An assembled photovoltaic flexible support
By introducing structures such as tie rods, pulleys, threaded rods, and motors into the flexible photovoltaic support system, the problems of rapid installation, height adjustment, and safety under adverse weather conditions of the assembled flexible photovoltaic support system have been solved, achieving efficient, stable, and safe photovoltaic panel installation.
Patent Information
- Application Number
- CN202211441175.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-17
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2042-11-17
Smart Images

Figure CN115833720B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of photovoltaic flexible support technology, and in particular to an assembled photovoltaic flexible support. Background Technology
[0002] Modular flexible photovoltaic brackets allow solar photovoltaic systems to be assembled with only a few parts, without the need for drilling or welding. They can also be quickly assembled on-site, which greatly improves installation efficiency and shortens the construction period. In order to meet the installation and use requirements of different places, the types of solar photovoltaic brackets are constantly increasing. When selecting, you can choose the appropriate bracket based on the characteristics of the local environment.
[0003] The existing modular photovoltaic flexible support system has the following technical solutions and corresponding technical defects:
[0004] 1. Patent document CN105583773B discloses a flexible photovoltaic support system, "comprising at least one support unit, the support unit comprising two inclined columns respectively located on both sides for installation on the ground to form support, two vertical cables connected to the upper parts of the inclined columns and for installation on the ground at the lower parts, and a photovoltaic module installation mechanism connected between the upper parts of the two inclined columns, the distance between the upper ends of the two inclined columns being greater than the distance between the lower ends of the two inclined columns. By using inclined columns, the tension of the photovoltaic module installation mechanism is transmitted to the ground through the vertical cables, saving the main beams on both sides, reducing the floor space, and allowing more photovoltaic modules to be installed per unit area. It is suitable for complex terrain and large-span areas such as fishponds and mountains." However, this modular flexible photovoltaic support system requires workers to assemble it using tools, consuming a large amount of manual labor.
[0005] 2. Patent document CN109921727B discloses a photovoltaic module installation system in a flexible photovoltaic bracket, "including: an upper cable, a lower cable, a first mounting base, a second mounting base, and a rigid connecting rod; the first mounting base has a first mounting groove on its right side, and the upper cable is embedded in the first mounting groove; the second mounting base has a second mounting groove on its left side, and the lower cable is embedded in the second mounting groove; the top surfaces of the first and second mounting bases are both fixed to the back of the photovoltaic module with structural adhesive, and the vertical distance between the first and second mounting grooves is equal to the vertical distance between the upper and lower cables; the upper and lower cables are connected by the rigid connecting rod; the length of the rigid connecting rod is not greater than the vertical distance between the upper and lower cables. The technical solution provided by this invention can effectively avoid the combined tension caused by the tension deformation of the cable body after the photovoltaic module is installed, and can greatly improve the installation efficiency." However, the assembled flexible photovoltaic bracket cannot adjust its height in different terrains and has low adaptability.
[0006] 3. Patent document CN111600539A discloses a photovoltaic power generation device with a flexible support, "including a base plate, a bearing and a first drive motor, the first drive motor has an active gear ring, the bearing has a straight rod, the straight rod has a driven gear ring, the driven gear ring and the active gear ring are connected, the straight rod has a rotating plate, the rotating plate has a connecting plate, the straight rod has a stabilizing structure and an angle adjustment structure, the connecting plate has a support frame, the support frame has a groove, the support frame is connected to the photovoltaic power generation panel through the groove, the photovoltaic power generation panel has a plug, the groove has a slot, the plug and the slot are inserted, the support frame has a second spring, the second spring has a plug rod, the plug rod is inserted into the plug, the support frame has an outer cover, the outer cover has a second drive motor, the second drive motor has a threaded rod, the threaded rod has an L-shaped sliding plate, the top surface and bottom surface of the outer cover are respectively fixedly installed with a photosensitive pressure sensor and a controller. This invention facilitates the photovoltaic power generation panel to be at the best receiving angle with the sun, which helps the photovoltaic power generation panel to maximize power generation." However, this assembled photovoltaic flexible support cannot stabilize the fixed cable by adjustment when installing the fixed cable.
