Solar panel structure applied to sliding door
By designing a transmission and synchronization mechanism, and using a servo motor to drive a rotating lead screw to move a sliding plate and a connecting plate, the solar panel can be quickly disassembled and installed. This solves the problem of tedious and time-consuming disassembly in existing technologies, and improves cleaning efficiency and power supply stability.
Patent Information
- Application Number
- CN202422786501.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-11-15
AI Technical Summary
In existing technologies, removing solar panels from sliding doors requires tightening multiple bolts, making the disassembly and assembly process cumbersome, time-consuming, and labor-intensive, thus affecting power supply efficiency.
Design a solar panel structure that, through the cooperation of a transmission mechanism, a limiting mechanism, and a synchronization mechanism, uses a servo motor to drive a rotating lead screw to move a sliding plate and a connecting plate, thereby enabling the rapid disassembly and installation of solar panels and reducing operation steps and labor consumption.
It simplifies the disassembly and installation process of solar panels, improves cleaning and maintenance efficiency, reduces operation time and labor consumption, and ensures the power supply stability of the sliding door.
Smart Images

Figure CN223729658U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of sliding door, concretely to a solar panel structure applied to sliding door. BACKGROUND
[0002] The working principle of sliding door is mainly that the door leaf is driven to translate in the horizontal direction through the electric system, realizes the function of opening and closing door, and the sliding door is widely applied to various commercial buildings, office buildings, residential quarters and public places, can provide efficient and convenient access channel in these occasions, satisfies the traffic demand of a large number of people, and guarantees the safety and order of the place.
[0003] According to the public patent CN209637655U, a telescopic sliding door using solar power supply includes: a door row and a drive head driving the door row to open and close the door, the door row is composed of one or more sliding door leaves, the drive head includes a stand, a head bottom plate assembly and a machine box assembled together, characterized in that a solar drive system is further arranged on the drive head, the solar drive system includes a solar cell panel arranged on the machine box and a drive motor arranged in the machine box, and the solar cell panel and the drive motor are connected through wires. The utility model has the advantages of simple structure, convenient assembly, saved assembly time, no need to lay wires at the door row position, green energy-saving and environment-friendly, motor voltage lower than 36V, reduced safety hazards, wide application range, and power supply assistance for the control of the control machine box internal control elements by installing the solar cell panel outside the control machine box in the actual use process. However, in the long-term use process of the solar cell panel, a large amount of dust, dirt and other impurities will adhere to the surface of the solar cell panel, which will block the light and reduce the light absorption rate and power generation efficiency of the solar cell panel. Therefore, it is necessary to regularly disassemble the solar cell panel and clean and maintain the surface of the solar cell panel. When disassembling the solar cell panel from the surface of the corresponding mounting rack, the operator needs to unscrew a large number of bolts before disassembling the solar cell panel, which not only makes the overall disassembly process too complicated and time-consuming and laborious, but also increases the time required for maintaining the solar panel, affecting the power supply of the sliding door. UTILITY MODEL CONTENTS
[0004] The utility model aims at overcoming the defects of the prior art, adapting to the actual needs, providing a solar panel structure applied to sliding door to solve the technical problem that the operator needs to unscrew a large number of bolts before disassembling the solar cell panel from the surface of the corresponding mounting rack, which not only makes the overall disassembly process too complicated and time-consuming and laborious, but also increases the time required for maintaining the solar panel, affecting the power supply of the sliding door.
[0005] To achieve the purpose of the utility model, the technical scheme that the utility model adopts is as follows: a solar panel structure applied to a sliding door is designed, comprising a control cabinet, a door body is arranged on the side of the control cabinet, support rods are vertically and fixedly installed on the top corner surfaces of the control cabinet, an installation frame is fixedly and obliquely installed between the top parts of the support rods, a connecting frame is detachably installed on the top part of the installation frame, a solar cell panel body is fixedly installed on the top surface of the connecting frame,
[0006] A fixed frame is vertically and fixedly installed on the middle end of the side of the installation frame close to the control cabinet, hollow pipes are fixedly installed on the four side surfaces of the installation frame, a transmission mechanism is arranged on the side of each hollow pipe, a limiting mechanism is arranged on the side of the bottom of each transmission mechanism and the connecting frame, and the limiting mechanism is movably installed in the installation frame,
[0007] A synchronous mechanism is arranged in the fixed frame, sliding plates are slidably installed on the four side surfaces of the fixed frame, the synchronous mechanism and the sliding plates are transmissionally connected, and a conversion mechanism is arranged between each sliding plate and the limiting mechanism.
