A split connection component for a solar cell

Through the design of solar panel protective box and screw-cap guard plate, combined with folding unit and split connection, the protection problem of solar cells when not in use is solved, the convenient rotation and reinforcement of screw-cap guard plate is achieved, the wind resistance is improved, and the device disassembly and assembly and maintenance process is simplified.

CN120090545BActive Publication Date: 2025-08-01ZHEJIANG JIAMING TIANHEYUAN PHOTOVOLTAIC TECH
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Patent Information

Application Number
CN202510574377.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-08-01
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

Existing solar cells are easily damaged when not in use, and the installation position is limited and it is not convenient to expand. The traditional folding bracket is cumbersome to operate and has poor wind resistance. The overall device is not easy to disassemble, replace or upgrade.

Method used

The solar panel protective box and screw cover plate design are adopted, combined with folding unit and split connection, and the rotation adjustment and reinforcement of the screw cover plate is achieved through the rack and rack mechanism, and the operation is simplified by the motor drive assembly, and the locking mechanism is conveniently disassembled and assembled.

Benefits of technology

It provides effective protection for solar cells, the cap cover plate is easy to rotate, has strong wind resistance, and is easy to disassemble and assembly and maintenance, meeting the needs of mobile vehicles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a split connection component for a solar cell, which relates to the technical field of solar cells. The split connection component for a solar cell includes a split base, a clamping seat, a solar cell protection box, a rotary cover plate, a first solar cell panel, a second solar cell panel, and a folding unit. The split connection component for a solar cell uses the solar cell protection box and the rotary cover plate to provide protection for the solar cell, so that the solar cell is not easily damaged and has a long service life. Through the folding unit design, the rotation adjustment of the rotary cover plate and the second solar cell panel is convenient. Therefore, the operations of propping up for use and folding for storage are convenient. At the same time, after propping up for use, it automatically drives the reinforcement embedding plate to provide embedding clamping and reinforcement for the rotary cover plate, with good wind resistance and good stability. The split base and the clamping seat are connected in a split manner, which is convenient for disassembly and assembly. Therefore, the device is easy to disassemble, maintain, or upgrade subsequently.
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Description

Technical Field

[0001] The present invention relates to the technical field of solar cells, and particularly to a split connection component for solar cells. Background Art

[0002] A solar cell is a thin photovoltaic semiconductor sheet that directly generates electricity using sunlight. When sunlight shines on the semiconductor surface, the valence electrons of atoms in the N-region and P-region inside the semiconductor obtain energy exceeding the bandgap through light radiation, thus breaking free from the bondage of covalent bonds and generating non-equilibrium electron-hole pairs. These electron-hole pairs are separated by the internal electric field of the PN junction. Electrons are pushed towards the N-region, and holes are pushed towards the P-region, thereby generating a potential difference, i.e., voltage, on both sides of the PN junction. When the solar cell is externally connected to a load, the photo-generated current flows from the P-region through the load to the N-region, and the load can output power.

[0003] Existing solar cells are usually composed of plates and have a very wide range of application fields. When used for centralized household power supply, they are mainly used for residential life, photovoltaic cell power distribution, small water well power distribution, etc. When used in military vehicles, for example, installing solar panels on military vehicles to obtain electric energy. If applied in some scenarios of mobile vehicles, such as military vehicles or civilian RVs, there are the following deficiencies:

[0004] First, when many solar cells are not in use, the solar cells are still exposed without protection, resulting in easy damage to the solar cells and reduced lifespan.

[0005] Second, limited by the area of the installation position of the solar cell, it is not convenient for extended use. If a folding bracket is installed, although it can support the solar cell and expand the area, the operation of many traditional models of folding brackets is cumbersome, and at the same time, the wind resistance is not strong and the stability is not good enough.

[0006] Third, after the overall device is fixed in position on the vehicle, it is not easy to disassemble, replace, or upgrade, so it is not convenient for subsequent maintenance.

[0007] In view of the deficiencies of the prior art, the present invention provides a split connection component for solar cells to solve the above problems. Summary of the Invention

[0008] In view of the deficiencies of the prior art, the present invention provides a split connection component for a solar cell, which uses a solar cell panel protection box and a rotary cover plate to protect the solar cell. The solar cell is not easily damaged and has a long service life. Through the folding unit design, the rotary cover plate and the second solar cell panel can be conveniently rotated and adjusted. Therefore, it is convenient to set up and use and fold and store. At the same time, after setting up and using, it automatically drives the reinforcement embedding plate to provide embedding and clamping for the rotary cover plate and reinforce it, with good wind resistance and stability. The split base and the clamping seat are connected in a split manner, which is convenient for disassembly and assembly. Therefore, the device is easy to disassemble, maintain or upgrade subsequently.

