Device for storing photovoltaic flower basket

By designing the frame, storage location conveying module, and docking conveying module, and utilizing the cooperation of the first drive mechanism and transmission components, the problems of complex structure and cumbersome control of photovoltaic storage devices are solved, achieving simplification and efficient transmission of the device.

CN224000321UActive Publication Date: 2026-03-17HANGZHOU HIKROBOT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing photovoltaic storage devices have complex structures and cumbersome control processes, and involve multiple power systems.

Method used

The structure adopts a frame, storage location conveying module and docking conveying module. The storage location conveying module includes a storage location conveying body and a first transmission component. The docking conveying module includes a docking conveying body and a first drive mechanism. The storage location conveying body is driven to convey through the connection and separation of the first drive mechanism and the first transmission component, which reduces the number of power systems and simplifies the control process.

Benefits of technology

This simplifies the structure and control process of the photovoltaic storage basket device, reduces the number of power systems, and improves maintenance convenience and transmission efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a device for storing photovoltaic flower baskets, the disclosed device comprises a frame body, a storage position conveying module and a butt joint conveying module, the storage position conveying module comprises a storage position conveying body and a first transmission part, and the first transmission part is connected with the storage position conveying body; the butt-joint conveying module comprises a butt-joint conveying body and a first driving mechanism, the first driving mechanism is movably arranged on the butt-joint conveying body, and the storage position conveying body and the butt-joint conveying body are arranged on the frame body at intervals in the conveying direction; under the condition that the first driving mechanism moves to be connected with the first transmission part, the first driving mechanism drives the storage position conveying body to convey in the conveying direction through the first transmission part; and under the condition that the first driving mechanism moves to be separated from the first transmission part, the storage position conveying body stops conveying. According to the scheme, the problems that a storage device in the related technology is relatively complex in structure and the control process is relatively complex can be solved.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic storage equipment technology, and in particular to a device for storing photovoltaic flower baskets. Background Technology

[0002] During the manufacturing process of photovoltaic modules, photovoltaic baskets (containers used to load photovoltaic modules) need to be stored and transferred between different processes. For this purpose, a storage device is typically used to access and retrieve the photovoltaic baskets. This storage device includes a docking conveyor module and a storage location conveyor module. The former is responsible for transporting the photovoltaic baskets to designated locations, while the latter is responsible for placing or retrieving the photovoltaic baskets from their storage locations.

[0003] When the storage device stores a flower basket onto the storage location conveyor module or removes a flower basket from the storage location conveyor module, the docking conveyor module needs to be moved to a position opposite to the storage location conveyor module. Both the docking conveyor module and the storage location conveyor module are equipped with their own power systems to enable their operation, thereby completing the storage and retrieval operation of the flower basket. The storage device is typically equipped with multiple storage location conveyor modules, and the docking conveyor module can move among these modules to cooperate with the corresponding storage location conveyor module. Each storage location conveyor module has its own independent power system. Because each storage location conveyor module has its own independent power system, the storage device has multiple power systems, resulting in a relatively complex overall structure and a relatively complex control process. Utility Model Content

[0004] This utility model discloses a device for storing photovoltaic flower baskets, in order to solve the problem that the storage device structure and control process in related technologies are relatively complex.

[0005] To solve the above-mentioned technical problems, this utility model is implemented as follows:

[0006] This application discloses a device for storing photovoltaic flower baskets. The device includes a frame, a storage space conveying module, and a docking conveying module. The storage space conveying module includes a storage space conveying body and a first transmission component, which is connected to the storage space conveying body. The docking conveying module includes a docking conveying body and a first driving mechanism, which is movably disposed on the docking conveying body. The storage space conveying body and the docking conveying body are spaced apart from each other on the frame along the conveying direction.

[0007] When the first drive mechanism moves to be connected with the first transmission member, the first drive mechanism drives the storage location conveying body to be conveyed along the conveying direction through the first transmission member;

[0008] When the first drive mechanism moves to a point where it is separated from the first transmission component, the storage location transport body stops transporting.

