Modular storage system

By introducing mounting seats, slide rails, drive components and adjustment mechanisms into the modular storage system, the automatic adjustment of the cargo space is achieved, solving the problem of fixing the space of traditional modular storage shelf, and improving the flexibility and warehousing efficiency of cargo storage.

CN115838047BActive Publication Date: 2025-07-04XIAMEN WEICHUANG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202211705399.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-29
Publication Date
2025-07-04
Estimated Expiration
2042-12-29

AI Technical Summary

Technical Problem

The cargo space of traditional modular storage shelves is fixed and cannot be adjusted according to actual needs, resulting in a reduced application range and adaptability.

Method used

The combination design of the mounting base, slide rail, drive assembly, fixing mechanism and adjustment mechanism is adopted, and the automatic adjustment of the partition is achieved through the motor drive and adjustment gear system, allowing flexible adjustment of the cargo space.

Benefits of technology

It realizes automatic adjustment of cargo space, improves the flexibility of cargo placement and convenience of warehousing, and adapts to the storage needs of different goods.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115838047B_ABST
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Abstract

The present invention discloses a modular warehousing system, belonging to the technical field of warehousing. In view of the fact that during the use of such modular warehousing shelves, since the shelves are fixed at the time of leaving the factory, the storage space inside the shelves is all fixed and cannot adjust the area of the space between adjacent goods. Then, only products of the same kind or specification can be placed and stored, and the space area of the storage location cannot be automatically adjusted according to the actual different goods requirements. This greatly reduces the application range and adaptability of the modular warehousing shelves, and cannot automatically adjust the placement and storage space of the modular shelves, reducing the placement practicality of the modular shelves. The system includes a frame body; through the cooperation of the first mounting seat, the second mounting seat, the placement channel, the partition board, the first groove, the first shaft body, and the connecting strip provided by the present invention, the shelves can be modularly arranged, facilitating the equal placement of goods.
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Description

Technical Field

[0001] The present invention belongs to the technical field of warehousing, and particularly relates to a modular warehousing system. Background Art

[0002] Warehousing is the storage and custody of goods and items through a warehouse. "Warehouse" refers to a general term for buildings and sites for storing, keeping, and storing items, which can be a building, a cave, a large container, or a specific site, etc., and has the function of storing and protecting items. "Storage" means storing and reserving for future use, and has the meaning of storing, keeping, and delivering for use.

[0003] Warehousing is a comprehensive place that centrally reflects the material activities of a factory. It is a transfer station connecting production, supply, and sales, and plays an important auxiliary role in promoting production and improving efficiency. Warehousing is the temporary storage of products and items during the production and circulation processes due to order preposition or market forecast preposition. At the same time, around the physical activities of warehousing, clear and accurate reports, documents, and accurate information calculated by the accounting department are also carried out simultaneously. Therefore, warehousing is the integration of logistics, information flow, and document flow.

[0004] Traditional warehousing refers to the activities of warehousing various materials and their related facilities and equipment into, storing, and out of the warehouse. Modern warehousing refers to adding links such as in-warehouse processing, sorting, and in-warehouse packaging on the basis of traditional warehousing. Warehousing is one of the important links in production manufacturing and commodity circulation, and is also an important link in logistics activities.

[0005] The publication number CN107054958B discloses a modular storage system, which includes a plurality of shelf units and at least one refrigeration unit. An accommodation space for accommodating goods is formed inside the shelf unit, and a first refrigeration space for refrigerating goods is formed inside the refrigeration unit; the plurality of shelf units are detachably connected, and the plurality of shelf units are stacked in the horizontal direction and / or the vertical direction to form different assembled shelf structures; the refrigeration unit and the shelf unit are detachably connected. The modular storage system provided by the present invention has good assembly performance, realizes the full utilization of the storage space, has a relatively low transportation difficulty, and also reduces the transfer cost of the shelf structure in the storage space. However, during the use of this modular storage shelf, since the shelf is fixed at the time of leaving the factory, the storage space inside the shelf is all fixed and cannot adjust the area of the space between adjacent goods. Then, only products of the same type or specification can be placed and stored, and the space area of the storage location cannot be automatically adjusted according to the actual different goods requirements. This greatly reduces the application range and adaptability of the modular storage shelf, and cannot automatically adjust the placement and storage space of the modular shelf, reducing the placement practicability of the modular shelf. For this reason, we propose a modular storage system to solve the problem that the storage space of the storage shelf cannot be automatically adjusted. Summary of the Invention