[0009] To achieve the above objectives, the present invention is realized through the following technical solutions: A split connection component for a solar cell, comprising:

[0010] A split base, which is set and fixed at the target position;

[0011] A clamping seat, which is movably clamped inside the split base, and a reinforcement embedding plate is provided on the clamping seat;

[0012] A solar cell panel protection box, which is set on the clamping seat, and an inner support is provided inside the solar cell panel protection box;

[0013] A rotary cover plate, which is rotatably connected to the solar cell panel protection box through a main shaft, and a reinforcement groove is provided on the rotary cover plate;

[0014] A first solar cell panel, which is set on the inner support;

[0015] A second solar cell panel, which is set on the rotary cover plate;

[0016] A folding unit, which is set on the solar cell panel protection box and is used to control the rotation of the rotary cover plate;

[0017] A linkage component, which is set on the clamping seat and is used to control the reinforcement embedding plate to be movably clamped in the reinforcement groove when the rotary cover plate rotates.

[0018] The folding unit includes:

[0019] A main rack, which is set on the solar cell panel protection box;

[0020] A first gear, which is set on the clamping seat and meshes with the main rack;

[0021] A second gear, which is set on the main shaft and meshes with the first gear.

[0022] Preferably, the linkage component includes:

[0023] A second rack, which is set on the main rack;

[0024] The third gear is arranged on the clamping seat and meshes with the second rack;

[0025] The fourth gear is arranged on the rotating shaft of the reinforcing embedded plate and meshes with the third gear.

[0026] Preferably, an adjusting unit for driving the main rack to move and adjust is arranged inside the clamping seat, and the adjusting unit includes:

[0027] The first lead screw is arranged inside the solar panel protection box;

[0028] The nut seat is threadedly connected to the first lead screw;

[0029] The connecting arm is fixedly connected between the nut seat and the main rack;

[0030] The driving component is arranged inside the solar panel protection box and is used for driving the first lead screw to rotate.

[0031] Preferably, the driving component includes:

[0032] The motor is arranged on the inner bracket;

[0033] The fifth gear is arranged at the output end of the motor;

[0034] The sixth gear is arranged on the first lead screw and meshes with the fifth gear.

[0035] Preferably, a bottom plate is arranged at the bottom of the split base, several groups of fixing holes are formed in the bottom plate, a bearing frame is arranged on the clamping seat, and the bearing frame is used for supporting the first gear, the third gear and the fourth gear.

[0036] Preferably, a locking mechanism for clamping and locking the clamping seat is arranged on the split base, and several groups of locking holes are formed in the clamping seat;

[0037] The locking mechanism includes:

[0038] The guide rail frame is arranged on the split base;

[0039] The control arm is arranged on the guide rail frame;

[0040] Several groups of locking rods are arranged on the control arm and are movably clamped in the locking holes.

[0041] Preferably, a second lead screw is threadedly connected to the guide rail frame, and the second lead screw is rotatably connected to the control arm.

[0042] Preferably, a guide rail strip is connected to the clamping seat, a limiting groove is formed in the main rack, and the guide rail strip is arranged in the limiting groove.

[0043] Preferably, an energy storage battery, a charging controller and an inverter are provided at the bottom of the split base. The energy storage battery is respectively connected to the charging controller and the inverter, and the second solar panel and the first solar panel are respectively connected to the charging controller.

[0044] Preferably, a second water outlet is provided on the inner bracket, a first water outlet is opened at the bottom of the bottom plate, and a guiding groove is further opened at the bottom of the bottom plate. The first water outlet is communicated with the guiding groove.

[0045] The present invention discloses a split connection assembly for solar cells, and the beneficial effects thereof are as follows:

[0046] 1. For the split connection assembly of solar cells, first, the rotary cover plate is convenient for position adjustment. The closed space formed by folding the solar panel protection box and the rotary cover plate is used to protect the folded first solar panel and second solar panel. When not in use, the first solar panel and the second solar panel are protected, not easily damaged, and have a long service life.

