A flexible photovoltaic racking stabilization device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-18
- Publication Date
- 2026-08-11
AI Technical Summary
然而,在实际安装过程中,由于光伏板自身重量较大,导致在钢丝绳上滑动时费力且操作繁琐,增加了安装难度;同时,为保证支撑稳定,光伏板底部仍需要间隔安装稳定结构,跨度过大,部分沟壑凹坑等地形位置缺乏有效的支撑与踩踏位置,底部支架的临时搭建耗时费力,影响了整体安装效率;
本发明内部设置有滑动控制机构和带动装置,带动装置内部设置清扫刷,滑动控制机构内部设置有滑动块,滑动块受到控制可在山地凹坑沟壑顶部横向来回滑动,滑动块可控制清扫刷在光伏板表面滑动,自动完成光伏板的清扫,不需要人工清理,省时省力,有效提高光合效果。
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Figure CN121077382B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of photovoltaic support technology, and in particular to a flexible photovoltaic support stabilization device. Background Technology
[0002] Flexible photovoltaic brackets, as an innovative photovoltaic support structure, ingeniously integrate the characteristics of large span, high clearance and multiple spans. They are constructed by tensioning prestressed steel wire ropes between fixed points at both ends and using rigid structures and external inclined steel strands to provide stable support reaction force. This structure can span complex terrains such as ravines and slopes. However, in the actual installation process, due to the large weight of the photovoltaic panels themselves, it is difficult and cumbersome to slide them on the steel wire rope, which increases the difficulty of installation. At the same time, in order to ensure stable support, stable structures still need to be installed at intervals at the bottom of the photovoltaic panels. The span is too large, and some terrain locations such as ditches and pits lack effective support and stepping positions. The temporary construction of the bottom support is time-consuming and laborious, which affects the overall installation efficiency. In addition, the difficulty of personnel movement in large-span mountainous slopes and ravines has become a major problem, which affects the cleaning of the photovoltaic panel surface, causing dust to accumulate easily and affecting the power generation effect. Summary of the Invention
[0003] This invention relates to a flexible photovoltaic support stabilization device, which includes a sliding control mechanism and a driving device. The sliding control mechanism automatically cleans the photovoltaic panels, eliminating the need for manual cleaning and saving time and effort. The photovoltaic panel installation mechanism is connected to the driving device and slides along with it, eliminating the need for manual pushing of the photovoltaic panels, saving time and effort. The photovoltaic panels are movable, and the installation position is always on the side, making installation simple and convenient. An automatic control component follows the sliding mechanism and moves to a designated position, automatically locking and securing the panel, providing stable support and making installation simple and convenient.
[0004] This invention provides a flexible photovoltaic support stabilization device, specifically comprising: a mountain contact surface, a support mechanism, a sliding control mechanism, an auxiliary fixing support mechanism, a photovoltaic panel installation mechanism, and a driving device; The mountain contact surface has grooves; the bottom of the support mechanism is fixedly connected to the mountain contact surface; the sliding control mechanism is fixedly connected to the support mechanism; the auxiliary fixed support mechanism is connected to the sliding control mechanism; the photovoltaic panel installation mechanism is connected to the support mechanism and the auxiliary fixed support mechanism; the driving device is installed on the top of the photovoltaic panel installation mechanism; the driving device includes: a driving component, a cleaning brush, a linkage limit release mechanism, a connecting support plate, a fixed column, and a locking rod; the cleaning brush is fixedly installed at the bottom of the driving component and can be used to clean the photovoltaic panel; the bottom of the linkage limit release mechanism is connected to the driving component; the connecting support plate is installed on one side of the linkage limit release mechanism; the fixed column is a hollow cylindrical structure and is fixedly connected to the connecting support plate; the locking rod slides through the fixed column, and a spring is provided on the surface of the locking rod.
[0005] In at least some embodiments, the support mechanism includes: a support frame, a top plate, an intermediate support frame, a cable, and a fixing plate; the bottom of the support frame is fixedly connected to the mountain contact surface; the top plate is fixedly connected to the support frame; the intermediate support frame is a square frame structure and is fixedly connected to the mountain contact surface; the cable is connected to the top plate and the intermediate support frame; and the fixing plate is fixedly installed on the top of the intermediate support frame.
