Broadcast system

CN224632423UActive Publication Date: 2026-08-14BEIJING JINGDONG YUANSHENG TECH CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2026-08-14

Smart Images

  • Figure CN224632423U_ABST
    Figure CN224632423U_ABST
Patent Text Reader

Abstract

Embodiments of this disclosure provide a split-cast system. The split-cast system includes at least a first split-cast component, a second split-cast component, and a plurality of feed ports. The first split-cast component includes a column and a plurality of split-cast platforms spaced apart on the column along its extension direction. The second split-cast component includes a column and a plurality of split-cast platforms spaced apart on the column along its extension direction. When a first feed port of the plurality of feed ports is aligned with one of the plurality of split-cast platforms of the first split-cast component or the second split-cast component, at least one remaining feed port other than the first feed port is aligned with a corresponding split-cast platform of the first split-cast component or the second split-cast component.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The embodiments of this disclosure generally relate to the field of subcast technology, and more specifically, to subcast systems. Background Technology

[0002] In the outbound order processing stage, to improve the efficiency of picking and sorting verification, an automated sorting device is introduced into the sorting system. This device automatically sorts goods into corresponding containers for collection based on order information.

[0003] The efficiency of the order fulfillment system determines the smoothness and timeliness of the entire warehouse order outbound process, and has a profound impact on the company's operating costs and customer satisfaction. Currently, manufacturers are actively seeking ways to improve order fulfillment efficiency. Utility Model Content

[0004] In one aspect of this disclosure, a split-cast system is provided, comprising at least: a first split-cast component, including: a column; and a plurality of split-cast platforms spaced apart on the column along its extension direction; a second split-cast component, including: a column; and a plurality of split-cast platforms spaced apart on the column along its extension direction; and a plurality of feed ports, wherein when a first feed port of the plurality of feed ports is aligned with one of the plurality of split-cast platforms of the first split-cast component or the second split-cast component, at least one remaining feed port of the plurality of feed ports other than the first feed port is aligned with a corresponding split-cast platform of the first split-cast component or the second split-cast component.

[0005] According to embodiments of this disclosure, both the first and second sub-distribution components are provided with multiple sub-distribution stations. Therefore, when a first feed port among the multiple feed ports is aligned with one of the multiple sub-distribution stations of the first or second sub-distribution component, at least one remaining feed port other than the first feed port is aligned with the corresponding sub-distribution station in the first or second sub-distribution component. In this manner, the operator can simultaneously feed to the corresponding sub-distribution station through multiple feed ports, significantly improving sub-distribution efficiency compared to feeding a single sub-distribution station.

[0006] In some embodiments, a plurality of subcast platforms of the first subcast component and / or the second subcast component are fixedly mounted on the column.

[0007] In some embodiments, a first distance between the plurality of sub-splitters of the first sub-splitter component and / or the second sub-splitter component on the column corresponds to a second distance between the plurality of supply ports in the extension direction.

[0008] In some embodiments, a plurality of subcast platforms of the first subcast component and / or the second subcast component are slidably mounted on the column.

[0009] In some embodiments, the first and second sub-broadcast components are adapted to move along a movement direction, wherein the first and second sub-broadcast components are arranged adjacent to each other and a third distance between the plurality of sub-broadcast stations of the first and second sub-broadcast components and the respective sub-broadcast stations of the second sub-broadcast components in the movement direction corresponds to a fourth distance between the plurality of supply ports in the movement direction.

[0010] In some embodiments, each splitter platform includes a slider, the column being slidably engaged with the slider, and the first splitter assembly and / or the second splitter assembly further includes a lifting motor and a lifting belt adapted to be driven by the lifting motor, the slider being connected to the lifting belt and adapted to slide along the column under the drive of the lifting belt.

[0011] In some embodiments, the first and / or second distribution components each include a plurality of distribution platforms comprising an irregularly shaped base plate. The first and / or second distribution components further include a plurality of tilting modules, each of which is disposed on a slider of a corresponding distribution platform. The output end of each tilting module is connected to the corresponding irregularly shaped base plate and is configured to lift one end of the corresponding irregularly shaped base plate adjacent to the column during operation to unload the corresponding cargo.

[0012] In some embodiments, a transport module is provided on each of the multiple transport platforms of the first and / or the second transport component, the transport module being adapted to carry corresponding goods and configured to transport the corresponding goods during operation.

