Storage rack for logistics storage

By designing lifting and driving components, the problem of adjustable shelf spacing in logistics warehousing racks has been solved, enabling storage and convenient retrieval of goods of different specifications.

CN223687373UActive Publication Date: 2025-12-19XIAN LEDAO E-COMMERCE IND PARK CO LTD
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Patent Information

Application Number
CN202520281454.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-12-19
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing storage racks in logistics warehouses cannot flexibly adjust the spacing between adjacent racks, making it impossible to meet the needs of storing goods of different sizes.

Method used

A storage rack comprising a lifting assembly and a drive assembly was designed. The lifting assembly achieves the lifting and lowering of the placement plate through the cooperation of a threaded rod, a bevel gear, and a slide. The drive assembly helps move goods toward the staff by moving a push plate, accommodating goods of different specifications.

Benefits of technology

It enables adjustment of the spacing between adjacent placement boards, allowing for the storage of goods of different sizes and facilitating the retrieval of goods by staff.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of storage racks, and discloses a storage rack for logistics storage, which comprises a bottom plate, mounting columns are vertically arranged at four corners of the bottom plate, the upper ends of two mounting columns at the same end of the bottom plate are connected through a connecting plate, and a plurality of placing plates are arranged between the mounting columns; the placing plate is mounted between the mounting columns in a liftable manner through the lifting assembly; the lifting assembly comprises threaded rods oppositely arranged on the bottom plate. A mounting box is arranged on the lower side face of the placement plate in the length direction, and the threaded rod penetrates through the mounting box; a mounting cavity is formed in the mounting box, and a lifting part is arranged in the mounting cavity; a plurality of push plates are arranged on the upper side surface of the placement plate at the highest position; a movable assembly is arranged on the lower side face of the placement plate located at the highest position. Through the arrangement of the lifting assembly, the lifting assembly can drive the containing plates to ascend and descend, the distance between every two adjacent containing plates can be adjusted, and therefore goods of different specifications and sizes can be stored on the storage rack.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a storage rack technical field, specifically, relates to a storage rack for logistics and warehousing. BACKGROUND

[0002] The storage rack for logistics and warehousing refers to the equipment for storing and managing the goods in the warehouse, and its main function is to efficiently utilize the warehouse space and improve the storage density and operation efficiency.

[0003] For example, the patent with the announcement number CN217457350U discloses a kind of logistics and warehousing liftable goods shelves, although the shelf is cooperated by motor, bidirectional screw rod, slider, connecting rod, round shaft and trapezoidal slider, so that two round shafts can drive two trapezoidal sliders of the same height to move relatively, so that each goods shelf can be close to or away from each other, and the highest goods shelf can be moved to a position suitable for logistics personnel operation;But the interval between adjacent shelves cannot be flexibly adjusted when the shelf is actually used, so that it cannot meet the needs of storing goods of different specifications, so it needs to be improved. SUMMARY

[0004] The utility model aims at providing a kind of storage rack for logistics and warehousing, to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A kind of storage rack for logistics and warehousing, including bottom plate, vertical installation column is arranged at the position of the four corners of bottom plate, the upper end of two installation columns located at the same end of bottom plate is connected by connecting plate, multiple placing plates for storing goods are arranged between installation columns;Placing plate is installed between installation columns by lifting assembly and can be lifted;Lifting assembly includes screw rod on the bottom plate oppositely;Mounting box is arranged on the lower side of placing plate along its length direction, and screw rod is arranged through mounting box;Mounting box is equipped with installation cavity, and lifting piece for driving placing plate to lift is arranged in installation cavity;Multiple push plates for pushing goods are arranged on the upper side of placing plate at the highest position;Driving assembly for driving push plate to move is arranged on the lower side of placing plate at the highest position.