[0006] In at least some embodiments, the sliding control mechanism includes: a fixed support rod, a threaded rotating rod, a connecting post, a mounting groove, a sliding block, a connecting support rod, and a through slot; the fixed support rod is an integral cuboid structure with a T-shaped groove at the bottom, and is fixedly connected to the top plate and the intermediate support frame; one end of the threaded rotating rod is rotatably inserted into the groove of the fixed support rod; the connecting post is fixedly connected to the threaded rotating rod, and a hexagonal groove is provided on one side of the connecting post to facilitate connection with the motor; the mounting groove is located at the top of the fixed support rod; the top of the sliding block is slidably inserted into the groove of the fixed support rod and threadedly connected to the threaded rotating rod, and the rotation of the threaded rotating rod can control the sliding of the sliding block; one side of the connecting support rod is fixedly connected to the sliding block; and the through slot is located at the top of the fixed support rod.
[0007] In at least some embodiments, the auxiliary fixed support mechanism includes: a base plate, a connecting support, a docking plate, an automatic control component, and a locking component; the base plate is slidably installed inside the through groove; the number of connecting supports is set to two sets, with the bottom of the connecting supports fixedly connected to the base plate; the docking plate is fixedly connected to the connecting supports; the automatic control component is installed on one side of the fixed support; the locking component is installed on the top of the fixed support, and one side of the locking component is connected to the automatic control component.
[0008] In at least some embodiments, the automatic control assembly further includes: a support box, a linkage rod, gear A, a bevel gear assembly A, a linkage rod, a sliding support frame, and a rack plate A; the support box is fixedly connected to the fixed support rod and the intermediate support frame; the linkage rod is rotatably connected to the support box and the fixed support rod; gear A is fixedly installed on the surface of the linkage rod; one side of the bevel gear assembly A is connected to the linkage rod; one side of the linkage rod is rotatably inserted into the support box and rotatably connected to the linkage rod through the bevel gear assembly A; the sliding support frame is a square frame structure, and the sliding support frame slides through the support box; the rack plate A is fixedly installed inside the sliding support frame, and the inner side of the rack plate A is meshed with gear A, and the sliding of the rack plate A can control the rotation of the linkage rod.
[0009] In at least some embodiments, the locking assembly further includes: a fixed insert box, a bevel gear assembly B, an inner partition plate, a threaded control rod, and a fastening bracket; the fixed insert box is a cuboid structure with a groove at the bottom, the bottom of the fixed insert box is fixedly installed inside the groove, and the other end of the linkage rod rotates through the fixed insert box and is connected to the bevel gear assembly B; the number of inner partition plates is set to two sets, and the inner partition plates are fixedly installed inside the fixed insert box; the threaded control rod is rotatably connected to the two sets of inner partition plates, and the top of the threaded control rod is rotatably connected to the linkage rod through the bevel gear assembly B, and the linkage rod can control multiple sets of threaded control rods to rotate simultaneously; the top of the fastening bracket is slidably inserted into the fixed insert box and passes through the inner partition plate, and the top of the fastening bracket is threadedly connected to the threaded control rod, and the fastening bracket can play the role of assisting in pressurizing and fixing the base plate.
[0010] In at least some embodiments, the photovoltaic panel mounting mechanism includes: a support frame, a bottom clamping plate, an outer frame, an outer connecting plate, a drive rod, a photovoltaic panel, and a connecting plate; the support frame is installed on top of the cable; the bottom clamping plate is connected to the support frame by screws; the outer frame is a square frame structure, and the bottom of the outer frame is fixedly connected to the support frame; one side of the outer connecting plate is connected to the outer frame; the drive rod is a cylindrical structure with a round hole at the top, and the drive rod is fixedly connected to the outer connecting plate; the photovoltaic panel is fixedly installed inside the outer frame; the number of connecting plates is set to two sets, one side of the connecting plate is fixedly connected to the outer frame, and the connecting plate is fixedly connected to the connecting plate by screws.
[0011] In at least some embodiments, the driving assembly further includes: a fixed rod A and a plug-in driving frame; the fixed rod A is a hollow cuboid structure, the top of the cleaning brush is fixedly connected to the fixed rod A, and one side of the fixed rod A is fixedly connected to a connecting support rod; the top of the plug-in driving frame is slidably inserted into the interior of the fixed rod A, and a spring is provided on the top of the plug-in driving frame. The plug-in driving frame is inserted into the round hole at the top of the driving rod, which can control the photovoltaic panel installation mechanism to slide.