[0013] In some embodiments, at least one of the multiple distribution platforms of the first distribution component and / or the second distribution component includes an irregularly shaped base plate. The first distribution component and / or the second distribution component further includes at least one tilting module, which is disposed on a slider of the corresponding distribution platform. The output end of the at least one tilting module is connected to the corresponding irregularly shaped base plate and is configured to lift one end of the corresponding irregularly shaped base plate adjacent to the column during operation to unload the corresponding goods. Furthermore, the remaining distribution platforms of the multiple distribution platforms of the first distribution component and / or the second distribution component, excluding the at least one distribution platform, are respectively provided with transport modules, which are adapted to carry the corresponding goods and are configured to transport the corresponding goods during operation.

[0014] In some embodiments, the distribution system further includes a rack having at least one feed location adjacent to one end thereto, and wherein the plurality of feed ports are disposed at the at least one feed location.

[0015] It should be understood that the description in this section is not intended to limit the key or essential features of the embodiments of this disclosure, nor is it intended to restrict the scope of this disclosure. Other features of this disclosure will become readily apparent from the following description. Attached Figure Description

[0016] The above and other features, advantages, and aspects of the embodiments of this disclosure will become more apparent from the accompanying drawings and the following detailed description. In the drawings, the same or similar reference numerals denote the same or similar elements, wherein:

[0017] Figure 1 A schematic diagram of the structure of a multicast system according to some embodiments of the present disclosure is shown;

[0018] Figure 2 A partial structural schematic diagram of a multicast system according to some embodiments of the present disclosure is shown;

[0019] Figure 3 A schematic diagram of the structure of a splitter assembly and rack according to some embodiments of the present disclosure is shown;

[0020] Figures 4 to 6 A schematic diagram of the structure of a multicast component according to some embodiments of the present disclosure is shown;

[0021] Figure 7 A schematic diagram of the structure of the rack and the supply step according to some embodiments of the present disclosure is shown.

[0022] Explanation of reference numerals in the attached figures:

[0023] 100-1 is the first sub-distribution component, 100-2 is the second sub-distribution component, 101 is the accommodating space; 200 is the rack, 201 is the supply port, 202 is the supply position, 203 is the guide rail; 300 is the supply step; 400 is the container.

[0024] 1 represents the column, and 11 represents the slide rail;

[0025] 2 is the broadcasting platform, 21 is the irregularly shaped base plate, 22 is the first baffle, 23 is the second baffle, and 24 is the sliding component;

[0026] 3 is the lifting motor; 4 is the lifting belt;

[0027] 5 represents the transportation module;

[0028] X represents the direction of movement, and Y represents the direction of extension of the column. Detailed Implementation

[0029] Embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure will be thorough and complete, and will fully convey the scope of the present disclosure to those skilled in the art.

[0030] The term "comprising" and its variations as used herein signify open inclusion, i.e., "including but not limited to". Unless otherwise stated, the term "or" means "and / or". The term "based on" means "at least partially based on". The terms "one example embodiment" and "one embodiment" mean "at least one example embodiment". The term "another embodiment" means "at least one additional embodiment". The terms "first", "second", etc., may refer to different or the same objects.

[0031] As described above, the efficiency of the sorting system determines the smoothness and timeliness of the entire warehouse order outbound process. It has been noted that conventional sorting devices have only a single platform on the column. After receiving the goods at the supply position, the platform moves to the target position to unload the goods to complete the sorting. The supply position may even have multiple slots in the vertical direction, but the sorting device, by only supplying a single platform, does not fully utilize the advantages of three-dimensional sorting, thus affecting sorting efficiency. Embodiments of this disclosure provide a sorting system to at least partially solve the above problems. In the following, [the following will be combined with...] Figures 1 to 7 The principles of this disclosure are described.

