Photovoltaic module installation equipment operation platform
By designing a photovoltaic module installation equipment platform and utilizing a combination of frames and guide groups, the problem of difficult splicing during photovoltaic module installation was solved, achieving efficient and precise multi-platform splicing and reducing manual adjustment and laying time.
Patent Information
- Application Number
- CN202520045284.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-09
AI Technical Summary
The existing photovoltaic module installation process lacks an easy-to-assemble work platform, which makes it impossible to guarantee installation accuracy and affects production efficiency.
A photovoltaic module installation equipment platform was designed, including a frame, a support platform, a first guide group, and a second guide group. The frame is composed of a first to a fourth bracket. The support platform is used to place photovoltaic modules. The guide group is used to achieve precise splicing of multiple work platforms. The cooperation between the first guide group and the second guide group ensures the levelness and stability of the platform.
It enables rapid splicing of multiple work platforms during photovoltaic module installation, reducing manual adjustment costs and laying time, and improving installation accuracy and efficiency.
Smart Images

Figure CN223798156U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic modules, specifically to a photovoltaic module installation equipment operation platform. Background Technology
[0002] Automated installation of photovoltaic (PV) modules requires a large number of personnel and equipment. To reduce labor costs and improve production efficiency, automated production lines are widely used. Specific applications of automated production lines include equipment with various functions. For example, in the automated layout process of PV module assembly lines, robots clamp PV panels onto the assembly line equipment; torque tube feeders automatically deliver torque tubes to the installation positions; and purlin assembly equipment, among others. Due to site constraints, existing PV modules are often stacked on the existing building ground or raw ground. However, some precision components require a certain level of horizontality during assembly. These environmental limitations affect the installation efficiency of PV modules, compromising installation accuracy and impacting subsequent commissioning processes.
[0003] To solve this problem, temporary setups are usually made on-site using workbenches. However, due to the small size of the workbenches, multiple workbenches are usually spliced together to form a larger platform. The existing workbenches are not dedicated to photovoltaic modules and do not have splicing capabilities. They are only secured on-site using bolts and other connectors, which results in errors in the levelness between adjacent workbenches. Utility Model Content
[0004] In view of the above problems, this utility model provides a photovoltaic module installation equipment platform, which solves the problem that the existing photovoltaic module installation process lacks an easy-to-assemble work platform.
[0005] To achieve the above objectives, this application provides a photovoltaic module installation equipment platform, including a frame, a support platform, a first guide group, and a second guide group. The frame includes a first bracket, a second bracket, a third bracket, and a fourth bracket. The first bracket and the second bracket are parallel and opposite to each other. The third bracket and the fourth bracket are parallel and opposite to each other. The first bracket, the third bracket, the second bracket, and the fourth bracket are sequentially arranged to form the frame. The support platform is located above the frame and is used to place photovoltaic modules. The first guide group is located on the third bracket and includes two oppositely arranged first protrusions that extend outward from the third bracket along a first direction. The second guide group is located on the fourth bracket and includes a first guide groove, a first side guide plate, and a second side guide plate. The first side guide plate and the second side guide plate are oppositely arranged on both sides of the first guide groove. The first guide groove has a first opening and a second opening. The first opening faces the first direction, and the second opening faces the second direction. The first opening and the second opening are adjacent to each other. The first direction and the second direction are perpendicular. The first protrusions can enter the first guide groove through the first opening via the first side guide plate and the second side guide plate.
[0006] In some embodiments, the first guide group further includes two first fixing plates, two first guide posts, two second fixing plates, and a second guide post. The two first fixing plates are disposed opposite each other on the third bracket. Each first guide post is disposed on a first fixing plate, and the first guide post protrudes outward from the third bracket along a first direction, with a first protrusion being the outwardly extending end of the first guide post. Each second fixing plate is disposed on a first fixing plate, and the two second fixing plates are disposed opposite each other. Each second fixing plate has a first mounting portion, which protrudes upward and is higher than the first guide post. The second guide post is disposed on the first mounting portion, and the second guide post extends along a third direction, entering the first guide groove through a second opening.
[0007] In some embodiments, the support platform has a first extension protruding from the fourth bracket. The second guide group further includes a first guide plate and a second guide plate. The first guide plate is vertically disposed on the lower surface of the first extension. The second guide plate is vertically disposed on the lower surface of the first extension, and the first guide plate and the second guide plate are disposed opposite to each other. The second guide plate is disposed on the side away from the fourth bracket, and the first guide plate is disposed on the side close to the fourth bracket. The first guide plate and the second guide plate are disposed opposite to each other to form a first guide groove. The second guide plate has a first opening.
