Photovoltaic solar panel convenient to install

By using a plug-in connection method between the support mechanism and the installation mechanism, the problems of cumbersome installation and inconvenient transportation of existing photovoltaic panel support frames are solved, enabling rapid installation and stable transportation, and reducing labor intensity and time costs.

CN121907124APending Publication Date: 2026-04-21HUANENG SHANXI ENERGY SERVICES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HUANENG SHANXI ENERGY SERVICES CO LTD
Filing Date
2025-11-25
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing solar photovoltaic panel support frames require cumbersome manual operation during installation, increasing time and labor intensity, and are also prone to damage or loss during transportation and assembly.

Method used

The system employs a support mechanism and an installation mechanism, connecting the support rod and the fixing rod via a plug-in method to reduce the use of screws. Combined with the adjustment component, it enables rapid installation and angle adjustment of the photovoltaic panels.

Benefits of technology

It simplifies the installation process, reduces labor intensity and time costs, improves stability during transportation, and prevents the support frame from loosening and falling in outdoor environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of photovoltaic panel installation, and particularly relates to a photovoltaic solar panel convenient to install, which comprises a photovoltaic panel, supporting mechanisms are installed at the bottom of the photovoltaic panel, and the supporting mechanisms are uniformly arranged at the bottom of the photovoltaic panel; the mounting mechanisms are arranged on the outer wall of the supporting mechanism in a staggered mode, and the first fixing rods are symmetrically arranged on the opposite sides of the mounting mechanisms; the second fixing rods are symmetrically arranged on the opposite sides of the mounting mechanism, and the second fixing rods and the first fixing rods are arranged on the outer wall of the mounting mechanism in a staggered mode. Through the arrangement of the supporting mechanism, the use of screws is reduced through an insertion connection mode, the tedious work in the mounting process is reduced, and the time cost of mounting can be reduced; and in the transportation process, the first supporting rod, the second connecting rod and the connecting sleeve are kept in the connection relation, workers do not need to find out all the parts one by one and then install the parts, and the installation process is simplified.
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Description

Technical Field

[0001] This invention belongs to the field of photovoltaic panel installation technology, specifically a photovoltaic solar panel that is easy to install. Background Technology

[0002] With the growing global demand for renewable energy, solar energy, as a clean and sustainable energy source, has received widespread attention. Solar photovoltaic panels, as key equipment for directly converting sunlight into electricity, are widely used in homes, commercial buildings, and even public facilities. However, the effective utilization of solar photovoltaic panels depends not only on their performance but also on the design of the support frame. The support frame not only needs to ensure that the photovoltaic panels can be stably installed in the predetermined position but also needs to have good weather resistance and a certain degree of aesthetics.

[0003] Existing solar photovoltaic panel support frames mainly adopt a frame structure composed of multiple angle steels. These angle steels are precisely designed to form stable horizontal and vertical beams to provide the necessary support. However, this traditional design has some obvious shortcomings.

[0004] The connection between each crossbeam and longitudinal beam usually requires the use of fasteners such as bolts, which means that tedious manual operation must be performed during installation. This not only increases the time cost of installation, but also increases the labor intensity. Secondly, since the support frame exists in a decentralized state before installation, that is, each component needs to be transported to the installation site separately and then assembled one by one, it is easy to lose or damage during transportation and handling, which brings additional inconvenience to construction. Summary of the Invention

[0005] To address the shortcomings of existing technologies, the technical solution adopted by this invention is: an easy-to-install photovoltaic solar panel, comprising: a photovoltaic panel, wherein a support mechanism is installed at the bottom of the photovoltaic panel, and the support mechanism is evenly distributed at the bottom of the photovoltaic panel;

[0006] The mounting mechanisms are staggered and arranged on the outer wall of the support mechanism;

[0007] The supporting structure includes:

[0008] A connecting sleeve, wherein the outer wall of the connecting sleeve is provided with slots, and the slots are staggered on adjacent sides of the connecting sleeve;

[0009] The second support rod is inserted into the top of the connecting sleeve, and the inner wall of the second support rod has a cavity.

[0010] Telescopic column, which is installed on top of the second support rod;

[0011] An adjustment component is installed on the top of the telescopic rod, and the top of the adjustment component is connected to the bottom of the photovoltaic panel. The adjustment component is used to adjust the tilt of the photovoltaic panel.