[0032] Figure 1 A schematic diagram of the structure of a split-cast system according to some embodiments of the present disclosure is shown. Figure 2 A partial structural schematic diagram of a multicast system according to some embodiments of the present disclosure is shown. Figure 3 A schematic diagram of the structure of a splitter assembly and rack 200 according to some embodiments of the present disclosure is shown. Figures 1 to 3 As shown, the broadcast system includes at least a first broadcast component 100-1, a second broadcast component 100-2, and multiple supply ports 201. The first broadcast component 100-1 includes a column 1 and multiple broadcast platforms 2, with the multiple broadcast platforms 2 spaced apart on the column 1 along the extending direction Y. The second broadcast component 100-2 includes a column 1 and multiple broadcast platforms 2, with the multiple broadcast platforms 2 spaced apart on the column 1 along the extending direction Y.

[0033] In some embodiments, the subcast system may not be limited to the first subcast component 100-1 and the second subcast component 100-2, and may also include other subcast components, such as a third subcast component, a fourth subcast component, etc. Other subcast components also include a column 1 and a plurality of subcast platforms 2 spaced at intervals along the extending direction Y of the column 1. In other embodiments, the number of the first subcast component 100-1 and the second subcast component 100-2 may be at least one.

[0034] refer to Figure 1 and Figure 3 In some embodiments, the distribution system may further include a rack 200, and the housing of the rack 200 is provided with a plurality of feed ports 201. An operator can place goods to be carried onto corresponding distribution platforms 2 through the plurality of feed ports 201. When a first feed port 201 of the plurality of feed ports 201 is aligned with one of the plurality of distribution platforms 2 of the first distribution component 100-1 or the second distribution component 100-2, at least one remaining feed port 201 other than the first feed port 201 is aligned with a corresponding distribution platform 2 of the first distribution component 100-1 or the second distribution component 100-2. In this way, an operator can simultaneously place multiple goods through the plurality of feed ports 201.

[0035] According to embodiments of this disclosure, both the first sub-broadcast component 100-1 and the second sub-broadcast component 100-2 are provided with a plurality of sub-broadcast stations 2. Therefore, when the first supply port 201 of the plurality of supply ports 201 is aligned with one of the plurality of sub-broadcast stations 2 of the first sub-broadcast component 100-1 or the second sub-broadcast component 100-2, at least one remaining supply port 201 other than the first supply port 201 is aligned with the corresponding sub-broadcast station 2 of the first sub-broadcast component 100-1 or the second sub-broadcast component 100-2. In this manner, the operator can simultaneously supply goods to the corresponding sub-broadcast station 2 through multiple supply ports 201, significantly improving sub-broadcast efficiency compared to supplying goods to a single sub-broadcast station 2.

[0036] Figures 4 to 6 A schematic diagram of the structure of a multicast component according to some embodiments of the present disclosure is shown. For example... Figure 4As shown, the plurality of subcast stations 2 of the first subcast component 100-1 can be fixedly mounted on the column 1. And / or, the plurality of subcast stations 2 of the second subcast component 100-2 can be fixedly mounted on the column 1. For example, in some embodiments, the plurality of subcast stations 2 of the first subcast component 100-1 can be fixedly mounted on the column 1. In other embodiments, the plurality of subcast stations 2 of the second subcast component 100-2 can be fixedly mounted on the column 1. In still other embodiments, the plurality of subcast stations 2 of the first subcast component 100-1 can be fixedly mounted on the column 1, and the plurality of subcast stations 2 of the second subcast component 100-2 can also be fixedly mounted on the column 1. The embodiments of this disclosure are not limited in this respect.

[0037] refer to Figure 3 and Figure 4 In some embodiments, when the plurality of sub-cast platforms 2 of the first sub-cast component 100-1 and / or the plurality of sub-cast platforms 2 of the second sub-cast component 100-2 are fixedly mounted on the column 1, the plurality of sub-cast platforms 2 of the first sub-cast component 100-1 and / or the plurality of sub-cast platforms 2 of the second sub-cast component 100-2 are spaced apart from each other by a first distance on the column 1. Correspondingly, referring to... Figure 3 Multiple supply ports 201 are spaced apart by a second distance in the extending direction Y. The first distance can correspond to the second distance. In this way, the multiple supply ports 201 are aligned with corresponding distribution platforms 2 in the extending direction Y, and operators can place multiple goods on the corresponding distribution platforms 2 simultaneously through the multiple supply ports 201, which helps to improve distribution efficiency.

[0038] For example, continue to refer to Figure 3 In some embodiments, the first distance can be equal to the second distance, while in other embodiments, the first distance can be close to the second distance, as long as the multiple supply ports 201 can be aligned with the corresponding broadcasting platforms 2.

