers 21 in the blade group 2; the connecting rod 22 can be a long rod passing through all the blades or composed of multiple short rods connected in a certain way for easy installation and adjustment. Its main function is to connect all the louvers 21 in series to ensure that all the blades can rotate synchronously and maintain the consistency of the angles; to avoid poor sunshade effect or uncoordinated appearance caused by inconsistent angles of individual blades.
[0040] See Figure 2, the louver 21 includes a blade body 23 and louver covers 24 provided at both ends of the blade body 23, and the blade body 23 and the louver covers 24 are connected by screws for encapsulation; when the blade body 23 is damaged, only the blade body 23 can be disassembled and replaced. The blade body 23 is the main part of the awning and is usually made of materials with strong weather resistance, such as polycarbonate, ABS plastic or metal alloy. The center and periphery of the louver cover 24 respectively have a rotating shaft 25, a first connection structure 26 and a second connection structure 27. The rotating shaft 25 is used for connecting the louver 21 and the frame 1, the first connection structure 26 is used for connecting the louver 21 and the connecting plate 33, and the second connection structure 27 is used for connecting the louver 21 and the connecting rod 22. Specifically, the rotating shaft 25 serves as the connection point between the blade and the frame 1, enabling the blade to rotate around this axis; the first connection structure 26 is connected to the connecting plate 33, and the change of the connecting plate 33 will drive the blade to rotate; the second connection structure 27 is connected to the connecting rod 22 to ensure the synchronous movement of all blades. The sunshade louver awning further includes a plastic buckle 4, and the plastic buckle 4 is fixed on the cross beam to support both ends of the louver. The plastic buckle 4 is composed of a base and a plug-in part 42. The base has an opening groove and a slot. The opening groove is used for placing the rotating shaft 25, and the slot and the plug-in part 42 cooperate to close the opening groove to prevent the louver 21 from falling off. This not only simplifies the installation process and the replacement process after the louver 21 is damaged, but also enhances the safety of the system and prevents the blades from falling off due to external forces (such as strong winds).
[0041] See Figure 5 , Figure 6 , the manual flipping component 31 includes a first connecting rod 311, a second connecting rod 312 and a driving module 313. The driving module 313 has an output shaft 314 and a manual end 315. One end of the first connecting rod 311 is rotatably connected to the connecting plate 33, the other end of the first connecting rod 311 is rotatably connected to one end of the second connecting rod 312, and the other end of the second connecting rod 312 is fixedly connected to the output shaft 314. The driving module 313 used in the manual flipping component 31 is specifically commonly a hand crank and a pull rope system. Among them, the hand crank rotates the internal gear or chain through the hand crank, and then drives the rotation of the output shaft 314; the pull rope system realizes the angle adjustment of the output shaft 314 by pulling one or several ropes in cooperation with the gear. The driving module 313 can specifically be a manual head, and the manual head has a handle.
[0042] See Figure 4, the telescopic and flip component 32 is a telescopic component swing-mounted on the frame 1. Specifically, a swing frame is provided on the frame 1, and the telescopic component is fixedly mounted on the swing frame, allowing the telescopic component to swing at a certain angle around a fixed point; the telescopic component is divided into an electric telescopic component, a pneumatic telescopic component, and a hydraulic telescopic component. The electric telescopic component can specifically be a motor assembly, the pneumatic telescopic component can specifically be a pneumatic telescopic rod and a pneumatic telescopic cylinder, and the hydraulic telescopic component can specifically be a hydraulic telescopic rod and a hydraulic telescopic cylinder. The motor assembly, pneumatic telescopic rod, pneumatic telescopic cylinder, hydraulic telescopic rod, and hydraulic telescopic cylinder are placed in the water tank. The output end of the telescopic component and the connecting plate 33 are connected by a pin connection or a threaded connection. The driving component 3 further includes a connecting piece 321, and connecting holes are provided on both the output end of the telescopic component and the connecting plate 33; when the telescopic and flip component 32 and the connecting plate 33 are in a connected state, the connecting piece 321 passes through the connecting hole; when the telescopic and flip component 32 and the connecting plate 33 are in a disconnected state, the connecting piece 321 does not pass through the connecting hole. Specifically, the function of the connecting piece 321 is to establish a physical connection between the telescopic component and the connecting plate 33 to achieve electric adjustment. The connecting piece 321 is usually a pin, a screw, or a bolt that can pass through the connecting hole. By adopting the pin connection or the threaded connection method, it allows users to freely switch between manual and electric adjustment modes under normal power supply or power failure conditions. Although this method has a certain operational complexity, it ensures that the sunshade awning can work properly under any circumstances.
