Reinforcing structure for photovoltaic support stand column

By adjusting the design of the components, the height of the photovoltaic support column reinforcement structure can be flexibly adjusted, which solves the problem of insufficient support caused by the fixed reinforcement height in the existing technology, and improves the stability and installation adaptability of the photovoltaic support.

CN223462963UActive Publication Date: 2025-10-21GUANGDONG FUGUANG NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202422340110.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-10-21
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

The existing photovoltaic support column reinforcement structure design cannot adjust the reinforcement height according to the column height, resulting in an inability to provide all-round support at different heights and insufficient flexibility.

Method used

The system employs adjustable components, including telescopic columns, lifting channels, slots, lifting pipes, slides, slide rods, and handles. The lifting pipe is raised or lowered by sliding the slide rod within the lifting channel. Combined with the engagement of limit bolts and threaded holes, the reinforcement height can be flexibly adjusted.

Benefits of technology

It improves the stability and safety of the photovoltaic bracket, adapts to various installation scenarios, and enhances the flexibility and installation efficiency of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of photovoltaic installation, in particular to a reinforcing structure for a photovoltaic support stand column, which comprises a base. The device further comprises adjusting assemblies, the number of the bases is two, the outer ends of the tops of the bases are in threaded connection with four mounting screws at equal intervals, the adjusting assemblies are arranged at the tops of the two bases, and each adjusting assembly comprises a telescopic column, a lifting groove, a clamping groove, a lifting pipe, a sliding groove, a sliding rod, a handle and a positioning hole. A telescopic column is connected to the top of the base, a lifting groove is formed in the left end of the telescopic column, a plurality of clamping grooves are formed in the position, close to the rear side, of the lifting groove at equal intervals, and a lifting pipe is slidably connected into the telescopic column; according to the utility model, the adjusting assembly is arranged, the handle is grabbed, the handle drives the sliding rod to slide in the sliding groove, the sliding rod slides out of the clamping groove into the lifting groove, and the sliding rod vertically moves on the lifting groove, so that the lifting effect of the lifting pipe is realized, and the reinforcing height can be flexibly adjusted according to the actual height of the stand column body.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic installation technical field especially relates to a kind of reinforcing structure for photovoltaic support stand column. BACKGROUND

[0002] The reinforcing structure of photovoltaic support stand column refers to the stand column part for supporting and fixing solar cell panel in photovoltaic power generation system, and the wind resistance, shock resistance and snow pressure resistance of the stand column are enhanced by increasing structural strength and stability, and the reinforcing structure usually includes thickening or widening stand column material, using stronger connecting piece, increasing transverse or longitudinal support rod, etc., to ensure the safety and durability of photovoltaic support under severe weather conditions.

[0003] The reinforcing structure of existing photovoltaic support stand column is inconvenient to adjust reinforcing height according to stand column height, and reinforcing part is usually fixed at specific position, so it cannot be adjusted according to actual demand, which leads to that it cannot effectively provide all-round support under different height conditions, especially when different height stand columns need to be adapted, the flexibility of reinforcing structure is insufficient. UTILITY MODEL CONTENTS

[0004] In order to overcome the problem that the reinforcing structure of existing photovoltaic support stand column is inconvenient to adjust reinforcing height according to stand column height, and reinforcing part is usually fixed at specific position, so it cannot be adjusted according to actual demand, which leads to that it cannot effectively provide all-round support under different height conditions.

[0005] The technical scheme of the utility model is: a reinforcing structure for photovoltaic support stand column, comprising a base; further comprising an adjusting assembly, the base is provided with two, the top outer end of the base is screw-connected with four mounting screws at equal intervals, the top of the two bases is provided with an adjusting assembly, the adjusting assembly comprises a telescopic column, a lifting groove, a clamping groove, a lifting pipe, a sliding groove, a sliding rod, a handle and a positioning hole; the top of the base is connected with the telescopic column, the left end of the telescopic column is provided with the lifting groove, a plurality of clamping grooves are provided at equal intervals near the rear side position of the lifting groove, the lifting pipe is slidably connected in the telescopic column, the left end of the lifting pipe is provided with the sliding groove, the left end of the sliding groove is slidably connected with the sliding rod, the side away from the sliding groove of the sliding rod is connected with the handle, the left and right ends of the telescopic column are provided with the positioning hole, the rear end of the front telescopic column is connected with a connecting rod, the inside of the lifting pipe is movably connected with a stand column body, the inside of the lower side of the stand column body is provided with the same positioning hole.

[0006] Preferably, by setting the adjusting assembly, holding the handle, the handle drives the sliding rod to slide in the sliding groove, the sliding rod is slid out of the clamping groove into the lifting groove, the sliding rod is vertically moved on the lifting groove, so that the lifting pipe realizes the effect of lifting, and the reinforcing height can be flexibly adjusted according to the actual height of the stand column body, which not only improves the stability and safety of photovoltaic support, but also can adapt to various installation scenes.

[0007] As preferred, the top of the connecting rod is provided with a plurality of threaded holes at equal intervals, and the front end of the rear telescopic column is connected with a telescopic pipe; the threaded holes are used to adjust the limiting according to the required interval, thereby improving the flexibility of the device.