[0007] 4. Patent document CN106026862B discloses a flexible solar photovoltaic support system, "including prefabricated column piles (1), warp cables (2), weft cables (3), photovoltaic modules (4), and photovoltaic module mounting frames (5) arranged in a matrix. Each group of warp cables (2) is fixed to the prefabricated column piles (1) on one warp line, and each group of weft cables (3) is fixed to the warp cables (2) on one weft line, forming a mesh cable structure. Each group of warp cables (2) includes upper, middle, and lower warp cables (21, 22, 23) from top to bottom. The upper, middle, and lower warp cables (21, 22, 23) in the same group are parallel to each other." The photovoltaic modules are arranged in rows on the same vertical plane. Each group of weft cables (3) includes upper, middle, and lower weft cables (31, 32, 33) from top to bottom. The upper, middle, and lower weft cables (31, 32, 33) in the same group are parallel to each other and located on the same inclined plane. The photovoltaic module mounting frame (5) is fixedly connected to the upper, middle, and lower weft cables (31, 32, 33) in the same group. The photovoltaic modules (4) are fixedly connected to the photovoltaic module mounting frame (5) to form a photovoltaic module array. It can be widely used in the field of solar photovoltaic. However, the photovoltaic flexible support and photovoltaic panels are easily damaged in severe weather and the safety is not high. Summary of the Invention
[0008] The present invention provides an assembled flexible photovoltaic support structure, which aims to solve at least one of the technical problems of existing flexible photovoltaic supports mentioned in the background art.
[0009] To achieve the above objectives, the present invention provides the following technical solution: an assembled photovoltaic flexible support, comprising a base, a cavity inside the base, a hollow first support mounted on the top of the base, a first sleeve through which a pull rod is installed, a first support rod mounted on the outer wall of the pull rod, the first support rod being connected to a pulley, the pulley being disposed in a slide rail, the slide rail being installed on the inner wall of the first support; a second support rod is mounted on the outer wall of the pull rod, a first spring is mounted on the second support rod, the first spring being connected to the inner wall of the top of the first support; fifth slots are provided opposite to each other on the outer walls of adjacent first supports, and a support rod is installed between adjacent first supports through the two fifth slots, the support rod having a first opening, the lower end of the pull rod extending into the first opening.
[0010] In the aforementioned assembled photovoltaic flexible support, the top of the base is provided with a second opening; a threaded sleeve is installed through the bottom of the first support, a threaded rod is installed through the middle of the threaded sleeve, and the lower end of the threaded rod extends through the second opening to the internal connection of the base to the output end of the motor.
[0011] In the aforementioned assembled photovoltaic flexible support, a guide rod is installed on the top of the base, a sliding sleeve is installed on the outer wall of the guide rod, a third support rod is installed on the outer wall of the sliding sleeve, and the third support rod is connected to the outer wall of the first support; a pressure sensor is installed on the outer wall of the sliding sleeve.
[0012] In the aforementioned assembled photovoltaic flexible support structure, a support block is installed on the outer wall of the support rod, a support box is installed on the outer wall of the support block, a fourth sleeve is installed through the outer wall of the support box, a fifth support rod is installed through the inner wall of the fourth sleeve, an adjusting block is installed at one end of the fifth support rod, the adjusting block is connected to a sixth support rod, and one end of the sixth support rod extends into the interior of the support box; a third opening is provided on the outer wall of the support box; a fifth sleeve is installed on the outer wall of the sixth support rod, a second spring is installed on the inner wall of the fifth sleeve, a locking rod is installed at one end of the second spring, and one end of the locking rod is located in the third opening.
[0013] In the aforementioned assembled photovoltaic flexible support structure, an adjustment block is provided on each of the left and right sides of the support block.
[0014] In the aforementioned assembled photovoltaic flexible support, a second sleeve is installed through the top of the base, a fourth support rod is installed through the inner wall of the second sleeve, a counterweight is installed at one end of the fourth support rod, a buffer pad is installed at the bottom of the counterweight, the bottom of the buffer pad is connected to the inner wall of the base, a third spring is installed at the top of the counterweight, the third spring is connected to the inner wall of the base, and a pull rope is installed at the top of the counterweight, with one end of the pull rope connected to the installation cable.