[0012] In at least some embodiments, the linkage limit release mechanism further includes: a fixed rod B, an inner rotating rod, a winding wheel, a control pull rope, a gear B, a push plate, and a rack plate B; the fixed rod B is a hollow cuboid structure with a limit hole on one side, and the fixed rod B is fixedly installed on the top of the fixed rod A; the inner rotating rod is rotatably installed inside the fixed rod B; the winding wheel is fixedly installed on the surface of the inner rotating rod, the top of the control pull rope slides into the interior of the fixed rod A and is fixedly connected to the insertion drive frame, the top of the control pull rope slides into the interior of the fixed rod B and is connected to the winding wheel, and the rotation of the winding wheel can control the sliding of the insertion drive frame through the control pull rope; the gear B is fixedly installed on one side surface of the inner rotating rod; the push plate is slidably connected to the fixed rod B; the rack plate B is fixedly installed on the inner side of the push plate and meshes with the gear B.
[0013] The present invention has the following beneficial effects The invention is equipped with a sliding control mechanism and a driving device. The driving device contains a cleaning brush, and the sliding control mechanism contains a sliding block. The sliding block is controlled to slide back and forth horizontally on the top of the mountain pits and gullies. The sliding block can control the cleaning brush to slide on the surface of the photovoltaic panel, automatically completing the cleaning of the photovoltaic panel without the need for manual cleaning, saving time and effort, and effectively improving the photosynthetic effect.
[0014] The invention also includes a photovoltaic panel installation mechanism, which is connected to the drive component inside the drive device. This connects the photovoltaic panel installation mechanism to the sliding control mechanism, which controls the assembled photovoltaic panels to slide along the top of the cable. This eliminates the need for manual pushing of the photovoltaic panels, saving time and effort. By controlling the sliding, the photovoltaic panels are always installed on the side, eliminating the need for workers to build supports in the middle of mountain pits and gullies for auxiliary installation. The installation is simple and convenient.
[0015] The invention also includes an automatic control component. One end of the automatic control component is fixedly connected to the photovoltaic panel mounting mechanism via a screw. It slides along with the photovoltaic panel. When it moves to a suitable position, the limit switch of the device is automatically released, and the base plate inside the automatic control component moves to the designated position. The automatic control component automatically controls multiple sets of fastening pressure frames to press down simultaneously and form a clamping fixation. The automatic control component, together with the fixed support rod, provides stable support for the photovoltaic panel, and automatically completes the locking and fixing installation, which is simple and convenient. Attached Figure Description
[0016] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0017] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0018] In the attached diagram: Figure 1A schematic diagram of the main body of the present invention is shown in the axial side view. Figure 2 A schematic diagram of the main body of the present invention, viewed from below, is shown; Figure 3 A schematic diagram of the support mechanism of the present invention is shown in axial side view; Figure 4 A schematic diagram of the sliding control mechanism of the present invention is shown from an axial side view. Figure 5 A schematic diagram of the auxiliary fixing support mechanism of the present invention is shown from an axial side view. Figure 6 A cross-sectional structural schematic diagram of the automatic control component of the present invention is shown; Figure 7 A cross-sectional structural schematic diagram of the locking component of the present invention is shown; Figure 8 A schematic diagram of the photovoltaic panel mounting mechanism of the present invention is shown in the axial side view. Figure 9 The diagram shows a top-view structural schematic of the driving device of the present invention; Figure 10 This diagram shows a cross-sectional view of the drive component of the present invention; Figure 11 A cross-sectional structural schematic diagram of the linkage limit release mechanism of the present invention is shown; Figure 12 The present invention is shown Figure 11 A partial enlarged structural diagram of A.
[0019] List of reference numerals 1. Mountain contact surface; 2. Support mechanism; 201. Support frame; 202. Top plate; 203. Intermediate support frame; 204. Cable; 205. Fixing plate; 3. Sliding control mechanism; 301. Fixed support rod; 302. Threaded rotating rod; 303. Connecting column; 304. Installation groove; 305. Sliding block; 306. Connecting support rod; 307. Through groove; 4. Auxiliary fixed support mechanism; 401. Base plate; 402. Connecting support frame; 403. Connecting plate; 404. Automatic control component; 4041. Support box; 4042. Linkage rotating rod; 4043. Gear A; 4044. Bevel gear assembly A; 4045. Linkage rod; 4046. Sliding support frame; 4047. Rack plate A; 405. Locking component; 4051. Fixed insertion box; 4 052. Bevel gear assembly B; 4053. Inner partition plate; 4054. Threaded control rod; 4055. Fastening clamp; 5. Photovoltaic panel mounting mechanism; 501. Support frame; 502. Bottom clamp plate; 503. Outer frame; 504. Outer connecting plate; 505. Drive rod; 506. Photovoltaic panel; 507. Connecting plate; 6. Drive device; 601. Drive assembly; 6011. Fixed rod A; 6012. Insert drive frame; 602. Cleaning brush; 603. Linkage limit release mechanism; 6031. Fixed rod B; 6032. Inner rotating rod; 6033. Winding wheel; 6034. Control pull rope; 6035. Gear B; 6036. Push plate; 6037. Rack plate B; 604. Connecting support plate; 605. Fixed column; 606. Locking rod. Detailed Implementation
[0020] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.