[0047] Second, through the design of the folding unit, the rotation adjustment of the rotary cover plate and the second solar panel is convenient. Therefore, the operations of propping up for use and folding for storage are convenient. At the same time, after propping up for use, the reinforcement embedding plate is automatically driven to provide embedding and reinforcement for the rotary cover plate, with good wind resistance and stability.

[0048] Third, the split base and the clamping seat are connected in a split manner, which is convenient for disassembly and assembly. Therefore, the device is easy to disassemble, maintain or upgrade subsequently, meeting the usage requirements of various carriers.

[0049] 2. For the split connection assembly of solar cells, through the design of the locking mechanism, the locking or unlocking operation between the split base and the clamping seat is convenient, and further the disassembly and assembly of the split base and the clamping seat are convenient. When the split base and the clamping seat are clamped, a plurality of groups of locking rods are quickly clamped in the locking holes to realize the clamping and locking of the split base and the clamping seat, with good stability and quick and convenient disassembly and assembly operations, meeting the usage requirements.

[0050] 3. For the split connection assembly of solar cells, through the design of the adjustment unit, the movement adjustment process of the main rack is convenient, and further the operations of lifting and storing and protecting the rotary cover plate and the second solar panel are convenient. The adjustment unit is powered by a driving component. The driving component drives the first lead screw to rotate, the first lead screw drives the nut seat to move, the nut seat drives the connecting arm to move, and the connecting arm further drives the main rack to move, so as to make the folding unit operate and adjust the usage states of the rotary cover plate and the second solar panel. The whole process can be automatically carried out remotely by electricity without manual operation, making the device simple and convenient to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.

[0052] Figure 1 The first perspective of the overall structure diagram of the present invention;

[0053] Figure 2 The second perspective of the overall structure diagram of the present invention;

[0054] Figure 3 The unfolded schematic diagram of the cap protection plate of the present invention;

[0055] Figure 4 For the present invention Figure 3 The enlarged view of part A in the present invention;

[0056] Figure 5 The structural schematic diagram of the locking mechanism of the present invention;

[0057] Figure 6 The disassembled schematic diagram of the clamping seat of the present invention;

[0058] Figure 7 The bottom schematic diagram of the clamping seat of the present invention;

[0059] Figure 8 For the present invention Figure 7 The enlarged view of part B in the present invention;

[0060] Figure 9 The disassembled schematic diagram of the cap protection plate of the present invention;

[0061] Figure 10 The cross-sectional view of the clamping seat and the main rack of the present invention;

[0062] Figure 11 The structural schematic diagram of the connecting arm of the present invention;

[0063] Figure 12 The structural schematic diagram of the reinforcement embedding plate of the present invention;

[0064] Figure 13 The structural schematic diagram of the third gear of the present invention;

[0065] Figure 14 The structural schematic diagram of the second gear of the present invention;

[0066] Figure 15 The structural schematic diagram of the carrier of the present invention.

[0067] In the figure: 1. Split base; 11. Bottom plate; 111. First water drainage slot opening; 112. Guide slot; 2. Clamping seat; 21. Locking hole; 22. Guide rail strip; 23. Carrier frame; 24. Reinforcing embedded plate; 3. Solar panel protection box; 31. Inner bracket; 32. Second water drainage slot opening; 4. Rotating cover guard plate; 41. Main shaft; 42. Reinforcing slot; 5. First solar panel; 6. Second solar panel; 7. Folding unit; 71. Main rack; 711. Limit slot; 72. First gear; 73. Second gear; 74. Second rack; 75. Third gear; 76. Fourth gear; 8. Adjusting unit; 81. First lead screw; 82. Nut seat; 83. Connecting arm; 84. Motor; 85. Fifth gear; 86. Sixth gear; 9. Locking mechanism; 91. Guide rail frame; 92. Control arm; 93. Locking rod; 94. Second lead screw; 10. Energy storage battery; 1001. Charge controller; 1002. Inverter. Detailed implementation mode

[0068] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0069] By providing a split connection component for solar cells in the embodiments of the present application, the problems are solved that when many solar cells are not in use, the solar cells are still exposed without protection, which easily causes damage to the solar cells, reduces the service life, is limited by the area of the installation position of the solar cells, is not convenient for expansion and use, and if a folding bracket is installed, although it can support the solar cells and expand the area, the operation of many traditional models of folding brackets is cumbersome, and at the same time, the wind resistance is not strong and the stability is not good enough. After the overall device is fixed in position on the vehicle, it is not easy to disassemble, replace or upgrade, so it is not convenient for subsequent maintenance.

