CN222953968U - Novel photovoltaic supporting structure of buckle connection formula - Google Patents

Novel photovoltaic supporting structure of buckle connection formula Download PDF

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Publication number
CN222953968U
CN222953968U CN202421527625.9U CN202421527625U CN222953968U CN 222953968 U CN222953968 U CN 222953968U CN 202421527625 U CN202421527625 U CN 202421527625U CN 222953968 U CN222953968 U CN 222953968U
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support
photovoltaic
mounting
frame
assembly
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CN202421527625.9U
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杜俊豪
甘冠东
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Guangdong Voguang New Energy Technology Co ltd
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Guangdong Voguang New Energy Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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Abstract

The utility model relates to the field of photovoltaic brackets, in particular to a novel buckle connection type photovoltaic bracket structure. The technical problem is that in the process of installing the photovoltaic panel, the photovoltaic panel is mostly installed on the support through bolts due to the existing photovoltaic support structure, and the bolts are easy to rust in the external environment, so that the subsequent loading and unloading difficulty of the support is improved, and the use cost of the photovoltaic support structure is increased. According to the technical scheme, the novel buckle connection type photovoltaic support structure comprises a mounting assembly, a base assembly, a first supporting assembly and a second supporting assembly, a photovoltaic panel main body is mounted through a mounting backboard, and the position and the angle of the photovoltaic panel main body are adjusted through a moving block, so that the problem that in the process of mounting the photovoltaic panel, the photovoltaic panel is mounted on a support through bolts due to the fact that most of the existing photovoltaic support structure is mounted on the support through bolts is solved, corrosion is easy to occur under the external environment, the subsequent mounting and dismounting difficulty of the support is improved, and the use cost of the photovoltaic support structure is increased.

Description

Novel photovoltaic supporting structure of buckle connection formula
Technical Field
The utility model relates to the field of photovoltaic brackets, in particular to a novel buckle connection type photovoltaic bracket structure.
Background
Photovoltaic panels are a type of power generation device that generates direct current when exposed to sunlight and consist of thin solid photovoltaic cells made almost entirely of semiconductor materials. Since there is no moving part, it can be operated for a long time without causing any loss. The simple photovoltaic cell can provide the energy for wrist-watch and calculator, and more complicated photovoltaic system can provide the illumination for the house to for the electric wire netting power supply, need the support to install photovoltaic board on structures such as building when the photovoltaic board is used, current photovoltaic supporting structure is mostly through the bolt with photovoltaic board installation on the support, and the bolt produces corrosion easily under the external environment, leads to subsequent loading and unloading degree of difficulty to improve, and easily influence subsequent normal use.
Disclosure of utility model
In order to overcome the in-process of photovoltaic board installation, can be because current photovoltaic supporting structure is mostly through the bolt with photovoltaic board installation on the support, the bolt produces corrosion easily under the external environment for the support follow-up loading and unloading degree of difficulty improves, leads to photovoltaic supporting structure's use cost to improve.
The novel buckle connection type photovoltaic support structure comprises a mounting assembly, a base assembly, a first supporting assembly and a second supporting assembly, wherein the base assembly is arranged at two side ends of the mounting assembly, the first supporting assembly is mounted at the upper end of the base assembly, the second supporting assembly is arranged at the inner side of the first supporting assembly, the mounting assembly comprises a mounting backboard, a first buckle groove, a first buckle block, a threaded pipe, a photovoltaic panel main body, a second buckle block and a handle, the first buckle groove is fixedly connected at the inner side of the mounting backboard, the first buckle block is fixedly connected at the lower end of the mounting backboard, the threaded pipe is fixedly connected at the upper end of the mounting backboard, the mounting backboard is connected to the first supporting assembly and the second supporting assembly through the first buckle block and the threaded pipe, the photovoltaic panel main body is mounted at the front end of the mounting backboard, the second buckle block is fixedly connected at the rear end of the photovoltaic panel main body, the handle is mounted on the second buckle block, the photovoltaic panel main body is conveniently moved by the handle, and the photovoltaic panel main body is mounted by the aid of the second buckle block in a matched mode with the first buckle groove.
