Combined waterproof support

The modular waterproof bracket design solves the problems of complicated photovoltaic panel installation and fixed height, achieving rapid installation and flexible height adjustment.

CN223928250UActive Publication Date: 2026-02-17HENAN TIANFENG NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202422974667.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2026-02-17
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

Existing photovoltaic panel support legs are cumbersome to install and have a fixed height, making them impossible to adjust as needed.

Method used

A modular waterproof bracket was designed, which uses a structure of tilting rods, vertical legs and telescopic legs, combined with springs and telescopic rods for fixing, to achieve rapid installation and height adjustment of photovoltaic panels.

Benefits of technology

It simplifies the installation process of photovoltaic panels, improves installation efficiency, and achieves waterproof performance through rubber sleeves, allowing for flexible adjustment of height and angle.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223928250U_ABST
Patent Text Reader

Abstract

The utility model particularly relates to a combined type waterproof support which comprises an inclined rod, a photovoltaic panel is installed at the top of the inclined rod, a frame is connected to the periphery of the photovoltaic panel, an L-shaped connecting base is connected to the side portion of the frame, two universal bases are fixedly installed at the bottom of the inclined rod, and a first vertical leg and a second vertical leg are connected to the universal bases respectively. The height of the first vertical leg is larger than that of the second vertical leg, the first vertical leg and the second vertical leg are connected with a first telescopic leg and a second telescopic leg respectively, the first telescopic leg and the second telescopic leg are installed on a first cement base and a second cement base respectively, and a first fixing structure is installed between the first telescopic leg and the first cement base. A first fixing structure is installed between the first telescopic leg and the first cement base, a second fixing structure is installed between the second telescopic leg and the second cement base, the first fixing structure and the second fixing structure are the same in structure, the first vertical leg and the second vertical leg are each of a cavity structure with an opening in the bottom, and the first telescopic leg and the second telescopic leg are each of a cavity structure with an opening in the top.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic support field, concretely relates to a combined waterproof support. BACKGROUND

[0002] The support leg needs to be fixed at the bottom during the installation of the photovoltaic panel, is generally fixed on the cement base through the bolt, needs to plug in the adhesive agent in the hole during the construction, then inserts the steel anchor bolt, waits until the adhesive agent in the hole reaches the design strength, then the column foot bottom plate is sleeved on the upper portion of the anchor bolt, the nut is tightened and fixed, then the stand column is welded on the column foot bottom plate, the construction procedure is more complicated, and the height of the support leg is fixed, cannot be adjusted according to the requirement. SUMMARY

[0003] In view of the deficiency of prior art, the utility model provides a combined waterproof support.

[0004] The utility model discloses a technical scheme is like this: a combined waterproof support, the top of the inclined pole is installed with photovoltaic panel, the periphery of photovoltaic panel is connected with the frame, the side of frame is connected with L type connecting seat, the bottom of inclined pole is fixedly installed with two universal seat, the universal seat is connected with vertical leg one and vertical leg two respectively, the height of vertical leg one is greater than the height of vertical leg two, vertical leg one and vertical leg two are connected with telescopic leg one and telescopic leg two respectively, telescopic leg one and telescopic leg two are installed on cement base one and cement base two respectively, and fixed structure one is installed between telescopic leg one and cement base one, fixed structure two is installed between telescopic leg two and cement base two, the structure of fixed structure one and fixed structure two is same, vertical leg one and vertical leg two are all the cavity structure of bottom opening, and telescopic leg one and telescopic leg two are all the cavity structure of top opening, all be equipped with the adjusting hole on vertical leg one, vertical leg two, telescopic leg one and telescopic leg two, and the bolt is installed at the adjusting hole.

[0005] Fixed structure one includes vertical hole one, and the vertical hole one is formed in the cement base one, and the telescopic leg one is placed in the vertical hole one, a through hole one is formed in the side of the telescopic leg one, a telescopic rod one is arranged in the through hole one, the telescopic rod one is provided with a spring one arranged horizontally at one end close to the telescopic leg one, the other end of the spring one is fixedly connected with the inner wall of the telescopic leg one, and a placing groove one for placing the telescopic rod one is formed in the cement base one and located at the position of the through hole one, and the placing groove one is communicated with the vertical hole one.