[0008] In some embodiments, the second guide group further includes a first guide bar and a second guide bar. The first guide bar is disposed in a first guide groove and is located near a first side guide plate. The first guide bar has a first guide surface that extends from the inner side of the second guide plate toward the inner side of the first guide plate. The second guide bar is disposed in a first guide groove and is located near a second side guide plate. The second guide bar has a second guide surface that extends from the inner side of the second guide plate toward the inner side of the first guide plate. The first guide surface and the second guide surface are used to guide the second guide post.
[0009] In some embodiments, the first guide bar has a first side and a second side, the first side and the second side are perpendicular to each other, the first side is connected to a first extension, the second side is connected to the inner side of a second guide plate, and the first guide surface is inclined to the second guide plate; the second guide bar has a third side and a fourth side, the third side and the fourth side are perpendicular to each other, the third side is connected to the first extension, the fourth side is connected to the inner side of a second guide plate, and the second guide surface is inclined to the second guide plate.
[0010] In some embodiments, the tilt angle between the first guide surface and the second guide plate is 75°; and / or, the tilt angle between the second guide surface and the second guide plate is 75°.
[0011] In some embodiments, the system further includes a first support group and a second support group. The first support group includes two opposing first support legs, one of which is bolted to a first bracket and the other of which is bolted to a second bracket. The second support group includes two opposing second support legs, one of which is bolted to a first bracket and the other of which is bolted to a second bracket. The first support group and the second support group are spaced apart.
[0012] In some embodiments, a third support group is further included, which includes two opposing third support feet, one of which is bolted to the first bracket and the other of which is bolted to the second bracket; the first support group is located near the first guide group, the third support group is located near the second guide group, and the second support group is located between the first support group and the third support group.
[0013] In some embodiments, the system further includes a first fork hole and a second fork hole, wherein the first fork hole passes through the first bracket and the second bracket sequentially along a third direction; the second fork hole is spaced apart from the first fork hole and passes through the first bracket and the second bracket sequentially along a third direction; the first fork hole and the second fork hole are configured for use by the fork arm of the forklift.
[0014] In some embodiments, the length of the support platform is 8000mm, the width of the support platform is 2000mm, and the height of the support platform is 220-400mm.
[0015] Unlike existing technologies, the photovoltaic module installation equipment platform in the above technical solution includes a frame, a support platform, a first guide group, and a second guide group. The frame includes a first bracket, a second bracket, a third bracket, and a fourth bracket. The support platform is located above the frame and is used to place the photovoltaic modules. The first guide group is located on the third bracket, and the second guide group is located on the fourth bracket. On a single work platform, the installation of photovoltaic modules can be performed directly. When multiple work platforms need to be assembled, the first guide group of one work platform can be spliced with the second guide group of another work platform, so that the two work platforms maintain horizontal accuracy and are easy to splice, reducing the splicing process and lowering the laying time and manual adjustment costs of the work platforms.
[0016] The above description of the utility model is merely an overview of the technical solution of this utility model. In order to enable those skilled in the art to better understand the technical solution of this utility model and to implement it based on the description and drawings, and to make the above-mentioned objectives and other objectives, features and advantages of this utility model easier to understand, the following description is provided in conjunction with the specific embodiments and drawings of this utility model. Attached Figure Description
[0017] The accompanying drawings are only used to illustrate the principles, implementation methods, applications, features, and effects of the present invention and other related contents, and should not be considered as limitations on the present invention.
[0018] In the accompanying drawings of the instruction manual:
[0019] Figure 1 This is a first schematic diagram of the operating platform described in the specific implementation method;
[0020] Figure 2 This is a second schematic diagram of the operating platform described in the specific implementation method;
[0021] Figure 3 This is a schematic diagram of the first guide group in a specific implementation method;
[0022] Figure 4 This is a schematic diagram of the second guide group in a specific implementation method;
[0023] Figure 5 This is a schematic diagram illustrating the splicing of the first guide group and the second guide group in a specific implementation.
