A photovoltaic glass tray
By introducing a base frame assembly and an adjustment assembly into the photovoltaic glass tray, the problem of the tray's inability to self-adjust was solved, enabling efficient transportation of products of various specifications, achieving adaptive load adjustment, and reducing transportation costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING ZHIXIANG LOGISTICS EQUIP CO LTD
- Filing Date
- 2025-05-14
- Publication Date
- 2026-05-26
Smart Images

Figure CN224278012U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of logistics and transportation technology, and in particular to a photovoltaic glass pallet. Background Technology
[0002] Photovoltaic glass, also known as "photovoltaic glass," is a special type of glass that incorporates solar photovoltaic components, enabling it to generate electricity using solar radiation. It also features related current extraction devices and cables. Composed of glass, solar cells, film, back glass, and special metal wires, it is a cutting-edge high-tech glass product for building applications.
[0003] During transportation, photovoltaic glass typically requires pallets for support. These pallets are equipped with guardrails that are close to the photovoltaic glass to secure it and prevent collisions during transport. Traditional pallet guardrails are fixed and cannot be adjusted according to product size. To accommodate the transportation of products of various specifications, multiple pallet sizes are often required, resulting in higher transportation costs. Utility Model Content
[0004] In view of the shortcomings of the prior art, the purpose of this application is to provide a photovoltaic glass tray to solve the problem that the photovoltaic glass tray in the prior art cannot be adaptively adjusted according to the product size.
[0005] To achieve the above and other related objectives, this application provides a photovoltaic glass tray, comprising:
[0006] Tray body;
[0007] At least two sets of base frame assemblies are arranged opposite each other on both sides of the tray body along the length direction. The base frame assembly includes at least a first base frame and a second base frame. There are two of each of the first base frames and the second base frames. The two first base frames are arranged side by side on both sides of the tray body along the width direction. The two second base frames are arranged opposite each other on both sides of the tray body along the width direction and are perpendicularly connected to the first base frames. The first base frames and the second base frames enclose and form a limiting area for constraining photovoltaic glass on the tray body.
[0008] Multiple adjustment components are respectively disposed on the first base frame and the second base frame;
[0009] Multiple limiting baffles are respectively disposed on the adjustment component, and the adjustment component can drive the limiting baffles to move so as to make the limiting baffles fit and contact the side of the photovoltaic glass.
[0010] Optionally, the adjustment assembly includes a first rotating seat, a rotating connecting rod, a second rotating seat, a screw, and a movable sleeve. Two first rotating seats are provided, positioned on opposite sides of the first or second base frame. The rotating connecting rod has a Π-shaped structure, with its vertical member rotatably connected to the first rotating seat. The limiting baffle is fixed to the horizontal member of the rotating connecting rod. The second rotating seat is located on the side of the first or second base frame adjacent to the opposite side. The screw is rotatably connected to the second rotating seat. One end of the sleeve is sleeved on the screw, and the other end is rotatably connected to the horizontal member of the rotating connecting rod. An adjusting nut is also provided on the screw. The rotating connecting rod rotates on the first rotating seat, causing the screw to rotate on the second rotating seat. The sleeve moves axially on the screw to adjust the limiting baffle to contact the side of the photovoltaic glass. The adjusting nut moves on the screw and abuts against the end of the sleeve to limit its position.
[0011] Optionally, the limiting baffle has at least two mounting plates in the middle along the width direction, and the mounting position for positioning the sleeve rod is formed between the two mounting plates.
[0012] Optionally, the limiting baffle is provided with a buffer pad on the side near the photovoltaic glass.
[0013] Optionally, a first connecting plate is detachably provided between two second base frames that are arranged opposite each other along the width direction of the tray body.
[0014] Optionally, the photovoltaic glass tray further includes a second connecting plate, one end of which is detachably disposed between two first base frames arranged side by side, and the other end of which is connected to the middle of the first connecting plate.
[0015] Optionally, the first base frame and the second base frame are detachably connected, and the first base frame, the second base frame and the tray body are detachably connected.
[0016] Optionally, each of the four corners of the first base frame and the second base frame is provided with a first positioning block, and each of the first positioning blocks is provided with a first positioning hole. The first connecting plate is provided with a second positioning block, and the second positioning block is provided with a second positioning hole. The pallet body is provided with a positioning groove, and a positioning pin is inserted into the positioning groove. After the first base frame and the second base frame are disassembled, the first base frame and the second base frame pass through the first positioning hole and are mounted on the positioning pin to be stacked flat on the pallet body. The first connecting plate passes through the second positioning hole and is mounted on the positioning pin to be stacked on the first base frame and the second base frame.