[0015] In the aforementioned assembled photovoltaic flexible support structure, a battery is installed inside the base; a protective pad is installed on the outer wall of the base.
[0016] Compared with the prior art, the beneficial effects of the present invention are:
[0017] 1. This invention, by installing a pull rod, a pulley, and a second support rod, achieves the effect of rapid installation of assembled photovoltaic flexible brackets, saving manual labor. The fifth slot facilitates the installation of the support rod, and the slide provides a moving space for the pulley. Pulling the pull rod moves the first support rod, the first support rod moves the pulley, the pulley moves the first support rod, the second support rod moves the first spring, and the first spring moves the pull rod out of the fifth slot and the first opening, thus enabling rapid installation of the support rod and saving manual labor. This invention achieves the function of rapid installation of assembled photovoltaic flexible brackets, saving manual labor.
[0018] 2. This invention, by installing a threaded rod, a sliding sleeve, and a third support rod, achieves the effect of convenient height adjustment of the first bracket, improving its applicability. The rotation of the motor drives the threaded rod to move, the movement of the threaded rod drives the threaded sleeve to move, the movement of the threaded sleeve drives the first bracket to move, the movement of the first bracket drives the third support rod to move, the movement of the third support rod drives the sliding sleeve to move, the movement of the sliding sleeve drives the pressure sensor to move, and when the pressure sensor moves to the limit position, the motor stops, thus making the height of the first bracket convenient to adjust and improving its applicability.
[0019] 3. This invention, by installing a sixth support rod, a third opening, and a second spring, achieves the effect of improving the stability of the installation cable and facilitating the installation of photovoltaic panels. Pressing the lever moves the second spring, which in turn moves the lever out of the third opening. Pulling the adjusting block moves the sixth support rod, which in turn moves the adjusting block and the fifth support rod, which in turn stabilizes the adjusting block and improves the stability of the installation cable, thus facilitating the installation of photovoltaic panels.
[0020] 4. This invention, by installing a counterweight, a buffer pad, and a pull rope, achieves the effect of buffering and preventing breakage of the flexible photovoltaic support under severe weather conditions, thus improving safety. The pull rope is connected to the installation cable. In severe weather, strong winds cause the photovoltaic panel to move, which in turn moves the installation cable, which in turn moves the pull rope. The pull rope moves the counterweight, which in turn moves the buffer pad. The buffer pad then causes the counterweight to move the third spring, which in turn causes the counterweight to move the fourth support rod. The fourth support rod then stabilizes the counterweight, thus buffering and preventing breakage of the flexible photovoltaic support under severe weather conditions, thereby improving safety. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of the structure of the present invention;
[0023] Figure 2 This is a schematic diagram of the cross-sectional structure of the column box of the present invention;
[0024] Figure 3 for Figure 2 Enlarged schematic diagram of the structure in range B;
[0025] Figure 4 for Figure 2 Enlarged structural diagram of area A in the middle;
[0026] Figure 5 This is a schematic diagram of the support box structure of the present invention;
[0027] Figure 6 for Figure 5 Enlarged schematic diagram of the structure in the C-range;
[0028] Figure 7 This is a schematic diagram of the connection structure of the counterweight block of the present invention.