[0024] The reference numerals used in the above figures are explained as follows:
[0025] 1. Framework;
[0026] 11. First support;
[0027] 12. Second support;
[0028] 13. Third support;
[0029] 14. Fourth support;
[0030] 2. Supporting platform;
[0031] 21. First extension section;
[0032] 3. First guiding group;
[0033] 31. First protrusion;
[0034] 32. First fixing plate;
[0035] 33. First guide post;
[0036] 34. Second fixing plate;
[0037] 341. First Installation Section;
[0038] 35. Second guide post;
[0039] 4. Second guiding group;
[0040] 41. First side guide plate;
[0041] 42. Second side guide plate;
[0042] 43. First guide groove;
[0043] 44. First guide plate;
[0044] 45. Second guide plate;
[0045] 46. First guide bar;
[0046] 47. Second guide bar;
[0047] 5. First support group;
[0048] 6. Second support group;
[0049] 7. Third support group;
[0050] 8. First fork hole;
[0051] 9. Second fork hole;
[0052] a. First direction;
[0053] b. Second direction;
[0054] c. Third-party orientation. Detailed Implementation
[0055] To illustrate in detail the possible application scenarios, technical principles, implementable specific solutions, and achievable objectives and effects of this utility model, the following description, in conjunction with the listed specific embodiments and accompanying drawings, provides a detailed explanation. The embodiments described herein are merely illustrative of the technical solutions of this utility model and are therefore intended to limit the scope of protection of this utility model.
[0056] In this document, the term "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this utility model. The term "embodiment" appearing in various places throughout the specification does not necessarily refer to the same embodiment, nor does it specifically limit its independence or connection with other embodiments. In principle, in this utility model, as long as there are no technical contradictions or conflicts, the technical features mentioned in each embodiment can be combined in any way to form corresponding implementable technical solutions.
[0057] Unless otherwise defined, the technical terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the use of related terms herein is merely for the purpose of describing particular embodiments and is not intended to limit the invention.
[0058] In the description of this utility model, the term "and / or" is used to describe the logical relationship between objects, indicating that three relationships can exist. For example, A and / or B means: A exists, B exists, and A and B exist simultaneously. Additionally, the character " / " generally indicates that the preceding and following objects have an "or" logical relationship.
[0059] In this invention, terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any actual quantity, hierarchy, or order between these entities or operations.
[0060] Without further limitations, the use of terms such as “comprising,” “including,” “having,” or other similar expressions in this invention is intended to cover non-exclusive inclusion, which does not exclude the presence of additional elements in a process, method, or product that includes the stated elements, such that a process, method, or product that includes a series of elements may include not only those defined elements but also other elements not expressly listed, or elements inherent to such a process, method, or product.
[0061] Similar to the understanding in the Examination Guidelines, in this utility model, expressions such as "greater than," "less than," and "exceeding" are understood to exclude the stated number; expressions such as "above," "below," and "within" are understood to include the stated number. Furthermore, in the description of the embodiments of this utility model, "multiple" means two or more (including two), and similar expressions related to "multiple" are also understood in this way, such as "multiple groups" and "multiple times," unless otherwise explicitly specified.
[0062] In the description of the embodiments of this utility model, the space-related expressions used, such as "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "vertical," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," indicate the orientation or positional relationship based on the orientation or positional relationship shown in the specific embodiments or drawings. They are only for the convenience of describing the specific embodiments of this utility model or for the reader's understanding, and do not indicate or imply that the device or component referred to must have a specific position, a specific orientation, or be constructed or operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this utility model.
[0063] Unless otherwise expressly specified or limited, the terms "installation," "connection," "linking," "fixing," and "setting," as used in the description of the embodiments of this utility model, should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral setting; it can be a mechanical connection, an electrical connection, or a communication connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two components or the interaction between two components. For those skilled in the art to which this utility model pertains, the specific meaning of the above terms in the embodiments of this utility model can be understood according to the specific circumstances.
[0064] Please see Figures 1 to 5This embodiment provides a photovoltaic module installation equipment platform, including a frame 1, a support platform 2, a first guide group 3, and a second guide group 4. The frame 1 includes a first bracket 11, a second bracket 12, a third bracket 13, and a fourth bracket 14. The first bracket 11 and the second bracket 12 are parallel and opposite to each other. The third bracket 13 and the fourth bracket 14 are parallel and opposite to each other. The first bracket 11, the third bracket 13, the second bracket 12, and the fourth bracket 14 are sequentially arranged to form the frame 1. The support platform 2 is located above the frame 1 and is used to place photovoltaic modules. The first guide group 3 is located on the third bracket 13. 3 includes two opposing first protrusions 31, which protrude outward from the third bracket 13 along a first direction a; the second guide group 4 is disposed on the fourth bracket 14, and the second guide group 4 includes a first guide groove 43, a first side guide plate 41, and a second side guide plate 42. The first side guide plate 41 and the second side guide plate 42 are oppositely disposed on both sides of the first guide groove 43. The first guide groove 43 has a first opening and a second opening. The first opening is disposed towards the first direction a, and the second opening is disposed towards the second direction b. The first opening and the second opening are adjacent to each other. The first direction a and the second direction b are perpendicular. The first protrusion 31 can enter the first guide groove 43 through the first opening via the first side guide plate 41 and the second side guide plate 42.