[0039] like Figure 5 and Figure 6 As shown, a plurality of subcast platforms 2 of the first subcast component 100-1 are slidably mounted on the column 1. And / or, a plurality of subcast platforms 2 of the second subcast component 100-2 are slidably mounted on the column 1. For example, in some embodiments, a plurality of subcast platforms 2 of the first subcast component 100-1 are slidably mounted on the column 1. In other embodiments, a plurality of subcast platforms 2 of the second subcast component 100-2 are slidably mounted on the column 1. In still other embodiments, a plurality of subcast platforms 2 of the first subcast component 100-1 are slidably mounted on the column 1, and a plurality of subcast platforms 2 of the second subcast component 100-2 are slidably mounted on the column 1. The embodiments disclosed herein are not limited thereto.

[0040] It should be noted that since the multiple distribution platforms 2 are slidably arranged rather than fixedly arranged, the distance between the multiple distribution platforms 2 on the column 1 can be changed. However, when the multiple supply ports 201 are spaced apart by a second distance in the extension direction Y, the distance between the multiple distribution platforms 2 when they stop sliding must also correspond to the second distance. In this way, the multiple supply ports 201 are aligned with corresponding distribution platforms 2 in the extension direction Y, and the operator can place multiple goods on the corresponding distribution platforms 2 simultaneously through the multiple supply ports 201, which helps to improve distribution efficiency.

[0041] For example, in some embodiments, the distance between the multiple sub-platforms 2 when they stop sliding can be equal to the second distance. In other embodiments, the distance between the multiple sub-platforms 2 when they stop sliding can be close to the second distance. In still other embodiments, the distance between the multiple sub-platforms 2 when they stop sliding can be a multiple of the second distance. For example, if the multiple supply ports 201 include four supply ports 201 and the multiple sub-platforms 2 include two sub-platforms 2, the distance between the two sub-platforms 2 when they stop sliding can be twice the second distance. In this way, one sub-platform 2 can be aligned with one of the two upper supply ports 201 during sliding along the column 1, while another sub-platform 2 can be aligned with one of the two lower supply ports 201 during sliding along the column 1.

[0042] It should be noted that the figures, values, and numbers mentioned above, and elsewhere in this disclosure, are exemplary and are not intended to limit the scope of this disclosure in any way. Any other suitable figures, values, or numbers are possible. For example, depending on the specific application scenario and requirements, refer to... Figures 4 to 6 Multiple subcast stations 2 may also include two to four subcast stations 2. (See reference) Figure 3 Multiple supply ports 201 can also include three supply ports 201.

[0043] Continue to refer to Figure 3 In some embodiments, the first sub-broadcast component 100-1 and the second sub-broadcast component 100-2 are arranged adjacent to each other, and the third distance between the respective sub-broadcast platforms 2 of the first sub-broadcast component 100-1 and the corresponding sub-broadcast platforms 2 of the second sub-broadcast component 100-2 in the movement direction X corresponds to the fourth distance between the plurality of supply ports 201 in the movement direction X. For example, continuing to refer to Figure 3 In some embodiments, the third distance can be equal to the fourth distance, while in other embodiments, the third distance can be close to the fourth distance, as long as the multiple supply ports 201 can be aligned with the corresponding distribution platforms 2.

[0044] The following will combine Figure 3 Example embodiments of this disclosure will be described. Figure 3 In the example shown, the multiple feed ports 201 may include three feed ports 201. The three feed ports 201 may gradually rise or fall along the movement direction X. The three feed ports 201 are spaced a fourth distance apart in the movement direction X and a second distance apart in the extension direction Y. Correspondingly, the subcast system may include multiple subcast components, and the first subcast component 100-1 and the second subcast component 100-2 may be part of the multiple subcast components. Each subcast component is provided with three subcast stations 2. The three subcast stations 2 are spaced a first distance apart on the column 1, and the first distance is equal to the second distance. The subcast stations 2 of adjacent subcast components in the multiple subcast components are spaced a third distance apart in the movement direction X, and the third distance is equal to the fourth distance.