[0007] Further, the mounting column is provided with a T-shaped sliding groove with an open upper end along the height direction thereof, and the four corners of the placing plate are provided with sliding blocks capable of extending into the corresponding sliding grooves to slide; the lifting member comprises a threaded cylinder sleeved on the corresponding threaded rod, the upper end of the threaded cylinder abuts against the upper side wall of the mounting cavity, the lower end of the threaded cylinder abuts against the bottom wall of the mounting cavity, the threaded cylinder is sleeved with a first bevel gear, the mounting cavity is provided with a rotating shaft capable of rotating, and the two ends of the rotating shaft are provided with second bevel gears meshing with the corresponding first bevel gears; one end of the mounting box is provided with a rotating rod extending into the mounting cavity, and the end of the extending end of the rotating rod is provided with a third bevel gear meshing with the corresponding first bevel gear.

[0008] Further, the driving assembly comprises a driving box arranged on the lower side of the placing plate at the highest position, the driving box is arranged along the width direction of the placing plate and penetrates through the mounting box, the driving box is provided with a driving cavity, and the placing plate at the highest position is provided with a sliding groove communicating with the driving cavity and corresponding to the driving box; the driving cavity is provided with a moving block, and the push plate is fixedly arranged on the upper side of the moving block; the driving cavity is provided with a driving plate along the length direction thereof and used for driving the moving block to move, and the driving cavity is further provided with an elastic member used for driving the push plate to reset.

[0009] Further, the elastic member comprises a fixed rod fixedly arranged in the driving cavity, one end of the fixed rod penetrates through the moving block and is connected to the corresponding side wall of the driving cavity; the other end of the fixed rod is provided with a mounting block, and the two ends of the mounting block are connected to the corresponding side walls of the sliding groove; the fixed rod between the moving block and the mounting block is provided with a spring used for pushing the push plate to reset; and the placing plate at the highest position is provided with a blocking member used for preventing the goods from sliding and falling off.

[0010] Further, the blocking member comprises a stop block arranged at one end of the sliding groove, the lower end of the stop block is provided with a first inclined surface, the upper side of the driving plate is provided with an inclined block, and the inclined block is provided with a second inclined surface matched with the first inclined surface.

[0011] Further, the sliding groove is provided with a limiting groove along the height direction of the opposite side walls, and the opposite side walls of the stop block are provided with limiting blocks extending into the corresponding limiting grooves to slide.

[0012] Further, one end of the driving plate penetrates through the driving box and is arranged in an extending mode, and the end of the extending end of the driving plate is provided with a handle.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] 1、The utility model discloses a lifting assembly is arranged, lifting assembly can drive placing plate to lift, the interval between two adjacent placing plates can be adjusted, so that different size goods can be stored on the storage frame, and the applicability is improved.

[0015] The utility model discloses, through the setting of drive assembly, make drive assembly can drive push board and move, make push board can push the goods on the placing plate at the highest position and move, make it can move towards the staff side, thereby convenient for staff to take. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structure schematic drawing of a storage rack for logistics and storage in the utility model.

[0017] Figure 2 It is the structure schematic drawing of the mounting column in the utility model.

[0018] Figure 3 It is the structure schematic drawing of the lifting piece in the utility model.

[0019] Figure 4 It is the structure schematic drawing of the placing plate at the highest position in the utility model.

[0020] Figure 5 It is the mounting structure schematic drawing on the universal ball placing plate in the utility model.

[0021] Figure 6 It is the section structure schematic drawing of drive assembly in the utility model.

[0022] Figure 7 It is the structure schematic drawing of drive assembly in the drive box in the utility model.

[0023] The meaning of each reference sign in the drawing is: 100, bottom plate;101, mounting column;102, threaded rod;103, connecting plate;104, push plate;105, placing plate;106, mounting box;107, crank;108, rotating rod;109, reinforcing plate;

[0024] 200, sliding groove;201, handle;202, drive box;203, sliding groove;204, universal ball;

[0025] 300, third bevel gear;301, second bevel gear;302, threaded cylinder;303, rotating shaft;304, first bevel gear;305, mounting cavity;306, fixed plate;

[0026] 400, sliding block;

[0027] 500, drive plate;501, stop block;502, inclined block;503, mounting block;504, spring;

[0028] 600, fixed rod;601, moving block. DETAILED DESCRIPTION

[0029] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments are merely illustrative of this utility model and are not intended to limit it.

[0030] The following is in conjunction with the appendix Figures 1-7 This embodiment will be described in further detail.