[0065] In some embodiments, the length of the support platform 2 is 8000mm, the width of the support platform 2 is 2000mm, and the height of the support platform 2 is 220-400mm.
[0066] In this embodiment, there can be multiple work platforms. When there are multiple work platforms, they can be spliced end-to-end, which meets the installation requirement of splicing multiple photovoltaic panels into a row during the actual installation of photovoltaic modules. For ease of explanation, the splicing of two work platforms is taken as an example. Please refer to [link to documentation]. Figure 1 , Figure 2 and Figure 5 , Figure 1 , Figure 2 and Figure 5 The two work platforms are spliced together. The first guide group 3 of one work platform is spliced and connected with the second guide group 4 of the other work platform. They are then connected as a whole by bolts and support plates. This method can solve the problem that there is no dedicated installation work platform for existing photovoltaic modules. In addition, it is more in line with the needs of long and large photovoltaic modules. Multiple work platforms can be spliced in an unlimited number of ways to adapt to various application scenarios of photovoltaic modules.
[0067] Specifically, each work platform includes a frame 1, a support platform 2, a first guide group 3, and a second guide group 4. The frame 1 is a structure composed of a first support 11, a second support 12, a third support 13, and a fourth support 14, which supports the main body of the entire work platform. The first support 11, the second support 12, the third support 13, and the fourth support 14 can be made of I-beams, angle steel, square tubing, or rectangular tubing. Optionally, the first support 11 and the second support 12 can be made of I-beams, while the third support 13 and the fourth support 14 can be made of square tubing. The connection between the third support 13, the fourth support 14, and the first support 11 and the second support 12 can be a locking connection or welding.
[0068] Support platform 2 is the main load-bearing surface, used to place and support the photovoltaic modules to be installed. The material of support platform 2 can be steel plate. Optionally, support platform 2 can be formed by bonding multiple layers together. For example, support platform 2 can be formed by bonding steel plates and anti-scratching PVC pads on top of the steel plates.
[0069] Specifically, the first guide portion shown in this embodiment is disposed on the third bracket 13. The first guide portion has a first protrusion 31 protruding along the first direction a. There are two first protrusions 31, which are disposed opposite to each other on the third bracket 13. That is, one of the first protrusions 31 is disposed close to the first bracket 11, and the other first protrusion 31 is disposed close to the second bracket 12.
[0070] The second guide portion shown in this embodiment is disposed on the fourth bracket 14. The second guide portion has a first guide groove 43, a first side guide plate 41, and a second side guide plate 42. The first side guide plate 41 and the second side guide plate 42 are disposed opposite to each other, and the positional relationship between the first side guide plate 41 and the second side guide plate 42 corresponds to the positional relationship between the two first protrusions 31. That is, one of the first protrusions 31 on the other working platform will contact the first side guide plate 41 and reach the preset splicing position under the guidance of the first side guide plate 41. The other first protrusion 31 on the working platform will contact the second side guide plate 42 and reach the preset splicing position under the guidance of the second side guide plate 42, thereby realizing the end-to-end connection of the two working platforms.
[0071] Please refer to the specific details. Figure 5To understand: The first guide groove 43 has a first opening and a second opening, wherein the second opening is set towards the second direction b, and the first opening is set towards the first direction a, where the first direction a is horizontal and the second direction b is vertical. That is, the first guide groove 43 is opened downwards, the first side guide plate 41 and the second side guide plate 42 are arranged opposite each other, the first side guide plate 41 and the second side guide plate 42 are inclined in the vertical direction, and the first opening is arranged in the horizontal direction. The first opening is used to allow the first guide group 3 to enter the first guide groove 43. The first side guide plate 41 and the second side guide plate 42 can be used to guide the first protrusion 31 in the vertical direction. When it is necessary to splice the work platform, the first guide group 3 of one work platform can be placed on the ground, and the second guide group 4 of the other work platform can be moved from top to bottom so that the first guide groove 43 and the first protrusion 31 can be engaged. During this process, the first side guide plate 41 and the second side guide plate 42 are vertical guides to ensure the levelness of the work platform. The two first protrusions 31 simultaneously abut against the first side guide plate 41 and the second side guide plate 42, thereby ensuring the parallelism of the work platform in the first direction a, that is, the horizontal direction. This method can realize the rapid splicing of two work platforms and reduce manual adjustment steps.