[0009] The technical solution adopted in this utility model can achieve the following technical effects:

[0010] This embodiment of the application configures the photovoltaic flower basket storage device as a structure including a frame, a storage location conveying module, and a docking conveying module. The storage location conveying module includes a storage location conveying body and a first transmission component, while the docking conveying module includes a docking conveying body and a first drive mechanism. This allows the first drive mechanism to move relative to the docking conveying body to a position connected to the first transmission component when the flower basket needs to be placed on or transported from the storage location conveying body to the docking conveying body. The first drive mechanism then connects with the first transmission component, driving the storage location conveying body along the conveying direction via the first transmission component. This eliminates the need for a power source on the storage location conveying body; only the docking conveying module needs a power system (i.e., the first drive mechanism) to drive the storage location conveying body. This reduces the number of power systems required for the photovoltaic flower basket storage device, thus simplifying its structure. Furthermore, since only the first drive mechanism needs to be controlled during the control process, the control process is significantly simplified compared to controlling the power systems of multiple storage location conveying modules separately. Attached Figure Description

[0011] Figure 1 This is an overall schematic diagram of the device for storing photovoltaic flower baskets disclosed in an embodiment of this utility model;

[0012] Figure 2 This is a partial schematic diagram of the device disclosed in the embodiments of this utility model;

[0013] Figure 3 This is a partially enlarged schematic diagram of the device disclosed in the embodiments of this utility model;

[0014] Figure 4 This is a schematic diagram of the structure of the docking and conveying body disclosed in an embodiment of the present utility model;

[0015] Figure 5 This is a schematic diagram of the storage bit transmission module disclosed in an embodiment of the present utility model;

[0016] Figure 6 This is a schematic diagram showing the cooperation between the storage bit delivery module and the first drive mechanism disclosed in an embodiment of the present utility model;

[0017] Figure 7 for Figure 6 A magnified view of a portion of the image;

[0018] Figure 8 This is a partial schematic diagram of the first driving mechanism disclosed in an embodiment of the present utility model;

[0019] Figure 9 This is a schematic diagram illustrating the cooperation between the storage bit transport module and the docking transport module disclosed in an embodiment of this utility model;

[0020] Figure 10 This is a schematic diagram of a storage location transport module carrying a flower basket, as disclosed in an embodiment of this utility model.

[0021] Explanation of reference numerals in the attached figures:

[0022] A-Flower Basket

[0023] 100 - Frame, 110 - Supporting Part

[0024] 200 - Storage location transport module, 210 - Storage location transport body, 220 - First transmission component,

[0025] 300 - Docking and conveying module; 310 - Docking and conveying body; 320 - First drive mechanism; 321 - First drive component; 322 - Second drive component; 323 - Second transmission component; 324 - First base; 325 - Second base; 326 - First guide rail; 327 - First slider.

[0026] 400 - Second drive mechanism, 500 - Third drive mechanism, 600 - Third base, 700 - Flower basket in / out conveyor module

[0027] 810 - Second guide rail, 820 - Second slider, 830 - Third guide rail

[0028] 910-Conveyor support, 920-Drive wheel assembly, 930-Driven wheel assembly, 940-Synchronous belt, 950-Side guard, 960-First stop block, 970-Second stop block. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0030] The technical solutions disclosed in the various embodiments of this utility model are described in detail below with reference to the accompanying drawings.

[0031] Please refer to Figures 1 to 10 This utility model discloses a device for storing photovoltaic flower baskets. The disclosed device for storing photovoltaic flower baskets includes a frame 100, a storage space conveying module 200, and a docking conveying module 300. The frame 100 is the main body of the device and is used to provide a base for mounting at least some of the other components of the device.

[0032] The storage location conveying module 200 includes a storage location conveying body 210 and a first transmission component 220. The storage location conveying body 210 can be a belt conveyor, a chain conveyor, or a telescopic platform mechanism, etc. This embodiment does not impose specific limitations on the form of the storage location conveying body 210. The storage location conveying body 210 is located at the storage position of the frame 100 and is used to receive the flower basket A conveyed by the docking conveying module 300. The first transmission component 220 is connected to the storage location conveying body 210.

[0033] The docking and conveying module 300 includes a docking and conveying body 310 and a first driving mechanism 320. The docking and conveying body 310 can be a transmission belt conveying mechanism, a transmission chain conveying mechanism, or a telescopic platform mechanism, etc. In this embodiment, the form of the storage location conveying body 210 is not specifically limited. The docking and conveying body 310 is used to convey the flower basket A to the storage location conveying body 210, or to receive the flower basket A output by the storage location conveying body 210.