[0008] As preferred, the telescopic pipe is slidingly connected with the connecting rod, and the top of the telescopic pipe is threadedly connected with a limiting bolt at the front side position; the telescopic pipe is slidingly connected with the connecting rod, thereby being telescopic according to different intervals, and increasing the flexibility of the device.

[0009] As preferred, the clamping groove and the lifting groove are connected with each other, the limiting bolt is threadedly connected with the threaded hole, and the limiting bolt and the threaded hole are matched to limit the position of the telescopic pipe and the connecting rod, thereby playing a positioning role.

[0010] As preferred, the top of the column body is connected with a rotating shaft, and the left and right ends of the rotating shaft are rotatably connected with rotating plates; the rotating plates facilitate the adjustment of the angle of the external photovoltaic panel.

[0011] As preferred, a platform is rotatably connected between the two rotating plates, and mounting holes are formed in the top of the platform and at the front and rear sides; the platform is used to mount the external photovoltaic panel, thereby playing a supporting role.

[0012] As preferred, four mounting holes are formed, the mounting holes are connected with the external photovoltaic panel through external bolts, and the mounting holes facilitate the mounting of the external photovoltaic panel, thereby improving the mounting efficiency.

[0013] The beneficial effects of the utility model are as follows:

[0014] By setting the adjusting assembly, the handle is grabbed, the handle drives the sliding rod to slide in the sliding groove, the sliding rod is slid out of the clamping groove into the lifting groove, the sliding rod is vertically moved on the lifting groove, thereby achieving the lifting effect of the lifting pipe, and the reinforcing height can be flexibly adjusted according to the actual height of the column body, which not only improves the stability and safety of the photovoltaic support, but also can adapt to various installation scenes. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 A three-dimensional structure schematic view of a reinforcing structure for a photovoltaic support column is shown;

[0016] Figure 2 A three-dimensional rear view structure schematic view of a reinforcing structure for a photovoltaic support column is shown;

[0017] Figure 3 A three-dimensional side view structure schematic view of a reinforcing structure for a photovoltaic support column is shown;

[0018] Figure 4The utility model discloses a kind of reinforcing structure adjusting components three-dimensional section structure schematic diagram for photovoltaic support stand column.

[0019] Mark explanation: 1, base; 2, mounting screw; 31, telescopic column; 32, lifting groove; 33, clamping groove; 34, lifting pipe; 35, sliding groove; 36, sliding rod; 37, handle; 38, positioning hole; 41, connecting rod; 42, screw hole; 43, telescopic pipe; 44, limit bolt; 51, stand body; 52, rotating shaft; 53, rotating plate; 54, platform; 55, mounting hole. DETAILED DESCRIPTION

[0020] The utility model is further explained in connection with drawing and embodiment.

[0021] Please refer to Figures 1-4 The utility model provides a kind of reinforcing structure for photovoltaic support stand column, including base 1;Still including adjusting component, base 1 is provided with two, the top outer end of base 1 is equally spaced thread connection with four mounting screws 2, the top of two base 1 is provided with adjusting component, adjusting component includes telescopic column 31, lifting groove 32, clamping groove 33, lifting pipe 34, sliding groove 35, sliding rod 36, handle 37 and positioning hole 38;The top of base 1 is connected with telescopic column 31, the left end of telescopic column 31 is set with lifting groove 32, lifting groove 32 is close to rear side position and is set with multiple clamping grooves 33 at equal interval, telescopic column 31 is slidably connected with lifting pipe 34 in its interior, the left end of lifting pipe 34 is set with sliding groove 35, the left end of sliding groove 35 is slidably connected with sliding rod 36, handle 37 is connected on the side of sliding rod 36 away from sliding groove 35, positioning hole 38 is set on the left and right ends of telescopic column 31, the rear end of front telescopic column 31 is connected with connecting rod 41, stand body 51 is movably connected in the interior of lifting pipe 34, the same positioning hole 38 is set in the interior lower side of stand body 51.

[0022] Please refer to Figures 1-4In the embodiment, by setting the adjusting assembly, the handle 37 is gripped, the handle 37 drives the sliding rod 36 to slide in the sliding groove 35, the sliding rod 36 is slid out of the clamping groove 33 into the lifting groove 32, the lifting pipe 34 is lifted by the vertical movement of the sliding rod 36 on the lifting groove 32, so that the reinforcing height can be flexibly adjusted according to the actual height of the column body 51, which not only improves the stability and safety of the photovoltaic support, but also can adapt to various installation scenes. The top of the connecting rod 41 is evenly spaced and provided with a plurality of threaded holes 42. The front end of the rear telescopic column 31 is connected with a telescopic pipe 43. The threaded hole 42 is used to adjust the limiting according to the required spacing, improve the flexibility of the device, the telescopic pipe 43 and the connecting rod 41 are slidingly connected, the top of the telescopic pipe 43 is connected with a limiting bolt 44 at the front side position, the telescopic pipe 43 and the connecting rod 41 are sliding, so as to be telescopic according to different spacing, increase the flexibility of the device, the clamping groove 33 and the lifting groove 32 are connected with each other, the limiting bolt 44 and the threaded hole 42 are threadedly connected, and the limiting bolt 44 and the threaded hole 42 are matched to limit the position of the telescopic pipe 43 and the connecting rod 41, and play a positioning role.