[0006] The purpose of the present invention is to provide a modular storage system to solve the problems raised in the above background technology.

[0007] To achieve the above purpose, the present invention provides the following technical solution: A modular storage system, including a frame body, the frame body includes a plurality of parallel installation seats one, and also includes

[0008] Two symmetrically distributed installation seats two, the installation seats two are fixed to both ends of the plurality of installation seats one, a placement channel is formed between adjacent installation seats one and installation seats two, a plurality of parallel grooves one are opened on the top side wall of the installation seat one, a first shaft body is rotatably connected to one side side wall of the groove one, a connecting strip is fixed on the outer side wall of the first shaft body, the first shaft body and the connecting strip are perpendicular to each other, and a partition board is fixed to the end of the connecting strip away from the first shaft body;

[0009] A slide rail, the slide rail is opened on the outer wall of one side of the installation seat one;

[0010] A driving component, the driving component is slidably connected to the slide rail and is used for adjusting the position of the partition board;

[0011] A fixing mechanism, which is installed on the outer side wall of the installation seat one and is used for fixing and limiting the position of the first shaft body;

[0012] An adjustment mechanism is installed on one side of the fixing mechanism and is used to open and close the state of the fixing mechanism.

[0013] It should be noted in the solution that the driving component includes a driving vehicle body electrically slidingly connected to the slide rail. A stepping motor is arranged inside the driving vehicle body. The output shaft of the stepping motor extends outside the driving vehicle body and is fixed with a driving plate. A regulating plate is fixed on the side wall of the driving plate away from the stepping motor.

[0014] Furthermore, it is worth noting that a plurality of parallel adjustment racks are arranged along the length direction on one side wall of the regulating plate. Symmetrically distributed pressing plates are fixed at the bottoms of the outer walls on both sides of the driving vehicle body, and the pressing plates are perpendicular to the driving vehicle body.

[0015] Even further, it should be noted that the fixing mechanism protects a fixing plate fixed on the outer side wall of a mounting base. A fixing channel penetrating from left to right is arranged on one side wall of the fixing plate. A fixing rod is slidably connected to the inner side wall of the fixing channel. One end of the fixing rod extends outside the fixing channel and is fixed with a pulling plate, and the pulling plate is perpendicular to the fixing rod.

[0016] As a preferred implementation manner, a return spring is sleeved on the outer side wall of the fixing rod. One end of the return spring is fixed to the side wall of the pulling plate, and the other end of the return spring is fixed to the side wall of the fixing plate. Symmetrically distributed fixing grooves are arranged on the outer side wall of the first shaft body, and the fixing grooves are clamped with the fixing rod.

[0017] As a preferred implementation manner, the adjustment mechanism includes an adjustment seat fixed on the outer side wall of one side of the mounting base. An adjustment table slidably connected to the side wall of the mounting base is installed above the adjustment seat, and the outer walls on both sides of the adjustment table are both arc-shaped structures.

[0018] As a preferred implementation manner, the lowest end of the arc-shaped structure of the adjustment table is flush with the pressing plate. An adjustment spring is fixed to the bottom side wall of the adjustment table, and the other end of the adjustment spring away from the adjustment table is fixed to the top side wall of the adjustment seat. An adjustment shaft fixed to the outer side wall of the mounting base is installed on one side of the adjustment seat, and an adjustment hole is arranged on the adjustment shaft.