[0034] The first drive mechanism 320 is movably disposed on the docking and conveying body 310. The first drive mechanism 320 may be a hydraulic drive mechanism, a pneumatic drive mechanism, a drive motor, etc. The type of the first drive mechanism 320 in this embodiment is not specifically limited.

[0035] Storage position conveying body 210 and docking conveying body 310 are spaced apart on the frame 100 along the conveying direction.

[0036] When the first drive mechanism 320 moves to be connected with the first transmission member 220, the first drive mechanism 320 drives the storage position conveying body 210 to convey along the conveying direction through the first transmission member 220.

[0037] When the first drive mechanism 320 moves to a position where it is separated from the first transmission member 220, the storage location transport body 210 stops transporting.

[0038] Specifically, when it is necessary to store basket A on the storage location conveyor body 210, basket A is carried on the docking conveyor body 310. The docking conveyor body 310 and the corresponding storage location conveyor body 210 are opposite each other along the conveying direction. At this time, the first drive mechanism 320 moves relative to the docking conveyor body 310 to a position connected with the first transmission member 220, so that the first drive mechanism 320 is connected to the first transmission member 220. The first drive mechanism 320 drives the storage location conveyor body 210 to convey along the conveying direction through the first transmission member 220. The power source for the docking conveyor body 310 to convey along the conveying direction does not come from the first drive mechanism 320, but is driven by the power source integrated into the docking conveyor body 310 itself. That is to say, the docking conveyor body 310 integrates a power source, while the storage location conveyor body 210 does not integrate a power source and is driven by the cooperation of the first drive mechanism 320 and the first transmission member 220. The docking conveyor body 310 and the storage location conveyor body 210 are simultaneously conveyed along the conveying direction, thereby transporting the flower basket located on the docking conveyor body 310 to the storage location conveyor body 210, thus achieving the storage of the flower basket. The process of transporting flower basket A from the storage location conveyor body 210 to the docking conveyor body 310 is similar and will not be described in detail here.

[0039] It should be noted that the docking and conveying module 300 typically needs to move between multiple storage location conveying bodies 210, therefore, the docking and conveying module 300 is usually located in a relatively large area. Because the docking and conveying module 300 occupies a relatively large space, it facilitates inspection and maintenance of the docking and conveying module 300.

[0040] This embodiment of the application configures the device for storing photovoltaic flower baskets as including a frame 100, a storage location conveying module 200, and a docking conveying module 300. The storage location conveying module 200 is configured to include a storage location conveying body 210 and a first transmission component 220, and the docking conveying module 300 is configured to include a docking conveying body 310 and a first driving mechanism 320. This ensures that when flower basket A needs to be stored on the storage location conveying body 210 or transported from the storage location conveying body 210 to the docking conveying body 310, the first driving mechanism 320 moves relative to the docking conveying body 310 to a position where it is aligned with the first driving mechanism 320. The transmission component 220 is connected to a position that allows the first drive mechanism 320 to connect with the first transmission component 220. The first drive mechanism 320 drives the storage space conveying body 210 to transport along the conveying direction via the first transmission component 220. Therefore, it is unnecessary to install a power source on the storage space conveying body 210. Only the connecting conveying module 300 needs to be equipped with a power system (i.e., the first drive mechanism 320) to drive the storage space conveying module 200, thereby reducing the number of power systems required for the photovoltaic flower basket storage device and simplifying its structure. Since only the first drive mechanism 320 needs to be controlled during the control process, the control process is effectively simplified compared to the separate control of the power systems for multiple storage space conveying modules in related technologies.

[0041] Moreover, when it is necessary to inspect and maintain the first drive mechanism 320 that drives the storage location transport body 210 to transport, the inspection and maintenance can be carried out directly on the docking transport module 300, thereby avoiding the disadvantage of maintenance and repair due to the small space occupied by the storage location transport body 210.