[0017] Optionally, the bottom of the tray body is provided with a base, and the bottom of the base is provided with a plurality of anti-slip pads.
[0018] Optionally, the anti-slip pad is a rubber pad.
[0019] In the photovoltaic glass pallet provided in this application, the photovoltaic glass is first placed on the pallet body. The two sides of the photovoltaic glass are located in the limiting area formed by the first base frame and the second base frame. The limiting baffle is moved by the adjusting component to make the limiting baffle contact the side of the photovoltaic glass. The adjusting component can adjust the position of the limiting baffle according to the size of the photovoltaic glass so that the limiting baffle can always abut against the side of the photovoltaic glass, thereby positioning the photovoltaic glass on the pallet body. The pallet can be adjusted according to the size of the product to meet the transportation needs of products of various specifications. There is no need to produce pallets of various specifications, which effectively reduces the product transportation cost. Attached Figure Description
[0020] Figure 1 This is a first-view structural schematic diagram of a photovoltaic glass tray according to an embodiment of this application;
[0021] Figure 2 This is a structural schematic diagram of a photovoltaic glass tray from a second perspective, illustrating an embodiment of this application.
[0022] Figure 3 This is a schematic diagram illustrating the assembly of the base frame assembly and the adjustment assembly according to an embodiment of this application;
[0023] Figure 4 This is a partial structural schematic diagram of a photovoltaic glass tray according to an embodiment of this application;
[0024] Figure 5 This is a schematic diagram of the structure of a photovoltaic glass tray after disassembly, as shown in one embodiment of this application;
[0025] Figure 6 This is a schematic diagram of the structure of the first connecting plate and the second connecting plate after disassembly, according to an embodiment of this application.
[0026] Figure 7 This is a schematic diagram of the structure of a positioning pin according to an embodiment of this application.
[0027] Part Number Explanation
[0028] 1-Pallet body; 2-First base frame; 3-Second base frame; 4-First connecting plate; 5-Second connecting plate; 6-Base; 7-Adjusting component; 8-First rotating seat; 9-Rotating connecting rod; 10-Second rotating seat; 11-Sleeve rod; 12-Limiting baffle; 13-Mounting plate; 14-Screw; 15-Adjusting nut; 16-Buffer pad; 17-Positioning groove; 18-Entry end; 19-First positioning block; 20-First positioning hole; 21-Second positioning block; 22-Positioning pin; 23-Connector; 24-Connecting body; 25-Second positioning hole; 26-Locking nut. Detailed Implementation
[0029] The following specific embodiments illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification.
[0030] It should be understood that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are merely for illustrative purposes to aid those skilled in the art and are not intended to limit the scope of this application. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness or purpose of this application, should still fall within the scope of the technical content disclosed herein. Furthermore, the terms such as "front," "back," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of this application. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of this application.
[0031] It should be noted that in existing technologies, the traditional pallets used to carry photovoltaic glass typically have simple barriers. After the barriers are attached to the photovoltaic glass, they are secured with packing straps. The size of the area enclosed by the barriers determines the size of the photovoltaic glass that the traditional pallet can carry. Since the size of photovoltaic glass products needs to be adjusted according to actual usage requirements, different specifications of products require the production of pallets of various sizes to meet transportation needs, which leads to higher transportation costs for photovoltaic pallets.
[0032] Please see Figures 1 to 7 This application provides an exemplary photovoltaic glass tray, comprising:
[0033] Tray body 1;
[0034] At least two sets of base frame assemblies are arranged opposite each other on both sides of the tray body 1 along the length direction. The base frame assembly includes at least a first base frame 2 and a second base frame 3. There are two first base frames 2 and two base frames 3. The two first base frames 2 are arranged side by side on both sides of the tray body 1 along the width direction. The two second base frames 3 are arranged opposite each other on both sides of the tray body 1 along the width direction and are perpendicularly connected to the first base frames 2. The first base frames 2 and the second base frames 3 enclose and form a limiting area for constraining photovoltaic glass on the tray body 1.
[0035] Multiple adjustment components 7 are respectively disposed on the first base frame 2 and the second base frame 3;
[0036] Multiple limiting baffles 12 are respectively installed on the adjusting component 7. The adjusting component 7 can drive the limiting baffles 12 to move so that the limiting baffles 12 are in contact with the side of the photovoltaic glass.