[0006] The second fixed structure includes a vertical hole. A vertical hole is provided on the cement base. The telescopic leg is placed in the vertical hole. A through hole is provided on the side of the telescopic leg. A telescopic rod is inserted through the through hole. A horizontally arranged spring is installed at one end of the telescopic rod near the telescopic leg. The other end of the spring is fixedly connected to the inner wall of the telescopic leg. A placement groove for placing the telescopic rod is provided in the cement base and at the position of the through hole. The placement groove is connected to the vertical hole.

[0007] Both the first and second telescopic legs are fitted with rubber sleeves.

[0008] The technical solution of this utility model has the following positive effects: The photovoltaic panel of this utility model is installed on the inclined rod, and vertical leg one and vertical leg two are installed at the bottom of the inclined rod. Telescopic leg one and telescopic leg two are inserted into vertical leg one and vertical leg two respectively. Telescopic leg one and telescopic leg two are fixed in cement base one and cement base two by fixing mechanism one and fixing structure two. The installation is quicker and more convenient by the setting of spring one and telescopic rod one; the height can be adjusted, and the rubber sleeve can prevent water from entering vertical hole one and vertical hole two. Attached Figure Description

[0009] Fig. 1 This is a schematic diagram of the structure of this utility model.

[0010] Fig. 2 This is a top view showing the connection between the photovoltaic panel, frame, and tilting rod. Detailed Implementation

[0011] like Figs. 1-2 As shown, a modular waterproof bracket includes an inclined rod 1, a photovoltaic panel 2 mounted on the top of the inclined rod 1, a frame 3 connected around the photovoltaic panel 2, and an L-shaped connector 4 connected to the side of the frame 3. The L-shaped connector 4 is fixed to the inclined rod 1 by bolts. Two universal seats 5 are fixedly installed at the bottom of the inclined rod 1. Vertical legs 6 and 7 are respectively connected to the universal seats 5. The height of vertical leg 6 is greater than the height of vertical leg 7. Telescopic legs 8 and 9 are respectively connected to the outside of vertical legs 6 and 7. The retractable legs 2 and 9 are respectively installed on the cement base 10 and cement base 21. A fixing structure 1 is installed between the telescopic leg 1 and cement base 10, and a fixing structure 2 is installed between the telescopic leg 2 and cement base 21. The fixing structure 1 and fixing structure 2 have the same structure. The vertical leg 1 and vertical leg 2 and 7 are both hollow structures with open bottoms, and the telescopic leg 1 and telescopic leg 2 and 9 are both hollow structures with open tops. Adjustment holes 12 are opened on the vertical leg 1, vertical leg 2 and 7, telescopic leg 1, and telescopic leg 2 and 9, and bolts are installed at the adjustment holes 12.

[0012] Specifically, the frame 3 is installed around the photovoltaic panel 2, L-shaped connecting seats 4 are installed on both sides of the frame 3, the L-shaped connecting seats 4 are installed on the inclined rod 1 through bolts, the vertical leg one 6 and the vertical leg two 7 are different in height, so that the photovoltaic panel 2 is in an inclined state, the height of the photovoltaic panel 2 can be adjusted through the setting of the telescopic leg one 8 and the telescopic leg two 9, the inclination angle of the inclined rod 1 is unchanged, and only the height is adjusted; the inclined rod 1, the vertical leg one and the vertical leg two are made of hot-dip galvanized steel, and have good waterproof performance.

[0013] The fixing structure one comprises a vertical hole one 13, the vertical hole one 13 is formed in the cement base one 10, the telescopic leg one 8 is placed in the vertical hole one 13, a through hole one 14 is formed in the side of the telescopic leg one 8, a telescopic rod one 15 is arranged in the through hole one 14, the telescopic rod one 15 is provided with a horizontally arranged spring one 16 at one end close to the telescopic leg one 8, the other end of the spring one 16 is fixedly connected with the inner wall of the telescopic leg one 8, and a placing groove one 17 for placing the telescopic rod one 15 is formed in the cement base one 10 and located at the position of the through hole one 14, and the placing groove one 17 is in communication with the vertical hole one 13.