[0042] Optionally, there can be multiple storage location conveying modules 200, and the docking conveying body 310 can be movably mounted on the frame 100. When the docking conveying body 310 drives the first drive mechanism 320 to move relative to any docking conveying body 310 in the conveying direction, the first drive mechanism 320 can move relative to the docking conveying body 310 to a position connected or disconnected from the corresponding first transmission member 220. After receiving a corresponding control command, the docking conveying body 310 can move to a position relative to the corresponding storage location conveying module 200 in the conveying direction. After the docking conveying body 310 moves to the corresponding position, the first drive mechanism 320 can move relative to the docking conveying body 310 to a position connected to the corresponding first transmission member 220, thereby driving the storage location conveying module 200 for conveying. After the flower basket is conveyed, the first drive mechanism 320 can move relative to the docking conveying body 310 to a position disconnected from the corresponding first transmission member 220, and the docking conveying body 310 can perform other conveying operations.

[0043] Specifically, the docking and conveying body 310 can be movably mounted on the frame 100 via a robotic arm. Alternatively, the docking and conveying body 310 can be movably mounted on the frame 100 in other ways, as detailed below.

[0044] The device disclosed in this application improves the storage capacity by setting up multiple storage location transport modules 200. By cooperating with the multiple storage location transport modules 200 through the docking transport body 310, fewer docking transport bodies 310 can be set up when there are multiple storage location transport modules 200, which is conducive to deploying more storage location transport modules 200.

[0045] Furthermore, the first drive mechanism 320 may include a first drive member 321, a second drive member 322, and a second transmission member 323. The first drive member 321 may be disposed on the docking conveyor body 310, the second drive member 322 may be connected to the output end of the first drive member 321, and the second transmission member 323 may be connected to the output end of the second drive member 322. The first drive member 321 may be used to drive the second drive member 322 and the second transmission member 323 to move along the conveying direction, so that the second transmission member 323 may be connected to or separated from the first transmission member 220. The second drive member 322 may be used to drive the storage location conveyor body 210 to convey along the conveying direction when the second transmission member 323 is connected to the first transmission member 220.

[0046] The apparatus disclosed in this application configures the first driving mechanism 320 to include a first driving member 321, a second driving member 322, and a second transmission member 323, so that the first driving mechanism 320 can drive the second driving member 322 and the second transmission member 323 to move along the conveying direction, thereby enabling the second transmission member 322 to be connected or separated from the first transmission member 220. Furthermore, when the second transmission member 323 is connected to the first transmission member 220, the second driving member 322 can drive the storage location conveying body 210 to convey along the conveying direction.

[0047] It should be noted that the first driving component 321 and the second driving component 322 can be hydraulic drive mechanisms, pneumatic drive mechanisms, drive motors, etc. This application embodiment does not specifically limit the types of the first driving component 321 and the second driving component 322. The first transmission component 220 and the second transmission component 323 can both be gear assemblies, and they can be connected by meshing. Alternatively, the first transmission component 220 and the second transmission component 323 can also be friction rollers, and they can be connected by frictional contact, thereby transmitting power through friction. Of course, the first transmission component 220 and the second transmission component 323 can also have other mating methods, which will not be elaborated upon in this application embodiment.

[0048] Specifically, the first drive mechanism 320 may further include a first base 324, a second base 325, a first guide rail 326, and a first slider 327. The first base 324 may be disposed on the docking conveyor body 310, and the first drive member 321 may be disposed on the first base 324, indirectly disposed on the docking conveyor body 310 through the first base 324. The first guide rail 326 may be disposed on the first base 324 and extend along the conveying direction, the first slider 327 may be slidably disposed on the first guide rail 326, the second base 325 may be disposed on the first slider 327, and the second drive member 322 may be disposed on the second base 325. The output end of the first drive member 321 may be connected to the second base 325, and the second drive member 322 may be indirectly connected to the output end of the first drive member 321 through the second base 325.

[0049] The device disclosed in this application provides a first base 324, a second base 325, a first guide rail 326, and a first slider 327. The first base 324 can provide a base for mounting the first drive member 321. The second base 325 is slidably disposed on the first guide rail 326 along the conveying direction via the first slider 327. This makes the movement of the first drive member 321 driving the second drive member 322 and the second transmission member 323 via the second base 325 more stable, which in turn improves the stability of the second transmission member 323 and the first transmission member 220 during docking.

[0050] In one optional embodiment, the frame 100 may have a first region and a second region. The first region may have a plurality of support portions 110 distributed vertically, and each of the support portions 110 may be equipped with a storage location conveying module 200. A docking conveying module 300 may be located in the second region. The device may further include a second drive mechanism 400, which may be located in the frame 100 and connected to the docking conveying body 310. The second drive mechanism 400 may be used to drive the docking conveying module 300 to move vertically up and down, so that the docking conveying module 300 can move between the plurality of support portions 110.