Preferably, the photovoltaic panel main body is installed and fixed by arranging the installation component, the first support component and the second support component are installed and controlled to move by arranging the base component, and the installation component is installed and driven to move and adjust the orientation by arranging the first support component and the second support component.
The photovoltaic panel comprises a base body, a first moving groove, a second moving groove, a hydraulic push rod, a moving block, a rotating wheel and a rotating connecting seat, wherein the base body is arranged at two side ends of the photovoltaic panel body, the first moving groove is formed in the inner side of the base body, the second moving groove is formed in one side end portion of the first moving groove, the hydraulic push rod is arranged at the rear end portions of the first moving groove and the second moving groove, the moving block is arranged on the hydraulic push rod, the lower end portion of the moving block is connected with the rotating wheel through a rotating shaft in a rotating mode, the rotating connecting seat is arranged at the upper end portion of the moving block, the moving block is driven to move through the hydraulic push rod, and the moving block is conveniently moved through the rotating wheel, the first moving groove and the second moving groove, so that the first supporting component and the second supporting component are driven to move.
The first support assembly comprises a first rotary joint, a support rod, a first extension rod, a first support frame, a mounting pipe and a threaded hole, wherein the rotary joint is rotationally connected to a rotary connecting seat on the first moving groove, the support rod is fixedly connected to the upper end part of the first rotary joint, the first extension rod is connected to the support rod in a sliding mode, the first support frame is fixedly connected to the upper end part of the first extension rod, the mounting pipe is arranged on the inner side of the first support frame, the threaded hole is formed in the mounting pipe, the mounting pipe and the threaded pipe are in clearance fit through the threaded hole, and the threaded pipe is connected through the threaded hole in a rotary mode so that the position and the angle of the upper end part of the mounting backboard can be adjusted through the first rotary joint, the first extension rod and the mounting pipe.
The second support assembly comprises a second rotary joint, a second support frame, a second extension rod, a movable frame, a fixed frame, a second fastening groove, a protective cover, a movable table, a telescopic rod, a reset spring and a support sliding block, wherein the second rotary joint is rotationally connected to a rotary connecting seat on the second movable groove, the upper end part of the second rotary joint is fixedly connected with the second support frame, the inner side of the second support frame is slidably connected with the second extension rod, the inner side of the second extension rod is slidably connected with the movable frame, the upper end part of the movable frame is fixedly connected with the fixed frame, and the angle and the position of the fixed frame are adjusted through the second rotary joint, the second extension rod and the movable frame.
The telescopic support is characterized in that a second buckling groove is formed in the inner side of the fixing frame, the upper end of the fixing frame is rotatably connected with a protective cover through a rotating shaft, one side end of the fixing frame is slidably connected with a moving table, a telescopic rod is arranged between the moving table and the fixing frame, a reset spring is arranged on the outer side of the telescopic rod, a support sliding block is fixedly connected to the moving table, a first buckling block is arranged through the second buckling groove, the support sliding block and the moving table are pushed by the first buckling block so as to fix the first buckling block through the second buckling groove, and the telescopic rod and the reset spring are used for driving the support sliding block to move so as to assist in fixing the first buckling block.
The utility model has the beneficial effects that:
1. The photovoltaic panel is installed by arranging the installation plate, and the installation plate is installed by utilizing the support frame, so that the position and the angle of the photovoltaic panel are conveniently adjusted through the installation table, the problem that the photovoltaic panel is installed on the support by using bolts due to the fact that most of the existing photovoltaic support structures are installed on the support by using bolts is solved, the bolts are easy to rust in the external environment, the subsequent loading and unloading difficulty of the support is improved, the use cost of the photovoltaic support structure is improved, and the use convenience of the whole novel buckle connection type photovoltaic support structure can be improved;
2. Through setting up installation backplate, first support frame and second support frame to be convenient for carry the photovoltaic board main part through the handle, and utilize the first buckle groove of second buckle piece cooperation to install the photovoltaic board main part, and utilize first buckle piece promotion support slider and mobile station, so that fix first buckle piece through the second buckle groove, and utilize telescopic link and reset spring to drive the support slider and remove, so that supplementary fixed first buckle piece, and rotate the visor and prevent first buckle piece dislocation, simultaneously, in order to connect the screwed pipe through the screw hole through rotating the installation tube, and then can improve the result of use of whole novel photovoltaic support structure of buckle connection formula to a certain extent;
3. Through setting up base main part, first support frame and second support frame to in order to drive the movable block through hydraulic push rod and remove, and the travel distance of every movable block is controlled, in order to utilize first rotary joint, first extension pole and installation tube to adjust the position and the angle of installation backplate upper end, and adjust angle and the position of mount through second rotary joint, second extension pole and removal frame, in order to adjust the position and the angle of installation backplate lower extreme, and then can improve the work efficiency of whole novel photovoltaic supporting structure of buckle connection formula.