[0021] Example: Please refer to Figures 1 to 12 : This invention proposes a flexible photovoltaic support stabilization device, comprising: a mountain contact surface 1, a support mechanism 2, a sliding control mechanism 3, an auxiliary fixing support mechanism 4, a photovoltaic panel installation mechanism 5, and a driving device 6; The mountain contact surface 1 has ravines; the bottom of the support mechanism 2 is fixedly connected to the mountain contact surface 1; the sliding control mechanism 3 is fixedly connected to the support mechanism 2; the auxiliary fixed support mechanism 4 is connected to the sliding control mechanism 3; the photovoltaic panel installation mechanism 5 is connected to the support mechanism 2 and the auxiliary fixed support mechanism 4; the driving device 6 is installed on the top of the photovoltaic panel installation mechanism 5; the driving device 6 includes: a driving component 601, a cleaning brush 602, a linkage limit release mechanism 603, a connecting support plate 604, a fixed column 605, and a locking rod 606; the cleaning brush 602 is fixedly installed at the bottom of the driving component 601, and the cleaning brush 602 can be used to clean the photovoltaic panel 506; the bottom of the linkage limit release mechanism 603 is connected to the driving component 601; the connecting support plate 604 is installed on one side of the linkage limit release mechanism 603; the fixed column 605 is a hollow cylindrical structure, and the fixed column 605 is fixedly connected to the connecting support plate 604; the locking rod 606 slides through the fixed column 605, and a spring is provided on the surface of the locking rod 606.
[0022] like Figure 3 As shown, the support mechanism 2 includes: a support frame 201, a top plate 202, an intermediate support frame 203, a cable 204, and a fixing plate 205; the bottom of the support frame 201 is fixedly connected to the mountain contact surface 1; the top plate 202 is fixedly connected to the support frame 201; the intermediate support frame 203 is a square frame structure and is fixedly connected to the mountain contact surface 1; the cable 204 is connected to the top plate 202 and the intermediate support frame 203; the fixing plate 205 is fixedly installed on the top of the intermediate support frame 203.
[0023] like Figure 4 As shown, the sliding control mechanism 3 includes: a fixed support rod 301, a threaded rotating rod 302, a connecting post 303, a mounting groove 304, a sliding block 305, a connecting support rod 306, and a through groove 307; the fixed support rod 301 is a rectangular structure with a T-shaped groove at the bottom, and is fixedly connected to the top plate 202 and the intermediate support frame 203; one end of the threaded rotating rod 302 is rotatably inserted into the groove of the fixed support rod 301; the connecting post 303 and the threaded rotating rod 302... The fixed connection includes a hexagonal groove on one side of the docking post 303, which facilitates docking with the motor; a sliding groove 304 is provided on the top of the fixed support rod 301; the top of the sliding block 305 is slidably inserted into the sliding groove of the fixed support rod 301 and threadedly connected to the threaded rotating rod 302, and the rotation of the threaded rotating rod 302 can control the sliding of the sliding block 305; one side of the connecting rod 306 is fixedly connected to the sliding block 305; and a through groove 307 is provided on the top of the fixed support rod 301.
[0024] like Figure 5As shown, the auxiliary fixed support mechanism 4 includes: a base plate 401, a connecting support 402, a docking plate 403, an automatic control component 404, and a locking component 405; the base plate 401 is slidably installed inside the through groove 307; the number of connecting supports 402 is set to two sets, and the bottom of the connecting supports 402 is fixedly connected to the base plate 401; the docking plate 403 is fixedly connected to the connecting supports 402; the automatic control component 404 is installed on one side of the fixed support rod 301; the locking component 405 is installed on the top of the fixed support rod 301, and one side of the locking component 405 is connected to the automatic control component 404.