[0012] Furthermore, this easy-to-install photovoltaic solar panel also includes:

[0013] The first fixing rod is symmetrically arranged on opposite sides of the mounting mechanism;

[0014] The second fixing rod is symmetrically arranged on opposite sides of the mounting mechanism, and the second fixing rod and the first fixing rod are alternately arranged on the outer wall of the mounting mechanism;

[0015] The first and second fixing rods are used to connect the support mechanism, increasing the stability of the photovoltaic panel.

[0016] Furthermore, the support mechanism also includes:

[0017] The first support rod is inserted into the bottom of the connecting sleeve. The first support rod has evenly spaced cavities inside. The diameter of the cavities inside the first support rod and the second support rod is the same as the diameter of the limiting block. The first support rod, the second support rod, and the connecting sleeve have holes with the same diameter as the soft skeleton at their central axis.

[0018] A flexible skeleton is disposed inside a cavity. Limiting blocks are provided at both ends of the flexible skeleton. The flexible skeleton connects the first support rod and the second support rod, so that the first support rod and the second support rod remain connected even after disassembly.

[0019] The flexible skeleton connects the first support rod and the second support rod, so that the first support rod and the second support rod remain connected even after disassembly. The flexible skeleton is a deformable plastic product, and the diameter of the limiting blocks at both ends is larger than the diameter of the flexible skeleton, so that the first support rod and the second support rod remain connected even when not inserted into the connecting sleeve, reducing the time for workers to pick and pack and store them separately.

[0020] Furthermore, the mounting mechanism includes:

[0021] The movable sleeves are staggered on adjacent sides of the connecting sleeve. The inner wall of the movable sleeves is sleeved with the outer wall of the first fixed rod and the second fixed rod respectively. The surface of the movable sleeves has an opening so that the movable sleeves can be slightly opened so that the first fixed rod or the second fixed rod can be quickly inserted.

[0022] Furthermore, the mounting mechanism also includes:

[0023] A threaded sleeve is symmetrically arranged at both ends of the first fixed rod and the second fixed rod, and the inner wall of the threaded sleeve is threadedly connected to the outer wall of the movable sleeve.

[0024] The L-shaped rods are symmetrically arranged on the outer wall of the threaded sleeve, and the bottom of the L-shaped rods contacts the outer wall of the connecting sleeve. The threaded sleeve is fixed to the outer wall of the connecting sleeve by the L-shaped rods.

[0025] Furthermore, the mounting mechanism also includes:

[0026] A spring column, which is installed at the end of an L-shaped rod;

[0027] A locking block is installed at the end of the elastic column away from the L-shaped rod, and the outer wall of the locking block is engaged with the inner wall of the locking groove.

[0028] Furthermore, the adjustment component includes:

[0029] The mounting frame has a movable groove at its bottom and its top is connected to the bottom of the photovoltaic panel.

[0030] The support column is installed on top of the telescopic column. The outer wall of the support column has symmetrical limit holes. The top of the support column is rotatably connected to the inner wall of the mounting frame. The left and right support rods are fixed in a staggered manner at the limit holes, so that the mounting frame has different angles. After the front and rear sets of second support rods are fixed in staggered positions with the telescopic column, the adjusted photovoltaic panel is installed on top of the second support rod.

[0031] Furthermore, the adjustment component also includes:

[0032] The support rod has its top rotatably connected to the bottom of the mounting frame, and its bottom contacts the outer wall of the support column. The support rod is used to adjust and then fix the angle of the mounting frame from both sides.

[0033] A sleeve rod, the outer wall of which is engaged with the inner wall of the support rod, and the sleeve rod is inserted into the inner wall of the limiting hole.

[0034] The beneficial effects of this invention are as follows:

[0035] 1. This invention reduces the use of screws by setting up a support mechanism and using a plug-in method, thereby reducing tedious work during installation, reducing installation time costs, and lowering labor intensity. Furthermore, it maintains the connection between the first support rod, the second connecting rod, and the connecting sleeve during transportation, eliminating the need for workers to find and install each part individually, thus simplifying the installation process.

[0036] 2. The present invention, by setting up an installation mechanism, allows the locking block at the end of the elastic column to lock into the slot on the back of the connecting sleeve, so that the threaded sleeve is fixed to the outer wall of the connecting sleeve under the action of the locking block. By increasing the tension in the opposite direction to the threaded sleeve, the threaded sleeve is kept in contact with the connecting sleeve, preventing the threaded sleeve from gradually loosening in the outdoor environment, which would cause the first or second support rod to fall off and the overall support structure to collapse.