[0014] Specifically, the telescopic rod one 15 is pressed into the through hole one 14 first, and then the telescopic leg one 8 is placed in the vertical hole one 13; when the telescopic leg one 8 passes through the placing groove one 17 in the downward process, the spring one 16 restores the deformation, so that the telescopic rod one 15 enters the placing groove one 17, and thus the telescopic leg one 8 is fixed to the cement base one 10.

[0015] The fixing structure two comprises a vertical hole two 19, the vertical hole two 19 is formed in the cement base two 11, the telescopic leg two 9 is placed in the vertical hole two 19, a through hole two 20 is formed in the side of the telescopic leg two 9, a telescopic rod two 21 is arranged in the through hole two 20, the telescopic rod two 21 is provided with a horizontally arranged spring two 22 at one end close to the telescopic leg two 9, the other end of the spring two 22 is fixedly connected with the inner wall of the telescopic leg two 9, and a placing groove two 23 for placing the telescopic rod two 21 is formed in the cement base two 11 and located at the position of the through hole two 20, and the placing groove two 23 is in communication with the vertical hole two 19. Specifically, the telescopic leg two 9 and the telescopic leg one 8 are fixed in the same way.

[0016] The telescopic leg one 8 and the telescopic leg two 9 are both sleeved with rubber sleeves 18; specifically, the telescopic leg one 8 is sleeved with the rubber sleeve 18 and located at the opening of the vertical hole one 13, the rubber sleeve 18 seals this place, so that water cannot enter the vertical hole one 13, and the telescopic leg two 9 is also sleeved with the rubber sleeve 18 and located at the opening of the vertical hole two 19.

Claims

1. A modular waterproof bracket, characterized in that: The system includes a tilting rod, with a photovoltaic panel mounted on top. The photovoltaic panel is surrounded by a frame, and L-shaped connectors are attached to the sides of the frame. Two universal joints are fixedly mounted at the bottom of the tilting rod, each connected to a vertical leg (leg 1 and leg 2). The height of vertical leg 1 is greater than that of vertical leg 2. Telescopic legs (legs 1 and 2) are connected to vertical legs 1 and 2 respectively. Telescopic legs 1 and 2 are mounted on concrete bases 1 and 2 respectively. A fixing structure (structure 1) is installed between telescopic legs 1 and concrete base 1, and a fixing structure (structure 2) is installed between telescopic legs 2 and concrete base 2. Fixing structures 1 and 2 have the same structure. Both vertical legs 1 and 2 are hollow structures with open bottoms, and both telescopic legs 1 and 2 are hollow structures with open tops. Adjustment holes are provided on vertical legs 1 and 2, and bolts are installed at these holes. Rubber sleeves are fitted over both telescopic legs 1 and 2.

2. The combined waterproof bracket according to claim 1, characterized in that: The fixed structure includes a vertical hole. A vertical hole is provided on a cement base. A telescopic leg is placed in the vertical hole. A through hole is provided on the side of the telescopic leg. A telescopic rod is inserted through the through hole. A horizontally arranged spring is installed at one end of the telescopic rod near the telescopic leg. The other end of the spring is fixedly connected to the inner wall of the telescopic leg. A placement groove for placing the telescopic rod is provided in the cement base at the position of the through hole. The placement groove is connected to the vertical hole.

3. The combined waterproof bracket according to claim 1, characterized in that: The second fixed structure includes a vertical hole. A vertical hole is provided on the cement base. The telescopic leg is placed in the vertical hole. A through hole is provided on the side of the telescopic leg. A telescopic rod is inserted through the through hole. A horizontally arranged spring is installed at one end of the telescopic rod near the telescopic leg. The other end of the spring is fixedly connected to the inner wall of the telescopic leg. A placement groove for placing the telescopic rod is provided in the cement base and at the position of the through hole. The placement groove is connected to the vertical hole.