[0072] In this embodiment, photovoltaic modules can be installed directly on a single work platform. When multiple work platforms need to be assembled, the first guide group 3 of one work platform can be spliced with the second guide group 4 of another work platform, so that the two work platforms maintain horizontal accuracy and are easy to splice, reducing the splicing process and lowering the laying time and manual adjustment cost of the work platforms.
[0073] Please see Figure 3 and Figure 5 In some embodiments, the first guide group 3 further includes two first fixing plates 32, two first guide posts 33, two second fixing plates 34, and a second guide post 35. The two first fixing plates 32 are disposed opposite to each other on the third bracket 13. Each first guide post 33 is disposed on one first fixing plate 32 and protrudes outward from the third bracket 13 along a first direction a. The first protrusion 31 is one end of the first guide post 33 extending outward. Each second fixing plate 34 is disposed on one first fixing plate 32 and is disposed opposite to each other. Each second fixing plate 34 has a first mounting portion 341 that protrudes upward and is higher than the first guide post 33. The second guide post 35 is disposed on the first mounting portion 341 and extends along a third direction c. The second guide post 35 enters the first guide groove 43 through the second opening.
[0074] In this embodiment, two first fixing plates 32 are disposed opposite to each other on the third bracket 13, serving as a base for supporting and fixing other parts. Each first fixing plate 32 is provided with a first guide post 33, which protrudes outward from the third bracket 13 along a first direction a. The first protrusion 31 is actually the outwardly extending end of the first guide post 33, used to cooperate with the first guide groove 43 of the second guide group 4 of another working platform.
[0075] Each first fixing plate 32 is also provided with a second fixing plate 34, and the two second fixing plates 34 are arranged opposite to each other. The second fixing plate 34 is arranged perpendicular to the first fixing plate 32. The second fixing plate 34 has a first mounting part 341, which protrudes upward and is higher than the first guide post 33. The first mounting part 341 provides a mounting position for the second guide post 35. The second guide post 35 is disposed on the first mounting part 341 and extends along a third direction c. The second guide post 35 can enter the first guide groove 43 from the second opening of another working platform, and together with the first protrusion 31, achieves precise guidance of the working platform during the splicing process.
[0076] Specifically, since the first mounting part 341 is higher than the first guide post 33, the second guide post 35 is higher than the first guide post 33. When the first protrusion 31 enters the first guide groove 43 from the first opening, the second guide post 35 will enter the first guide groove 43 from the second opening as the second guide group 4 of the other working platform moves from top to bottom, so as to achieve vertical engagement and prevent the two working platforms from becoming loose from the first direction a.
[0077] In this embodiment, two opposing first fixing plates 32 are provided on the third support 13. Each first fixing plate 32 is equipped with a first guide post 33, which protrudes outward from the third support 13 along a first direction a, forming a key component for guidance. The first protrusion 31 is actually the extension end of the first guide post 33, which can cooperate with the second guide group 4 of the other working platform to achieve precise positioning. A pair of opposing second fixing plates 34 are also provided on each first fixing plate 32. The second fixing plate 34 has an upwardly protruding first mounting part 341, which is higher than the first guide post 33. The second guide post 35 is installed on this first mounting part 341 and extends along a third direction c, so that the second guide post 35 can enter the first guide groove 43 from the second opening of the other working platform and cooperate with the first protrusion 31 to achieve precise vertical docking and stable engagement, avoiding the problem of platform loosening. This embodiment fully considers the precise docking requirements in both horizontal and vertical directions. Through the ingenious cooperation of the first guide post 33, the first protrusion 31, and the second guide post 35, the positioning accuracy and stability of the work platform during assembly are greatly improved.
[0078] Please see Figure 4 and Figure 5 In some embodiments, the support platform 2 has a first extension 21 that protrudes from the fourth bracket 14. The second guide group 4 further includes a first guide plate 44 and a second guide plate 45. The first guide plate 44 is vertically disposed on the lower surface of the first extension 21. The second guide plate 45 is vertically disposed on the lower surface of the first extension 21, and the first guide plate 44 and the second guide plate 45 are disposed opposite to each other. The second guide plate 45 is disposed on the side away from the fourth bracket 14, and the first guide plate 44 is disposed on the side close to the fourth bracket 14. The first guide plate 44 and the second guide plate 45 are disposed opposite to each other to form a first guide groove 43. The second guide plate 45 is provided with a first opening.