[0019] As a preferred implementation manner, a steel wire is placed inside the adjustment hole. One end of the steel wire is fixed to the side wall of the pulling plate, and the other end of the steel wire is fixed to the bottom side wall of the adjustment table, and the steel wire is in a tense state.

[0020] As a preferred implementation manner, the regulating plate and the pulling plate are staggered in position. The adjustment table is located directly above the adjustment seat, and the adjustment table is perpendicular to the adjustment seat. The arc-shaped structures of the adjustment table are both located at the upper two ends of the adjustment table.

[0021] Compared with the prior art, the modular storage system provided by the present invention has at least the following beneficial effects:

[0022] (1) Through the cooperation of the first mounting seat, the second mounting seat, the placing channel, the partition board, the first groove, the first shaft body and the connecting strip provided by the present invention, the shelf can be modularly arranged, which is convenient for evenly placing goods. Through the adjustment gear and the fixing mechanism provided, the position of the partition board can be further fixed continuously, so that the area of the separated space can be effectively stabilized further, which is convenient for placing goods for storage and placing goods;

[0023] (2) Through the driving component provided by the present invention, the placing space between adjacent ones can be adjusted according to the size of different goods, the partition board can be automatically retracted into the first groove, the adjacent goods storage spaces can be opened up, and the goods placing space can be automatically adjusted. Compared with the traditional fixed modular shelf, it has the flexibility of adjusting the goods placing space of the shelf, which is convenient for combining the goods placing space and improves the flexibility;

[0024] (3) Through the adjusting mechanism provided by the present invention, during the movement of the driving component, the fixing rod can be automatically pulled to move, so that the fixing rod is separated from the fixing groove, and thus the limit on the first shaft body can be automatically released. In this way, when the driving component passes through the area of the adjusting gear, the first shaft body can be automatically driven to rotate by itself, and the first shaft body drives the partition board to flip, so as to adjust the space between adjacent ones, and the partition board can be erected to separate or horizontally placed to open the space, which improves the degree of automation as a whole;

[0025] (4) By adopting the driving component, the adjusting mechanism and the fixing mechanism, the present invention can automatically adjust the goods placing space of the shelf, automatically open and close the goods placing space, and directly adjust the working position of the partition board. In this way, the placement of the shelf can be effectively adjusted according to different goods as a whole, and the traditional modular mode is replaced with a flexible modular shelf, which is convenient for different warehouses to use and improves the storage convenience. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is the main front view of the three-dimensional structure of the present invention;

[0027] Figure 2 is the main front view of the partial three-dimensional structure of the present invention;

[0028] Figure 3 is Figure 2 the enlarged three-dimensional structure view of part A in;

[0029] Figure 4 isFigure 2 Stereoscopic view of the enlarged structure of part B

[0030] Figure 5 Side stereoscopic view of the local structure of the present invention

[0031] Figure 6 is Figure 5 Stereoscopic view of the enlarged structure of part C

[0032] Figure 7 Top stereoscopic view of the structure of the present invention

[0033] Figure 8 is Figure 7 Stereoscopic view of the enlarged structure of part D

[0034] In the figure: 1 first mounting seat, 2 second mounting seat, 3 placement channel, 4 first groove, 5 first shaft body, 6 connecting bar, 7 partition board, 8 slide rail;

[0035] 9 driving assembly, 901 driving vehicle body, 902 driving plate, 903 adjusting plate, 904 adjusting rack, 905 pressing plate;

[0036] 10 adjusting mechanism, 1001 adjusting seat, 1002 adjusting table, 1003 adjusting shaft, 1004 adjusting spring, 1005 steel wire, 1006 arc structure;

[0037] 11 fixing mechanism, 1101 fixing plate, 1102 fixing rod, 1103 reset spring, 1104 pulling plate, 1105 fixing groove, 12 adjusting gear. Detailed implementation mode

[0038] The present invention will be further described below in conjunction with embodiments.

[0039] In order to make the objectives, technical solutions and advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all of the embodiments. Based on the described embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of the present disclosure.