[0051] The device disclosed in this application provides a plurality of support parts 110 in the first region of the frame 100 along the vertical direction and a second drive mechanism 400, so that the second drive mechanism 400 can drive the docking and conveying module 300 to move up and down in the vertical direction, so that the docking and conveying module 300 can move between the plurality of support parts 110, thereby enabling the docking and conveying module 300 to cooperate with the storage position conveying module 200 on the plurality of support parts 110 to store flower basket A, thereby improving the device's ability to store flower basket A.

[0052] Specifically, the disclosed device may further include a second guide rail 810 and a second slider 820. The second guide rail 810 may be arranged on the frame 100 extending vertically, and the second slider 820 may be arranged on the second guide rail. The docking and conveying module 300 may be connected to the second slider 820, so that when the second drive mechanism 400 drives the docking and conveying module 300 to move up and down in the vertical direction, it can move more accurately under the guidance and cooperation of the second guide rail 810 and the second slider 820.

[0053] Furthermore, the support section 110 can be divided into multiple support subsections along the first horizontal direction, and each support subsection can be equipped with a storage position conveying module 200. The device may also include a third drive mechanism 500 and a third base 600. The third base 600 can be movably disposed on the frame 100. The second drive mechanism 400 can be connected to the third base 600, and the docking conveying body 310 can be movably disposed on the third base 600. The second drive mechanism 400 is indirectly connected to the docking conveying body 310 through the third base 600. The third drive mechanism 500 can be disposed on the third base 600 and can be used to drive the docking conveying body 310 to move along the third base 600 in the first horizontal direction. The second drive mechanism 400 can drive the third drive mechanism 500 and the docking conveying module 300 to rise and fall through the third base 600.

[0054] The device disclosed in this application embodiment, by setting a third drive mechanism 500 and a third base 600, allows the docking and conveying module 300 and the third drive mechanism 500 to be disposed on the third base 600. The second drive mechanism 400 can drive the docking and conveying module 300 and the third drive mechanism 500 to move together vertically through the third base 600. The third drive mechanism 500 can drive the docking and conveying body 310 to move along the third base 600 in a first horizontal direction, thereby enabling the docking and conveying body 310 to move along the first horizontal direction to any position corresponding to any of the multiple support sub-parts, and thus cooperate with the storage position conveying module 200 at the corresponding position to convey the flower basket A.

[0055] Specifically, the device may also include a third guide rail 830 and a third slider. The third guide rail 830 may be provided on the third base 600 extending along the first horizontal direction, and the third slider may be slidably provided on the third guide rail 830. The docking conveyor body 310 may be connected to the third slider, so that the position is more accurate when the third drive mechanism 500 drives the docking conveyor body 310 to move along the third base 600 in the first horizontal direction.

[0056] Optionally, the third base 600 may be equipped with multiple docking and conveying modules 300, which may be arranged along the first horizontal direction. By setting multiple docking and conveying modules 300, the device's ability to convey the flower basket A can be improved.

[0057] To improve the efficiency of the device in conveying flower baskets, the frame 100 may optionally have a third region, and the first, second, and third regions may be distributed sequentially along a second horizontal direction. The device may also include a flower basket in / out conveying module 700, which may be located in the third region. The flower basket in / out conveying module 700 is used to convey flower basket A to the docking conveying module 300, or to receive flower basket A output from the docking conveying module 300 and output it outside the device. The first horizontal direction is perpendicular to the second horizontal direction.

[0058] Specifically, during the process of the docking conveyor module 300 carrying the flower basket and transporting it to the storage location conveyor module 200, the external conveying mechanism can place the flower basket on the flower basket in-and-out conveyor module 700 in advance. This way, when the docking conveyor module 300 finishes its transmission and the next flower basket A is transported, the flower basket A located on the in-and-out conveyor module 700 can be directly transported, reducing the waiting time for the flower basket A to be transported to the in-and-out conveyor module 700 and thus improving the transport efficiency of the flower basket A.

