Photovoltaic panel transfer box
By setting baffle components and elastic structures in the photovoltaic panel transfer box, the difficulties in transporting and mixing of photovoltaic panels during transportation are solved, realizing the classified transfer of photovoltaic panels and reducing the risk of damage, thereby improving transportation efficiency and safety.
Patent Information
- Application Number
- CN202422962467.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-02
AI Technical Summary
In existing technologies, there are difficulties in transporting multiple sets of photovoltaic panels and problems with mixing photovoltaic panels when transporting them.
A photovoltaic panel transfer box is provided, which forms an independent photovoltaic panel holding space by setting multiple baffle assemblies inside the housing box assembly, and is equipped with a flexible structure and walking assembly to reduce the collision and shaking of photovoltaic panels.
This system enables the classified transfer of photovoltaic panels, reducing transportation difficulties and mixed storage issues, while also lowering the risk of damage to the panels and improving transportation efficiency and safety.
Smart Images

Figure CN223521341U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of glass transportation, and particularly relates to a photovoltaic panel transfer box. BACKGROUND
[0002] Nowadays, solar energy is the cleanest, safest and most reliable energy in the future, so photovoltaics are increasingly becoming an industry that is growing explosively. Photovoltaics is to generate electricity directly by using photovoltaic effect to make sunlight project on silicon material to generate current, and the photovoltaic industry mainly includes high-purity polycrystalline silicon raw material production, solar cell production, solar cell module production, related production equipment manufacturing and the like.
[0003] The photovoltaic panel usually needs to be used in groups, and in order to improve the conveying efficiency, a plurality of photovoltaic panels usually needs to be conveyed at one time by using a transfer trolley.
[0004] In the prior art, when a plurality of groups of photovoltaic panels are conveyed, a plurality of transfer trolleys need to be used, and the workload of the staff is large; or different groups of photovoltaic panels are placed on the same transfer trolley, and there are problems such as taking the wrong one in the subsequent use process, such as CN217918920U. UTILITY MODEL CONTENT
[0005] One of the technical problems to be solved by the present application is that in the process of conveying a plurality of groups of photovoltaic panels, there are problems such as conveying difficulty and mixed placement of photovoltaic panels.
[0006] In order to solve the above technical problems, the present application provides a photovoltaic panel transfer box.
[0007] The photovoltaic panel transfer box provided by the present application comprises a containing box assembly, a baffle assembly, the baffle assembly comprises a plurality of baffle assemblies, the plurality of baffle assemblies are arranged in the containing box assembly in a spaced manner, adjacent baffle assemblies and the containing box assembly jointly form a photovoltaic panel containing space, the baffle assembly comprises a baffle structure, a support structure and an elastic structure, the baffle structure is connected with the support structure, the support structure is connected with the containing box assembly, and the elastic structure is connected with the baffle structure and located on the side of the baffle structure away from the support structure.
[0008] In some embodiments, the containing box assembly comprises a mounting rack structure and a box body structure, the box body structure is connected with the mounting rack structure, and the support structure is movably connected with the mounting rack structure.
[0009] In some embodiments, the mounting rack structure has a first guide rail and a long hole, the long hole is located on the side wall of the first guide rail, the support structure has a connecting section, the connecting section is movably arranged in the first guide rail, the connecting section has a threaded hole, and a bolt is arranged in the long hole and the threaded hole.
[0010] In some embodiments, the containing box assembly further comprises a box door structure, and the mounting rack structure further comprises a second guide rail, and the box door structure is movably connected with the second guide rail.
[0011] In some embodiments, the door structure is made of transparent material.
[0012] In some embodiments, the housing assembly further includes elastic bands that are threaded through the housing structure. The elastic bands include multiple elastic bands, and at least one elastic band is disposed between adjacent baffle assemblies.