[0043] The output end of the telescopic component and the connecting plate 33 are connected by a pin connection or a threaded connection, which allows users to choose the most suitable adjustment method according to the actual situation, ensuring the normal use of the sunshade awning whether the power supply is normal or there is a power failure. However, its drawback is that users need to manually insert or remove the pin, or tighten or loosen the threaded connection. This may require certain skills and time, and may be inconvenient for users who are not familiar with the operation process; moreover, the small parts of the pin or threaded connection are likely to be lost during use, especially in an outdoor environment. Furthermore, when users switch from electric adjustment to manual adjustment, or vice versa, they need to first reset the driving component 3, and then re-determine whether to use the connecting piece 321 to restore to another adjustment mode. This operation step may make users feel cumbersome, especially for users who are not familiar with the equipment, and each switch requires additional time and effort.
[0044] Embodiment 2
[0045] This embodiment optimizes and improves the deficiencies of the telescopic component in Embodiment 1, and realizes the automatic switch between the electric and manual modes through snap connection and sensor technology. Specifically as follows:
[0046] See Figure 7 , the telescopic and flipping member 32 is a telescopic member swing-mounted on the frame 1. The output end of the telescopic member and the connecting plate 33 are connected by a snap connection. A docking groove 322 is formed on the side surface of the connecting plate 33, and a card hole 324 is provided on the side wall of the docking groove 322. A card member acting on the card hole 324 is provided at the output end of the telescopic member; by controlling the connection between the card member and the card hole 324, the telescopic and flipping member 32 and the connecting plate 33 are switched between a connected state and a disconnected state. The card member includes: a sensor for detecting whether the card member is located in the docking groove 322; the sensor can be a photoelectric sensor, a proximity sensor or other types of sensors for real-time monitoring of the position of the card member. A telescopic assembly 325 acting on the card hole 324, both the telescopic assembly 325 and the telescopic member can be telescopic cylinders; the telescopic direction of the telescopic assembly 325 is perpendicular to the telescopic direction of the telescopic member; when the card member is located in the docking groove 322 and the telescopic assembly 325 extends, the telescopic and flipping member 32 and the connecting plate 33 enter the connected state; since the card member will be embedded in the card hole 324, in this state, the movement of the telescopic member can be directly transmitted to the connecting plate 33, thereby driving the louvers 21 to rotate to achieve electric adjustment. When the telescopic assembly 325 retracts, the telescopic and flipping member 32 and the connecting plate 33 enter the disconnected state; the movement of the telescopic member will not be transmitted to the connecting plate 33, and at this time, the angle of the blades can be manually adjusted. The introduction of the sensor and the telescopic assembly 325 enables the system to automatically switch modes after detecting the position of the card member. It improves the intelligent level of the sunshade louver awning, reduces the necessity of user manual intervention, and thus enhances the user experience.