[0008] Preferably, the transmission mechanism comprises transmission plates and transmission rods, the transmission plates are slidably installed in the hollow pipes, the transmission rods are fixedly installed on the middle end of the side of each transmission plate, sliding grooves are formed in the middle end of the side of each hollow pipe away from the installation frame, the transmission rods are inserted into the sliding grooves, and connecting plates are fixedly installed on the side of each two groups of transmission rods away from the transmission plates.
[0009] Preferably, the limiting mechanism comprises limiting insertion rods and insertion rods, the insertion rods are vertically and fixedly installed on the four corner surfaces of the bottom of the connecting frame, limiting insertion grooves are formed in the middle end of the inside of each insertion rod, limiting insertion rods are fixedly installed on the middle end of the side of each transmission plate away from the transmission rods, and the limiting insertion rods are slidably inserted into the limiting insertion grooves.
[0010] Preferably, the synchronous mechanism comprises rotating lead screws, the rotating lead screws are rotatably installed in the hollow pipes through bearings, movable sleeves are movably sleeved on the outside surfaces of the rotating lead screws through threads, connecting blocks are fixedly installed on the outside of the movable sleeves, the number of the connecting blocks is four, limiting sliding grooves are formed in the four sides of the outside of the hollow pipes, the connecting blocks are slidably inserted into the limiting sliding grooves, the side of the connecting blocks away from the movable sleeves is fixedly connected with the outside of the sliding plates, a servo motor is fixedly installed on the outside bottom of the fixed frame, and the transmission shaft top of the servo motor is fixedly connected with the bottom of the rotating lead screw through a coupling.
[0011] Preferably, the conversion mechanism comprises a push rod, and the middle end of each side edge of the sliding plate is hinged with the push rod through a rotating shaft, and the side away from the sliding plate of the push rod is hinged with the bottom of the connecting plate outside through a rotating shaft.
[0012] Preferably, a plug-in groove is vertically arranged in the top end of the mounting frame, and a plug-in rod is slidably arranged in the plug-in groove; and an activity groove is horizontally arranged in the side edge of the mounting frame, and the activity groove is communicated with the plug-in groove, and a limiting plug-in rod is slidably arranged in the activity groove.
[0013] Compared with the prior art, the utility model has the beneficial effects that:
[0014] 1. The utility model discloses a solar cell panel dismounting device, which comprises a fixed frame, a servo motor, a rotating screw rod, a connecting block, a transmission plate, a transmission rod, a hollow pipe, a connecting block, a sliding plate, a connecting plate, a rotating shaft, a push rod and a limiting plug-in rod.
[0015] 2. The utility model discloses a solar cell panel dismounting device, which comprises a fixed frame, a servo motor, a rotating screw rod, a connecting block, a transmission plate, a transmission rod, a hollow pipe, a connecting block, a sliding plate, a connecting plate, a rotating shaft, a push rod and a limiting plug-in rod. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole three-dimensional structure schematic diagram of the utility model;
[0017] Figure 2 It is a mounting frame side view cross section structure schematic diagram of the utility model;
[0018] Figure 3 It is the installation frame ground view section structure schematic diagram of the utility model;
[0019] Figure 4 It is the A part enlarged structure schematic diagram of the utility model;
[0020] In the drawing: 1, control machine case;11, door body;12, support rod;13, installation frame;14, connecting frame;15, solar cell panel body;
[0021] 2, hollow pipe;21, transmission plate;22, limit plug rod;23, plug-in rod;24, plug-in slot;25, limit slot;26, movable slot;27, transmission rod;28, sliding slot;29, connecting plate;
[0022] 3, fixed frame;31, rotating screw;32, movable sleeve;33, connecting block;34, sliding plate;35, push rod;
[0023] 4, servo motor;
[0024] 5, limit sliding slot. DETAILED DESCRIPTION
[0025] The utility model is further explained in connection with the drawings and examples:
[0026] Example 1: a kind of solar panel structure applied to translation door, referring to Figures 1 to 4The control cabinet 1 side is provided with a door body 11, the control cabinet 1 top four corners surface is vertically fixedly installed with a support rod 12, the support rod 12 top is fixedly installed with an installation frame 13 between the inclination, the installation frame 13 top is detachably installed with a connecting frame 14, the connecting frame 14 top surface is fixedly installed with a solar cell panel body 15, the installation frame 13 is vertically installed with a fixed frame 3 in the middle end of the side close to the control cabinet 1, the installation frame 13 four sides are fixedly installed with a hollow tube 2 in both ends, each hollow tube 2 side is provided with a transmission mechanism, each transmission mechanism and connecting frame 14 bottom side are provided with a limiting mechanism, and the limiting mechanism is movably installed in the installation frame 13, the fixed frame 3 is provided with a synchronous mechanism in the inside, the fixed frame 3 outside four sides are slidably installed with a sliding plate 34, and the synchronous mechanism and sliding plate 34 are transmissionally connected, each sliding plate 34 and limiting mechanism are provided with a conversion mechanism, through the mutual cooperation of synchronous mechanism and conversion mechanism, and under the synchronous transmission of transmission mechanism to limiting mechanism, can drive the limiting plug rod 22 to move out from the limiting slot 25 in the inside of the plug rod 23, so that a plurality of multidirectional limiting plug rods 22 lose the plug limiting force of the plug rod 23 in the corresponding position, and then the operator only needs to lift the solar cell panel outward to move away from the surface of the installation frame 13, reduce the operation steps and labor consumption required for the operator to disassemble and maintain the solar cell panel body 15, and improve the cleaning and maintenance efficiency of the solar cell panel body 15.
[0027] Specifically, referring to Figures 1 to 4 The transmission mechanism includes a transmission plate 21 and a transmission rod 27, each hollow tube 2 is slidably installed with a transmission plate 21 in the inside, each transmission plate 21 side middle end is fixedly installed with a transmission rod 27, each hollow tube 2 is provided with a sliding groove 28 in the middle end of the side away from the installation frame 13, and the transmission rod 27 is inserted into the sliding groove 28, and each two groups of transmission rods 27 are fixedly installed with a connecting plate 29 on the side away from the transmission plate 21, and the connecting plate 29 is located outside the hollow tube 2, the transmission rod 27 and the limiting plug rod 22 are transmissionally connected through the transmission plate 21, so that the limiting plug rod 22 also moves when the transmission rod 27 moves synchronously under the movement of the connecting plate 29.
[0028] Further, referring to Figures 1 to 4 The limiting mechanism includes a limiting plug rod 22 and a plug rod 23, the connecting frame 14 bottom four corners surface is vertically fixedly installed with a plug rod 23, each plug rod 23 middle end is provided with a limiting slot 25 in the inside, each transmission plate 21 side middle end is fixedly installed with a limiting plug rod 22 away from the transmission rod 27, and the limiting plug rod 22 is slidably inserted into the limiting slot 25, the limiting slot 25 is provided in the inside of the plug rod 23, and the limiting plug rod 22 is slidably inserted into the limiting slot 25, so as to realize the installation and fixing of the solar cell panel body 15.
[0029] It is worth noting that, see Figures 1 to 4 , the synchronous mechanism comprises a rotating screw rod 31, the rotating screw rod 31 is rotatably installed inside the hollow pipe 2 through a bearing, the outer surface of the rotating screw rod 31 is movably sleeved with a movable sleeve 32 through threads, the movable sleeve 32 is fixedly installed outside with a connecting block 33, the number of the connecting block 33 is four groups, the four sides of the hollow pipe 2 are provided with a limiting sliding groove 5 outside, the connecting block 33 is slidably inserted into the limiting sliding groove 5, the side of the connecting block 33 away from the movable sleeve 32 is fixedly connected with the outer side of the sliding plate 34, the outer side of the fixed frame 3 is fixedly installed with a servo motor 4 at the bottom, and the transmission shaft of the servo motor 4 is fixedly connected with the bottom of the rotating screw rod 31 through a coupling, under the rotating transmission of the rotating screw rod 31 to the movable sleeve 32, and under the guiding sliding of the limiting sliding groove 5 to the connecting block 33, the movable sleeve 32 can drive the four groups of sliding plates 34 outside the fixed frame 3 to move synchronously and in the same direction.