[0013] In some embodiments, the enclosure structure includes multiple enclosures, baffle structures are connected to the enclosures and disposed on both sides of the enclosures, and support structures are disposed in a one-to-one correspondence with the baffle structures and are located on the side of the baffle structures away from the enclosures.
[0014] In some embodiments, two support structures between adjacent housings are detachably connected.
[0015] In some embodiments, the housing assembly further includes a plurality of door structures, each corresponding to a housing body.
[0016] In some embodiments, the photovoltaic panel transfer box further includes a walking assembly connected to the housing assembly.
[0017] Through the above technical solution, the photovoltaic panel transfer box provided in this application divides the interior of the box assembly into multiple photovoltaic panel holding spaces using multiple baffle assemblies. This facilitates the placement of each group of photovoltaic panels in a corresponding space, enabling classification and simultaneous transfer of the panels. Furthermore, the elastic structure reduces impact and prevents damage from collisions. The technical solution of this application effectively solves the problems of difficult transport and mixed placement of photovoltaic panels in the prior art during the transport of multiple groups of photovoltaic panels. Attached Figure Description
[0018] 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.
[0019] Figure 1 A schematic diagram of the structure of the photovoltaic panel transfer box disclosed in Embodiment 1 of this application is shown;
[0020] Figure 2 It shows Figure 1 A schematic diagram of the main structure of the photovoltaic panel transfer box;
[0021] Figure 3 It shows Figure 1 A schematic diagram of the left-hand structure of the photovoltaic panel transfer box;
[0022] Figure 4 A structure schematic view of the photovoltaic panel transfer case disclosed by the embodiment two of the present application is shown;
[0023] Figure 5 A structure schematic view of the photovoltaic panel transfer case disclosed by the embodiment two of the present application is shown; Figure 4 A partial enlarged structure schematic view of the photovoltaic panel transfer case at A of the present application is shown;
[0024] Figure 6 A front structure schematic view of the photovoltaic panel transfer case disclosed by the embodiment three of the present application is shown.
[0025] Explanation of reference signs:
[0026] 10, containing box assembly; 11, mounting frame structure; 111, first guide rail; 112, long hole; 12, box body structure; 121, box body; 13, box door structure; 131, handle; 20, baffle assembly; 21, baffle structure; 22, support structure; 221, connecting section; 23, elastic structure; 30, walking assembly. DETAILED DESCRIPTION
[0027] The embodiments of the present application will be further described in conjunction with the drawings and examples. The following detailed description of the examples and drawings are used to illustrate the principles of the present application, but cannot be used to limit the scope of the present application, the present application can be implemented in many different forms, not limited to the specific examples of the present application, but includes all technical solutions falling within the scope of the claims.
[0028] The present application provides these examples is to make the present application and complete, and to the person skilled in the art fully express the scope of the present application. It should be noted that: unless otherwise specified, the relative arrangement of components and steps, the composition of materials, numerical expressions and values set forth in these examples should be interpreted as merely exemplary, and not as a limitation.
[0029] It should be noted that, in the description of the present application, unless otherwise specified, the meaning of "a plurality of" is greater than or equal to two; the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer" and the like is only for the convenience of describing the present application and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the present application. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0030] In addition, "first", "second", and similar words used in the present application do not indicate any order, number or importance, but are only used to distinguish different parts. "Vertical" is not strictly vertical, but within the allowable range of error. "Parallel" is not strictly parallel, but within the allowable range of error. "Include" or "contain" and similar words mean that the elements before the word cover the elements listed after the word, and do not exclude the possibility of also covering other elements.
[0031] It should also be noted that in the description of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. When it is described that a specific device is located between the first device and the second device, there can be or can not be an intermediate device between the specific device and the first device or the second device.
[0032] All terms used in the present application have the same meaning as understood by those skilled in the art to which the present application belongs, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted to have meanings consistent with their meanings in the context of the relevant technology, and should not be interpreted in an idealized or excessively formalized sense, unless otherwise defined explicitly herein.