[0070] To better understand the above technical solutions, the above technical solutions will be described in detail below in conjunction with the accompanying drawings of the specification and specific implementation modes.

[0071] Embodiment 1: The embodiments of the present invention disclose a split connection component for solar cells. As shown in the Figures 1-15 accompanying drawings, it includes:

[0072] The split base 1 is set at a target position for fixation, thereby achieving the position limit of the overall device on the vehicle. The bottom of the split base 1 is provided with a storage battery 10, a charging controller 1001 and an inverter 1002. The storage battery 10 is respectively connected to the charging controller 1001 and the inverter 1002;

[0073] The clamping seat 2 is movably clamped inside the split base 1; the clamping seat 2 is used to support the solar panel protection box 3. Since the clamping seat 2 and the split base 1 are split, the disassembly and assembly of the clamping seat 2 and the solar panel protection box 3 are convenient, each component is easy to maintain, and it is also convenient for the subsequent upgrade or replacement during the use of the device; a reinforcement embedding plate 24 is provided on the clamping seat 2, and the reinforcement embedding plate 24 is used to be clamped in the reinforcement groove 42 to reinforce the rotary cover plate 4;

[0074] The solar panel protection box 3 is set on the clamping seat 2. An inner support 31 is provided inside the solar panel protection box 3, and the inner support 31 is used to carry the first solar panel 5;

[0075] The rotary cover plate 4 is rotatably connected to the solar panel protection box 3 through a main shaft 41. A reinforcement groove 42 is provided on the rotary cover plate 4. On the one hand, the rotary cover plate 4 is used to carry the second solar panel 6. On the other hand, when the rotary cover plate 4 is hermetically attached to the solar panel protection box 3, the space formed between the solar panel protection box 3 and the rotary cover plate 4 provides a closed protection for the first solar panel 5 and the second solar panel 6 to ensure the stability of the first solar panel 5 and the second solar panel 6;

[0076] The first solar panel 5 is set on the inner support 31;

[0077] The second solar panel 6 is set on the rotary cover plate 4. The second solar panel 6 and the first solar panel 5 are respectively connected to the charging controller 1001;

[0078] The folding unit 7 is set on the solar panel protection box 3 and is used to control the rotation of the rotary cover plate 4. The folding unit 7 includes:

[0079] The main rack 71 is set on the solar panel protection box 3;

[0080] The first gear 72 is set on the clamping seat 2 and meshes with the main rack 71;

[0081] The second gear 73 is set on the main shaft 41 and meshes with the first gear 72;

[0082] The linkage assembly is set on the clamping seat 2 and is used to control the movable clamping of the reinforcement embedding plate 24 in the reinforcement groove 42 when the rotary cover plate 4 rotates.

[0083] The first solar panel 5 and the second solar panel 6 are the core components of energy collection. They are responsible for absorbing sunlight and converting it into electrical energy.

[0084] The packaging material and surface coating of the first solar cell panel 5 and the second solar cell panel 6 are made of weather-resistant and corrosion-resistant materials. For example, EVA film is used as the packaging material and surface coating, which has good light transmittance, elasticity, and aging resistance, and can effectively protect the solar cells from moisture erosion and external impact.

[0085] The screw cap guard 4 and the solar panel protection box 3 are made of corrosion-resistant and weather-resistant metals or synthetic materials, such as stainless steel, aluminum alloy or high-performance plastic; these materials can resist corrosion and ultraviolet radiation in the outdoor environment, maintain structural integrity and stability, and thus protect the first solar panel 5 and the second solar panel 6 inside from damage.

[0086] The charge controller 1001 is connected to the first solar panel 5 and the second solar panel 6, respectively, and is responsible for regulating the power flowing in from the solar panels. Its primary function is to prevent overcharging of the energy storage battery 10, ensuring its safety and extending its service life. Furthermore, the charge controller 1001 prevents reverse discharge from the energy storage battery 10 into the solar panels during periods of low light or at night.

[0087] Energy storage battery 10 is located at the bottom of split base 1 and is connected to charge controller 1001. Its primary function is to store electricity from the solar panels, which has been regulated by charge controller 1001. When sunlight is insufficient or electricity is needed, energy storage battery 10 releases the stored energy for use.