[0037] 3. This invention, by setting an adjustment component, allows the sleeve rod to be inserted into the limiting hole during transportation, fixing the support rod and maintaining the stability of the mounting frame. This prevents lateral swaying and collisions during transportation. The photovoltaic panel is installed on top of the mounting frame. After assembling the photovoltaic panel, four pillars are simultaneously installed on top of the telescopic column and secured with screws to complete the overall assembly. Individual angle adjustments allow the photovoltaic panel to be operated on the ground first before the entire photovoltaic panel is installed, avoiding the problem of not being able to adjust the photovoltaic panel after installation. Attached Figure Description

[0038] Figure 1 This is a schematic diagram of the structure of the present invention;

[0039] Figure 2 This is a partial structural schematic diagram of the present invention;

[0040] Figure 3 This is a schematic diagram of the support mechanism of the present invention;

[0041] Figure 4 This is a partial structural schematic diagram of the support mechanism of the present invention;

[0042] Figure 5 This is a cross-sectional view of the support mechanism of the present invention;

[0043] Figure 6 This is a cross-sectional view of the mounting mechanism of the present invention;

[0044] Figure 7 This is a schematic diagram of the installation mechanism of the present invention;

[0045] Figure 8 This is the present invention. Figure 4 A schematic diagram of the structure at point A in the middle.

[0046] In the diagram: 1. Photovoltaic panel; 2. Support mechanism; 201. Connecting sleeve; 202. Slot; 203. First support rod; 204. Second support rod; 205. Adjustment component; 2051. Mounting frame; 2052. Movable slot; 2053. Support rod; 2054. Sleeve rod; 2055. Limiting hole; 2056. Support column; 206. Cavity; 207. Flexible frame; 208. Limiting block; 209. Telescopic column; 3. Installation mechanism; 301. Screw sleeve; 302. Movable sleeve; 303. L-shaped rod; 304. Elastic column; 305. Locking block; 4. First fixing rod; 5. Second fixing rod. Detailed Implementation

[0047] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.

[0048] Example 1, please refer to Figures 1-7 The present invention provides a technical solution: a photovoltaic solar panel that is easy to install, as described below.

[0049] Includes: a photovoltaic panel 1, and a support mechanism 2 installed at the bottom of the photovoltaic panel 1, with the support mechanism 2 evenly distributed at the bottom of the photovoltaic panel 1;

[0050] Installation mechanism 3 is staggered on the outer wall of support mechanism 2;

[0051] The easy-to-install photovoltaic solar panel also includes:

[0052] The first fixing rod 4 is symmetrically arranged on opposite sides of the mounting mechanism 3;

[0053] The second fixing rod 5 is symmetrically arranged on opposite sides of the mounting mechanism 3, and the second fixing rod 5 and the first fixing rod 4 are alternately arranged on the outer wall of the mounting mechanism 3;

[0054] The first fixing rod 4 and the second fixing rod 5 are used to connect the support mechanism 2, thereby increasing the stability of the photovoltaic panel 1.

[0055] During transportation, the first fixing rod 4 and the second fixing rod 5 are bundled together for transport, the support mechanism 2 is stored separately as a whole, and the parts of the installation mechanism 3 are stored separately. A complete photovoltaic panel 1 bracket is divided into only three parts.

[0056] During installation, the first fixing rod 4 is fixed to two adjacent support mechanisms 2, and the second fixing rod 5 fixes the two sets of support mechanisms 2 together. Then, the photovoltaic panel 1 is installed on the top of the support mechanism 2. The photovoltaic panel 1 is quickly installed by quickly fixing the installation mechanism 3 to the support mechanism 2. The support mechanism 2 can adjust the height and angle, and flexibly adjust the tilt angle of the photovoltaic panel 1.

[0057] Supporting mechanism 2 includes:

[0058] The connecting sleeve 201 has a slot 202 on its outer wall, and the slots 202 are staggered on two adjacent sides of the connecting sleeve 201.

[0059] The second support rod 204 is inserted into the top of the connecting sleeve 201, and the inner wall of the second support rod 204 has a cavity 206.

[0060] The telescopic column 209 is installed on the top of the second support rod 204. The bottom of the telescopic column 209 can be detached from the second support rod 204, so that the photovoltaic panel 1 and the adjustment component 205 are installed first, and then the adjustment component 205 is installed on the second support rod 204, which facilitates the operation and adjustment of the photovoltaic panel 1 on the ground, and finally the installation is carried out directly.