[0033] Techniques, methods and devices known to those skilled in the relevant art can not be discussed in detail, but in appropriate cases, the techniques, methods and devices should be considered as part of the specification.
[0034] As shown in Figures 1 to 3 The photovoltaic panel transfer box disclosed by the embodiment of the present application comprises a containing box assembly 10 and a baffle assembly 20. The baffle assembly 20 comprises a plurality of baffle assemblies 20 which are arranged at intervals inside the containing box assembly 10. Adjacent baffle assemblies 20 and the containing box assembly 10 jointly constitute a photovoltaic panel containing space. The baffle assembly 20 comprises a baffle structure 21, a support structure 22 and an elastic structure 23. The baffle structure 21 is connected with the support structure 22. The support structure 22 is connected with the containing box assembly 10. The elastic structure 23 is connected with the baffle structure 21 and located on the side of the baffle structure 21 away from the support structure 22.
[0035] The technical scheme of the application embodiment one divides the inside of the containing box assembly 10 into a plurality of photovoltaic panel containing spaces by the plurality of baffle assemblies 20, facilitates corresponding arrangement of each group of photovoltaic panels in different photovoltaic panel containing spaces, facilitates classification and simultaneous transfer of the photovoltaic panels, and reduces the impact by the arrangement of the elastic structure 23, thereby avoiding breakage of the photovoltaic panels caused by collision. The technical scheme of the embodiment one effectively solves the problems of difficult transportation and mixed arrangement of the photovoltaic panels in the prior art during transportation of a plurality of groups of photovoltaic panels.
[0036] As shown in Figures 1 to 3 In the technical scheme of the embodiment one, the containing box assembly 10 further comprises a box door structure 13, and the mounting rack structure 11 further comprises a second guide rail, and the box door structure 13 is movably connected with the second guide rail. The second guide rail guides the movement of the box door structure 13, and the opening and closing of the box door structure 13 is controlled by moving the box door structure 13, thereby facilitating the insertion or removal of the photovoltaic panels. When the photovoltaic panels are not needed, the box door structure 13 is closed to avoid the entry of dust, water vapor and the like in the air into the containing box assembly 10, thereby preventing pollution of the photovoltaic panels in the containing box assembly 10. Furthermore, the structure of the box door structure 13 cooperating with the second guide rail facilitates control of the size of the opening of the box door structure 13, and the box door structure 13 does not need to be fully opened during the use of the photovoltaic panels, thereby further avoiding pollution of the photovoltaic panels by the external environment.
[0037] As shown in Figures 1 to 3 In the technical scheme of the embodiment one, the box door structure 13 is made of transparent material. The use of transparent material facilitates observation of the state of the photovoltaic panels in the containing box assembly 10 by the staff, and if the photovoltaic panels are damaged or have other problems, the staff can determine the specific position of the required photovoltaic panels without opening the box door structure 13, and then open the box door structure 13 to remove the corresponding photovoltaic panels, thereby reducing the time of opening of the box door structure 13, reducing the time of exposure of the photovoltaic panels in the containing box assembly 10 to the external environment, and avoiding pollution of the photovoltaic panels. The box door structure 13 has a handle, and the handle is located on the side of the box door structure 13 away from the box body structure 12. The handle facilitates the staff to apply force to the box door structure 13, and is conducive to the rapid opening and rapid closing of the box door structure 13.
[0038] As shown in Figures 1 to 3As shown, in the technical solution of Embodiment 1, the housing assembly 10 further includes elastic bands. These elastic bands are threaded onto the housing structure 12, and multiple elastic bands are included, with at least one elastic band positioned between adjacent baffle assemblies 20. The first end of the elastic band is fixed to the housing structure 12 and located on the side wall opposite to the door structure 13. After the elastic band passes around the photovoltaic panel, the second end of the elastic band is movably threaded onto the housing structure 12. The photovoltaic panel is bound to the inside of the housing structure 12 by the elastic band. Workers can pull the elastic band from the outside of the housing structure 12 to change the length of the elastic band extending beyond the housing structure 12 and tie knots in the elastic band, thereby controlling the total length of the elastic band within the housing structure 12. Furthermore, the tension of the elastic band can be adjusted according to the number and size of the glass within the housing structure 12 to ensure a good fixing effect on the photovoltaic panel.