[0088] The adapter 2 and split base 1 are constructed of corrosion-resistant and weather-resistant metal or synthetic materials. Metal components are made of stainless steel or galvanized steel to prevent rust and corrosion. Synthetic components are made of high-performance plastics such as PVDF. These materials ensure the long-term stability and durability of the adapter 2 and split base 1 in outdoor environments, supporting and protecting the entire device from environmental damage.

[0089] The inverter 1002 is also located at the bottom of the split base 1 and is connected to the energy storage battery 10. The main function of the inverter 1002 is to convert the DC power in the energy storage battery 10 into AC power to meet the power needs of the vehicle-mounted equipment or other electrical equipment.

[0090] The linkage components include:

[0091] The second rack 74 is provided on the main rack 71;

[0092] The third gear 75 is arranged on the clamping seat 2 and meshes with the second rack 74;

[0093] The fourth gear 76 is arranged on the rotating shaft of the reinforcement embedding plate 24 and meshes with the third gear 75.

[0094] Through the design of the folding unit 7, the folding unit 7 facilitates the adjustment of the position of the cap protecting plate 4, enabling the cap protecting plate 4 to be quickly opened or closed. When the cap protecting plate 4 is opened, the first solar panel 5 and the second solar panel 6 are used for power generation. When the cap protecting plate 4 is closed, the first solar panel 5 and the second solar panel 6 are protected;

[0095] The folding unit 7 is used through the movement of the main rack 71. When the main rack 71 moves towards the outside of the solar panel protection box 3, the cap protecting plate 4 changes from the closed state to the propped-up state. Meanwhile, through the design of the linkage assembly, the reinforcement embedding plate 24 will be driven to move and embed into the inside of the reinforcement groove 42 synchronously, providing reinforcement protection for the cap protecting plate 4, enhancing the wind resistance of the cap protecting plate 4, and ensuring the stable force on the second solar panel 6;

[0096] When the main rack 71 moves and adjusts, the main rack 71 drives the first gear 72 to move, the first gear 72 drives the second gear 73 to move, the second gear 73 drives the main shaft 41 to move, and the main shaft 41 drives the cap protecting plate 4 to move, realizing the lifting of the cap protecting plate 4 and the second solar panel 6;

[0097] When the main rack 71 moves and adjusts, the main rack 71 synchronously drives the second rack 74 to move, the second rack 74 drives the third gear 75 to rotate, the third gear 75 drives the fourth gear 76 to rotate, the fourth gear 76 drives the reinforcement embedding plate 24 to move, and the reinforcement embedding plate 24 and the cap protecting plate 4 move synchronously. Finally, the reinforcement embedding plate 24 embeds into the reinforcement groove 42 to provide additional reinforcement and support protection for the cap protecting plate 4, enhancing the stability of the second solar panel 6.

[0098] An adjustment unit 8 for driving the movement and adjustment of the main rack 71 is arranged inside the clamping seat 2. The adjustment unit 8 includes:

[0099] The first lead screw 81 is arranged inside the solar panel protection box 3;

[0100] The nut seat 82 is threadedly connected to the first lead screw 81;

[0101] The connecting arm 83 is fixedly connected between the nut seat 82 and the main rack 71;

[0102] The drive assembly is arranged inside the solar panel protection box 3 and is used to drive the first lead screw 81 to rotate.

[0103] Through the design of the adjusting unit 8, the movement and adjustment of the main rack 71 are convenient to operate, and thus the lifting and storage protection operations of the rotary cover plate 4 and the second solar panel 6 are convenient.

[0104] The adjusting unit 8 is powered by a driving component. The driving component drives the first lead screw 81 to rotate. The first lead screw 81 drives the nut seat 82 to move. The nut seat 82 drives the connecting arm 83 to move. The connecting arm 83 further drives the main rack 71 to move, so that the folding unit 7 operates and adjusts the usage states of the rotary cover plate 4 and the second solar panel 6.

[0105] The driving component includes:

[0106] A motor 84, which is arranged on the inner bracket 31;

[0107] A fifth gear 85, which is arranged at the output end of the motor 84;

[0108] A sixth gear 86, which is arranged on the first lead screw 81 and meshes with the fifth gear 85.

[0109] The driving component has a compact structure and stable operation. The motor 84 is installed on the inner bracket 31 to provide power. The motor 84 drives the fifth gear 85 to move. The fifth gear 85 drives the sixth gear 86 to move. Thus, the sixth gear 86 drives the first lead screw 81 to rotate.