[0040] Unless otherwise defined, the technical terms or scientific terms used in this disclosure shall have the ordinary meanings understood by those of ordinary skill in the field to which this disclosure pertains. The terms such as "including" or "comprising" used in this disclosure mean that the elements or objects appearing before this word cover the elements or objects listed after this word and their equivalents, without excluding other elements or objects. The terms such as "connected" or "coupled" do not limit to physical or mechanical connections, and may also include electrical connections, whether direct or indirect. The terms such as "upper", "lower", "left", and "right" are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly.

[0041] Please refer to Figure 1-8 , the present invention provides a modular storage system, including a rack body. The rack body includes a plurality of mounting seats 1 arranged in parallel, and the spacing between each pair of mounting seats 1 is the same. Both ends of the plurality of mounting seats 1 are commonly fixed with mounting seats 2. The mounting seats 1 and the mounting seats 2 are perpendicular to each other. A placement channel 3 is formed between adjacent mounting seats 1 and mounting seats 2. Except that a groove 4 is provided on the top side wall of the top mounting plate 1, a first shaft body 5 is rotatably connected to one side wall of the groove 4. A connecting strip 6 is fixed to the outer side wall of the first shaft body 5, and the first shaft body 5 and the connecting strip 6 are perpendicular to each other. One end of the connecting strip 6 away from the first shaft body 5 is fixed with a partition plate 7. The partition plate 7 divides the placement channel 3 into multiple areas for placing goods. At this time, the partition plate 7 is vertically arranged. When the partition plate 7 is horizontally placed, the partition plate 7 can enter the groove 4 along with the first shaft body 5. At the same time, the setting of the groove 4 does not affect the placement of goods. The bottom end of the goods placement is still directly placed on the surface of the mounting seat 1 and is not affected by the groove 4. A slide rail 8 is provided on one outer side wall of the mounting seat 1, and a driving assembly 9 is slidably connected to the slide rail 8. The other end of the first shaft body 5 extends outside the groove 4 and is fixed with an adjusting gear 12. A fixing mechanism 11 for fixing and limiting the position of the first shaft body 5 is provided on one side of the adjusting gear 12, and an adjusting mechanism 10 is provided on one side of the fixing mechanism 11.

[0042] Further, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 8As shown, it is worth specifically stating that the driving component 9 includes a driving vehicle body 901 electrically slidably connected to the slide rail 8. The driving vehicle body 901 can be controlled by a remote controller to drive the driving vehicle body 901 to move back and forth along the slide rail 8. At the same time, a power supply is configured inside the driving vehicle body 901, and the power supply inside the driving vehicle body 901 needs to be charged every once in a while. The cycle is generally three to six months. A stepping motor is provided inside the driving vehicle body 901. The stepping motor uses a small micro motor, and the power supply configured inside the driving vehicle body 901 provides power for the stepping motor. The output shaft of the stepping motor extends outside the driving vehicle body 901 and is fixed with a driving plate 902. A regulating plate 903 is fixed on the side wall of the driving plate 902 away from the stepping motor. A plurality of parallel regulating racks 904 are provided on one side wall of the regulating plate 903 along its length direction. The regulating plate 903 has two working states. When the regulating gear 12 is not adjusted, the regulating racks 904 of the regulating plate 903 are placed upwards. At this time, no matter how the driving vehicle body 901 moves, the regulating racks 904 will not cooperate with the regulating gear 12. When the regulating gear 12 is adjusted, the stepping motor will drive the regulating plate 903 to flip downwards, so that the regulating plate 903 drives the regulating racks 904 to mesh with the regulating gear 12, enabling the first shaft body 5 to rotate self, so that the first shaft body 5 drives the connecting bar 6, and the connecting bar 6 drives the partition plate 7 to rotate, so that the partition plate 7 enters the inside of the first groove 4 for placing and adjusting the use space. At the same time, symmetrically distributed pressing plates 905 are fixed at the bottoms of the outer walls on both sides of the driving vehicle body 901. The pressing plates 905 are perpendicular to the driving vehicle body 901. The rack is installed at a specified warehouse location. When merging and adjusting the space of the placement area between adjacent partition plates 7, only need to remotely start the driving vehicle body 901. The driving vehicle body 901 will drive the pressing plates 905, the stepping motor, and the regulating plate 903 to move. When it has not moved to the corresponding area of the partition plate 7 that needs to be adjusted, the regulating plate 903 drives the regulating racks 904 to move. At this time, the regulating racks 904 are set upwards, so when the regulating plate 903 passes through other areas of the regulating gear 12, it will not mesh with the regulating gear 12. When moving to the area of the partition plate 7 that needs to be adjusted, start the stepping motor. The stepping motor drives the driving plate 902 to flip, and the driving plate 902 drives the regulating plate 903 to flip, so that the regulating plate 903 drives the regulating racks 904 to be set downwards.