[0039] In the technical solution of Embodiment 1, the support structure 22 is made of strip alloy steel, which is arranged in a cross shape. Two baffle structures 21 are respectively arranged on both sides of the support structure 22. The arrangement of the support structure 22 avoids deformation of the baffle structures 21, which could lead to bending or other problems. The elastic structure 23 is made of a flexible buffer material, such as rubber. When the photovoltaic panels inside the housing assembly 10 shake, the elastic structure 23 absorbs the impact and prevents the photovoltaic panels from breaking.
[0040] like Figures 1 to 3 As shown, in the technical solution of Embodiment 1, the photovoltaic panel transfer box further includes a walking component 30, which is connected to the housing box component 10. The walking component 30 uses universal wheels with brakes, which greatly reduces the friction during the movement of the photovoltaic panel transfer box by converting sliding friction into rotational friction, making the transfer more labor-saving. At the same time, it reduces the vibration caused by friction, reduces the shaking of the internal photovoltaic panels, and avoids damage to the photovoltaic panels.
[0041] like Figure 4 and Figure 5 As shown, the difference between the technical solution of Embodiment 2 and Embodiment 1 is that the housing assembly 10 includes a mounting frame structure 11 and a housing structure 12. The housing structure 12 is connected to the mounting frame structure 11, and the support structure 22 is movably connected to the mounting frame structure 11. Moving the support structure 22 causes the baffle structure 21, which is fixedly connected to the support structure 22, to move accordingly, thereby adjusting the spacing between adjacent baffle assemblies 20 and changing the size of the photovoltaic panel housing space. When the number and size of each group of photovoltaic panels differ significantly, it is easier for staff to adjust the housing space of each photovoltaic panel, making it more versatile. At the same time, the size of the photovoltaic panel housing space can be adjusted according to the number and size of the photovoltaic panels to be stored, so that the spacing between the photovoltaic panels and the baffle assembly 20 is appropriate, avoiding large-scale shaking of the photovoltaic panels within the housing assembly 10.
[0042] As Figure 4 and Figure 5 As shown in the technical scheme of embodiment two, the mounting frame structure 11 has a first guide rail 111 and a long hole 112, the long hole 112 is located on the side wall of the first guide rail 111, the support structure 22 has a connecting section 221, the connecting section 221 is movably arranged in the first guide rail 111, the connecting section 221 has a threaded hole, and a bolt is arranged in the long hole 112 and the threaded hole. The first guide rail 111 plays a guiding role in the movement of the support structure 22. After adjusting the baffle assembly 20 to the appropriate position, the bolt is inserted, and after the bolt passes through the long hole 112, it is matched with the threaded hole. The size of the bolt head is larger than the width of the long hole. After the bolt is tightened, the connecting section 221 and the inner wall of the first guide rail 111 are in contact, and the position of the support structure 22 is fixed. The above structure is relatively simple, easy to process, and easy to operate when adjusting the position of the baffle assembly 20, which is convenient to realize.
[0043] It should be noted that Figure 4 only one first guide rail 111 is shown in the above embodiment, and multiple first guide rails 111 can be provided to avoid the problems of inclination and incomplete fixation of the baffle assembly 20.