[0029] In the diagram: 1-Base; 2-First bracket; 3-Fifth bayonet; 4-Support rod; 5-First opening; 6-First sleeve; 7-Pull rod; 8-First support rod; 9-Slide rail; 10-Pulley; 11-Second support rod; 12-First spring; 13-Second opening; 14-Threaded sleeve; 15-Threaded rod; 16-Guide rod; 17-Sliding sleeve; 18-Third support rod; 19-Pressure sensor; 20-Support block; 21-Support box; 22-Fourth sleeve; 23-Adjusting block; 24-Sixth support rod; 25-Fifth support rod; 26-Fifth sleeve; 27-Second spring; 28-Clamping rod; 29-Third opening; 30-Second sleeve; 31-Fourth support rod; 32-Buffer pad; 33-Counterweight block; 34-Third spring; 36-Pull rope; 37-Protective pad; 38-Battery; 39-Motor. Detailed Implementation
[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. In the description of the present invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0031] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0032] Example. An assembled photovoltaic flexible support, such as... Figure 1-7As shown, the base 1 has a cavity inside, and a hollow first bracket 2 is installed on the top of the base 1. A first sleeve 6 is installed through the top of the first bracket 2, and a pull rod 7 is installed through the first sleeve 6. A first support rod 8 is installed on the outer wall of the pull rod 7. The first support rod 8 is connected to a pulley 10, which is located in a slide rail 9. The slide rail 9 is installed on the inner wall of the first bracket 2. A second support rod 11 is installed on the outer wall of the pull rod 7, and a first spring 12 is installed on the second support rod 11. The first spring 12 is connected to the inner wall of the top of the first bracket 2. Fifth slots 3 are opened opposite each other on the outer walls of adjacent first brackets 2. A support rod 4 is installed between adjacent first brackets 2 through two fifth slots 3. A first opening 5 is provided on the support rod 4, and the lower end of the pull rod 7 extends into the first opening 5. The base 1 provides support for the assembled photovoltaic flexible bracket; the first sleeve 6 provides support for the tie rod 7; the threaded sleeve 14 provides support for the threaded rod 15; the support block 20 provides support for the support box 21; and the second sleeve 30 provides support for the fourth support rod 31. The tie rod 7 is cylindrical. The fifth bayonet 3 facilitates the installation of the support rod 4. The slide rail 9 provides a moving space for the pulley 10. Pulling the tie rod 7 moves the first support rod 8, which in turn moves the pulley 10. The pulley 10 then moves the first support rod 8, which in turn moves the second support rod 11. The second support rod 11 then moves the first spring 12, which in turn moves the tie rod 7 out of the fifth bayonet 3 and the first opening 5, allowing for quick installation of the support rod 4 and saving manual labor. This achieves the function of quick installation and labor saving for the assembled photovoltaic flexible bracket.
[0033] The installation cable is connected to the adjustment block 23, and the photovoltaic panel is connected to the installation cable. The photovoltaic bracket is used in accordance with the above usage method.
[0034] The base 1 has a second opening 13 at its top; a threaded sleeve 14 is installed through the bottom of the first bracket 2, and a threaded rod 15 is installed through the middle of the threaded sleeve 14. The lower end of the threaded rod 15 extends through the second opening 13 to the inside of the base 1 and connects to the output end of the motor 39. A guide rod 16 is installed at the top of the base 1, a sliding sleeve 17 is installed on the outer wall of the guide rod 16, and a third support rod 18 is installed on the outer wall of the sliding sleeve 17. The third support rod 18 is connected to the outer wall of the first bracket 2; a pressure sensor 19 is installed on the outer wall of the sliding sleeve 17. The rotation of the motor 39 drives the threaded rod 15 to move, the movement of the threaded rod 15 drives the threaded sleeve 14 to move, the movement of the threaded sleeve 14 drives the first bracket 2 to move, the movement of the first bracket 2 drives the third support rod 18 to move, the movement of the third support rod 18 drives the sliding sleeve 17 to move, and the movement of the sliding sleeve 17 drives the pressure sensor 19 to move. When the pressure sensor 19 moves to its limit position, the motor 39 stops, making it easy to adjust the height of the first bracket 2 to improve its usability. This achieves the function of making the first bracket 2 easy to adjust in height to improve its usability.
[0035] A support block 20 is installed on the outer wall of the support rod 4. A support box 21 is installed on the outer wall of the support block 20. A fourth sleeve 22 is installed through the outer wall of the support box 21. A fifth support rod 25 is installed through the inner wall of the fourth sleeve 22. An adjusting block 23 is installed at one end of the fifth support rod 25. The adjusting block 23 is connected to a sixth support rod 24. One end of the sixth support rod 24 extends into the interior of the support box 21. A third opening 29 is provided on the outer wall of the support box 21. A fifth sleeve 26 is installed on the outer wall of the sixth support rod 24. A second spring 27 is installed on the inner wall of the fifth sleeve 26. A locking rod 28 is installed at one end of the second spring 27. One end of the locking rod 28 is located in the third opening 29. Pressing the lever 28 moves the second spring 27, causing the lever 28 to move out of the third opening 29. Pulling the adjusting block 23 moves the sixth support rod 24, which in turn moves the adjusting block 23 and the fifth support rod 25. The fifth support rod 25 then moves the adjusting block 23 to stabilize and adjust, improving the stability of the installation cable and facilitating the installation of the photovoltaic panel. This achieves the function of improving the stability of the installation cable and facilitating the installation of the photovoltaic panel.