[0045] Continue to refer to Figure 3 When the first supply port 201 of the three supply ports 201 is aligned with one of the multiple subcast stations 2 of the first subcast component 100-1, the second supply port 201 of the three supply ports 201 can be aligned with one of the multiple subcast stations 2 of the second subcast component 100-2, and the third supply port 201 of the three supply ports 201 can be aligned with the corresponding subcast station 2 of another subcast component. In this way, the operator can supply goods to three subcast stations 2 simultaneously through the three supply ports 201, which can improve the subcast efficiency by three times compared to the method of supplying goods to a single subcast station 2.

[0046] It should be noted that the same applies to the case where there are multiple supply ports 201, including two or four or more supply ports 201, and each subcast component is equipped with two or four or more subcast stations 2, which will not be elaborated upon in this disclosure.

[0047] Return to reference Figure 2 In some embodiments, the first sub-distribution component 100-1 and the second sub-distribution component 100-2 are adapted to move relative to the frame 200 along the movement direction X. The frame 200 is provided with an annular closed guide rail 203, allowing the first sub-distribution component 100-1 and the second sub-distribution component 100-2 to move at a constant speed along the movement direction X. It can be understood that at both ends of the frame 200, the first sub-distribution component 100-1 and the second sub-distribution component 100-2 can move along an arc direction. (Continue referring to...) Figure 3 At the positions excluding both ends of the rack 200, the first sub-distribution component 100-1 and the second sub-distribution component 100-2 can move in a straight line.

[0048] Figure 7 A schematic diagram of the structure of the rack 200 and the supply step 300 according to some embodiments of the present disclosure is shown. Figure 1 , Figure 3 and Figure 7 As shown, in some embodiments, the rack 200 may include at least one feed position 202 adjacent to its own end. Multiple feed ports 201 are provided at at least one feed position 202. Correspondingly, at least one feed step 300 may be located at at least one feed position 202 to facilitate feeding by an operator. Multiple containers 400 may be located on the outer side of the rack 200 excluding both ends. The first distribution component 100-1, the second distribution component 100-2, or other distribution components can move to the corresponding container 400 according to order information and unload goods onto the corresponding container 400. It is understood that since the outer side of the rack 200 excluding both ends is used to place multiple containers 400, placing at least one feed step 300 at at least one feed position 202 of the rack 200 can prevent at least one feed step 300 from occupying the space of the container 400. In this way, with the number of containers 400 remaining unchanged, it is beneficial to reduce the overall length of the rack 200, thereby reducing the footprint of the distribution system. Of course, in other embodiments, at least one supply step 300 may also be provided at a position excluding both ends of the frame 200.

[0049] Continue to refer to Figure 7 In some embodiments, since the multiple supply ports 201 are spaced apart by a second distance in the extension direction Y, the heights of the multiple supply steps 300 may be unequal and located at the corresponding supply ports 201 in order to facilitate supplying the supply ports 201.

[0050] Return to reference Figures 4 to 6 In some embodiments, each distribution platform 2 can be used to carry and accommodate goods. When a transport module 5 is provided on the distribution platform 2, each distribution platform 2 may include a first baffle 22 and a pair of second baffles 23. The pair of second baffles 23 are disposed on the same side of the first baffle 22. The transport module 5 may be disposed between the pair of second baffles 23. The first baffle 22 may be connected to the column 1. In this way, the transport module 5, the first baffle 22, and the pair of second baffles 23 constitute a accommodating space 101 for accommodating goods.

[0051] Return to reference Figures 4 to 6In other embodiments, each distribution platform 2 can be used to carry and accommodate goods. When the distribution platform 2 is not equipped with a transport module 5, each distribution platform 2 may include a shaped base plate 21, a first baffle 22, and a pair of second baffles 23. The first baffle 22 and the pair of second baffles 23 are respectively disposed on the shaped base plate 21. The first baffle 22 and the pair of second baffles 23 are connected, and the first baffle 22 is coupled to the column 1. In this way, the shaped base plate 21, the first baffle 22, and the pair of second baffles 23 constitute a accommodating space 101 for accommodating goods.