[0047] Embodiment Three
[0048] This embodiment relates to a method for using a flashlight-integrated sunshade louver awning, applying the flashlight-integrated sunshade louver awning described in Embodiment One. The method is divided into manual adjustment and electric adjustment;
[0049] The usage method of manual adjustment is as follows: Remove the connecting piece 321, so that the telescopic and flipping component 32 and the connecting plate 33 are in a disconnected state, and then the manual flipping component 31 can be manually controlled to change the position of the connecting plate 33, causing the louver 21 to rotate, thereby realizing the angle adjustment of the louver 21. Specifically, first, find the connecting piece 321 (usually a pin or a screw), and remove it from the connection holes on the output end of the telescopic component and the connecting plate 33. Ensure that the connecting piece 321 is completely removed from the connection hole to ensure that the telescopic component and the connecting plate 33 are completely disconnected. Use the manual flipping component 31 (such as a hand crank, a pull rope, etc.) to change the position of the connecting plate 33, adjust the position of the connecting plate 33 so that it drives the louver 21 to rotate, thereby realizing the required angle adjustment; according to actual needs, continuously adjust until a satisfactory sunshade effect is achieved.
[0050] The usage method of electric adjustment is as follows: Pass the connecting piece 321 through the connection hole, so that the telescopic and flipping component 32 and the connecting plate 33 are in a connected state, and then the telescopic and flipping component 32 can be used to change the position of the connecting plate 33, causing the louver 21 to rotate, thereby realizing the angle adjustment of the louver 21. Specifically, insert the connecting piece 321 (usually a pin or a screw) into the connection holes on the output end of the telescopic component and the connecting plate 33; ensure that the connecting piece 321 is completely inserted and fixed to ensure that the telescopic component and the connecting plate 33 form a stable connection. Start the telescopic and flipping component 32 through a remote control or other control device, and the telescopic and flipping component 32 starts to work. By the movement of its output end, the position of the connecting plate 33 is changed; the change in the position of the connecting plate 33 will drive the louver 21 to rotate, thereby realizing the required angle adjustment.
[0051] Embodiment 4
[0052] This embodiment relates to a usage method of a hand-electric integrated sunshade louver awning, applying the hand-electric integrated sunshade louver awning described in Embodiment 2. The louvers 21 on the sunshade louver awning are divided into a closed state and an open state. The usage method is as follows:
[0053] Initially, both the telescopic component and the telescopic assembly 325 are in a retracted state; this means that the electric adjustment function of the sunshade louver awning is temporarily not activated, and the system is in a standby state.
[0054] 1) Adjustment of the sunshade louver awning from the closed state to the open state
[0055] Manual adjustment: Manually control the manual flipping component 31 to change the position of the connecting plate 33, causing the louver 21 to rotate, thereby realizing the angle adjustment of the louver 21.
[0056] Electric adjustment: The telescopic component extends and pushes the connecting plate 33 from the side. By changing the position of the connecting plate 33, the louver 21 is rotated, thereby realizing the angle adjustment of the louver 21. Subsequently, for the reset of the telescopic component after electric adjustment: After reaching the adjustment angle, the telescopic component retracts.
[0057] 2) Adjustment of the sunshade louver awning from the open state to the closed state
[0058] Manual adjustment: Manually control the manual flipping component 31 to change the position of the connecting plate 33, so that the louver 21 rotates, thereby realizing the angle adjustment of the louver 21.
[0059] Electric adjustment: The telescopic component extends. When the sensor detects that the clamping member is located in the docking groove 322, the telescopic assembly 325 extends, so that the telescopic flipping component 32 and the connecting plate 33 are in a connected state; the telescopic component retracts. Subsequently, for the reset of the telescopic component after electric adjustment: After reaching the adjustment angle, both the telescopic component and the telescopic assembly 325 retract.
[0060] Of course, the above are only typical examples of the present invention. In addition, the present invention can also have many other specific implementation manners. Any technical solutions formed by equivalent replacement or equivalent transformation fall within the scope of protection required by the present invention.