[0036] An adjustment block 23 is provided on each of the left and right sides of the support block 20. The adjustment blocks 23 can be used to adjust the installation cable, and providing two adjustment blocks 23 will result in a better adjustment effect.
[0037] A second sleeve 30 is installed through the top of the base 1. A fourth support rod 31 is installed through the inner wall of the second sleeve 30. A counterweight 33 is installed at one end of the fourth support rod 31. A buffer pad 32 is installed at the bottom of the counterweight 33. The bottom of the buffer pad 32 is connected to the inner wall of the base 1. A third spring 34 is installed at the top of the counterweight 33. The third spring 34 is connected to the inner wall of the base 1. A pull rope 36 is installed at the top of the counterweight 33, and one end of the pull rope 36 is connected to the installation cable. Among them, when the installation cable is connected to the pull rope 36, the photovoltaic panel moves due to strong winds in severe weather. The movement of the photovoltaic panel causes the installation cable to move, which in turn causes the pull rope 36 to move. The movement of the pull rope 36 causes the counterweight 33 to move, which in turn causes the buffer pad 32 to move. The movement of the buffer pad 32 causes the counterweight 33 to move the third spring 34, which in turn causes the counterweight 33 to move the fourth support rod 31. The movement of the fourth support rod 31 stabilizes the movement of the counterweight 33. The movement of the counterweight 33 buffers the photovoltaic flexible support under severe weather conditions, preventing breakage and improving safety. This achieves the function of buffering the photovoltaic flexible support under severe weather conditions, preventing breakage, and improving safety.
[0038] A storage battery 38 is installed inside the base 1; a protective pad 37 is installed on the outer wall of the base 1. The storage battery 38 provides energy storage, and the protective pad 37 provides protection for the base 1.
[0039] This assembled flexible photovoltaic support system includes the following working steps:
[0040] The function of S1 and the fifth bayonet 3 is to facilitate the installation of the support rod 4. The function of the slide rail 9 is to provide a moving place for the pulley 10. Pulling the pull rod 7 drives the first support rod 8 to move. The movement of the first support rod 8 drives the pulley 10 to move. The movement of the pulley 10 causes the first support rod 8 to drive the second support rod 11 to move. The movement of the second support rod 11 drives the first spring 12 to move. The movement of the first spring 12 causes the pull rod 7 to move out of the fifth bayonet 3 and the first opening 5, so that the support rod 4 can be installed quickly, saving manual labor. This realizes the function of quick installation of the assembled photovoltaic flexible bracket, saving manual labor.
[0041] S2. The rotation of motor 39 drives the threaded rod 15 to move, the movement of threaded rod 15 drives the threaded sleeve 14 to move, the movement of threaded sleeve 14 drives the first bracket 2 to move, the movement of first bracket 2 drives the third support rod 18 to move, the movement of third support rod 18 drives the sliding sleeve 17 to move, the movement of sliding sleeve 17 drives the pressure sensor 19 to move, and when the pressure sensor 19 moves to the limit position, the motor 39 stops, making it easier to adjust the height of the first bracket 2 to improve its applicability, thus realizing the function of making it easier to adjust the height of the first bracket 2 to improve its applicability.
[0042] S3. Pressing the lever 28 moves the second spring 27, causing the lever 28 to move out of the third opening 29. Pulling the adjusting block 23 moves the sixth support rod 24, causing the adjusting block 23 to move the fifth support rod 25. The fifth support rod 25 moves, stabilizing the adjusting block 23 and improving the stability of the installation cable to facilitate the installation of the photovoltaic panel. This achieves the function of improving the stability of the installation cable to facilitate the installation of the photovoltaic panel.