[0052] refer to Figure 4 In some embodiments, when the distribution platform 2 is fixedly mounted on the column 1, the first baffle 22 is fixedly connected to the column 1. (See reference...) Figure 5 and Figure 6 In other embodiments, where the distribution platform 2 is slidably mounted on the column 1, each distribution platform 2 may also include a slider 24. The slider 24 can slide in conjunction with the column 1, for example, the column 1 can engage with the slider 24 via a slide rail 11. The first distribution assembly 100-1 and / or the second distribution assembly 100-2 may also include a lifting motor 3 and a lifting belt 4 adapted to be driven by the lifting motor 3. The lifting motor 3 is fixedly mounted on the end of the column 1. The slider 24 is connected to the lifting belt 4, for example, the slider 24 can be fixedly connected to the lifting belt 4. In this way, when the lifting motor 3 drives the lifting belt 4, the lifting belt 4 can drive the slider 24 to slide along the column 1, thereby driving the distribution platform 2 to slide along the column 1.

[0053] In some embodiments, each of the plurality of distributing platforms 2 of the first distributing assembly 100-1 may include a shaped base plate 21. And / or, each of the plurality of distributing platforms 2 of the second distributing assembly 100-2 may include a shaped base plate 21. The shaped base plate 21 facilitates the unloading of thin, easily rolling irregularly shaped goods. A slider may be coupled to the corresponding shaped base plate 21. The first distributing assembly 100-1 and / or the second distributing assembly 100-2 may also include a plurality of tilting modules (not shown in the figures). The plurality of tilting modules may be disposed on the sliders 24 of the corresponding distributing platforms 2, and their output ends may each be coupled to the corresponding shaped base plate 21. The tilting modules are configured to lift one end of the adjacent column 1 of the corresponding shaped base plate 21 during operation to unload goods located within the corresponding distributing platform 2. For example, the tilting module may include a drive motor and a lead screw connected to the drive motor and a lead screw nut connected to the lead screw. The lead screw nut can be connected to the corresponding irregularly shaped base plate 21 to drive the corresponding irregularly shaped base plate 21 to move, thereby flipping the distribution platform 2 and unloading the goods. It should be understood that the tilting module may also include a linear motor, a motor and gear rack combination, a cylinder, or any other mechanism capable of outputting linear motion.

[0054] Continue to refer to Figure 4 In other embodiments, transport modules 5 are respectively provided on the plurality of distribution platforms 2 of the first distribution assembly 100-1. And / or, transport modules 5 are respectively provided on the plurality of distribution platforms 2 of the second distribution assembly 100-2. The transport modules 5 are adapted to carry corresponding goods and are configured to transport the corresponding goods during operation. For example, the transport module 5 may include a belt module. The motor of the transport module 5 drives the belt during operation, thereby transporting relatively regular goods located on the belt.

[0055] Continue to refer to Figure 5 and Figure 6 In other embodiments, at least one of the multiple distribution platforms 2 of the first distribution assembly 100-1 includes an irregularly shaped base plate 21. And / or, at least one of the multiple distribution platforms 2 of the second distribution assembly 100-2 includes an irregularly shaped base plate 21. The first distribution assembly 100-1 and / or the second distribution assembly 100-2 also includes at least one tilting module. The at least one tilting module is disposed on the slider 24 of the corresponding distribution platform 2, and the output end of the at least one tilting module can be connected to the corresponding irregularly shaped base plate 21, and is configured to lift one end of the adjacent column 1 of the corresponding irregularly shaped base plate 21 during operation to unload the corresponding goods. In addition, the remaining distribution platforms 2 of the multiple distribution platforms 2 of the first distribution assembly 100-1, excluding the at least one distribution platform 2, are respectively provided with transport modules 5. And / or, transport modules 5 are respectively provided on the remaining transport stations 2 of the plurality of transport stations 2 of the second transport assembly 100-2, excluding at least one transport station 2. The transport modules 5 are adapted to carry corresponding goods and are configured to transport the corresponding goods during operation.

[0056] The configuration of the splitter components and feed ports according to embodiments of this disclosure can be applied to various splitter systems to at least partially solve the above-mentioned problems. It should be understood that the configuration of the splitter components and feed ports according to embodiments of this disclosure can also be applied to other components, and embodiments of this disclosure do not limit this application.

[0057] The various embodiments of this disclosure have been described above. These descriptions are exemplary and not exhaustive, and are not limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or technical improvements to the embodiments in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.