[0061] Adjustment component 205 is installed on the top of the telescopic rod and the top of adjustment component 205 is connected to the bottom of photovoltaic panel 1. Adjustment component 205 is used to adjust the tilt of photovoltaic panel 1.

[0062] Supporting mechanism 2 also includes:

[0063] The first support rod 203 is inserted into the bottom of the connecting sleeve 201. The first support rod 203 has evenly spaced cavities 206 inside. The diameter of the cavity 206 inside the first support rod 203 and the second support rod 204 is the same as the diameter of the limiting block 208. The first support rod 203, the second support rod 204 and the connecting sleeve 201 have holes with the same diameter as the soft skeleton 207 at their central axis.

[0064] The flexible skeleton 207 is disposed inside the cavity 206. Limiting blocks 208 are provided at both ends of the flexible skeleton 207. The flexible skeleton 207 connects the first support rod 203 and the second support rod 204, so that the first support rod 203 and the second support rod 204 remain connected even after disassembly. The flexible skeleton 207 is a deformable plastic product, and the diameter of the limiting blocks 208 at both ends is larger than the diameter of the flexible skeleton 207, so that the first support rod 203 and the second support rod 204 remain connected even when not inserted into the connecting sleeve 201, reducing the time for workers to pick and pack and store individually.

[0065] Initially, the adjusting component is separated from the telescopic column 209 and adjusted to a suitable angle. The photovoltaic panel 1 is installed on top of the adjusting component. Then, the connecting sleeve 201 is assembled with the first support rod 203 and the second support rod 204. The first fixing rod 4 and the second fixing rod 5 are then used to fix the four sets of connecting sleeves 201. The support mechanism 2 is fixed from the four corners. Finally, the photovoltaic panel 1 and the adjusting component 205 are installed on top of the telescopic column 209.

[0066] By using a plug-in method, the use of screws is reduced, and tedious work during installation is reduced, which can reduce installation time costs and labor intensity. Furthermore, the first support rod 203, the second connecting rod, and the connecting sleeve 201 are kept connected during transportation, eliminating the need for workers to find and install each part individually, thus simplifying the installation process.

[0067] Installation mechanism 3 includes:

[0068] The movable sleeve 302 is staggered on two adjacent sides of the connecting sleeve 201. The inner wall of the movable sleeve 302 is sleeved with the outer wall of the first fixed rod 4 and the second fixed rod 5 respectively. The surface of the movable sleeve 302 has an opening so that the movable sleeve 302 can be slightly opened so that the first fixed rod 4 or the second fixed rod 5 can be quickly inserted.

[0069] Installation mechanism 3 also includes:

[0070] Screw sleeve 301 is symmetrically arranged at both ends of the first fixed rod 4 and the second fixed rod 5. The inner wall of the screw sleeve 301 is threadedly connected to the outer wall of the movable sleeve 302.

[0071] L-shaped rods 303 are symmetrically arranged on the outer wall of the threaded sleeve 301. The bottom of the L-shaped rods 303 contacts the outer wall of the connecting sleeve 201, and the threaded sleeve 301 is fixed to the outer wall of the connecting sleeve 201 by means of the L-shaped rods 303.

[0072] Installation mechanism 3 also includes:

[0073] Elastic column 304 is installed at the end of L-shaped rod 303;

[0074] The locking block 305 is installed at the end of the elastic column 304 away from the L-shaped rod 303, and the outer wall of the locking block 305 is engaged with the inner wall of the locking groove 202.

[0075] During installation, first, the opening of the threaded sleeve 301 is placed on both ends of the first fixing rod 4 and the second fixing rod 5. Then, the first fixing rod 4 and the second fixing rod 5 are inserted into the movable sleeve 302 respectively. Then, the threaded sleeve 301 is tightened along the thread. Finally, the threaded sleeve 301 fixes the movable sleeve 302 to the end of the first fixing rod 4. Then, the elastic column 304 at the end of the L-shaped rod 303 is pulled open, so that the locking block 305 at the end of the elastic column 304 is locked in the slot 202 on the back of the connecting sleeve 201. The threaded sleeve 301 is fixed to the outer wall of the connecting sleeve 201 under the action of the locking block 305. By increasing the tension in the opposite direction to the threaded sleeve 301, the threaded sleeve 301 is kept in contact with the connecting sleeve 201, preventing the threaded sleeve 301 from gradually loosening in the outdoor environment, which would cause the first support rod 203 or the second support rod 204 to fall off and cause the entire support structure to fall apart.