[0043] S4. When the pull rope 36 is connected to the installation cable, strong winds will cause the photovoltaic panel to move. The movement of the photovoltaic panel will cause the installation cable to move, which in turn will cause the pull rope 36 to move. The movement of the pull rope 36 will cause the counterweight 33 to move, which in turn will cause the buffer pad 32 to move. The movement of the buffer pad 32 will cause the counterweight 33 to move, which will in turn cause the third spring 34 to move. The movement of the third spring 34 will cause the counterweight 33 to move, which will in turn cause the fourth support rod 31 to move. The movement of the fourth support rod 31 will stabilize the movement of the counterweight 33. The movement of the counterweight 33 will buffer the photovoltaic flexible support under severe weather conditions, prevent breakage, and improve safety. This achieves the function of buffering the photovoltaic flexible support under severe weather conditions, preventing breakage, and improving safety.
[0044] S1 also includes the following steps;
[0045] S11, the support rod 4 enters the inner wall of the first bracket 2 through the fifth bayonet 3. At this time, the pull rod 7 is released and the first spring 12 pulls the pull rod 7 into the first opening 5 to fix it.
[0046] S2 also includes the following steps;
[0047] S21, Pressure sensor 19 is used to stop motor 39 when pressure is reached to a certain height and is squeezed, thus improving the safety of use;
[0048] S3 also includes the following steps;
[0049] S31. When the adjusting block 23 moves to the appropriate position, the second spring 27 drives the locking rod 28 to move, and the locking rod 28 moves to make it engage with the third opening 29 to fix it.
[0050] S4 also includes the following steps;
[0051] S41 and the buffer pad 32 are made of deformable material to provide cushioning for the counterweight 33 and prevent excessive impact.
[0052] The working principle of this assembled photovoltaic flexible support is as follows: The base 1 provides support for the assembled photovoltaic flexible support; the first sleeve 6 provides support for the tie rod 7; the threaded sleeve 14 provides support for the threaded rod 15; the support block 20 provides support for the support box 21; the second sleeve 30 provides support for the fourth support rod 31; the fifth bayonet 3 facilitates the installation of the support rod 4; the slide rail 9 provides a moving surface for the pulley 10; pulling the tie rod 7 moves the first support rod 8; the movement of the first support rod 8 moves the pulley 10; and the movement of the pulley 10 causes the first support rod 8 to move the second support rod 11. The movement of the second support rod 11 causes the first spring 12 to move, which in turn moves the pull rod 7 out of the fifth bayonet 3 and the first opening 5, allowing the support rod 4 to be installed quickly, saving manual labor. This achieves the function of quick installation and labor saving for the assembled photovoltaic flexible bracket. The rotation of the motor 39 causes the threaded rod 15 to move, which in turn moves the threaded sleeve 14, which in turn moves the first bracket 2, which in turn moves the third support rod 18, which in turn moves the sliding sleeve 17, which in turn moves the pressure sensor 19. When the pressure sensor 19 moves to its limit position, it causes... Motor 39 stops, allowing the first bracket 2 to be easily adjusted in height to improve its applicability. This achieves the function of easily adjusting the height of the first bracket 2 to improve its applicability. Pressing the latch 28 moves the second spring 27, causing the latch 28 to move out of the third opening 29. Pulling the adjusting block 23 moves the sixth support rod 24, which in turn moves the adjusting block 23, causing the fifth support rod 25 to move. The fifth support rod 25 then stabilizes the adjusting block 23, improving the stability of the installation cable and facilitating the installation of the photovoltaic panel. This achieves the function of improving the stability of the installation cable and facilitating the installation of the photovoltaic panel. When the pull rope 36 is connected to the installation cable and encounters an obstacle... In severe weather, strong winds cause the photovoltaic panels to move, which in turn moves the installation cables, which in turn moves the pull rope 36, which in turn moves the counterweight 33, which in turn moves the buffer pad 32, which in turn moves the counterweight 33, which in turn moves the third spring 34, which in turn moves the fourth support rod 31, which in turn moves the counterweight 33, thus stabilizing its movement. The movement of the counterweight 33 buffers the photovoltaic flexible support under severe weather conditions, preventing breakage and improving safety. This achieves the function of buffering the photovoltaic flexible support under severe weather conditions to prevent breakage and improve safety.