Drawings
FIG. 1 shows a schematic perspective view of a novel buckle-connection photovoltaic bracket structure according to the present utility model;
FIG. 2 is a schematic perspective view of a novel photovoltaic module assembly according to the present utility model;
FIG. 3 is a schematic view of a partially cut-away perspective construction of a base assembly of the novel buckle-connected photovoltaic bracket structure of the present utility model;
FIG. 4 is a schematic perspective view of a first support assembly of the novel photovoltaic module of the present utility model;
Fig. 5 shows a schematic perspective view of a second support assembly of the novel buckle connection type photovoltaic support structure according to the present utility model.
The reference numerals are 1, a mounting assembly, 2, a base assembly, 3, a first support assembly, 4, a second support assembly, 101, a mounting backboard, 102, a first fastening groove, 103, a first fastening block, 104, a threaded pipe, 105, a photovoltaic panel main body, 106, a second fastening block, 107, a handle, 201, a base main body, 202, a first moving groove, 203, a second moving groove, 204, a hydraulic push rod, 205, a moving block, 206, a rotating wheel, 207, a rotating connecting seat, 301, a first rotating joint, 302, a supporting rod, 303, a first extension rod, 304, a first supporting frame, 305, a mounting pipe, 306, a threaded hole, 401, a second rotating joint, 402, a second supporting frame, 403, a second extension rod, 404, a moving frame, 405, a fixing frame, 406, a second fastening groove, 407, a protecting cover, 408, a moving table, 409, a telescopic rod, 410, a reset spring, 411 and a supporting slide block.
Detailed Description
The utility model is further described below with reference to the drawings and examples.
Referring to fig. 1, the utility model provides an embodiment of a novel buckle connection type photovoltaic support structure, which comprises a mounting assembly 1, a base assembly 2, a first supporting assembly 3 and a second supporting assembly 4, wherein the base assembly 2 is arranged at two side ends of the mounting assembly 1, the first supporting assembly 3 is mounted at the upper end of the base assembly 2, the second supporting assembly 4 is arranged at the inner side of the first supporting assembly 3, the mounting assembly 1 comprises a mounting backboard 101, a first buckle groove 102, a first buckle block 103, a threaded pipe 104, a photovoltaic panel main body 105, a second buckle block 106 and a handle 107, the inner side of the mounting backboard 101 is fixedly connected with the first buckle groove 102, the lower end of the mounting backboard 101 is fixedly connected with the first buckle block 103, the upper end of the mounting backboard 101 is fixedly connected with the threaded pipe 104, the photovoltaic panel main body 105 is mounted at the front end of the mounting backboard 101, the rear end of the photovoltaic panel main body 105 is fixedly connected with the second buckle block 106, and the handle 107 is mounted on the second buckle block 106.
Referring to fig. 2-3, in this embodiment, the base assembly 2 includes a base main body 201, a first moving slot 202, a second moving slot 203, a hydraulic push rod 204, a moving block 205, a rotating wheel 206 and a rotating connecting seat 207, two side ends of the photovoltaic panel main body 105 are provided with the base main body 201, the first moving slot 202 is opened on the inner side of the base main body 201, the second moving slot 203 is opened on one side end of the first moving slot 202, the hydraulic push rod 204 is installed on the rear end of the first moving slot 202 and the second moving slot 203, a moving block 205 is installed on the hydraulic push rod 204, the lower end of the moving block 205 is rotatably connected with the rotating wheel 206 through a rotating shaft, the upper end of the moving block 205 is installed with the rotating connecting seat 207, the back plate 101 is connected to the first supporting assembly 3 and the second supporting assembly 4 through the first fastening block 103 and the threaded pipe 104, the photovoltaic panel main body 105 is installed through the handle 107, the moving block 205 is driven to move through the hydraulic push rod 204, and the rotating wheel 206, the first moving block 202 and the second moving slot 203 are driven by the second supporting assembly 3.