[0076] Example 2, please refer to Figures 1-8 The present invention provides a technical solution: based on embodiment 1, the adjustment component 205 includes:

[0077] Mounting bracket 2051, with a movable groove 2052 at the bottom and the top of mounting bracket 2051 connected to the bottom of photovoltaic panel 1;

[0078] The support column 2056 is installed on the top of the telescopic column 209. The outer wall of the support column 2056 is symmetrically provided with limiting holes 2055. The top of the support column 2056 is rotatably connected to the inner wall of the mounting frame 2051. The left and right support rods 2053 are fixed in a staggered manner at the holes of the limiting holes 2055, so that the mounting frame 2051 has different angles. After the telescopic column 209 keeps the two sets of second support rods 204 in a staggered position, the adjusted photovoltaic panel 1 is installed on the top of the second support rod 204.

[0079] The adjustment component 205 also includes:

[0080] Support rod 2053, the top of support rod 2053 is rotatably connected to the bottom of mounting bracket 2051, the bottom of support rod 2053 is in contact with the outer wall of support column 2056, support rod 2053 is used to adjust the angle of mounting bracket 2051 from both sides and then fix it.

[0081] Sleeve 2054, the outer wall of sleeve 2054 is engaged with the inner wall of support rod 2053, and sleeve 2054 is inserted into the inner wall of limiting hole 2055.

[0082] During transportation, the sleeve rod 2054 is inserted into the limiting hole 2055 to fix the support rod 2053, maintain the stability of the mounting frame 2051, and prevent left and right swaying and collision during transportation. During installation, the support rods 2053 on the left and right sides are moved to the corresponding hole positions, and then the sleeve rod 2054 is inserted into the support rod 2053 to fix the support rod 2053 to the outer wall of the support column 2056, maintaining the angle of the mounting frame 2051.

[0083] After installation, install the photovoltaic panel 1 on top of the mounting frame 2051. After assembling the photovoltaic panel 1, simultaneously install the four pillars 2056 on top of the telescopic column 209 and fix them with screws to complete the overall assembly. By adjusting the angle individually, the photovoltaic panel 1 can be operated on the ground first and then installed as a whole to avoid the problem of not being able to adjust the photovoltaic panel 1 after installation.

[0084] The specific workflow is as follows:

[0085] During transportation, the first fixing rod 4 and the second fixing rod 5 are bundled together for transport, the support mechanism 2 is stored separately as a whole, and the parts of the installation mechanism 3 are stored separately. A complete photovoltaic panel 1 bracket is divided into only three parts.

[0086] Initially, the adjusting component is separated from the telescopic column 209 and adjusted to a suitable angle. The photovoltaic panel 1 is installed on top of the adjusting component. Then, the connecting sleeve 201 is assembled with the first support rod 203 and the second support rod 204. The first fixing rod 4 and the second fixing rod 5 are then used to fix the four sets of connecting sleeves 201. The support mechanism 2 is fixed from the four corners. Finally, the photovoltaic panel 1 and the adjusting component 205 are installed on top of the telescopic column 209.

[0087] By using a plug-in method, the use of screws is reduced, and tedious work during the installation process is reduced, which can reduce installation time costs and labor intensity. Furthermore, the first support rod 203, the second connecting rod, and the connecting sleeve 201 are kept connected during transportation, eliminating the need for workers to find and install each part one by one, thus simplifying the installation process.

[0088] During installation, first, the opening of the threaded sleeve 301 is placed on both ends of the first fixing rod 4 and the second fixing rod 5. Then, the first fixing rod 4 and the second fixing rod 5 are inserted into the movable sleeve 302 respectively. Then, the threaded sleeve 301 is tightened along the thread. Finally, the threaded sleeve 301 fixes the movable sleeve 302 to the end of the first fixing rod 4. Then, the elastic column 304 at the end of the L-shaped rod 303 is pulled open, so that the locking block 305 at the end of the elastic column 304 is locked in the slot 202 on the back of the connecting sleeve 201. The threaded sleeve 301 is fixed to the outer wall of the connecting sleeve 201 under the action of the locking block 305. By increasing the tension in the opposite direction to the threaded sleeve 301, the threaded sleeve 301 is kept in contact with the connecting sleeve 201, preventing the threaded sleeve 301 from gradually loosening in the outdoor environment, which would cause the first support rod 203 or the second support rod 204 to fall off and cause the entire support structure to fall apart.