[0079] In this embodiment, the support platform 2 is used to support the photovoltaic module. The first extension section 21 is part of the support platform 2. The first extension section 21 protrudes from the fourth bracket 14 and provides an installation position for the second guide group 4. The first extension section 21 can be a direct extension of the support platform 2, or it can be a structure connected to the support platform 2 through other connectors.
[0080] The second guide assembly 4 includes a first guide plate 44 and a second guide plate 45. The first guide plate 44 is a plate-like structure vertically disposed on the lower surface of the first extension section 21. The second guide plate 45 is also a plate-like structure vertically disposed on the lower surface of the first extension section 21, and is disposed opposite to the first guide plate 44, and is disposed on the side away from the fourth bracket 14. A first guide groove 43 is formed between the first guide plate 44 and the second guide plate 45, and the second guide plate 45 is provided with a first opening.
[0081] The support platform 2 shown in this embodiment has a first extension section 21, protruding from the fourth bracket 14, providing suitable space and position for the installation of the second guide group 4, increasing the effective area of the support platform 2, and also providing a larger range of motion for subsequent component installation. The second guide group 4 includes a first guide plate 44 and a second guide plate 45. The two plate-like structures are vertically arranged on the lower surface of the first extension section 21, and are relatively symmetrical. This symmetrical design forms a first guide groove 43 between the first guide plate 44 and the second guide plate 45, providing a precise guiding channel for the movement of the first guide group 3 of another working platform, and the second guide plate 45 has a first opening to facilitate the entry and exit of the first guide group 3 of another working platform from the guide groove.
[0082] Please see Figure 5In some embodiments, the second guide group 4 further includes a first guide bar 46 and a second guide bar 47. The first guide bar 46 is disposed in the first guide groove 43 and is located near the first side guide plate 41. The first guide bar 46 has a first guide surface that extends from the inner side of the second guide plate 45 toward the inner side of the first guide plate 44. The second guide bar 47 is disposed in the first guide groove 43 and is located near the second side guide plate 42. The second guide bar 47 has a second guide surface that extends from the inner side of the second guide plate 45 toward the inner side of the first guide plate 44. The first guide surface and the second guide surface are used to guide the second guide post 35.
[0083] Specifically, in some embodiments, the first guide bar 46 has a first side and a second side, the first side and the second side are perpendicular to each other, the first side is connected to the first extension section 21, the second side is connected to the inner side of the second guide plate 45, and the first guide surface is inclined to the second guide plate 45; the second guide bar 47 has a third side and a fourth side, the third side and the fourth side are perpendicular to each other, the third side is connected to the first extension section 21, the fourth side is connected to the inner side of the second guide plate 45, and the second guide surface is inclined to the second guide plate 45.
[0084] In some embodiments, the inclination angle between the first guide surface and the second guide plate 45 is 75°; and / or, the inclination angle between the second guide surface and the second guide plate 45 is 75°.
[0085] The first guide bar 46 is disposed within the first guide groove 43, and is positioned close to the first side guide plate 41, serving to guide the second guide post 35. The first guide surface is a surface on the first guide bar 46, extending from the inner side of the second guide plate 45 toward the inner side of the first guide plate 44, for contacting the second guide post 35 and guiding the movement direction of the second guide post 35.
[0086] The first and second sides are the other two sides of the first guide bar 46. The first side is connected to the first extension section 21, and the second side is connected to the inner side of the second guide plate 45. The second guide bar 47 is disposed in the first guide groove 43, close to the second guide plate 42; the second guide surface is a surface on the second guide bar 47, extending from the inner side of the second guide plate 45 toward the inner side of the first guide plate 44. The third and fourth sides are the other two sides of the second guide bar 47. The third side is connected to the first extension section 21, and the fourth side is connected to the inner side of the second guide plate 45.
[0087] Through the first guide surface and the second guide surface, the first guide bar 46 and the second guide bar 47 can respectively provide precise guidance for the second guide post 35, ensuring that it maintains the correct direction during movement and is guided into the first guide groove 43.
[0088] Please see Figure 1 In some embodiments, the system further includes a first support group 5 and a second support group 6. The first support group 5 includes two oppositely arranged first support legs, one of which is bolted to the first bracket 11 and the other of which is bolted to the second bracket 12. The second support group 6 includes two oppositely arranged second support legs, one of which is bolted to the first bracket 11 and the other of which is bolted to the second bracket 12. The first support group 5 and the second support group 6 are spaced apart.