[0043] Further, as Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 8As shown, it is worth specifically explaining that the fixing mechanism 11 protects the fixing plate 1101 fixed to the outer side wall of the mounting base 1. A fixing channel penetrating left and right is provided on one side wall of the fixing plate 1101. A fixing rod 1102 is slidably connected to the inner side wall of the fixing channel. One end of the fixing rod 1102 extends outside the fixing channel and is fixed with a pulling plate 1104. The pulling plate 1104 is perpendicular to the fixing rod 1102. A return spring 1103 is sleeved on the outer side wall of the fixing rod 1102. One end of the return spring 1103 is fixed to the side wall of the pulling plate 1104, and the other end of the return spring 1103 is fixed to the side wall of the fixing plate 1101. Symmetrically distributed fixing grooves 1105 are provided on the outer side wall of the first shaft body 5. The fixing grooves 1105 are clamped with the fixing rods 1102, which can automatically fix the position of the partition 7 after adjustment, ensure the stable distinction of the position of the separated space area, and then drive the vehicle body 901 to drive the pressing plate 905 to move. The pressing plate 905 presses the arc-shaped structure 1006 of the adjusting table 1002, so that the adjusting table 1002 pulls the steel wire 1005 to move. The other end of the steel wire 1005 pulls the pulling plate 1104 to move. The pulling plate 1104 drives the fixing rod 1102 to move. The fixing rod 1102 is separated from the corresponding fixing groove 1105. At this time, the limit of the first shaft body 5 is released, and then the vehicle body 901 is driven to drive the adjusting plate 903 to move. The adjusting plate 903 drives the adjusting rack 904 to move. The adjusting rack 904 meshes with the adjusting gear 12 to drive the first shaft body 5 to rotate automatically. The first shaft body 5 drives the connecting bar 6 to rotate automatically. The connecting bar 6 drives the partition 7 to rotate, so that the partition 7 enters the first groove 4, and the two regional spaces are opened.