[0044] As Figure 6 shown, the technical scheme of embodiment three is different from that of embodiment one in that the box structure 12 includes a plurality of box bodies 121, the baffle structure 21 is connected with the box body 121 and is arranged on both sides of the box body 121, the support structure 22 is arranged in one-to-one correspondence with the baffle structure 21 and is located on the side of the baffle structure 21 away from the box body 121. The number of box bodies 121 is set according to the number of groups of photovoltaic panels to be transported, so that each group of photovoltaic panels is provided with one box body 121 in one-to-one correspondence, avoiding the problems of too many empty positions in the containing box assembly 10 due to too few groups of photovoltaic panels, or that one containing box assembly 10 cannot completely store due to too many groups of photovoltaic panels. The baffle structure 21 and the inner wall of the box body 121 are bonded with a silica gel pad, which absorbs the impact when the photovoltaic panel shakes inside the box body 121, avoiding damage to the photovoltaic panel.
[0045] As Figure 6As shown, the technical scheme of the third embodiment is different from the technical scheme of the first embodiment in that the two support structures 22 between the adjacent box bodies 121 are detachably connected. The support structure 22 comprises a first support part and a second support part, and the two sides of the box body structure 12 are respectively provided with two baffle structures 21 to jointly form a photovoltaic panel containing space. The first support part and the second support part are respectively connected with the two baffle structures 21 and are located on the side of the baffle structure 21 away from the box body structure 12. The first support part has a limiting groove, and the second support part has a limiting protrusion. The cross-sectional shape of the limiting groove is consistent with that of the limiting protrusion. The limiting protrusion is arranged in the limiting groove to connect the two box body structures 12. Since each box body structure 12 is correspondingly provided with the first support part and the second support part, a plurality of box body structures can be connected in sequence. The limiting protrusion and the limiting groove are in interference fit to avoid falling off during the movement of the photovoltaic panel transfer box and ensure the stability of the connection.
[0046] As shown in Figure 6 The technical scheme of the third embodiment is different from the technical scheme of the first embodiment in that the containing box assembly 10 further comprises a plurality of box door structures 13, and the plurality of box door structures 13 are one-to-one correspondingly arranged with the box bodies 121. When the photovoltaic panel needs to be taken out, only the corresponding box door structure 13 can be opened, and other box door structures 13 are not opened, thereby avoiding the problem that the photovoltaic panels in other box body structures 12 are polluted by contacting with air. The inner wall of the box body structure 12 is provided with a vertical guide rail, and the box door structure 13 is movably connected with the vertical guide rail. The box door structure 13 is opened in a vertical sliding manner, thereby avoiding the problem that the opening of the box door structure 13 interferes with the adjacent box body structure 12.
[0047] From the above, the technical scheme is implemented to realize the technical purpose, and the photovoltaic panel transfer includes: a support steering wheel (a walking assembly 30), a photovoltaic panel support base (an installation rack structure 11), a baffle (a baffle structure 21), an outer box body (a box body structure 12), a baffle buffer pad (an elastic structure 23), an outer box door (a box door structure 13), and an outer box door handle (a handle 131). The support steering wheel can be randomly steered, and a brake mechanism is arranged to facilitate the staff to transport the photovoltaic panel and fix the position; the photovoltaic panel support base is in a whole "day" shape and is composed of ordinary steel materials, and the surface of the support is wrapped with a flexible buffer material; the baffle is in a whole "field" shape and is composed of ordinary steel materials, and the inner surface of the side baffle is wrapped with a flexible buffer material to ensure that the photovoltaic panels are stored in order; the outer box body includes upper, lower, left, right, and rear box body shells and is composed of ordinary steel materials, and the box body shell is wrapped with a flexible buffer material inside; the baffle buffer pad is composed of a flexible material and is a whole cube, and the two side baffles can be fixed on the inner side; the outer box door is made of transparent visual material and can clearly and effectively see the number of photovoltaic panels in the box body; and the outer box door handle is a common plastic handle to facilitate opening the door to take and place the photovoltaic panel. The scheme is mainly to facilitate the transportation of the photovoltaic panel, and the support steering wheel, the photovoltaic panel support base, the baffle, the outer box body, the baffle buffer pad, the outer box door, and the outer box door handle are welded into a photovoltaic panel storage device. Generally, the photovoltaic panel is fixed and packaged by a common wooden board, but the panel is not easy to fix during transportation, and is prone to sliding and stacking. Therefore, each group of photovoltaic panel cover plates is fixed on each interval of the photovoltaic panel storage device and is fixed by a clamp, so that the photovoltaic panel can be effectively fixed on the storage device. Finally, the photovoltaic panel storage device is neatly stacked on the transport vehicle, and the brake mechanism of the support steering wheel is braked to effectively prevent the photovoltaic panel from sliding, scratching, and other problems during transportation.