[0110] The bottom of the split base 1 is provided with a bottom plate 11. A plurality of groups of fixing holes are formed in the bottom plate 11. A bearing frame 23 is arranged on the clamping seat 2. The bearing frame 23 is used to support the first gear 72, the third gear 75 and the fourth gear 76. The bottom plate 11 is used to fix the split base 1 at a target position. Screws or bolts are used to pass through the fixing holes for position fixing. The bearing frame 23 makes the first gear 72, the third gear 75 and the fourth gear 76 receive stable forces.

[0111] A guide rail strip 22 is connected to the clamping seat 2. A limiting groove 711 is formed in the main rack 71. The guide rail strip 22 is arranged in the limiting groove 711. Through the design of the guide rail strip 22 and the limiting groove 711, the main rack 71 is slidably connected to the clamping seat 2, is limited, and is not easily displaced.

[0112] A second water drainage slot 32 is arranged on the inner bracket 31. A first water drainage slot 111 is formed in the bottom of the bottom plate 11. Through the design of the second water drainage slot 32 and the first water drainage slot 111, if water accumulates inside the solar panel protection box 3, it can be discharged in time, avoiding the accumulation of water and affecting the internal components.

[0113] A guiding groove 112 is further formed at the bottom of the bottom plate 11, and the first water outlet groove 111 is communicated with the guiding groove 112. Through the design of the guiding groove 112, the water at the first water outlet groove 111 can be conveniently guided and discharged through the position of the bottom plate 11.

[0114] Embodiment 2: The embodiment of the present invention discloses a split connection component for a solar cell, as shown in the attached Figures 1-15 figures, including:

[0115] A split base 1, which is arranged and fixed at a target position;

[0116] A clamping seat 2, which is movably clamped inside the split base 1, and a reinforcing embedded plate 24 is arranged on the clamping seat 2;

[0117] A solar panel protection box 3, which is arranged on the clamping seat 2, and an inner bracket 31 is arranged inside the solar panel protection box 3;

[0118] A rotary cover plate 4, which is rotatably connected to the solar panel protection box 3 through a main shaft 41, and a reinforcing groove 42 is arranged on the rotary cover plate 4;

[0119] A first solar panel 5, which is arranged on the inner bracket 31;

[0120] A second solar panel 6, which is arranged on the rotary cover plate 4;

[0121] A folding unit 7, which is arranged on the solar panel protection box 3 and is used to control the rotation of the rotary cover plate 4;

[0122] A linkage assembly, which is arranged on the clamping seat 2 and is used to control the reinforcing embedded plate 24 to be movably clamped in the reinforcing groove 42 when the rotary cover plate 4 rotates.

[0123] The folding unit 7 includes:

[0124] A main rack 71, which is arranged on the solar panel protection box 3;

[0125] A first gear 72, which is arranged on the clamping seat 2 and meshes with the main rack 71;

[0126] A second gear 73, which is arranged on the main shaft 41 and meshes with the first gear 72.

[0127] A locking mechanism 9 for clamping and locking the clamping seat 2 is arranged on the split base 1, and a plurality of groups of locking holes 21 are formed on the clamping seat 2;

[0128] The locking mechanism 9 includes:

[0129] A guide rail frame 91, which is arranged on the split base 1;

[0130] The control arm 92 is arranged on the guide rail frame 91;

[0131] A plurality of groups of locking rods 93 are arranged on the control arm 92 and are movably clamped in the locking holes 21.

[0132] A second lead screw 94 is threadedly connected to the guide rail frame 91, and the second lead screw 94 is rotationally connected to the control arm 92.

[0133] For this split connection component of the solar cell, through the design of the locking mechanism 9, the locking or unlocking operation between the split base 1 and the clamping seat 2 is convenient, and thus the disassembly and assembly of the split base 1 and the clamping seat 2 are convenient. When the split base 1 and the clamping seat 2 are clamped, a plurality of groups of locking rods 93 are quickly clamped in the locking holes 21, achieving good clamping stability for the split base 1 and the clamping seat 2, and the disassembly and assembly operations are quick and convenient, meeting the usage requirements;

[0134] When docking and locking the split base 1 and the clamping seat 2, first align and clamp the split base 1 and the clamping seat 2, and then rotate the second lead screw 94;

[0135] When the second lead screw 94 rotates, the second lead screw 94 will move spirally along the threaded hole on the guide rail frame 91 and push the control arm 92 to move. The control arm 92 drives a plurality of groups of locking rods 93 to move, and finally a plurality of groups of locking rods 93 are inserted into a plurality of groups of locking holes 21 correspondingly, thereby realizing the quick docking and locking of the split base 1 and the clamping seat 2.