[0044] The present solution has the following working process: Install the frame body at the designated warehouse location. When adjusting the space by merging the placement areas between adjacent partitions 7, only need to remotely start the driving vehicle body 901. The driving vehicle body 901 will drive the pressing plate 905, the stepping motor, and the adjusting plate 903 to move. When it has not moved to the corresponding area of the partition 7 that needs to be adjusted, the adjusting plate 903 drives the adjusting rack 904 to move. At this time, the adjusting rack 904 is arranged upward, so when the adjusting plate 903 passes through the area of other adjusting gears 12, it will not engage with the adjusting gear 12. When it moves to the area of the partition 7 that needs to be adjusted, start the stepping motor. The stepping motor drives the driving plate 902 to flip, and the driving plate 902 drives the adjusting plate 903 to flip, so that the adjusting plate 903 drives the adjusting rack 904 to be arranged downward. Then the driving vehicle body 901 drives the pressing plate 905 to move, and the pressing plate 905 presses the arc structure 1006 of the adjusting table 1002, so that the adjusting table 1002 pulls the steel wire 1005 to move. The other end of the steel wire 1005 pulls the pulling plate 1104 to move, and the pulling plate 1104 drives the fixing rod 1102 to move. The fixing rod 1102 is separated from the corresponding fixing groove 1105. At this time, the limit of the first shaft body 5 is released. Then the driving vehicle body 901 drives the adjusting plate 903 to move, and the adjusting plate 903 drives the adjusting rack 904 to move. The meshing transmission between the adjusting rack 904 and the adjusting gear 12 drives the first shaft body 5 to rotate self, the first shaft body 5 drives the connecting bar 6 to rotate self, and the connecting bar 6 drives the partition 7 to rotate, so that the partition 7 enters the inner part of the groove one 4, and the two regional spaces are opened. When the driving vehicle body 901 drives the adjusting plate 903 to move out of the rest of the adjusting gear 12, then make the stepping motor drive the adjusting plate 903 to flip, so that the adjusting plate 903 drives the adjusting rack 904 to be arranged upward. At the same time, when the driving vehicle body 901 drives the pressing plate 905 to move out of the position of the adjusting plate 903, under the elastic force of the adjusting spring 1004, the adjusting table 1002 moves upward to resume, and at this time the steel wire 1005 is no longer tightened. Under the elastic force of the reset spring 1103, the fixing rod 1102 is clamped with the corresponding fixing groove 1105, and the position fixing of the first shaft body 5 is completed, so as to fix the position of the partition 7, and then the automatic space adjustment is completed. When adjusting the space to be reduced, the principle is as above. Make the driving vehicle body 901 move in the reverse direction, and the first shaft body 5 can drive the partition 7 to be erected, so as to complete the adjustment of the space.

[0045] According to the above working process, it can be seen that: through the cooperation of the first mounting base 1, the second mounting base 2, the placing channel 3, the partition 7, the first groove 4, the first shaft body 5, and the connecting strip 6 provided in the present invention, the shelf can be modularly arranged, which is convenient for evenly placing goods. Through the adjustment gear 12 and the fixing mechanism 11 provided, the position of the partition 7 can be continuously further fixed, so that the area of the separated space can be effectively further stabilized, which is convenient for placing goods for storage and for placing goods. Through the driving assembly 9 provided in the present invention, the placing space between adjacent ones can be adjusted according to the size of different goods, the partition 7 can be automatically retracted into the first groove 4, the adjacent goods spaces can be opened up, and the goods placing space can be automatically adjusted. Compared with the traditional fixed modular shelf, it has the flexibility to adjust the goods placing space of the shelf, which is convenient for combining the goods placing space and improves the flexibility. Through the adjustment mechanism 10 provided in the present invention, during the movement of the driving assembly 9, the fixing rod 1102 can be automatically pulled to move, so that the fixing rod 1102 is separated from the fixing groove 1105, thereby automatically releasing the limit on the first shaft body 5. In this way, when the driving assembly 9 passes through the area of the adjustment gear 12, the first shaft body 5 can be automatically driven to rotate itself, and the first shaft body 5 drives the partition 7 to flip, so as to adjust the space between adjacent ones, and the partition 7 can be set up to separate or horizontally placed to open the space, which overall improves the degree of automation. By adopting the driving assembly 9, the adjustment mechanism 10, and the fixing mechanism 11, the goods placing space of the shelf can be automatically adjusted, the goods placing space can be automatically opened and closed, and the working position of the partition 7 can be directly adjusted. In this way, the placement of the shelf can be effectively adjusted according to different goods as a whole, the traditional module mode can be replaced with a flexible modular shelf, which is convenient for different warehouses to use and improves the warehousing convenience.