[0089] Please see Figure 1 In some embodiments, a third support group 7 is also included. The third support group 7 includes two opposing third support legs, one of which is bolted to the first bracket 11 and the other of which is bolted to the second bracket 12. The first support group 5 is located near the first guide group 3, the third support group 7 is located near the second guide group 4, and the second support group 6 is located between the first support group 5 and the third support group 7.
[0090] In this embodiment, the first support foot and / or the second support foot and / or the third support foot can be a universal foot pad or a leveling bolt. The first support group 5, the second support group 6 and the third support group 7 are arranged on the lower surface of the frame 1, and one first support foot, one second support foot and one third support foot are arranged on the first bracket 11, and another first support foot, another second support foot and another third support foot are arranged on the second bracket 12. The first bracket 11 and the second bracket 12 serve as the main load-bearing and support areas, which can effectively ensure the support stability of the support platform 2 and the photovoltaic modules on it.
[0091] It should be noted that each of the first support legs in the first support group 5 can be adjusted vertically with the first bracket 11 and the second bracket 12. Similarly, the second support leg and the third support leg can also be adjusted vertically. By adjusting the individual first support leg, second support leg and third support leg, the level and height of the entire working platform can be adjusted, making the entire working platform more adaptable to different ground surfaces.
[0092] Please see Figure 1 In some embodiments, the fork hole 8 and the second fork hole 9 are also included. The first fork hole 8 passes through the first bracket 11 and the second bracket 12 in sequence along the third direction c. The second fork hole 9 is spaced apart from the first fork hole 8 and passes through the first bracket 11 and the second bracket 12 in sequence along the third direction c. The first fork hole 8 and the second fork hole 9 are configured for use by the fork arm of the forklift.
[0093] In this embodiment, multiple support beams can be provided on the frame 1 to form the structural features of the first fork hole 8 and the second fork hole 9 between the first bracket 11 and the second bracket 12. Furthermore, the number of the first fork hole 8 and the second fork hole 9 can be multiple, such as... Figure 1 This illustrates a scenario where there are multiple first fork holes 8 and multiple second fork holes 9. For ease of explanation, [the following is omitted as the text is incomplete and cannot be translated]. Figure 1 The four fork holes used in the fork arms of the Zhonggong forklift are named first fork hole 8, second fork hole 9, third fork hole, and fourth fork hole, respectively. This allows a work platform to be transported by two forklifts, or the forklifts can select two fork holes for transport according to actual needs, thereby improving the transportation flexibility of the work platform.
[0094] In some embodiments, the total weight of the work platform is 1581 kg; the work platform is provided with 4 M24 lifting lugs for transportation and installation by means of steel wire ropes, etc.
[0095] In the above technical solution, the photovoltaic module installation equipment operating platform includes a frame 1, a support platform 2, a first guide group 3, and a second guide group 4. The frame 1 includes a first bracket 11, a second bracket 12, a third bracket 13, and a fourth bracket 14. The support platform 2 is set above the frame 1 and is used to place photovoltaic modules. The first guide group 3 is set on the third bracket 13, and the second guide group 4 is set on the fourth bracket 14. On a single operating platform, the photovoltaic module installation operation can be performed directly. When multiple operating platforms need to be assembled, the first guide group 3 of one operating platform can be spliced with the second guide group 4 of another operating platform, so that the two operating platforms maintain horizontal accuracy and are easy to splice, reducing the splicing process and reducing the laying time and manual adjustment cost of the operating platform.
[0096] Finally, it should be noted that although the above embodiments have been described in the text and drawings of this utility model, this should not limit the scope of patent protection of this utility model. Any technical solutions resulting from equivalent structural or procedural substitutions or modifications made based on the essential concept of this utility model and utilizing the content described in the text and drawings of this utility model, as well as the direct or indirect application of the technical solutions of the above embodiments to other related technical fields, are all included within the scope of patent protection of this utility model.