[0037] In the photovoltaic glass pallet provided in this application, the photovoltaic glass is first placed on the pallet body 1. The two sides of the photovoltaic glass are located in the limiting area formed by the first base frame 2 and the second base frame 3. The limiting baffle 12 is moved by the adjusting component 7 so that the limiting baffle 12 is in contact with the side of the photovoltaic glass. The adjusting component 7 can adjust the position of the limiting baffle 12 according to the size of the photovoltaic glass so that the limiting baffle 12 can always abut against the side of the photovoltaic glass, thereby positioning the photovoltaic glass on the pallet body 1. The pallet can be adjusted according to the size of the product to meet the transportation needs of products of various specifications. There is no need to produce pallets of various specifications, which effectively reduces the product transportation cost.
[0038] It is understandable that when the photovoltaic glass is placed on the tray body 1, the first base frame 2 and the second base frame 3 enclose and form a limiting area to constrain the photovoltaic glass. At this time, both sides of the photovoltaic glass are partially located in the limiting area. By adjusting the position of the limiting baffle 12 by adjusting the component 7, the size of the limiting area can be changed according to the size of the photovoltaic glass. The limiting baffle 12 is in contact with the side of the photovoltaic glass to position the photovoltaic glass.
[0039] In this embodiment, the adjusting assembly 7 includes a first rotating seat 8, a rotating connecting rod 9, a second rotating seat 10, a screw 14, and a movable sleeve 11. Two first rotating seats 8 are provided, positioned on opposite sides of the first base frame 2 or the second base frame 3. The rotating connecting rod 9 has a Π-shaped structure, with its vertical rod rotatably connected to the first rotating seat 8. A limiting baffle 12 is fixedly connected to the horizontal rod of the rotating connecting rod 9. The second rotating seat 10 is located on the side of the first base frame 2 or the second base frame 3 adjacent to the opposite side. The screw 14 is rotatably connected to the second rotating seat 10. One end of the sleeve 11 is sleeved on the screw 14, and the other end of the sleeve 11... The end of the connecting rod 9 is rotatably connected to the crossbar of the rotating connecting rod 9. An adjusting nut 15 is also provided on the screw 14, and the adjusting nut 15 is threadedly connected to the screw 14. The rotating connecting rod 9 rotates on the first rotating seat 8, causing the screw 14 to rotate on the second rotating seat 10. The sleeve 11 moves axially on the screw 14 to adjust the limiting baffle 12 to contact the side of the photovoltaic glass. The adjusting nut 15 moves on the screw 14 and abuts against the end of the sleeve 11 to limit the movement of the sleeve 11. Specifically, when adjusting the limiting baffle 12, the limiting baffle 12 is first pushed towards the photovoltaic glass. The rotating connecting rod 9 rotates on the first rotating seat 8... Simultaneously, the end of the sleeve rod 11 connected to the rotating connecting rod 9 rotates, and the screw 14 rotates on the second rotating seat 10. The sleeve rod 11 moves axially on the screw 14 until the limiting baffle 12 abuts against the side of the photovoltaic glass. The position of the adjusting nut 15 on the screw 14 is adjusted so that the adjusting nut 15 abuts against the end of the sleeve rod 11. The sleeve rod 11 is limited by the adjusting nut 15, ensuring that after the limiting baffle 12 abuts against the photovoltaic glass, the sleeve rod 11 moves away from the photovoltaic glass on the screw 14. At the same time, since the sleeve rod 11 is limited and will not move, the rotating connecting rod 9 will not rotate on the first rotating seat 8. The screw 14 will not rotate on the second rotating seat 10. The limiting baffles 12 are respectively abutted against and locked to the photovoltaic glass by the adjusting component 7. After the limiting baffles 12 have all been adjusted and limited, the photovoltaic glass can be positioned on the tray body 1. The multiple limiting baffles 12 are pressed against the photovoltaic glass, which facilitates the subsequent tightening operation of the photovoltaic glass. When it is necessary to reset, the position of the adjusting nut 15 on the screw 14 is adjusted so that the adjusting nut 15 is moved to a position close to the second rotating seat 10, so that the sleeve rod 11 moves away from the photovoltaic glass on the screw 14. At the same time, the rotating connecting rod 9 rotates synchronously to complete the reset.
[0040] In the above embodiment, at least two mounting plates 13 are provided in the middle of the limiting baffle 12 along the width direction, and a mounting position for positioning the sleeve rod 11 is formed between the two mounting plates 13. Specifically, the end of the sleeve rod 11 connected to the crossbar of the rotating connecting rod 9 is positioned by the mounting plates 13, and the sleeve rod 11 is constrained in the axial direction to facilitate adjustment operation.