[0025] like Figure 6 As shown, the automatic control assembly 404 also includes: a support box 4041, a linkage rod 4042, a gear A4043, a bevel gear assembly A4044, a linkage rod 4045, a sliding support frame 4046, and a rack plate A4047; the support box 4041 is fixedly connected to the fixed support rod 301 and the intermediate support frame 203; the linkage rod 4042 is rotatably connected to the support box 4041 and the fixed support rod 301; the gear A4043 is fixedly installed on the surface of the linkage rod 4042; one side of the bevel gear assembly A4044 is connected to... The linkage rod 4042 is connected; one side of the linkage rod 4045 is rotatably inserted into the support box 4041 and is rotatably connected to the linkage rod 4042 through the bevel gear assembly A4044; the sliding support frame 4046 is a square frame structure, and the sliding support frame 4046 slides through the support box 4041; the rack plate A4047 is fixedly installed on the inner side of the sliding support frame 4046, and the inner side of the rack plate A4047 is meshed with the gear A4043. The sliding of the rack plate A4047 can control the rotation of the linkage rod 4042.
[0026] like Figure 7 As shown, the locking assembly 405 also includes: a fixed insert box 4051, a bevel gear assembly B4052, an inner partition plate 4053, a threaded control rod 4054, and a fastening bracket 4055; the fixed insert box 4051 is a cuboid structure with a groove at the bottom, and the bottom of the fixed insert box 4051 is fixedly installed inside the through slot 307. The other end of the linkage rod 4045 rotates through the fixed insert box 4051 and connects to the bevel gear assembly B4052; the number of inner partition plates 4053 is set to two sets, and the inner partition plates 4053 are fixedly installed in the fixed insert box 4051. Inside 051; the threaded control rod 4054 is rotatably connected to two sets of inner partition plates 4053. The top of the threaded control rod 4054 is rotatably connected to the linkage rod 4045 through the bevel gear assembly B4052. The linkage rod 4045 can control multiple sets of threaded control rods 4054 to rotate simultaneously. The top of the fastening pressure frame 4055 is slidably inserted into the fixed insertion box 4051 and passes through the inner partition plate 4053. The top of the fastening pressure frame 4055 is threadedly connected to the threaded control rod 4054. The fastening pressure frame 4055 can play the role of assisting in pressurizing and fixing the base plate 401.
[0027] like Figure 8 As shown, the photovoltaic panel installation mechanism 5 includes: a support frame 501, a bottom clamping plate 502, an outer frame 503, an outer connecting plate 504, a drive rod 505, a photovoltaic panel 506, and a connecting plate 507; the support frame 501 is installed on the top of the cable 204; the bottom clamping plate 502 is connected to the support frame 501 by a screw; the outer frame 503 is a square frame structure, and the bottom of the outer frame 503 is fixedly connected to the support frame 501; one side of the outer connecting plate 504 is connected to the outer frame 503; the drive rod 505 is a cylindrical structure with a round hole at the top, and the drive rod 505 is fixedly connected to the outer connecting plate 504; the photovoltaic panel 506 is fixedly installed inside the outer frame 503; the number of connecting plates 507 is set to two sets, one side of the connecting plate 507 is fixedly connected to the outer frame 503, and the connecting plate 507 is fixedly connected to the docking plate 403 by a screw.
[0028] like Figure 10 As shown, the drive assembly 601 also includes: a fixed rod A6011 and a plug-in drive frame 6012; the fixed rod A6011 is a hollow cuboid structure, the top of the cleaning brush 602 is fixedly connected to the fixed rod A6011, and one side of the fixed rod A6011 is fixedly connected to the connecting support rod 306; the top of the plug-in drive frame 6012 is slidably inserted into the fixed rod A6011, and a spring is provided on the top of the plug-in drive frame 6012. The plug-in drive frame 6012 is inserted into the round hole at the top of the drive plug rod 505, which can control the photovoltaic panel mounting mechanism 5 to slide.
[0029] like Figure 11 As shown, the linkage limit release mechanism 603 also includes: a fixed rod B6031, an inner rotating rod 6032, a winding wheel 6033, a control pull rope 6034, a gear B6035, a push plate 6036, and a rack plate B6037; the fixed rod B6031 is a hollow cuboid structure with a limit hole on one side, and the fixed rod B6031 is fixedly installed on the top of the fixed rod A6011; the inner rotating rod 6032 is rotatably installed inside the fixed rod B6031; the winding wheel 6033 is fixedly installed on the surface of the inner rotating rod 6032, and the control pull rope 6034... 34 The top of the control rope 6034 is slidably inserted into the fixed rod A6011 and fixedly connected to the insertion drive frame 6012. The top of the control rope 6034 is slidably inserted into the fixed rod B6031 and connected to the winding wheel 6033. The rotation of the winding wheel 6033 can control the sliding of the insertion drive frame 6012 by controlling the control rope 6034. The gear B6035 is fixedly installed on one side surface of the inner rotating rod 6032. The push plate 6036 is slidably connected to the fixed rod B6031. The rack plate B6037 is fixedly installed on the inner side of the push plate 6036 and meshes with the gear B6035.