[0136] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the element.

[0137] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and what is described in the above embodiments and the specification is only to illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements fall within the scope of the present invention as claimed. The scope of the present invention as claimed is defined by the appended claims and their equivalents.

Claims

1. A split connection component for a solar cell, characterized in that, Comprising: A split base (1), arranged and fixed at a target position; A clamping seat (2), movably clamped inside the split base (1), and a reinforcing embedded plate (24) is provided on the clamping seat (2); A solar panel protection box (3), arranged on the clamping seat (2), and an inner support (31) is provided inside the solar panel protection box (3); A rotary cover plate (4), rotatably connected to the solar panel protection box (3) through a main shaft (41), and a reinforcing groove (42) is provided on the rotary cover plate (4); A first solar panel (5), arranged on the inner support (31); A second solar panel (6), arranged on the rotary cover plate (4); A folding unit (7), arranged on the solar panel protection box (3) and used to control the rotation of the rotary cover plate (4); A linkage assembly, arranged on the clamping seat (2) and used to control the reinforcing embedded plate (24) to be movably clamped in the reinforcing groove (42) when the rotary cover plate (4) rotates; The folding unit (7) includes: A main rack (71), arranged on the solar panel protection box (3); A first gear (72), arranged on the clamping seat (2) and meshed with the main rack (71); A second gear (73), arranged on the main shaft (41) and meshed with the first gear (72); The linkage assembly includes: A second rack (74), arranged on the main rack (71); A third gear (75), arranged on the clamping seat (2) and meshed with the second rack (74); A fourth gear (76), arranged on the rotating shaft of the reinforcing embedded plate (24) and meshed with the third gear (75); An adjusting unit (8) for driving the movement and adjustment of the main rack (71) is arranged inside the clamping seat (2), and the adjusting unit (8) includes: A first lead screw (81), arranged inside the solar panel protection box (3); A nut seat (82), threadedly connected to the first lead screw (81); A connecting arm (83), fixedly connected between the nut seat (82) and the main rack (71); A driving assembly, arranged inside the solar panel protection box (3) and used to drive the first lead screw (81) to rotate; The driving assembly includes: A motor (84), arranged on the inner support (31); A fifth gear (85), arranged at the output end of the motor (84); A sixth gear (86), arranged on the first lead screw (81) and meshed with the fifth gear (85).

2. The split connection component of a solar cell according to claim 1, characterized in that, A bottom plate (11) is provided at the bottom of the split base (1), and a plurality of groups of fixing holes are formed in the bottom plate (11). A bearing frame (23) is provided on the clamping seat (2), and the bearing frame (23) is used to provide support for the first gear (72), the third gear (75) and the fourth gear (76).

3. The split connection component of a solar cell according to claim 2, characterized in that, A locking mechanism (9) for clamping and locking the clamping seat (2) is provided on the split base (1), and a plurality of groups of locking holes (21) are formed in the clamping seat (2); The locking mechanism (9) includes: The guide rail frame (91) is arranged on the split base (1); The control arm (92) is arranged on the guide rail frame (91); A plurality of groups of locking rods (93) are arranged on the control arm (92) and are movably clamped in the locking holes (21); The second lead screw (94) is threadedly connected to the guide rail frame (91), and the second lead screw (94) is rotationally connected to the control arm (92).

4. A split connection component for a solar cell according to claim 3, characterized in that, A guide rail strip (22) is connected to the clamping seat (2), a limiting groove (711) is formed in the main rack (71), and the guide rail strip (22) is arranged in the limiting groove (711).

5. A split connection component for a solar cell according to claim 4, characterized in that, A storage battery (10), a charging controller (1001) and an inverter (1002) are arranged at the bottom of the split base (1). The storage battery (10) is respectively connected to the charging controller (1001) and the inverter (1002). The second solar panel (6) and the first solar panel (5) are respectively connected to the charging controller (1001).

6. The split connection component of a solar cell according to claim 5, characterized in that A second water outlet groove (32) is arranged on the inner bracket (31). A first water outlet groove (111) is formed in the bottom of the bottom plate (11). A guiding groove (112) is further formed in the bottom of the bottom plate (11). The first water outlet groove (111) is communicated with the guiding groove (112).

Citation Information

Patent Citations

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