[0031] Combination Figures 1-7 As shown, a storage rack for logistics warehousing in this embodiment includes a base plate 100. Mounting columns 101 are vertically installed at the four corners of the base plate 100. The upper ends of two mounting columns 101 located at the same end of the base plate 100 are connected by a connecting plate 103. Multiple placement plates 105 for storing goods are provided between the mounting columns 101. The placement plates 105 are mounted between the mounting columns 101 in a lifting assembly. The lifting assembly includes a threaded rod 102 opposite to the base plate 100. A mounting box 106 is provided along the length of the lower side of the placement plate 105, and the threaded rod 102 passes through the mounting box 106. A mounting cavity 305 is provided inside the mounting box 106, and a lifting component for driving the placement plate 105 to move is provided inside the mounting cavity 305. Multiple push plates 104 for pushing goods are provided on the upper side of the placement plate 105 at the highest position. A driving assembly for driving the push plates 104 to move is provided on the lower side of the placement plate 105 at the highest position.

[0032] In actual use, this embodiment first places one side of the storage rack against the wall. According to the size of the goods, the lifting component can drive the placement plate 105 to rise and fall, so that the distance between two adjacent placement plates 105 can be adjusted, thereby allowing goods of different sizes to be stored on the storage rack to improve its applicability.

[0033] In actual use, when it is inconvenient for staff to remove the goods from the placement plate 105 at the highest position, the drive component can drive the push plate 104 to move, so that the push plate 104 can push the goods on the placement plate 105 at the highest position to move towards the staff, making it easier for the staff to pick them up.

[0034] The lower end of the threaded rod 102 is fixedly installed on the upper side of the base plate 100, and the upper end is fixedly installed on the lower side of the connecting plate 103, so that the threaded rod 102 can be installed.

[0035] The storage rack is provided with a reinforcing plate 109 on the side against the wall. The reinforcing plate 109 increases the connection strength of the storage rack.

[0036] The lifting member can be installed on the placing plate 105 through the installation of the box 106.

[0037] In combination Figures 2-3 As shown in the embodiment, the installation column 101 is provided with a T-shaped sliding groove 200 with an open upper end along the height direction thereof, and the placing plate 105 is provided with a sliding block 400 at each corner position thereof, which can extend into the corresponding sliding groove 200 and slide therein; the lifting member comprises a threaded cylinder 302 sleeved on the corresponding threaded rod 102, the upper end of the threaded cylinder 302 abuts against the upper side wall of the installation cavity 305, and the lower end thereof abuts against the bottom wall of the installation cavity 305, the threaded cylinder 302 is sleeved with a first bevel gear 304, the installation cavity 305 is provided with a rotating shaft 303 which can rotate, and the two ends of the rotating shaft 303 are provided with second bevel gears 301 which are engaged with the corresponding first bevel gear 304; one end of the box 106 is provided with a rotating rod 108 which extends into the installation cavity 305, and the end of the extending end of the rotating rod 108 is provided with a third bevel gear 300 which is engaged with the corresponding first bevel gear 304.

[0038] In actual use, the rotating rod 108 is driven to rotate, so that the rotation of the rotating rod 108 can drive the first bevel gear 304 on one side to rotate synchronously, so that the first bevel gear 304 on one side can drive the corresponding second bevel gear 301 to rotate synchronously, that is, the second bevel gear 301 can drive the rotating shaft 303 to drive the second bevel gear 301 on the other end to rotate synchronously, so that the second bevel gear 301 on the other end can drive the first bevel gear 304 on the other side to rotate synchronously, so that the two first bevel gears 304 can synchronously drive the corresponding threaded cylinders 302 to rotate synchronously, so that the two threaded cylinders 302 can drive the box 106 to drive the placing plate 105 to lift, so that the spacing between the adjacent placing plates 105 can be adjusted.

[0039] In actual use, the open upper end of the sliding groove 200 allows the sliding block 400 to enter the sliding groove 200 and slide therein, so that the placing plate 105 can be slidably installed between the installation columns 101.