[0030] The specific usage and function of this invention: Before installing the photovoltaic panel 506, the support frame 201 of the mountain contact surface 1 is fixedly installed on the ground, the intermediate support frame 203 is fixedly installed in the middle of the mountain contact surface 1, and the cable 204 is installed on the top of the support frame 201 and the intermediate support frame 203. Before installation, a tool or motor is inserted into the groove of the docking column 303 to control the rotation of the threaded rotating rod 302. The threaded rotating rod 302 rotates and controls the connecting support rod 306 and its top driving device 6 to move a certain distance. The base plate 401, the connecting support frame 402, and the docking plate 403 are inserted into the placement groove 304. Then, the photovoltaic panel 506 is placed and installed. The photovoltaic panel 506 is fixedly installed inside the outer frame 503. During installation, the outer frame 503 is... The bottom support 501 is placed on the surface of the cable 204. The bottom clamp 502 is stacked with the support 501 and connected by a screw, allowing the photovoltaic panel 506 to slide on the surface of the cable 204. Since a drive rod 505 with a round hole at the top is fixedly installed on one side of the outer frame 503, the outer frame 503 slides below the drive assembly 601. The inner rotating rod 6032 rotates via the connecting support plate 604, causing the winding wheel 6033 on the surface of the inner rotating rod 6032 to rotate and pull the control rope 6034 to slide. The bottom of the control rope 6034 is fixedly connected to the insertion drive frame 6012. The insertion drive frame 6012 is raised a certain distance, causing the drive rod 505 to move below the insertion drive frame 6012, releasing the tension, and the insertion drive frame 6012 is inserted into the belt. A connection is formed in the circular hole of the movable insertion rod 505, which facilitates the movement of the photovoltaic panel installation mechanism 5 controlled by the drive device 6. After the photovoltaic panel 506 is installed, the connecting plate 507 is fixedly connected to the docking plate 403 by screws. The base plate 401 can slide accordingly. After one set of photovoltaic panels 506 is installed, it is moved a certain distance by the sliding control mechanism 3, and then the second set of photovoltaic panels 506 is installed. The drive insertion rod 505 on one side of the photovoltaic panel 506 is inserted into the insertion hole of the previous set of outer frame 503 to complete the connection and installation. At the same time, the bottom of the outer frame 503 is fixedly connected to the base plate 401, the connecting support 402 and the docking plate 403 and slides accordingly. The sliding control mechanism 3 controls the photovoltaic panel 506 after connection and installation to slide to one side. After installation, the sliding block 305 drives the driving device 6 to slide to one side of the intermediate support frame 203. At this time, the push plate 6036 comes into contact with it, forming a squeezing force. The push plate 6036 slides, and the gear B6035 on the surface of the push plate 6036 slides and controls the inner rotating rod 6032 and the winding wheel 6033 to rotate. During the rotation of the inner rotating rod 6032, it will drive the fixed column 605 and the locking rod 606 to rotate as well. When the rotation is close to one revolution, the locking rod 606 aligns with the insertion hole of the fixed rod B6031 and automatically inserts, forming a limit. The winding wheel 6033 is controlled to prevent backwinding. The winding wheel 6033 can be pulled again by the pull rope 6034 to pull the insertion drive frame 6012 out of the round hole of the driving rod 505, thus disengaging the drive.The photovoltaic panel mounting mechanism 5, which consists of multiple interconnected units, will not move under the control of the sliding block 305. At this time, the base plate 401 will also not slide and remain in the designated position. The sliding block 305 continues to slide and contacts the sliding support frame 4046. The sliding support frame 4046 slides and drives the rack plate A4047 to a fixed position, controlling the rotation of the linkage rod 4042. Since the linkage rod 4042 is rotatably connected to the linkage rod 4045 through the bevel gear assembly A4044, and the linkage rod 4045 is rotatably connected to the linkage rod 4045 through the bevel gear assembly B4052... The threaded control rods 4054 are rotatably connected. Multiple sets of threaded control rods 4054 rotate simultaneously, pushing the fastening bracket 4055 downwards to contact the base plate 401 and form a tight clamping fixation, completing the installation and fixation of the photovoltaic panel 506. The fixing support rod 301 and the auxiliary fixing support mechanism 4 form an auxiliary tight clamping fixation. The driving device 6 can still slide along the sliding block 305. Since the driving device 6 also has a cleaning brush 602 inside, the cleaning brush 602 is controlled to slide along the surface of the photovoltaic panel 506, automatically moving and cleaning the photovoltaic panel 506.