Referring to fig. 4-5, in the present embodiment, the first support assembly 3 includes a first rotary joint 301, a support rod 302, a first extension rod 303, a first support bracket 304, a mounting tube 305, and a threaded hole 306; a first rotary joint 301 is rotatably connected to the rotary connecting seat 207 on the first moving groove 202; the upper end of the first rotary joint 301 is fixedly connected with a supporting rod 302, the supporting rod 302 is connected with a first extension rod 303 in a sliding manner, the upper end of the first extension rod 303 is fixedly connected with a first supporting frame 304, the inner side of the first supporting frame 304 is provided with a mounting tube 305, the mounting tube 305 is provided with a threaded hole 306, the mounting tube 305 and the threaded tube 104 are arranged in a clearance fit manner through the threaded hole 306, the second supporting component 4 comprises a second rotary joint 401, a second supporting frame 402, a second extension rod 403, a movable frame 404, a fixed frame 405, a second buckling groove 406, a protective cover 407, a movable table 408, a telescopic rod 409, a reset spring 410 and a supporting slide 411, the rotary connecting seat 207 on the second movable groove 203 is connected with a second rotary joint 401 in a rotary manner, the upper end of the second rotary joint 401 is fixedly connected with the second supporting frame 402, the inner side of the second supporting frame 402 is connected with the second extension rod 403 in a sliding manner, the inner side of the second extension rod 403 is connected with the movable frame 404, the upper end of the movable frame 404 is fixedly connected with the fixed frame 405, the inner side of the fixed frame 405 is provided with a second groove 406, the upper end of the fixed frame 405 is connected with the upper end of the fixed frame 405 through a rotary shaft 405, the upper end of the fixed frame 408 is connected with the telescopic connecting seat 408 through the rotary connecting the telescopic rod 408 and the telescopic connecting with the telescopic rod 408 through the fixed frame 408 and the fixed frame 408 through the threaded hole 410, the upper end of the telescopic connecting rod 408 is convenient to be connected with the telescopic joint 301 through the rotary connecting joint 408 and the upper end of the telescopic connecting rod, the first extension rod 303 and the mounting tube 305 are used for adjusting the position and angle of the upper end part of the mounting backboard 101, the second rotary joint 401, the second extension rod 403 and the moving frame 404 are used for adjusting the angle and position of the fixing frame 405, the first buckling block 103 is mounted through the second buckling groove 406, the supporting sliding block 411 and the moving table 408 are pushed by the first buckling block 103 so as to fix the first buckling block 103 through the second buckling groove 406, and the supporting sliding block 411 is driven to move by the telescopic rod 409 and the reset spring 410 so as to assist in fixing the first buckling block 103.
During installation, firstly, the photovoltaic panel body 105 is carried and moved through the handle 107, the photovoltaic panel body 105 is installed through the second buckling block 106 and the first buckling groove 102, then, the supporting sliding block 411 and the moving table 408 are pushed through the first buckling block 103 so as to fix the first buckling block 103 through the second buckling groove 406, the supporting sliding block 411 is driven to move through the telescopic rod 409 and the reset spring 410 so as to assist in fixing the first buckling block 103, the protective cover 407 is rotated to prevent the first buckling block 103 from dislocating, then, the installation pipe 305 is rotated so as to be connected with the threaded pipe 104 through the threaded hole 306, and finally, the hydraulic push rod 204 is started to drive the photovoltaic panel body 105 to integrally move;
During adjustment, the hydraulic push rods 204 are respectively started to drive the moving blocks 205 to move, and the moving distance of each moving block 205 is controlled so as to adjust the position and the angle of the upper end part of the mounting backboard 101 by using the first rotary joint 301, the first extension rod 303 and the mounting tube 305, and the angle and the position of the fixing frame 405 are adjusted by using the second rotary joint 401, the second extension rod 403 and the moving frame 404 so as to adjust the position and the angle of the lower end part of the mounting backboard 101.