[0041] In some embodiments, the limiting baffle 12 is provided with a buffer pad 16 on the side near the photovoltaic glass. When the limiting baffle 12 is in contact with the side of the photovoltaic glass, the buffer pad 16 replaces the limiting baffle 12 in direct contact with the photovoltaic glass, which can make the limiting baffle 12 and the photovoltaic glass fit more tightly. At the same time, it avoids the limiting baffle 12 from colliding with the photovoltaic glass due to excessive force, which could lead to damage. Specifically, the buffer pad 16 can be a rubber pad, a sponge pad, a silicone pad, etc., and is not limited to this in this document.
[0042] In this embodiment, a first connecting plate 4 is detachably provided between two second base frames 3 arranged opposite each other along the width direction of the tray body 1. Specifically, the two ends of the first connecting plate 4 are respectively provided on the top of the second base frame 3 to avoid affecting the placement of the photovoltaic glass. Furthermore, the first connecting plate 4 is connected to the side of the second base frame 3 away from the first base frame 2, which provides a better fixing effect between the two second base frames 3.
[0043] In the above embodiment, the photovoltaic glass tray also includes a second connecting plate 5. One end of the second connecting plate 5 is detachably disposed between two first base frames 2 arranged side by side and is connected to the two first base frames 2 respectively. The other end of the second connecting plate 5 is connected to the middle of the first connecting plate 4. The above arrangement can improve the connection stability between the first base frame 2 and the second base frame 3.
[0044] In some embodiments, the first base frame 2 and the second base frame 3 are detachably connected, and the first base frame 2, the second base frame 3 and the pallet body 1 are detachably connected. This detachable connection can improve the installation and disassembly efficiency of the photovoltaic pallet during loading and unloading.
[0045] In the above embodiment, each of the four corners of the first base frame 2 and the second base frame 3 is provided with a first positioning block 19, and each first positioning block 19 is provided with a first positioning hole 20. The first connecting plate 4 is provided with a second positioning block 21, and the second positioning block 21 is provided with a second positioning hole 25. The pallet body 1 is provided with a positioning groove 17, and a positioning pin 22 is inserted into the positioning groove 17. When the photovoltaic glass pallet is in use, the positioning pin 22 can be removed from the positioning groove 17. After unloading is completed, when disassembling and recycling the photovoltaic glass pallet, the positioning pin 22 is first inserted into the positioning groove 17. After the first base frame 2 and the second base frame 3 are disassembled, the first base frame 2 and the second base frame 3 are inserted through the first positioning hole 20 onto the positioning pin 22 to be stacked flat on the pallet body 1. The first connecting plate 4 is inserted through the second positioning hole 25 onto the positioning pin 22 to be stacked on the first base frame 2 and the second base frame 3. Specifically… Because the first connecting plate 4 is relatively long, in order to facilitate the storage of the first connecting plate 4 after disassembly, the first connecting plate 4 includes at least one connector 23 and two connecting bodies 24. The two connecting bodies 24 are connected by the connector 23. One end of the second connecting plate 5 is fixed to the middle of the connector 23. The connecting bodies 24 and the connector 23 are detachably or rotatably connected. Each of the two connecting bodies 24 is provided with a second positioning block 21. When disassembling the first connecting plate 4 and the second connecting plate 5, it is only necessary to disconnect the connection between the first connecting plate 4 and the second base frame 3 and the second connecting plate 5 and the first base frame 2. After disassembly, the two connecting bodies 24 are rotated or disassembled to a position parallel to the second connecting plate 5. Then, the first base frame 2, the second base frame 3 and the first connecting plate 4 are sequentially inserted into the positioning pin 22 to complete the storage and stacking of the photovoltaic glass tray after disassembly, which is convenient for subsequent recycling of the photovoltaic glass tray.
[0046] In detail, the positioning groove 17 on the pallet body 1 has a circular inlet end 18, the positioning pin 22 has a threaded structure, and at least two locking nuts 26 are threaded through the positioning pin 22. The locking nuts 26 are threadedly connected to the positioning pin 22. The width of the inlet end 18 is greater than the width of the positioning groove 17 and matches the locking nuts 26. The positioning pin 22 and the locking nuts 26 are inserted into the positioning groove 17 through the inlet end 18. The position of the locking nuts 26 is adjusted so that the locking nuts 26 are clamped at the top and bottom of the pallet body 1 to fix the positioning pin 22 on the pallet body 1, which facilitates the stacking and positioning of the disassembled first base frame 2, second base frame 3 and first connecting plate 4 on the pallet body 1.
[0047] In this embodiment, a base 6 is provided at the bottom of the pallet body 1, and a plurality of anti-slip pads are provided at the bottom of the base 6. Specifically, the anti-slip pads are evenly distributed at the bottom of the base 6 to improve the anti-slip effect of the base 6 and prevent the pallet from moving during transportation and causing damage to the photovoltaic glass. Specifically, the anti-slip pads are rubber pads.