[0031] The following points should be noted in this article: 1. The accompanying drawings of the embodiments of the present invention only involve the structures involved in the embodiments of the present invention; other structures can refer to general designs.
[0032] 2. Where there is no conflict, the embodiments of the present invention and the features thereof can be combined with each other to obtain new embodiments.
[0033] The above are merely specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A flexible photovoltaic support stabilization device, comprising: Mountain contact surface (1), support mechanism (2), sliding control mechanism (3), auxiliary fixed support mechanism (4), photovoltaic panel installation mechanism (5) and driving device (6); The mountain contact surface (1) has ravines; characterized in that the bottom of the support mechanism (2) is fixedly connected to the mountain contact surface (1); the sliding control mechanism (3) is fixedly connected to the support mechanism (2); the auxiliary fixed support mechanism (4) is connected to the sliding control mechanism (3); the photovoltaic panel installation mechanism (5) is connected to the support mechanism (2) and the auxiliary fixed support mechanism (4); the driving device (6) is installed on the top of the photovoltaic panel installation mechanism (5); the sliding control mechanism (3) includes: a fixed support rod (301), a threaded rotating rod (302), a docking column (303), a mounting groove (304), a sliding block (305), a connecting support rod (306), and a through groove (307); the fixed support rod (301) and The top plate (202) and the intermediate support frame (203) are fixedly connected; one end of the threaded rotating rod (302) is rotatably inserted into the groove of the fixed support rod (301); the docking column (303) is fixedly connected to the threaded rotating rod (302), and a hexagonal groove is provided on one side of the docking column (303) to facilitate docking with the motor; the mounting groove (304) is opened on the top of the fixed support rod (301); the top of the sliding block (305) is slidably inserted into the groove of the fixed support rod (301) and threadedly connected to the threaded rotating rod (302); one side of the connecting support rod (306) is fixedly connected to the sliding block (305); the through groove (307) is opened on the top of the fixed support rod (301); the driving device (6) includes: a driving component (601), a cleaning component (601), and a cleaning component (602). The sweeping brush (602), the linkage limit release mechanism (603), the connecting support plate (604), the fixing column (605), and the locking rod (606) are all included. The sweeping brush (602) is fixedly installed at the bottom of the drive assembly (601). The bottom of the linkage limit release mechanism (603) is connected to the drive assembly (601). The connecting support plate (604) is installed on one side of the linkage limit release mechanism (603). The fixing column (605) is fixedly connected to the connecting support plate (604). The locking rod (606) slides through the fixing column (605), and a spring is provided on the surface of the locking rod (606). The drive assembly (601) also includes: a fixing rod A (6011) and a drive frame (6012). The top of the sweeping brush (602) is connected to the fixing rod A (6011). 6011) is fixedly connected, and one side of the fixed rod A (6011) is fixedly connected to the connecting support rod (306); the top of the plug-in drive frame (6012) is slidably inserted into the interior of the fixed rod A (6011), and a spring is provided on the top of the plug-in drive frame (6012); the linkage limit release mechanism (603) also includes: fixed rod B (6031), inner rotating rod (6032), winding wheel (6033), control pull rope (6034), gear B (6035), push plate (6036) and rack plate B (6037); the fixed rod B (6031) is a hollow cuboid structure, and a limit hole is opened on one side of the fixed rod B (6031), and the fixed rod B (6031) is fixedly installed on the top of the fixed rod A (6011);The inner rotating rod (6032) is rotatably installed inside the fixed rod B (6031); the take-up reel (6033) is fixedly installed on the surface of the inner rotating rod (6032); the top of the control rope (6034) slides into the fixed rod A (6011) and is fixedly connected to the insertion drive frame (6012); the top of the control rope (6034) slides into the fixed rod B (6031) and is connected to the take-up reel (6033); the gear B (6035) is fixedly installed on one side surface of the inner rotating rod (6032); the push plate (6036) is slidably connected to the fixed rod B (6031); the rack plate B (6037) is fixedly installed inside the push plate (6036) and meshes with the gear B (6035).