[0046] Further, as Figure 3 , Figure 4 and Figure 6As shown, it is worth specifically explaining that the adjusting mechanism 10 includes an adjusting base 1001 fixed to the outer wall of one side of the first mounting base 1. Above the adjusting base 1001, an adjusting table 1002 slidably connected to the side wall of the first mounting base 1 is installed. The outer walls on both sides of the adjusting table 1002 are both formed into arc-shaped structures 1006. The lowest end of the arc-shaped structure 1006 of the adjusting table 1002 is flush with the pressing plate 905. During the movement of the pressing plate 905, it can stably press the arc-shaped structure 1006 of the adjusting table 1002, and can cooperate with the driving vehicle body 901. A adjusting spring 1004 is fixed to the side wall at the bottom end of the adjusting table 1002. One end of the adjusting spring 1004 away from the adjusting table 1002 is fixed to the top side wall of the adjusting base 1001. An adjusting shaft 1003 fixed to the outer side wall of the first mounting base 1 is installed on one side of the adjusting base 1001. An adjusting hole is provided in the adjusting shaft 1003, and a steel wire 1005 is placed inside the adjusting hole. One end of the steel wire 1005 is fixed to the side wall of the pulling plate 1104, and the other end of the steel wire 1005 is fixed to the side wall at the bottom end of the adjusting table 1002. At this time, the steel wire 1005 is in a taut state. When the adjusting table 1002 is squeezed, during the downward movement of the adjusting table 1002, it will pull the steel wire 1005. Then the other end of the steel wire 1005 will pull the pulling plate 1104, forming a linkage reaction, so that the pulling plate 1104 drives the fixing rod 1102 to separate from the fixing groove 1105, releasing the limit on the first shaft body 5. At the same time, the adjusting table 1002 is distributed in a staggered manner with the pulling plate 1104, and the position of the adjusting table 1002 will not affect the movement of the pulling plate 1104. When the driving vehicle body 901 drives the adjusting plate 903 to move out of the adjusting gear 12, and then the stepping motor drives the adjusting plate 903 to flip, so that the adjusting plate 903 drives the adjusting rack 904 to be set upward. At the same time, when the driving vehicle body 901 drives the pressing plate 905 to move out of the position of the adjusting plate 903, under the elastic force of the adjusting spring 1004, the adjusting table 1002 moves upward to resume. At this time, the steel wire 1005 is no longer tightened. Under the elastic force of the return spring 1103, the fixing rod 1102 is clamped with the corresponding fixing groove 1105 to complete the fixing of the position of the first shaft body 5, thereby fixing the position of the partition plate 7, and then completing the automatic space adjustment. When the space is adjusted to be reduced, the principle is the same as above. Make the driving vehicle body 901 move in the reverse direction, and the first shaft body 5 can drive the partition plate 7 to be erected, so as to complete the adjustment of the space.

[0047] The stepping motor can be purchased on the market. The stepping motor is equipped with a power supply, which is a mature technology in this field and has been fully disclosed. Therefore, it is not repeated in the specification.