[0059] Furthermore, the third region may have a plurality of support portions 110 distributed in a vertical direction. Some of the support portions 110 in the third region may be provided with a storage position conveying module 200, and another part of the support portions 110 may be provided with a flower basket in-and-out conveying module 700. The support portion 110 provided with the flower basket in-and-out conveying module 700 is located below the support portion 110 provided with the storage position conveying module 200.

[0060] In this embodiment of the application, multiple support portions 110 are provided in the third region, such that some of the support portions 110 are provided with storage location conveying modules 200, thereby further improving the storage capacity of the device. Another portion of the support portions 110 is provided with a flower basket in / out conveying module 700. The support portion 110 with the flower basket in / out conveying module 700 is located below the support portion 110 with the storage location conveying module 200, which is beneficial for the conveying mechanism outside the device to convey the flower basket A between the flower basket in / out conveying module 700 and the flower basket A.

[0061] Specifically, the docking and conveying body 310 can be provided with a first driving mechanism 320 at one end in the second horizontal direction, thereby driving the docking and conveying body 310 to rotate by providing a fourth driving mechanism, thereby realizing the transmission between the first driving mechanism 320 and the first transmission member 220 of the storage position conveying module 200 located in the first region, and realizing the transmission between the first driving mechanism 320 and the first transmission member 220 of the storage position conveying module 200 located in the second region.

[0062] In another embodiment, the docking and conveying body 310 may be provided with a first drive mechanism 320 on both sides in the second horizontal direction.

[0063] The device disclosed in this application provides a first drive mechanism 320 on both sides of the docking and conveying body 310 in the second horizontal direction, thereby eliminating the need to rotate the docking and conveying body 310 and thus improving the transmission efficiency of the device.

[0064] Specifically, the docking conveyor body 310, the storage location conveyor body 210, and the flower basket in / out conveyor module 700 can all be transmission belt conveyor mechanisms. These mechanisms can include a conveyor support 910, a drive wheel assembly 920, a driven wheel assembly 930, and a synchronous belt 940. The drive wheel assembly 920 and the driven wheel assembly 930 can be spaced apart on the conveyor support 910 along the conveying direction. The synchronous belt 940 can connect the drive wheel assembly 920 and the driven wheel assembly 930. The drive wheel assembly 920 can drive the driven wheel assembly 930 to rotate via the synchronous belt 940. The synchronous belt 940 can support the flower basket A, and when it moves around the drive wheel assembly 920 and the driven wheel assembly 930, it can convey the flower basket A.

[0065] Furthermore, the transmission belt conveyor mechanism may also include side guards 950, which may be provided on both sides of the synchronous belt 940 perpendicular to the conveying direction, to prevent the basket A from slipping off both sides of the synchronous belt 940.

[0066] The docking conveyor body 310 is provided with first blocks 960 at both ends in the conveying direction. The first blocks 960 are used to extend during the process of the docking conveyor body 310 moving between the corresponding positions of the multiple storage position conveying modules 200 to prevent the flower basket A on the docking conveyor body 310 from slipping off. When the docking conveyor body 310 needs to convey the flower basket to the storage position conveying body 210 or the flower basket enters or exits the conveying module 700, the first blocks 960 fall down to avoid obstructing the conveying of the flower basket A.

[0067] The storage location transport body 210 may also include a second stop 970, which can make a limiting contact with the basket A after the basket A is moved into place by the storage location transport body 210, thereby making the position of the basket A in the storage location transport body 210 more accurate.

[0068] The above embodiments of this utility model mainly describe the differences between the various embodiments. As long as the different optimization features between the various embodiments are not contradictory, they can be combined to form a better embodiment. For the sake of brevity, they will not be described in detail here.

[0069] The embodiments of the present invention have been described above with reference to the accompanying drawings. However, the present invention is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present invention without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of the present invention.

Claims

1. A device for storing photovoltaic baskets, characterized in that, The device comprises a frame (100), a storage position conveying module (200) and a docking conveying module (300), the storage position conveying module (200) comprises a storage position conveying body (210) and a first transmission member (220), the first transmission member (220) is connected with the storage position conveying body (210); the docking conveying module (300) comprises a docking conveying body (310) and a first driving mechanism (320), the first driving mechanism (320) is movably arranged on the docking conveying body (310), the storage position conveying body (210) and the docking conveying body (310) are arranged on the frame (100) at intervals along a conveying direction; In the case that the first driving mechanism (320) moves to be connected with the first transmission member (220), the first driving mechanism (320) drives the storage position conveying body (210) to convey along the conveying direction through the first transmission member (220); In the case that the first driving mechanism (320) moves to be separated from the first transmission member (220), the storage position conveying body (210) stops conveying.