[0040] Specifically, the sliding groove 200 and the sliding block 400 are matched, so that the side wall of the sliding block 400 can be slidably fitted on the corresponding side wall of the sliding groove 200, so that the sliding block 400 will not shake in the sliding groove 200, and the placing plate 105 will not shake between the installation columns 101, thereby preferably ensuring the stability of the goods placed on the placing plate 105.

[0041] The first bevel gear 304 is connected to the corresponding threaded cylinder 302 by welding, so that the first bevel gear 304 can be installed in the installation cavity 305, and synchronous rotation of the first bevel gear 304 can drive the corresponding threaded cylinder 302 to rotate, so that the threaded cylinder 302 can push the installation box 106 to drive the placement plate 105 to lift;

[0042] The installation cavity 305 is provided with a fixed plate 306, and the rotating shaft 303 penetrates the two fixed plates 306 and is rotatably installed on the two fixed plates 306 by bearings, so that the rotating shaft 303 can be rotatably installed in the installation cavity 305.

[0043] In order to facilitate the staff to drive the rotating rod 108 to rotate, a crank 107 is arranged at one end of the rotating rod 108 outside the installation cavity 305, so that the staff can drive the rotating rod 108 to rotate through the crank 107.

[0044] Specifically, the rotating rod 108 is rotatably installed on the side wall of the installation cavity 305 by bearings, so that the rotating rod 108 can be rotatably installed in the installation cavity 305.

[0045] In combination Figures 4-7 In the embodiment, the driving assembly includes a driving box 202 arranged on the lower side of the placement plate 105 at the highest position, the driving box 202 is arranged along the width direction of the placement plate 105 and penetrates the installation box 106, the driving box 202 is provided with a driving cavity, and the placement plate 105 at the highest position is provided with a sliding groove 203 communicating with the driving cavity corresponding to the driving box 202; a moving block 601 is arranged in the driving cavity, and the push plate 104 is fixedly installed on the upper side of the moving block 601; a driving plate 500 for driving the moving block 601 to move is arranged in the driving cavity along the length direction of the driving cavity, and an elastic member for driving the push plate 104 to reset is further arranged in the driving cavity.

[0046] When the staff cannot conveniently take the goods on the placement plate 105 at the highest position, the driving plate 500 is pulled outward, so that the driving plate 500 can drive the moving block 601 to drive the push plate 104 to move along the sliding groove 203, the push plate 104 can push the goods to move towards the staff side, and the staff can conveniently take the goods from the placement plate 105 at the highest position;

[0047] When the moving block 601 slides to one end of the driving cavity, the elastic member can drive the moving block 601 to automatically reset the push plate 104 when the driving plate 500 is released;

[0048] The driving plate 500 is fixedly installed on the side wall of the moving block 601, so that the driving plate 500 can drive the moving block 601 to move; specifically, the side wall of the moving block 601 is slidably attached to the corresponding side wall of the driving cavity, so that the moving block 601 will not shake in the driving cavity, and thus the pusher will not shake during movement, thereby enabling the push plate 104 to move stably.

[0049] The upper side of the placing plate 105 at the highest position is provided with a plurality of installation grooves along the width direction, and a plurality of universal balls 204 are rotatably installed in the installation grooves. Through the arrangement of the universal balls 204, the sliding friction of the goods on the placing plate 105 can be converted into rolling friction, thereby facilitating the pushing of the goods by the push plate 104.

[0050] One end of the driving plate 500 protrudes out of the driving box 202, and a handle 201 is arranged on the protruding end. Through the arrangement of the handle 201, it is convenient for the staff to pull the driving plate 500 outward.

[0051] In combination with Figures 5-7 In the embodiment, the elastic member includes a fixed rod 600 fixedly arranged in the driving cavity. One end of the fixed rod 600 penetrates the moving block 601 and is connected to the corresponding side wall of the driving cavity. The other end of the fixed rod 600 is provided with an installation block 503, and the two ends of the installation block 503 are connected to the corresponding side walls of the sliding groove 203. A spring 504 for pushing the push plate 104 to reset is arranged on the fixed rod 600 between the moving block 601 and the installation block 503. The placing plate 105 at the highest position is provided with a blocking member for preventing the goods from sliding and falling.