Claims

1. A modular storage system, comprising a rack body, characterized in that, The frame body includes a plurality of mounting seats one (1) arranged in parallel, and further includes: Two symmetrically distributed mounting seats two (2), the mounting seats two (2) are fixed to both ends of the plurality of mounting seats one (1), a placement channel (3) is formed between adjacent mounting seats one (1) and mounting seats two (2), a plurality of parallel grooves one (4) are formed in the top side wall of the mounting seat one (1), a first shaft body (5) is rotatably connected to one side wall of the groove one (4), a connecting strip (6) is fixed to the outer side wall of the first shaft body (5), the first shaft body (5) and the connecting strip (6) are perpendicular to each other, and a partition plate (7) is fixed to the end of the connecting strip (6) away from the first shaft body (5); A slide rail (8), the slide rail (8) is formed on the outer wall of one side of the mounting seat one (1); A driving assembly (9), the driving assembly (9) is slidably connected to the slide rail (8) and is used for adjusting the position of the partition plate (7); A fixing mechanism (11), which is installed on the outer side wall of the mounting seat one (1) and is used for fixing and limiting the position of the first shaft body (5); An adjusting mechanism (10), which is installed on one side of the fixing mechanism (11) and is used for opening and closing the state of the fixing mechanism (11); The driving assembly (9) includes a driving vehicle body (901) electrically slidably connected to the slide rail (8), a stepping motor is arranged inside the driving vehicle body (901), an output shaft of the stepping motor extends to the outside of the driving vehicle body (901) and is fixed with a driving plate (902), and an adjusting plate (903) is fixed to the side wall of the driving plate (902) away from the stepping motor; A plurality of parallel adjusting racks (904) are formed on one side wall of the adjusting plate (903) along its length direction, and symmetrically distributed pressing plates (905) are fixed to the bottoms of the outer walls on both sides of the driving vehicle body (901), and the pressing plates (905) and the driving vehicle body (901) are perpendicular to each other; The fixing mechanism (11) protects a fixing plate (1101) fixed to the outer side wall of the mounting seat one (1), a fixing channel penetrating left and right is formed in one side wall of the fixing plate (1101), a fixing rod (1102) is slidably connected to the inner side wall of the fixing channel, one end of the fixing rod (1102) extends to the outside of the fixing channel and is fixed with a pulling plate (1104), and the pulling plate (1104) and the fixing rod (1102) are perpendicular to each other; A return spring (1103) is sleeved on the outer side wall of the fixing rod (1102), one end of the return spring (1103) is fixed to the side wall of the pulling plate (1104), the other end of the return spring (1103) is fixed to the side wall of the fixing plate (1101), symmetrically distributed fixing grooves (1105) are formed on the outer side wall of the first shaft body (5), and the fixing grooves (1105) and the fixing rods (1102) are clamped; The adjusting mechanism (10) includes an adjusting base (1001) fixed to the outer wall of one side of the first mounting base (1). An adjusting table (1002) slidably connected to the side wall of the first mounting base (1) is installed above the adjusting base (1001). The outer walls on both sides of the adjusting table (1002) are both formed into arc-shaped structures (1006). An adjusting shaft (1003) fixed to the outer wall of the first mounting base (1) is installed on one side of the adjusting base (1001). An adjusting hole is formed in the adjusting shaft (1003). A steel wire (1005) is placed inside the adjusting hole. One end of the steel wire (1005) is fixed to the side wall of the pull plate (1104), and the other end of the steel wire (1005) is fixed to the bottom side wall of the adjusting table (1002). The steel wire (1005) is in a taut state. The driving vehicle body (901) drives the pressing plate (905) to move. The pressing plate (905) presses the arc-shaped structure (1006) of the adjusting table (1002), causing the adjusting table (1002) to pull the steel wire (1005) to move. The other end of the steel wire (1005) pulls the pull plate (1104) to move. The pull plate (1104) drives the fixed rod (1102) to move. The fixed rod (1102) is separated from the corresponding fixed groove (1105). At this time, the limit on the first shaft body (5) is released. Then, the driving vehicle body (901) drives the adjusting plate (903) to move. The adjusting plate (903) drives the adjusting rack (904) to move. The adjusting rack (904) and the adjusting gear (12) are in meshing transmission to drive the first shaft body (5) to rotate self. The first shaft body (5) drives the connecting bar (6) to rotate self. The connecting bar (6) drives the partition plate (7) to rotate, causing the partition plate (7) to enter the inside of the first groove (4), and opening the two regional spaces.

2. The modular storage system according to claim 1, wherein: The lowest end of the arc-shaped structure (1006) of the adjusting table (1002) is flush with the pressing plate (905). An adjusting spring (1004) is fixed to the bottom side wall of the adjusting table (1002). The end of the adjusting spring (1004) away from the adjusting table (1002) is fixed to the top side wall of the adjusting base (1001).

3. The modular storage system according to claim 2, characterized in that: The adjusting plate (903) and the pull plate (1104) are staggered in position. The adjusting table (1002) is located directly above the adjusting base (1001), and the adjusting table (1002) is vertically arranged with the adjusting base (1001). The arc-shaped structures (1006) of the adjusting table (1002) are both located at the upper two ends of the adjusting table (1002).

Citation Information

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