2. The apparatus of claim 1, wherein, The storage position conveying module (200) is multiple, the docking conveying body (310) is movably arranged on the frame (100), in the case that the docking conveying body (310) drives the first driving mechanism (320) to move to be opposite to any docking conveying body (310) in the conveying direction, the first driving mechanism (320) can move to be connected or separated from the corresponding first transmission member (220) relative to the docking conveying body (310).

3. The apparatus of claim 2, wherein, The first driving mechanism (320) comprises a first driving member (321), a second driving member (322) and a second transmission member (323), the first driving member (321) is arranged on the docking conveying body (310), the second driving member (322) is connected with the output end of the first driving member (321), the second transmission member (323) is connected with the output end of the second driving member (322), the first driving member (321) is used for driving the second driving member (322) and the second transmission member (323) to move along the conveying direction, so that the second transmission member (323) is connected or separated from the first transmission member (220), the second driving member (322) is used for driving the storage position conveying body (210) to convey along the conveying direction in the case that the second transmission member (323) is connected with the first transmission member (220).

4. The apparatus of claim 3, wherein, The first driving mechanism (320) further comprises a first base (324), a second base (325), a first guide rail (326) and a first sliding block (327), the first base (324) is arranged on the docking conveying body (310), the first driving member (321) is arranged on the first base (324), the first guide rail (326) is arranged on the first base (324) and extends along the conveying direction, the first sliding block (327) is slidingly arranged on the first guide rail (326), the second base (325) is arranged on the first sliding block (327), and the second driving member (322) and the second transmission member (323) are both arranged on the second base (325), and the output end of the first driving member (321) is connected with the second base (325).

5. The apparatus of claim 2, wherein, The frame body (100) has a first region and a second region, the first region has a plurality of support portions (110) distributed along a vertical direction, each of the plurality of support portions (110) is provided with the storage site conveying module (200), the docking conveying module (300) is arranged in the second region, and the device further comprises a second driving mechanism (400), the second driving mechanism (400) is arranged on the frame body (100) and connected with the docking conveying body (310) for driving the docking conveying module (300) to ascend and descend along the vertical direction so that the docking conveying module (300) moves between the plurality of support portions (110).

6. The apparatus of claim 5, wherein, The support portion (110) is divided into a plurality of support sub-portions along a first horizontal direction, each of the support sub-portions is provided with the storage site conveying module (200), and the device further comprises a third driving mechanism (500) and a third base (600), the third base (600) is movably arranged on the frame body (100), the second driving mechanism (400) is connected with the third base (600), the docking conveying body (310) is movably arranged on the third base (600), the third driving mechanism (500) is arranged on the third base (600) for driving the docking conveying body (310) to move along the third base (600) in the first horizontal direction, and the second driving mechanism (400) drives the third driving mechanism (500) and the docking conveying module (300) to ascend and descend through the third base (600).

7. The apparatus of claim 6, wherein, A plurality of the docking conveying modules (300) are arranged on the third base (600) and arranged along the first horizontal direction.

8. The apparatus of claim 6, wherein, The rack (100) further has a third area, the first area, the second area and the third area are distributed along a second horizontal direction in sequence, and the device further comprises a flower basket in-out conveying module (700), the flower basket in-out conveying module (700) is arranged in the third area, the flower basket in-out conveying module (700) is used for conveying a flower basket (A) to the docking conveying module (300), or receiving the flower basket (A) output by the docking conveying module (300) and outputting to outside of the device, wherein the first horizontal direction is perpendicular to the second horizontal direction.

9. The apparatus of claim 8, wherein, The third area has a plurality of support parts (110) distributed along a vertical direction, part of the support parts (110) in the third area are provided with the storage site conveying module (200), another part of the support parts (110) are provided with the flower basket in-out conveying module (700), and the support part (110) provided with the flower basket in-out conveying module (700) is located below the support part (110) provided with the storage site conveying module (200).

10. The apparatus of claim 9, wherein, The docking conveying body (310) is provided with the first driving mechanism (320) on both sides in the second horizontal direction.