[0052] In actual use, when the driving plate 500 is pulled outward, the driving plate 500 can drive the moving block 601 to move along the fixed rod 600 and compress the spring 504. When the handle 201 is released, under the action of the spring 504, the spring 504 can push the moving block 601 to reset, thereby facilitating the placement of goods.

[0053] In actual use, through the arrangement of the blocking member, when the driving plate 500 is pulled outward, the blocking member can protrude out of the sliding groove 203 and block the moving goods, thereby preferably avoiding the goods from falling off the placing plate 105 due to excessive force in pulling the driving plate 500.

[0054] The two ends of the installation block 503 are connected to the corresponding side walls of the sliding groove 203 by welding, one end of the fixed rod 600 is fixedly installed on the corresponding side wall of the driving cavity, and the other end is fixedly connected to the corresponding side wall of the installation block 503, so that the spring 504 can be installed.

[0055] In combination Figures 6-7 As shown in the embodiment, the blocking piece includes a stopper 501 arranged at one end of the sliding groove 203, the lower end of the stopper 501 is provided with a first inclined surface, and the upper side of the driving plate 500 is provided with an inclined block 502, the inclined block 502 is provided with a second inclined surface matched with the first inclined surface.

[0056] In the embodiment, the opposite side walls of the sliding groove 203 are provided with limiting grooves along the height direction thereof, and the opposite side walls of the stopper 501 are provided with limiting blocks sliding into the corresponding limiting grooves.

[0057] In actual use, the driving plate 500 is pulled outward, so that the driving plate 500 can drive the inclined block 502 to move, when the second inclined surface is in close contact with the first inclined surface, at this time, the driving plate 500 is continuously pulled outward, so that the second inclined surface can slide and press the first inclined surface, so that the first inclined surface can drive the stopper 501 to move upward and out of the sliding groove 203 to block the moving goods; at the same time, when the elastic member drives the moving block 601 to drive the driving plate 500 to reset, the second inclined surface is separated from the first inclined surface, at this time, the stopper 501 moves downward due to gravity and retracts into the sliding groove 203, thereby avoiding interference with the placed goods.

[0058] It is worth mentioning that the overall height of the storage rack of the present application can be about 1.5m-1.7m, and the overall height is within the reach of adults.

[0059] In actual use, the stopper 501 can be limited by the limiting groove and the limiting block, so that the stopper 501 can be lifted and lowered preferably, and the stopper 501 can be prevented from separating from the sliding groove 203 preferably; specifically, the limiting groove and the limiting block are matched, so that the side wall of the limiting block can be slidably attached to the corresponding side wall of the limiting groove, so that the limiting block does not shake in the limiting groove, that is, the stopper 501 does not shake, so that the stopper 501 can be lifted and lowered stably.

[0060] The utility model discloses when different specifications size goods need to be placed on same placement plate 105 in actual use, through the rotation handle 107, make the handle 107 can drive the rotation of the rotation rod 108, make the rotation rod 108 can drive the third bevel gear 300 corresponding first bevel gear 304 synchronous rotation, make first bevel gear 304 can drive the second bevel gear 301 rotation, make the second bevel gear 301 can drive the rotation of the rotating shaft 303, utilize the rotation of rotating shaft 303, make two first bevel gear 304 wheel can drive corresponding thread drum 302 synchronous rotation, even make two thread drum 302 can drive installation box 106 drive placement plate 105 synchronous lifting, when the staff is inconvenient to take down the goods at the highest position, by pulling the handle 201 outward, make handle 201 can drive drive plate 500 drive moving block 601 outward and move, make moving block 601 can drive push plate 104 along sliding slot 203 and move, thereby make push plate 104 can push the goods towards the staff side to push, to the staff's take.

[0061] In summary, the above only for the preferred embodiment of the utility model, all changes and modifications made in the utility model patent application scope, should belong to the utility model patent's coverage range.