Claims
1. A photovoltaic module installation apparatus work platform, characterized by, The utility model relates to a photovoltaic module support frame, comprising: a frame, including a first support, a second support, a third support and a fourth support, the first support and the second support are parallel, the first support and the second support are oppositely arranged, the third support and the fourth support are parallel, the third support and the fourth support are oppositely arranged, the first support, third support, second support and fourth support are sequentially enclosed to form the frame; a support platform is arranged above the frame, and the support platform is used for placing the photovoltaic module; a first guide group is arranged on the third support, and the first guide group includes two oppositely arranged first protruding parts, the first protruding parts protrude outward from the third support along a first direction; a second guide group is arranged on the fourth support, and the second guide group includes a first guide groove and first and second side guide plates, the first and second side guide plates are oppositely arranged on the two sides of the first guide groove, the first guide groove has a first opening and a second opening, the first opening is arranged towards a first direction, the second opening is arranged towards a second direction, the first opening is adjacent to the second opening, the first direction is perpendicular to the second direction, and the first protruding parts can enter the first guide groove from the first opening through the first and second side guide plates.
2. The photovoltaic module installation equipment work platform of claim 1, wherein, The first guide group further includes: two first fixing plates are oppositely arranged on the third support; two first guide columns are arranged on each first fixing plate, the first guide columns protrude outward from the third support along the first direction, and the first protruding parts are one end of the first guide columns extending outward; two second fixing plates are arranged on each first fixing plate, the two second fixing plates are oppositely arranged, each second fixing plate has a first mounting part, the first mounting part protrudes upward and is higher than the first guide column; a second guide column is arranged on the first mounting part, the second guide column extends along a third direction, the third direction is perpendicular to the first direction and the second direction respectively, and the second guide column enters the first guide groove from the second opening.
3. The photovoltaic module installation equipment work platform of claim 2, wherein, The support platform has a first extension, the first extension protrudes out of the fourth support, and the second guide group further includes: a first guide plate is vertically arranged on the lower surface of the first extension; a second guide plate is vertically arranged on the lower surface of the first extension, and the first guide plate and the second guide plate are oppositely arranged, the second guide plate is arranged on a side away from the fourth support, the first guide plate is arranged on a side close to the fourth support, the first guide plate and the second guide plate are oppositely arranged to form the first guide groove, and the first opening is arranged on the second guide plate.
4. The photovoltaic module installation equipment work platform of claim 3, wherein, The second guide group further includes: a first guide strip is arranged in the first guide groove, the first guide strip is arranged close to the first side guide plate, the first guide strip has a first guide surface, and the first guide surface extends from the inner side of the second guide plate towards the inner side of the first guide plate. A second guide strip is arranged in the first guide slot, the second guide strip is arranged close to the second side guide plate, the second guide strip has a second guide surface, the second guide surface extends from the inner side of the second guide plate to the inner side of the first guide plate; The first guide surface and the second guide surface are used for guiding the second guide column.
5. The photovoltaic module installation equipment work platform of claim 4, wherein, The first guide strip has a first side and a second side, the first side is perpendicular to the second side, the first side is connected with the first extension section, the second side is connected with the inner side of the second guide plate, and the first guide surface is arranged obliquely to the second guide plate; The second guide strip has a third side and a fourth side, the third side is perpendicular to the fourth side, the third side is connected with the first extension section, the fourth side is connected with the inner side of the second guide plate, and the second guide surface is arranged obliquely to the second guide plate.
6. The photovoltaic module installation equipment work platform of claim 5, wherein, The inclination angle between the first guide surface and the second guide plate is 75°; And / or, the inclination angle between the second guide surface and the second guide plate is 75°.
7. The photovoltaic module installation equipment work platform of claim 1, wherein, Further comprising: A first support group includes two oppositely arranged first support feet, one of the first support feet is bolted to the first support frame, and the other first support foot is bolted to the second support frame; A second support group includes two oppositely arranged second support feet, one of the second support feet is bolted to the first support frame, and the other second support foot is bolted to the second support frame; The first support group and the second support group are arranged at intervals.
8. The photovoltaic module installation equipment work platform of claim 7, wherein, Further comprising: A third support group includes two oppositely arranged third support feet, one of the third support feet is bolted to the first support frame, and the other third support foot is bolted to the second support frame; The first support group is arranged close to the first guide group, the third support group is arranged close to the second guide group, and the second support group is arranged between the first support group and the third support group.
9. The photovoltaic module installation equipment work platform of claim 1, wherein, Further comprising: A first fork hole, the first fork hole sequentially penetrates the first support frame and the second support frame along a third direction; A second fork hole is arranged at intervals with the first fork hole, the second fork hole sequentially penetrates the first support frame and the second support frame along a third direction; The first fork hole and the second fork hole are configured for the fork arm of a forklift.
10. The photovoltaic module installation equipment work platform of claim 1, wherein, The length of the support platform is 8000mm, the width of the support platform is 2000mm, and the height of the support platform is 220-400mm.