[0030] It is worth noting that, see Figures 1 to 4 , the conversion mechanism comprises a push rod 35, each sliding plate 34 is hingedly connected with a push rod 35 at the middle end of the side edge, and the side of the push rod 35 away from the sliding plate 34 is hingedly connected with the outer side of the connecting plate 29 at the bottom, under the transmission conversion of the push rod 35, the vertical movement force of the sliding plate 34 can be converted into the horizontal push-pull force of the connecting plate 29 and the limiting plug rod 22.
[0031] It is worth noting that, see Figures 1 to 4 , the top end of the installation frame 13 is vertically provided with a plug-in groove 24 inside, and the plug-in rod 23 is slidably inserted into the plug-in groove 24, the side of the installation frame 13 is transversely provided with a movable groove 26 inside, the movable groove 26 and the plug-in groove 24 are communicated, and the limiting plug rod 22 is slidably inserted into the movable groove 26, through the structure of the plug-in rod 23 and the movable groove 26, the normal movement of the plug-in rod 23 and the limiting plug rod 22 is realized.
[0032] During operation, when it is necessary to disassemble the solar panel body 15 located at the top of the mounting frame 13 and the connecting frame 14 to clean and maintain the surface of the solar panel body 15, the servo motor 4 is turned on by an external control switch. This causes the rotating lead screw 31 to rotate clockwise synchronously inside the fixed frame 3. Combined with the limiting sliding action of the limiting groove 5 on the connecting block 33, the movable sleeve 32 can be raised synchronously inside the fixed frame 3. Subsequently, under the connecting transmission action of the connecting block 33, the sliding plate 34 can slide synchronously outside the fixed frame 3. Combined with the transmission of the push rod 35... Under the action of the sliding plate 34, the vertical moving force can be converted into a pushing force on the connecting plate 29, which in turn provides a corresponding horizontal pushing force to the four sets of connecting plates 29 located outside the mounting frame 13. This causes the connecting plates 29 to move away from the outside of the mounting frame 13. At the same time, in conjunction with the transmission rod 27 and the transmission plate 21, the limiting rods 22 are driven to move outward from the limiting slots 25 inside the insertion rods 23. After moving into the movable slots 26 and the hollow tube 2, the multiple sets of multi-directional limiting rods 22 simultaneously lose the insertion limiting force on the corresponding insertion rods 23, thus allowing the operator to only... The solar panel body 15 needs to be lifted outwards to move the insertion rod 23 at the bottom of the connecting plate 29 out of the insertion slot 24, thereby allowing the solar panel body 15 and the connecting frame 14 to be removed from the surface of the mounting frame 13, completing the disassembly of the solar panel body 15. Following this, its surface is cleaned and maintained. After cleaning and maintenance, the insertion rod 23 at the bottom of the connecting frame 14 is aligned with the insertion slot 24 and pushed in, so that the bottom of the connecting frame 14 is against the top surface of the mounting frame 13. Then, the servo motor 4 is turned on via an external control switch, causing it to rotate in the reverse direction, driving the lead screw 3. 1. Rotating inside the fixed frame 3, repeating the above transmission process, drives the connecting plate 29 and its side limiting rod 22 to pass through the movable groove 26 and insert into the limiting slot 25 inside the limiting rod 22, thereby limiting the vertical movement force of the plug rod 23, thus completing the installation and use of the solar panel body. Then, using the connecting wire, the solar panel body 15 and the battery located inside the control box 1 are electrically connected. The solar panel body 15 absorbs external sunlight, converts it into electricity, and stores it inside the battery, thereby providing driving power for the extension and retraction of the door 11.
[0033] In addition, all components designed in this utility model are general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. Those skilled in the art can fully implement them, so there is no need to elaborate. The content protected by this utility model does not involve improvements to the internal structure and method.
[0034] The utility model discloses an embodiment discloses the better embodiment, but is not limited to this, and the ordinary skill of the art, the spirit of the utility model is appreciated to the above -mentioned embodiment, and different extension and change are made, but as long as not departing from the spirit of the utility model, all are in the protection range of the utility model.