Claims

1. A distribution system, characterized in that At least including: The first subcast component (100-1) includes: Column (1); and Multiple broadcasting stations (2) are arranged at intervals on the column (1) along the extension direction (Y); The second subcast component (100-2) includes: Column (1); and Multiple sub-broadcasting stations (2) are spaced apart on the column (1) along the extending direction (Y); and Multiple feed ports (201), when a first feed port (201) of the multiple feed ports (201) is aligned with one of the multiple sub-broadcast platforms (2) of the first sub-broadcast component (100-1) or the second sub-broadcast component (100-2), at least one remaining feed port (201) of the multiple feed ports (201) other than the first feed port (201) is aligned with the corresponding sub-broadcast platform (2) of the first sub-broadcast component (100-1) or the second sub-broadcast component (100-2).

2. The distribution system of claim 1, wherein, Multiple sub-broadcast platforms (2) of the first sub-broadcast component (100-1) and / or the second sub-broadcast component (100-2) are fixedly mounted on the column (1).

3. The distribution system of claim 2, wherein, The first distance between the multiple broadcast platforms (2) of the first broadcast component (100-1) and / or the second broadcast component (100-2) on the column (1) corresponds to the second distance between the multiple feed ports (201) in the extension direction (Y).

4. The distribution system of claim 1, wherein, Multiple sub-broadcast platforms (2) of the first sub-broadcast component (100-1) and / or the second sub-broadcast component (100-2) are slidably mounted on the column (1).

5. The distribution system according to claim 2 or 4, characterized in that, The first subcast component (100-1) and the second subcast component (100-2) are adapted to move along the movement direction (X), and wherein The first sub-broadcast component (100-1) and the second sub-broadcast component (100-2) are arranged adjacent to each other, and the third distance between the plurality of sub-broadcast stations (2) of the first sub-broadcast component (100-1) and the corresponding sub-broadcast stations (2) of the plurality of sub-broadcast stations (2) of the second sub-broadcast component (100-2) in the movement direction (X) corresponds to the fourth distance between the plurality of supply ports (201) in the movement direction (X).

6. The distribution system of claim 4, wherein, Each broadcast platform (2) includes a slider (24) in which the column (1) is slidably engaged. The first broadcast assembly (100-1) and / or the second broadcast assembly (100-2) further include a lifting motor (3) and a lifting belt (4) adapted to be driven by the lifting motor (3). The slider (24) is connected to the lifting belt (4) and adapted to slide along the column (1) under the drive of the lifting belt (4).

7. The distribution system of claim 6, wherein, Each of the multiple distribution platforms (2) of the first distribution component (100-1) and / or the second distribution component (100-2) includes a shaped base plate (21). The first distribution component (100-1) and / or the second distribution component (100-2) also includes multiple tilting modules. Each of the multiple tilting modules is disposed on a slider (24) of the corresponding distribution platform (2). The output end of each of the multiple tilting modules is connected to the corresponding shaped base plate (21) and is configured to lift one end of the corresponding shaped base plate (21) adjacent to the column (1) during operation to unload the corresponding goods.

8. The distribution system of claim 6, wherein, Each of the multiple broadcast platforms (2) of the first broadcast component (100-1) and / or the second broadcast component (100-2) is provided with a transport module (5), which is adapted to carry the corresponding goods and is configured to transport the corresponding goods during operation.

9. The distribution system of claim 6, wherein, At least one of the multiple distribution platforms (2) of the first distribution assembly (100-1) and / or the second distribution assembly (100-2) includes a shaped base plate (21). The first distribution assembly (100-1) and / or the second distribution assembly (100-2) also includes at least one tilting module, which is disposed on a slider (24) of the corresponding distribution platform (2). The output end of the at least one tilting module is connected to the corresponding shaped base plate (21) and configured to lift one end of the corresponding shaped base plate (21) adjacent to the column (1) during operation to unload the corresponding cargo. Each of the remaining sub-broadcast stations (2) of the first sub-broadcast component (100-1) and / or the second sub-broadcast component (100-2), excluding the at least one sub-broadcast station (2), is provided with a transport module (5), the transport module (5) being adapted to carry the corresponding goods and being configured to transport the corresponding goods during operation.

10. The distribution system of claim 1, wherein, The distribution system also includes a rack (200) having at least one feed location (202) adjacent to its end, wherein the plurality of feed ports (201) are disposed at the at least one feed location (202).