[0089] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. An easy-to-install photovoltaic solar panel, comprising: A photovoltaic panel (1) is characterized in that: a support mechanism (2) is installed at the bottom of the photovoltaic panel (1), and the support mechanism (2) is evenly arranged at the bottom of the photovoltaic panel (1); The installation mechanism (3) is staggered on the outer wall of the support mechanism (2); The support mechanism (2) includes: A connecting sleeve (201) has a slot (202) on its outer wall, and the slots (202) are staggered on two adjacent sides of the connecting sleeve (201); The second support rod (204) is inserted into the top of the connecting sleeve (201), and the inner wall of the second support rod (204) has a cavity (206). Telescopic column (209), which is installed on top of the second support rod (204); An adjustment component (205) is installed on the top of the telescopic rod. The top of the adjustment component (205) is connected to the bottom of the photovoltaic panel (1). The adjustment component (205) is used to adjust the tilt of the photovoltaic panel (1).

2. The easy-to-install photovoltaic solar panel according to claim 1, characterized in that: The easy-to-install photovoltaic solar panel also includes: The first fixing rod (4) is symmetrically arranged on the opposite side of the mounting mechanism (3); The second fixing rod (5) is symmetrically arranged on the opposite side of the mounting mechanism (3), and the second fixing rod (5) and the first fixing rod (4) are alternately arranged on the outer wall of the mounting mechanism (3); The first fixing rod (4) and the second fixing rod (5) are used to connect the support mechanism (2) to increase the stability of the photovoltaic panel (1).

3. The easy-to-install photovoltaic solar panel according to claim 1, characterized in that: The support mechanism (2) also includes: The first support rod (203) is inserted into the bottom of the connecting sleeve (201), and the interior of the first support rod (203) is uniformly provided with cavities (206). The soft skeleton (207) is disposed inside the cavity (206). Limiting blocks (208) are provided at both ends of the soft skeleton (207). The soft skeleton (207) connects the first support rod (203) and the second support rod (204) so ​​that the first support rod (203) and the second support rod (204) remain connected even after disassembly.

4. The easy-to-install photovoltaic solar panel according to claim 1, characterized in that: The installation mechanism (3) includes: The movable sleeve (302) is staggered on two adjacent sides of the connecting sleeve (201), and the inner wall of the movable sleeve (302) is sleeved with the outer wall of the first fixed rod (4) and the second fixed rod (5) respectively.

5. The easy-to-install photovoltaic solar panel according to claim 4, characterized in that: The installation mechanism (3) also includes: Screw sleeve (301), the screw sleeve (301) is symmetrically arranged at both ends of the first fixed rod (4) and the second fixed rod (5), and the inner wall of the screw sleeve (301) is threadedly connected to the outer wall of the movable sleeve (302); L-shaped rod (303) is symmetrically arranged on the outer wall of the threaded sleeve (301). The bottom of the L-shaped rod (303) is in contact with the outer wall of the connecting sleeve (201). The threaded sleeve (301) is fixed to the outer wall of the connecting sleeve (201) by the L-shaped rod (303).

6. The easy-to-install photovoltaic solar panel according to claim 5, characterized in that: The installation mechanism (3) also includes: An elastic column (304) is installed at the end of an L-shaped rod (303); A locking block (305) is installed at the end of the elastic column (304) away from the L-shaped rod (303), and the outer wall of the locking block (305) is engaged with the inner wall of the locking groove (202).

7. The easy-to-install photovoltaic solar panel according to claim 1, characterized in that: The adjustment component (205) includes: Mounting bracket (2051), the bottom of which is provided with a movable groove (2052), and the top of which is connected to the bottom of the photovoltaic panel (1); The support column (2056) is installed on the top of the telescopic column (209). The outer wall of the support column (2056) is symmetrically provided with limit holes (2055). The top of the support column (2056) is rotatably connected to the inner wall of the mounting bracket (2051).

8. The easy-to-install photovoltaic solar panel according to claim 7, characterized in that: The adjustment component (205) further includes: Support rod (2053), the top of which is rotatably connected to the bottom of mounting bracket (2051), the bottom of which is in contact with the outer wall of support column (2056), and the support rod (2053) is used to adjust and then fix the angle of mounting bracket (2051) from both sides; Sleeve rod (2054), the outer wall of which is engaged with the inner wall of support rod (2053), and the sleeve rod (2054) is inserted into the inner wall of limiting hole (2055).