[0053] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An assembled photovoltaic flexible support comprising a base (1), characterized in that: The base (1) is internally provided with a cavity, the top of the base (1) is provided with a hollow first support (2), the top of the first support (2) is provided with a first sleeve (6) penetratingly installed, the first sleeve (6) is provided with a pull rod (7) penetratingly installed, the outer wall of the pull rod (7) is provided with a first supporting rod (8), the first supporting rod (8) is connected with a pulley (10), the pulley (10) is arranged in a slide (9), and the slide (9) is arranged on the inner wall of the first support (2); the outer wall of the pull rod (7) is provided with a second supporting rod (11), the second supporting rod (11) is provided with a first spring (12), and the first spring (12) is connected with the top inner wall of the first support (2); the outer wall of the adjacent first support (2) is provided with a fifth clamping hole (3) oppositely arranged, and the support rod (4) is arranged between the adjacent first supports (2) through the two fifth clamping holes (3), the support rod (4) is provided with a first opening (5), and the lower end of the pull rod (7) extends into the first opening (5). The outer wall of the support rod (4) is provided with a support block (20), the outer wall of the support block (20) is provided with a support box (21), the outer wall of the support box (21) is provided with a fourth sleeve (22) penetratingly installed, the inner wall of the fourth sleeve (22) is provided with a fifth supporting rod (25) penetratingly installed, one end of the fifth supporting rod (25) is provided with an adjusting block (23), the adjusting block (23) is connected with a sixth supporting rod (24), and one end of the sixth supporting rod (24) extends into the inside of the support box (21); the outer wall of the support box (21) is provided with a third opening (29); the outer wall of the sixth supporting rod (24) is provided with a fifth sleeve (26), the inner wall of the fifth sleeve (26) is provided with a second spring (27), one end of the second spring (27) is provided with a clamping rod (28), and one end of the clamping rod (28) is arranged in the third opening (29).
2. The assembled photovoltaic flexible support according to claim 1, characterized in that: The top of the base (1) is provided with a second opening (13); the inner bottom of the first support (2) is provided with a threaded sleeve (14) penetratingly installed, the middle of the threaded sleeve (14) is provided with a threaded rod (15) penetratingly installed, the lower end of the threaded rod (15) extends to the inside of the base (1) through the second opening (13) and is connected with the output end of the motor (39).
3. The assembled photovoltaic flexible support according to claim 2, characterized in that: The top of the base (1) is provided with a guide rod (16), the outer wall of the guide rod (16) is provided with a sliding sleeve (17), the outer wall of the sliding sleeve (17) is provided with a third supporting rod (18), and the third supporting rod (18) is connected with the outer wall of the first support (2); the outer wall of the sliding sleeve (17) is provided with a pressure sensor (19).
4. The assembled photovoltaic flexible support according to claim 1, characterized in that: The left and right sides of the support block (20) are each provided with an adjusting block (23).
5. The assembled photovoltaic flexible support according to claim 1, characterized in that: The top of the base (1) is provided with a second sleeve (30), the inner wall of the second sleeve (30) is provided with a fourth supporting rod (31), one end of the fourth supporting rod (31) is provided with a counterweight (33), the bottom of the counterweight (33) is provided with a buffer pad (32), the bottom of the buffer pad (32) is connected with the inner wall of the base (1), the top of the counterweight (33) is provided with a third spring (34), the third spring (34) is connected with the inner wall of the base (1), the top of the counterweight (33) is provided with a pull rope (36), and one end of the pull rope (36) is connected with a cable.
6. The assembled photovoltaic flexible support according to claim 1, characterized in that: The inside of the base (1) is provided with a battery (38); the outer wall of the base (1) is provided with a protective pad (37).
Citation Information
Patent Citations
Flexible photovoltaic support
CN105583773B
Flexible support system for solar photovoltaic
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