Through the steps, the photovoltaic panel main body 105 is installed and fixed through the installation back plate 101, the first rotary joint 301 and the second rotary joint 401 are installed and controlled to move through the installation base main body 201 and the moving block 205, the installation back plate 101 is installed and driven to move and adjust the direction through the installation first support frame 304 and the second support frame 402, so that the problem that in the installation process of the photovoltaic panel, the photovoltaic panel is installed on a support through bolts due to the fact that the existing photovoltaic support structure mostly uses bolts, corrosion is easy to occur under the external environment, the subsequent assembly and disassembly difficulty of the support is improved, the use cost of the photovoltaic support structure is improved, and the use convenience of the whole novel buckle connection type photovoltaic support structure can be improved.
The embodiments of the present utility model have been described in detail with reference to the drawings, but the present utility model is not limited to the above embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present utility model.

Claims (5)

1.一种卡扣连接式新型光伏支架结构,包括有安装组件(1);其特征在于:还包括有底座组件(2)、第一支撑组件(3)和第二支撑组件(4);安装组件(1)两侧端设置有底座组件(2);底座组件(2)上端部安装有第一支撑组件(3);第一支撑组件(3)内侧设置有第二支撑组件(4);安装组件(1)包括有安装背板(101)、第一卡扣槽(102)、第一卡扣块(103)、螺纹管(104)、光伏板主体(105)、第二卡扣块(106)和握把(107);安装背板(101)内侧固接有第一卡扣槽(102);安装背板(101)下端部固接有第一卡扣块(103);安装背板(101)上端部固接有螺纹管(104);安装背板(101)前端部安装有光伏板主体(105);光伏板主体(105)后端部固接有第二卡扣块(106);第二卡扣块(106)上安装有握把(107)。1. A novel photovoltaic support structure with snap-on connection, comprising a mounting assembly (1); characterized in that: it also comprises a base assembly (2), a first support assembly (3) and a second support assembly (4); the mounting assembly (1) is provided with base assemblies (2) at both sides; the first support assembly (3) is installed at the upper end of the base assembly (2); the second support assembly (4) is provided inside the first support assembly (3); the mounting assembly (1) comprises a mounting back plate (101), a first snap-on groove (102), a first snap-on block (103), a threaded tube (104), and a mounting plate (105). 4), a photovoltaic panel body (105), a second buckle block (106) and a handle (107); a first buckle groove (102) is fixedly connected to the inner side of the mounting back plate (101); a first buckle block (103) is fixedly connected to the lower end of the mounting back plate (101); a threaded tube (104) is fixedly connected to the upper end of the mounting back plate (101); a photovoltaic panel body (105) is mounted on the front end of the mounting back plate (101); a second buckle block (106) is fixedly connected to the rear end of the photovoltaic panel body (105); and a handle (107) is mounted on the second buckle block (106). 2.根据权利要求1所述的一种卡扣连接式新型光伏支架结构,其特征在于:底座组件(2)包括底座主体(201)、第一移动槽(202)、第二移动槽(203)、液压推杆(204)、移动块(205)、转动轮(206)和转动连接座(207);光伏板主体(105)两侧端设置有底座主体(201);底座主体(201)内侧开设有第一移动槽(202);第一移动槽(202)一侧端部开设有第二移动槽(203);第一移动槽(202)和第二移动槽(203)后端部均安装有液压推杆(204);液压推杆(204)上安装有移动块(205);移动块(205)下端部通过转轴转动连接有转动轮(206);移动块(205)上端部安装有转动连接座(207)。2. A snap-connection type photovoltaic support structure according to claim 1, characterized in that: the base assembly (2) comprises a base body (201), a first movable groove (202), a second movable groove (203), a hydraulic push rod (204), a moving block (205), a rotating wheel (206) and a rotating connection seat (207); the base body (201) is arranged at both side ends of the photovoltaic panel body (105); the first movable groove (202) is opened inside the base body (201); the second movable groove (203) is opened at one side end of the first movable groove (202); hydraulic push rods (204) are installed at the rear ends of the first movable groove (202) and the second movable groove (203); the moving block (205) is installed on the hydraulic push rod (204); the lower end of the moving block (205) is rotatably connected to the rotating wheel (206) through a rotating shaft; and the upper end of the moving block (205) is installed with a rotating connection seat (207). 