[0023] Please refer to Figures 2-4 In the embodiment, the top of the column body 51 is connected with a rotating shaft 52, the left and right ends of the rotating shaft 52 are rotatably connected with rotating plates 53, the rotating plates 53 facilitate adjusting the angle of the external photovoltaic panel, the two rotating plates 53 are rotatably connected with a platform 54, the top of the platform 54 is provided with mounting holes 55 on the front and rear sides, the platform 54 is used to install the external photovoltaic panel, and plays a supporting role. The mounting hole 55 is provided with four, the mounting hole 55 is connected with the external photovoltaic panel through external bolts, the mounting hole 55 facilitates the installation of the external photovoltaic panel, and improves the installation efficiency.

[0024] In the working process, the column body 51 is inserted into the lifting pipe 34, the column body 51 is fixed by inserting the external screw into the positioning hole 38, the number of devices is increased according to the required number of column bodies 51, and then the external photovoltaic panel is installed on the mounting hole 55 through the external screw, so that the external photovoltaic panel is fixed on the platform 54. The telescopic pipe 43 and the connecting rod 41 are sliding, so as to be telescopic according to the different spacing between the column bodies 51, the limiting bolt 44 is rotated, the limiting bolt 44 is connected with the threaded hole 42 to limit the telescopic pipe 43 and the connecting rod 41, the handle 37 is gripped, the handle 37 drives the sliding rod 36 to slide in the sliding groove 35, the sliding rod 36 is slid out of the clamping groove 33 into the lifting groove 32, the lifting pipe 34 is lifted by the vertical movement of the sliding rod 36 on the lifting groove 32, the height of the lifting pipe 34 is adjusted according to the position to be reinforced, so as to reinforce the column body 51, so that the reinforcing height can be flexibly adjusted according to the actual height of the column body 51. The mounting screw 2 is used to fix the base 1 and plays a supporting role.

[0025] Through the above steps, by setting the adjusting assembly, the handle 37 is gripped, the handle 37 drives the sliding rod 36 to slide in the sliding groove 35, the sliding rod 36 is slid out of the clamping groove 33 into the lifting groove 32, the sliding rod 36 is vertically moved on the lifting groove 32, so that the lifting pipe 34 realizes the lifting effect, and the reinforcing height can be flexibly adjusted according to the actual height of the column body 51. This not only improves the stability and safety of the photovoltaic support, but also can adapt to various different installation scenes.

Claims

1. A reinforcing structure for a photovoltaic support post comprising a base (1); characterized in that: Also include the adjusting assembly, the base (1) is provided with two, the top outer end of base (1) is screw-connected with four mounting screws (2) at equal intervals, the top of two base (1) is provided with adjusting assembly, adjusting assembly includes telescopic column (31), lifting groove (32), clamping groove (33), lifting pipe (34), sliding groove (35), sliding rod (36), handle (37) and positioning hole (38);The top of base (1) is connected with telescopic column (31), the left end of telescopic column (31) is provided with lifting groove (32), a plurality of clamping grooves (33) are provided at equal intervals near the rear side position of lifting groove (32), the inside of telescopic column (31) is slidably connected with lifting pipe (34), the left end of lifting pipe (34) is provided with sliding groove (35), the left end of sliding groove (35) is slidably connected with sliding rod (36), the side away from sliding groove (35) of sliding rod (36) is connected with handle (37), the left and right ends of telescopic column (31) are provided with positioning hole (38), the rear end of front telescopic column (31) is connected with connecting rod (41), the inside of lifting pipe (34) is movably connected with column body (51), the inside of column body (51) is provided with the same positioning hole (38) on the lower side, the top of connecting rod (41) is provided with a plurality of threaded holes (42) at equal intervals, the front end of rear telescopic column (31) is connected with telescopic pipe (43).

2. A reinforcing structure for a photovoltaic racking post according to claim 1, wherein: Telescopic pipe (43) and connecting rod (41) are slidably connected, the top of telescopic pipe (43) is threadedly connected with limit bolt (44) near the front side position.

3. A reinforcing structure for a photovoltaic racking post according to claim 2, wherein: Clamping groove (33) and lifting groove (32) are connected with each other, limit bolt (44) and threaded hole (42) are threadedly connected.

4. A reinforcing structure for a photovoltaic racking post according to claim 3, wherein: The top of column body (51) is connected with rotating shaft (52), the left and right ends of rotating shaft (52) are rotatably connected with rotating plate (53).

5. A reinforcing structure for a photovoltaic racking post according to claim 4, wherein: Rotating plate (53) and rotating plate (53) are rotatably connected between the two rotating plates (53), the top of platform (54) is provided with mounting hole (55) on the front and rear sides.

6. A reinforcing structure for a photovoltaic racking post according to claim 5, wherein: There are four mounting holes (55), mounting hole (55) is connected with external photovoltaic panel through external bolt.