Claims

1. A storage rack for logistics and warehousing, comprising a bottom plate (100), mounting columns (101) vertically arranged at the four corners of the bottom plate (100), the upper ends of two mounting columns (101) located at the same end of the bottom plate (100) being connected by a connecting plate (103), and a plurality of placing plates (105) for storing goods being arranged between the mounting columns (101); characterized in that: The placing plate (105) is installed between the mounting columns (101) by the lifting assembly; the lifting assembly comprises the threaded rods (102) arranged oppositely on the bottom plate (100); the lower side of the placing plate (105) is provided with the mounting box (106) along the length direction thereof, and the threaded rods (102) are arranged through the mounting box (106); the mounting box (106) is provided with the mounting cavity (305) therein, and the lifting piece for driving the placing plate (105) to lift is arranged in the mounting cavity (305); The upper side of the placing plate (105) at the highest position is provided with a plurality of push plates (104) for pushing the goods; the lower side of the placing plate (105) at the highest position is provided with the driving assembly for driving the push plates (104) to move.

2. The storage shelf according to claim 1, wherein: The mounting column (101) is provided with the T-shaped sliding groove (200) with an open upper end along the height direction thereof, and the sliding blocks (400) capable of sliding into the corresponding sliding grooves (200) are arranged at the four corner positions of the placing plate (105); the lifting piece comprises the threaded cylinder (302) sleeved outside the corresponding threaded rod (102), the upper end of the threaded cylinder (302) abuts against the upper side wall of the mounting cavity (305), the lower end of the threaded cylinder (302) abuts against the bottom wall of the mounting cavity (305), the first bevel gear (304) is sleeved outside the threaded cylinder (302), the rotating shaft (303) capable of rotating is arranged in the mounting cavity (305), the second bevel gear (301) is arranged at the two ends of the rotating shaft (303) and engaged with the corresponding first bevel gear (304); the rotating rod (108) extending into the mounting cavity (305) is arranged at one end of the mounting box (106), and the third bevel gear (300) is arranged at the end of the extending end of the rotating rod (108) and engaged with the corresponding first bevel gear (304).

3. The storage shelf of claim 1, wherein: The driving assembly comprises the driving box (202) arranged on the lower side of the placing plate (105) at the highest position, the driving box (202) is arranged along the width direction of the placing plate (105) and penetrates through the mounting box (106), the driving cavity is arranged in the driving box (202), the sliding groove (203) communicating with the driving cavity is arranged on the placing plate (105) at the highest position and corresponding to the driving box (202); the moving block (601) is arranged in the driving cavity, and the push plate (104) is fixedly installed on the upper side of the moving block (601); the driving plate (500) for driving the moving block (601) to move is arranged in the driving cavity along the length direction thereof, and the elastic member for driving the push plate (104) to reset is further arranged in the driving cavity.

4. The storage shelf of claim 3, wherein: The elastic member comprises a fixed rod (600) fixed in the driving cavity, one end of the fixed rod (600) penetrating through the moving block (601) and being connected to the corresponding side wall of the driving cavity, the other end of the fixed rod (600) being provided with a mounting block (503), both ends of the mounting block (503) being connected to the corresponding side wall of the sliding groove (203), the fixed rod (600) between the moving block (601) and the mounting block (503) being provided with a spring (504) for pushing the push plate (104) to reset, and the placing plate (105) at the highest position being provided with a blocking member for preventing the goods from sliding and falling.

5. The storage shelf of claim 4, wherein: The blocking member comprises a stop block (501) arranged at one end of the sliding groove (203), the lower end of the stop block (501) being provided with a first inclined surface, the upper side of the driving plate (500) being provided with an inclined block (502), and the inclined block (502) being provided with a second inclined surface matched with the first inclined surface.

6. The storage shelf of claim 5, wherein: The opposite side walls of the sliding groove (203) are provided with limiting grooves along the height direction, and the opposite side walls of the stop block (501) are provided with limiting blocks sliding into the corresponding limiting grooves.

7. The storage shelf of claim 3, wherein: One end of the driving plate (500) penetrates through the driving box (202) and is arranged in an extending mode, and the end of the extending end of the driving plate (500) is provided with a handle (201).

Citation Information

Patent Citations

  • Liftable goods shelf for logistics storage

    CN217457350U