Claims
1. A solar panel structure applied to a sliding door, comprising a control cabinet (1), the control cabinet (1) is provided with a door body (11) on the side, characterized in that, The top four corners of the control cabinet (1) are vertically fixedly installed with support rods (12), the top of the support rods (12) is obliquely fixedly installed with a mounting frame (13), the top of the mounting frame (13) is detachably installed with a connecting frame (14), and the top surface of the connecting frame (14) is fixedly installed with a solar cell panel body (15). The mounting frame (13) is vertically installed with a fixed frame (3) near the middle end of one side of the control cabinet (1), the four sides of the mounting frame (13) are fixedly installed with hollow pipes (2), each hollow pipe (2) is provided with a transmission mechanism, each transmission mechanism and the bottom side of the connecting frame (14) are provided with a limiting mechanism, and the limiting mechanism is movably installed in the mounting frame (13). The inside of the fixed frame (3) is provided with a synchronous mechanism, the outside of the fixed frame (3) is slidably installed with a sliding plate (34), and the synchronous mechanism and the sliding plate (34) are transmissionally connected, and a conversion mechanism is arranged between each sliding plate (34) and the limiting mechanism.
2. The solar panel structure for a sliding door according to claim 1, wherein The transmission mechanism comprises a transmission plate (21) and a transmission rod (27), each hollow pipe (2) is slidably installed with a transmission plate (21), the middle end of the side of each transmission plate (21) is fixedly installed with a transmission rod (27), the middle end of the side of each hollow pipe (2) away from the mounting frame (13) is provided with a sliding groove (28), and the transmission rod (27) penetrates and is inserted into the sliding groove (28), and each two groups of transmission rods (27) away from the transmission plate (21) are fixedly installed with a connecting plate (29), and the connecting plate (29) is located outside the hollow pipe (2).
3. The solar panel structure for a sliding door according to claim 2, wherein The limiting mechanism comprises a limiting plug rod (22) and a plug rod (23), the bottom of the connecting frame (14) is vertically fixedly installed with a plug rod (23), the middle end of the inside of each plug rod (23) is provided with a limiting insertion slot (25), the middle end of the side of each transmission plate (21) away from the transmission rod (27) is fixedly installed with a limiting plug rod (22), and the limiting plug rod (22) is slidably inserted into the limiting insertion slot (25).
4. The solar panel structure for a sliding door according to claim 1, wherein The synchronous mechanism comprises a rotating screw rod (31), the inside of the hollow pipe (2) is rotatably installed with a rotating screw rod (31) through a bearing, the outside surface of the rotating screw rod (31) is movably sleeved with a movable sleeve (32) through threads, the outside of the movable sleeve (32) is fixedly installed with a connecting block (33), the number of the connecting block (33) is four groups, the outside of the hollow pipe (2) is provided with a limiting sliding groove (5), the connecting block (33) is slidably inserted into the limiting sliding groove (5), the side of the connecting block (33) away from the movable sleeve (32) is fixedly connected with the outside of the sliding plate (34), and the outside bottom of the fixed frame (3) is fixedly installed with a servo motor (4), and the transmission shaft top of the servo motor (4) is fixedly connected with the bottom of the rotating screw rod (31) through a shaft coupling.
5. The solar panel structure for a sliding door according to claim 1, wherein The conversion mechanism comprises push rods (35), each of the sliding plates (34) is hinged with a push rod (35) through a rotating shaft at the middle end of the side edge, and the side away from the sliding plate (34) of the push rod (35) is hinged with the bottom of the outer side of the connecting plate (29) through a rotating shaft.
6. The solar panel structure for a sliding door according to claim 1, wherein The top end of the mounting frame (13) is vertically provided with a plug-in slot (24) inside, and the plug-in rod (23) is slidingly plugged into the plug-in slot (24) inside, the side edge of the mounting frame (13) is transversely provided with a movable slot (26) inside, the movable slot (26) and the plug-in slot (24) are communicated, and the limiting plug-in rod (22) is slidingly plugged into the movable slot (26) inside.
Citation Information
Patent Citations
Telescopic sliding door powered by solar energy
CN209637655U