Claims
1. A flashlight-integrated sunshade louver, characterized by: The sunshade louver canopy comprises: A frame, the frame being used for structural support of the sunshade louver canopy; A blade assembly, wherein the blade assembly is composed of louvers arranged in equal intervals, and the louvers are rotatably mounted on the frame and can be adjusted in angle; A driving assembly, the driving assembly comprising a manual flipping component, a telescopic flipping component and a connecting plate, the connecting plate is rotatably connected to the louver, and the manual flipping component or the telescopic flipping component changes the position of the connecting plate to rotate the louver, thereby achieving angle adjustment of the louver; The manual flip component and the connecting plate are connected by rotation, and the telescopic flip component and the connecting plate are detachably connected; the connection between the telescopic flip component and the connecting plate is divided into a connected state and a disconnected state. When the telescopic flip component and the connecting plate are in the connected state, the sunshade louver is electrically adjusted, and when the telescopic flip component and the connecting plate are in the disconnected state, the sunshade louver is manually adjusted; by controlling the connection between the telescopic flip component and the connecting plate, the sunshade louver is switched between electrically adjusted and manually adjusted; The telescopic flip component is a telescopic component swingably mounted on the frame, the output end of the telescopic component and the connecting plate are connected by a buckle, a docking groove is provided on the side of the connecting plate, a clamping hole is provided on the side wall of the docking groove, and a clamping piece acting on the clamping hole is provided on the output end of the telescopic component; by controlling the connection between the clamping piece and the clamping hole, the switching between the connected state and the disconnected state of the telescopic flip component and the connecting plate is realized; A sensor, the sensor is used to detect whether the card is located in the docking groove; a telescopic component, the telescopic component acts on the card hole, and the telescopic direction of the telescopic component is perpendicular to the telescopic direction of the telescopic component; when the card is located in the docking groove and the telescopic component is extended, the telescopic flip component and the connecting plate enter a connected state; when the telescopic component retracts, the telescopic flip component and the connecting plate enter a disconnected state.
2. The flashlight-integrated sunshade louver awning according to claim 1, characterized in that: The blade group also includes a connecting rod, which is used to connect all the louvers in the blade group in series to ensure the uniformity of the louver angle adjustment in the blade group; The louver includes a sheet body and a louver cover arranged at both ends of the sheet body. The louver cover has a rotating shaft, a first connecting structure and a second connecting structure at the center and the periphery respectively. The rotating shaft is used for connecting the louver and the frame, the first connecting structure is used for connecting the louver and the connecting plate, and the second connecting structure is used for connecting the louver and the connecting rod.
3. The flashlight-integrated sunshade louver awning as claimed in claim 2, characterized in that: The sunshade louver also includes a plastic buckle, which is composed of a base and a plug-in. The base is provided with an open groove and a slot. The open groove is used for placing the rotating shaft. The slot and the plug-in cooperate to close the open groove to prevent the louver from falling off.
4. The flashlight-integrated sunshade louver awning according to claim 1, characterized in that: The manual flipping component includes a first connecting rod, a second connecting rod and a driving module, the driving module has an output shaft and a manual end, one end of the first connecting rod is rotatably connected to the connecting plate, the other end of the first connecting rod is rotatably connected to one end of the second connecting rod, and the other end of the second connecting rod is fixedly connected to the output shaft.
5. A method for using a flashlight-integrated sunshade louver, characterized in that: The flashlight-integrated sunshade louver awning described in any one of claims 1 to 4 is used, and the louvers on the sunshade louver awning are divided into a closed state and an open state, and the method of use is as follows: Initially, the telescopic component and the telescopic assembly are both in a retracted state; 1) The sunshade louver canopy is adjusted from a closed state to an open state: Manual adjustment: manually controlling the manual flipping component to change the position of the connecting plate, so that the louver rotates, thereby achieving angle adjustment of the louver; Electric adjustment: The telescopic component extends out and pushes the connecting plate from the side, and the shutter is rotated by changing the position of the connecting plate, thereby achieving angle adjustment of the shutter; after reaching the adjustment angle, the telescopic component retracts; 2) The sunshade louver canopy is adjusted from an open state to a closed state: Manual adjustment: manually controlling the manual flipping component to change the position of the connecting plate, so that the louver rotates, thereby achieving angle adjustment of the louver; Electric adjustment: the telescopic part extends, and when the sensor detects that the card is located in the docking groove, the telescopic assembly extends to connect the telescopic flip part and the connecting plate; the telescopic part retracts; after reaching the adjustment angle, the telescopic part and the telescopic assembly both retract.
Citation Information
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