[0048] Thus, the embodiments of the present application have been described in detail. In order not to obscure the concept of the present application, some details known in the art have not been described. Those skilled in the art can fully understand how to implement the technical scheme of the present application according to the above description.
[0049] Although some specific embodiments of the present application have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, and are not intended to limit the scope of the present application. Those skilled in the art should understand that the above embodiments can be modified or some technical features can be replaced equivalently without departing from the scope and spirit of the present application. In particular, as long as there is no structural conflict, the technical features mentioned in each embodiment can be combined in any way.
Claims
1. A photovoltaic panel shipping case, characterized by, include: Container assembly (10); A baffle assembly (20) is provided, comprising multiple baffle assemblies (20) arranged at intervals inside the housing assembly (10). Adjacent baffle assemblies (20) together with the housing assembly (10) constitute a photovoltaic panel housing space. The baffle assembly (20) includes a baffle structure (21), a support structure (22), and an elastic structure (23). The baffle structure (21) is connected to the support structure (22), the support structure (22) is connected to the housing assembly (10), and the elastic structure (23) is connected to the baffle structure (21) and located on the side of the baffle structure (21) away from the support structure (22).
2. The photovoltaic panel transport case of claim 1, wherein, The housing assembly (10) includes a mounting frame structure (11) and a housing structure (12), the housing structure (12) being connected to the mounting frame structure (11), and the support structure (22) being movably connected to the mounting frame structure (11).
3. The photovoltaic panel transport case of claim 2, wherein, The mounting bracket structure (11) has a first guide rail (111) and an elongated hole (112). The elongated hole (112) is located on the side wall of the first guide rail (111). The support structure (22) has a connecting section (221). The connecting section (221) is movably disposed in the first guide rail (111). The connecting section (221) has a threaded hole, and a bolt passes through the elongated hole (112) and the threaded hole.
4. The photovoltaic panel transport case of claim 3, wherein, The housing assembly (10) further includes a door structure (13), and the mounting frame structure (11) further includes a second guide rail, the door structure (13) being movably connected to the second guide rail.
5. The photovoltaic panel transport case of claim 4, wherein, The door structure (13) is made of transparent material.
6. The photovoltaic panel shipping case of claim 2, wherein, The container assembly (10) also includes an elastic band, which is threaded through the container structure (12). The elastic band includes multiple elastic bands, and at least one elastic band is provided between adjacent baffle assemblies (20).
7. The photovoltaic panel shipping case of claim 2, wherein, The box structure (12) includes multiple boxes (121), the baffle structure (21) is connected to the box (121) and is disposed on both sides of the box (121), the support structure (22) is disposed in a one-to-one correspondence with the baffle structure (21) and is located on the side of the baffle structure (21) away from the box (121).
8. The photovoltaic panel transport case of claim 7, wherein, The two support structures (22) between adjacent housings (121) are detachably connected.
9. The photovoltaic panel shipping crate of claim 7, wherein, The container assembly (10) also includes a plurality of door structures (13), which are arranged one-to-one with the container body (121).
10. The photovoltaic panel transport box according to any of claims 1 to 9, characterized in that, The photovoltaic panel transfer box also includes a walking component (30), which is connected to the housing box component (10).
Citation Information
Patent Citations
Assembly packaging structure for photovoltaic products
CN217918920U