[0048] In summary, in the photovoltaic glass pallet provided in this application, the photovoltaic glass is first placed on the pallet body 1. The two sides of the photovoltaic glass are located in the limiting area formed by the first base frame 2 and the second base frame 3. The limiting baffle 12 is moved by the adjusting component 7 to make the limiting baffle 12 fit and contact the side of the photovoltaic glass. The adjusting component 7 can adjust the position of the limiting baffle 12 according to the size of the photovoltaic glass, so that the limiting baffle 12 can always abut against the side of the photovoltaic glass, thereby positioning the photovoltaic glass on the pallet body 1. The pallet can be adjusted according to the size of the product to meet the transportation needs of products of various specifications. There is no need to produce pallets of various specifications, which effectively reduces the product transportation cost.
[0049] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this application should still be covered by the claims of this application.
Claims
1. A photovoltaic glass tray, characterized in that, include: Tray body; At least two sets of base frame assemblies are arranged opposite each other on both sides of the tray body along the length direction. The base frame assembly includes at least a first base frame and a second base frame. There are two of each of the first base frames and the second base frames. The two first base frames are arranged side by side on both sides of the tray body along the width direction. The two second base frames are arranged opposite each other on both sides of the tray body along the width direction and are perpendicularly connected to the first base frames. The first base frames and the second base frames enclose and form a limiting area for constraining photovoltaic glass on the tray body. Multiple adjustment components are respectively disposed on the first base frame and the second base frame; Multiple limiting baffles are respectively disposed on the adjustment component, and the adjustment component can drive the limiting baffles to move so as to make the limiting baffles fit and contact the side of the photovoltaic glass.
2. The photovoltaic glass tray according to claim 1, characterized in that, The adjustment assembly includes a first rotating seat, a rotating connecting rod, a second rotating seat, a screw, and a movable sleeve. Two first rotating seats are provided, positioned on opposite sides of the first or second base frame. The rotating connecting rod has a Π-shaped structure, with its vertical member rotatably connected to the first rotating seat. A limiting baffle is fixed to the horizontal member of the rotating connecting rod. The second rotating seat is located on the side of the first or second base frame adjacent to the opposite side. The screw is rotatably connected to the second rotating seat. One end of the sleeve is sleeved on the screw, and the other end is rotatably connected to the horizontal member of the rotating connecting rod. An adjusting nut is also provided on the screw. The rotating connecting rod rotates on the first rotating seat, causing the screw to rotate on the second rotating seat. The sleeve moves axially on the screw to adjust the limiting baffle to contact the side of the photovoltaic glass. The adjusting nut moves on the screw and abuts against the end of the sleeve to limit its position.
3. The photovoltaic glass tray according to claim 2, characterized in that, At least two mounting plates are provided in the middle of the limiting baffle along the width direction, and a mounting position for positioning the sleeve is formed between the two mounting plates.
4. The photovoltaic glass tray according to claim 1, characterized in that, The limiting baffle has a buffer pad on the side near the photovoltaic glass.
5. The photovoltaic glass tray according to claim 1, characterized in that, A first connecting plate is detachably provided between two second base frames that are arranged opposite each other along the width direction of the tray body.
6. The photovoltaic glass tray according to claim 5, characterized in that, It also includes a second connecting plate, one end of which is detachably disposed between two first base frames arranged side by side, and the other end of which is connected to the middle of the first connecting plate.
7. The photovoltaic glass tray according to claim 5, characterized in that, The first base frame and the second base frame are detachably connected, and the first base frame, the second base frame and the tray body are detachably connected.
8. The photovoltaic glass tray according to claim 7, characterized in that, Each of the four corners of the first base frame and the second base frame is provided with a first positioning block, and each first positioning block is provided with a first positioning hole. A second positioning block is provided on the first connecting plate, and a second positioning hole is provided on the second positioning block. A positioning groove is provided on the pallet body, and a positioning pin is inserted into the positioning groove. After the first base frame and the second base frame are disassembled, the first base frame and the second base frame pass through the first positioning hole and are mounted on the positioning pin to be stacked flat on the pallet body. The first connecting plate passes through the second positioning hole and is mounted on the positioning pin to be stacked on the first base frame and the second base frame.
9. The photovoltaic glass tray according to claim 1, characterized in that, The bottom of the tray body is provided with a base, and the bottom of the base is provided with multiple anti-slip pads.
10. The photovoltaic glass tray according to claim 9, characterized in that, The anti-slip mat is made of rubber.