2. The flexible photovoltaic support stabilization device according to claim 1, characterized in that: The support mechanism (2) includes: a support frame (201), a top plate (202), an intermediate support frame (203), a cable (204), and a fixing plate (205); the bottom of the support frame (201) is fixedly connected to the mountain contact surface (1); the top plate (202) is fixedly connected to the support frame (201); the intermediate support frame (203) is fixedly connected to the mountain contact surface (1); the cable (204) is connected to the top plate (202) and the intermediate support frame (203); and the fixing plate (205) is fixedly installed on the top of the intermediate support frame (203).
3. The flexible photovoltaic support stabilization device according to claim 1, characterized in that: The auxiliary fixed support mechanism (4) includes: a base plate (401), a connecting support (402), a docking plate (403), an automatic control component (404), and a locking component (405); the base plate (401) is slidably installed inside the through groove (307); the number of connecting supports (402) is set to two sets, and the bottom of the connecting supports (402) is fixedly connected to the base plate (401); the docking plate (403) is fixedly connected to the connecting supports (402); the automatic control component (404) is installed on one side of the fixed support rod (301); the locking component (405) is installed on the top of the fixed support rod (301), and one side of the locking component (405) is connected to the automatic control component (404).
4. The flexible photovoltaic support stabilization device according to claim 3, characterized in that: The automatic control component (404) further includes: a support box (4041), a linkage rod (4042), gear A (4043), a bevel gear assembly A (4044), a linkage rod (4045), a sliding support frame (4046), and a rack plate A (4047); the support box (4041) is fixedly connected to the fixed support rod (301) and the intermediate support frame (203); the linkage rod (4042) is rotatably connected to the support box (4041) and the fixed support rod (301); gear A (4043) is fixedly installed on the surface of the linkage rod (4042). The bevel gear assembly A (4044) is connected to the linkage rod (4042) on one side; the linkage rod (4045) is rotatably inserted into the support box (4041) on one side and is rotatably connected to the linkage rod (4042) through the bevel gear assembly A (4044); the sliding support frame (4046) is a square frame structure, and the sliding support frame (4046) slides through the support box (4041); the rack plate A (4047) is fixedly installed on the inner side of the sliding support frame (4046), and the inner side of the rack plate A (4047) is meshed with the gear A (4043).
5. The flexible photovoltaic support stabilization device according to claim 4, characterized in that: The locking assembly (405) further includes: a fixed insert box (4051), a bevel gear assembly B (4052), an inner partition plate (4053), a threaded control rod (4054), and a fastening bracket (4055); the bottom of the fixed insert box (4051) is fixedly installed inside the through slot (307), and the other end of the linkage rod (4045) rotates through the fixed insert box (4051) and connects to the bevel gear assembly B (4052); the inner partition plate (4053) is fixed Installed inside the fixed insert box (4051); the threaded control rod (4054) is rotatably connected to two sets of inner partition plates (4053), and the top of the threaded control rod (4054) is rotatably connected to the linkage rod (4045) through the bevel gear assembly B (4052); the top of the fastening bracket (4055) is slidably inserted into the fixed insert box (4051) and passes through the inner partition plate (4053), and the top of the fastening bracket (4055) is threadedly connected to the threaded control rod (4054).
6. The flexible photovoltaic support stabilization device according to claim 3, characterized in that: The photovoltaic panel installation mechanism (5) includes: a support frame (501), a bottom clamping plate (502), an outer frame (503), an outer connecting plate (504), a drive rod (505), a photovoltaic panel (506), and a connecting fixing plate (507); the support frame (501) is installed on the top of the cable (204); the bottom clamping plate (502) is connected to the support frame (501) by a screw; the outer frame (503) is a square frame structure, and the bottom of the outer frame (503) is fixedly connected to the support frame (501). The outer plate (504) is connected to the outer frame (503) on one side; the driving rod (505) is a cylindrical structure with a round hole at the top, and the driving rod (505) is fixedly connected to the outer plate (504); the photovoltaic panel (506) is fixedly installed inside the outer frame (503); the number of connecting plates (507) is set to two sets, the connecting plate (507) is fixedly connected to the outer frame (503) on one side, and the connecting plate (507) is fixedly connected to the docking plate (403) by screws.
Citation Information
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