3.根据权利要求1所述的一种卡扣连接式新型光伏支架结构,其特征在于:第一支撑组件(3)包括第一转动接头(301)、支撑杆(302)、第一延伸杆(303)、第一支撑架(304)、安装管(305)和螺纹孔(306);第一移动槽(202)上的转动连接座(207)上转动连接有第一转动接头(301);第一转动接头(301)上端部固接有支撑杆(302);支撑杆(302)上滑动连接有第一延伸杆(303);第一延伸杆(303)上端部固接有第一支撑架(304);第一支撑架(304)内侧设置有安装管(305);安装管(305)上开设有螺纹孔(306);安装管(305)与螺纹管(104)通过螺纹孔(306)设置为间隙配合。3. A new type of photovoltaic bracket structure with snap-on connection according to claim 1, characterized in that: the first support assembly (3) comprises a first rotating joint (301), a support rod (302), a first extension rod (303), a first support frame (304), a mounting tube (305) and a threaded hole (306); the first rotating joint (301) is rotatably connected to the rotating connection seat (207) on the first movable groove (202); the upper end of the first rotating joint (301) is fixedly connected to the support rod (302); the first extension rod (303) is slidably connected to the support rod (302); the upper end of the first extension rod (303) is fixedly connected to the first support frame (304); a mounting tube (305) is arranged on the inner side of the first support frame (304); a threaded hole (306) is opened on the mounting tube (305); the mounting tube (305) and the threaded tube (104) are arranged to be clearance-fitted through the threaded hole (306). 4.根据权利要求1所述的一种卡扣连接式新型光伏支架结构,其特征在于:第二支撑组件(4)包括第二转动接头(401)、第二支撑架(402)、第二延伸杆(403)、移动架(404)、固定架(405)、第二卡扣槽(406)、保护盖(407)、移动台(408)、伸缩杆(409)、复位弹簧(410)和支撑滑块(411);第二移动槽(203)上的转动连接座(207)上转动连接有第二转动接头(401);第二转动接头(401)上端部固接有第二支撑架(402);第二支撑架(402)内侧滑动连接有第二延伸杆(403);第二延伸杆(403)内侧滑动连接有移动架(404);移动架(404)上端部固接有固定架(405)。4. A novel photovoltaic support structure with snap-on connection according to claim 1, characterized in that: the second support assembly (4) comprises a second rotating joint (401), a second support frame (402), a second extension rod (403), a movable frame (404), a fixed frame (405), a second snap-on groove (406), a protective cover (407), a movable platform (408), a telescopic rod (409), a reset spring (410) and a support slider (411); the second rotating joint (401) is rotatably connected to the rotating connection seat (207) on the second movable groove (203); the second supporting frame (402) is fixedly connected to the upper end of the second rotating joint (401); the second supporting frame (402) is slidably connected to the inner side of the second supporting frame (402); the movable frame (404) is slidably connected to the inner side of the second extension rod (403); the movable frame (404) is fixedly connected to the upper end of the movable frame (404). 5.根据权利要求4所述的一种卡扣连接式新型光伏支架结构,其特征在于:固定架(405)内侧开设有第二卡扣槽(406);固定架(405)上端部通过转轴转动连接有保护盖(407);固定架(405)一侧端部滑动连接有移动台(408);移动台(408)和固定架(405)之间安装有伸缩杆(409);伸缩杆(409)外侧设置有复位弹簧(410);移动台(408)上固接有支撑滑块(411)。5. A novel photovoltaic support structure with snap-on connection according to claim 4, characterized in that: a second snap-on groove (406) is provided on the inner side of the fixing frame (405); the upper end of the fixing frame (405) is rotatably connected to a protective cover (407) via a rotating shaft; a moving platform (408) is slidably connected to one end of one side of the fixing frame (405); a telescopic rod (409) is installed between the moving platform (408) and the fixing frame (405); a return spring (410) is provided on the outer side of the telescopic rod (409); and a supporting slider (411) is fixedly connected to the moving platform (408).
CN202421527625.9U 2024-06-29 2024-06-29 Novel photovoltaic supporting structure of buckle connection formula Active CN222953968U (en)

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