An automatic material classification and stacking storage device

By designing an automated material storage warehousing equipment, using the drive motor and drive shaft to drive the installation plate and placement box to move, and driving the cover plate to move through the drive plate and pressure plate, the problem of additional operation of the cover in the prior art is solved, and automatic plating and closure are realized, and efficiency is improved.

CN116457293BActive Publication Date: 2025-07-01西安每益添农业有限公司
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Patent Information

Application Number
CN202080106059.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-11-04
Publication Date
2025-07-01
Estimated Expiration
2040-11-04

AI Technical Summary

Technical Problem

The existing material plating device requires additional operation to cover the cargo box, which leads to troublesome use and inefficient efficiency.

Method used

A warehousing equipment for automatic classification and placing of materials is designed, using components such as mounting frame, drive motor, drive shaft, elliptical plate and connecting block. The drive motor drives the drive shaft and elliptical plate to rotate, drive the installation plate and placement box to move, and drive the cover plate to move through the drive plate and the pressure plate to realize automatic cover sealing.

Benefits of technology

It realizes automatic plating and closure of goods, improves plating efficiency, is convenient to use, and reduces the time and energy of manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

An automatic material classification and stacking storage device, including a mounting frame. Two brackets (2) are symmetrically and fixedly installed at the bottom of the mounting frame (1). A driving motor (3) is fixedly installed at the top of the mounting frame (1). The top end of a driving shaft (4) is fixedly installed on the output shaft of the driving motor (3). The bottom end of the driving shaft (4) is rotatably installed on the mounting frame (1). Two mounting plates (5) are symmetrically and slidably installed inside the mounting frame (1). A number of placement boxes (6) are fixedly installed on both of the two mounting plates (5). Both of the two mounting plates (5) are cooperated with the driving shaft (4). A number of placement plates (11) are fixedly installed on the mounting frame (1). This device is convenient to use and can cover the placement boxes while stacking goods, greatly improving the stacking efficiency of goods.
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Description

Technical Field

[0001] The present invention relates to the technical field of stacking and storage, and particularly relates to a material automatic classification and stacking storage device. Background Art

[0002] Stacking refers to neatly piling up and stacking. In the logistics aspect, it usually means arranging goods according to the code. Generally, the stacking of goods is usually carried out by manual handling or forklift handling. For the scanning of the barcodes of goods, a manually operated barcode scanner is usually used, and the classification method of goods is still manually classified according to the information on the barcode.

[0003] However, when the existing devices stack goods, it is often necessary to additionally cover the goods boxes, which is rather troublesome to use and greatly affects the stacking efficiency. Summary of the Invention

[0004] The purpose of the present invention is to solve the drawback that when the existing devices stack goods, it is often necessary to additionally cover the goods boxes, which is rather troublesome to use and greatly affects the stacking efficiency, and to propose a material automatic classification and stacking storage device.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solution:

[0006] A material automatic classification and stacking storage device includes a mounting frame. Two brackets are symmetrically and fixedly installed at the bottom of the mounting frame. A driving motor is fixedly installed at the top of the mounting frame. The top end of a driving shaft is fixedly installed on the output shaft of the driving motor, and the bottom end of the driving shaft is rotatably installed on the mounting frame. Two mounting plates are symmetrically and slidably installed in the mounting frame. A plurality of placing boxes are fixedly installed on each of the two mounting plates. The two mounting plates are both cooperated with the driving shaft. A plurality of placing plates are fixedly installed on the mounting frame. A driving plate is slidably installed on each of the plurality of placing plates. The plurality of driving plates are respectively cooperated with the plurality of placing boxes. Two mounting rods are symmetrically and slidably installed in the mounting frame. A plurality of pressing plates are fixedly installed on each of the two mounting rods. A cover plate is fixedly installed at the bottom of each of the plurality of pressing plates. A first connecting plate is fixedly installed at the bottom of each of the plurality of driving plates. One end of a second connecting plate is fixedly installed on each of the plurality of first connecting plates, and the other ends of the plurality of second connecting plates are respectively fixedly installed on the two mounting rods.

[0007] Preferably, two elliptical plates are symmetrically and fixedly installed on the driving shaft. One end of two connecting blocks is symmetrically and slidably installed on each of the two elliptical plates, and the other ends of the four connecting blocks are respectively fixedly installed on the two mounting plates.

[0008] Preferably, a first sliding groove is formed on each of the two elliptical plates, and the four connecting blocks are respectively slidably installed in the two first sliding grooves.

[0009] Preferably, a bearing is fixedly installed in the mounting frame, and the bottom end of the driving shaft is fixedly connected to the inner ring of the bearing.

[0010] Preferably, a plurality of sliding holes are formed in the plurality of placing plates, and a plurality of driving plates are respectively slidably installed in the plurality of sliding holes.

[0011] Preferably, four second sliding grooves are symmetrically formed in the mounting frame, limiting rods are fixedly installed in the four second sliding grooves, support rods are slidably installed on the four limiting rods, and the four support rods are respectively fixedly installed on two mounting rods.

[0012] Preferably, springs are fixedly installed in the four second sliding grooves, and the four springs are respectively fixedly connected to the four support rods.

[0013] Preferably, an electric push rod is fixedly installed at the bottom of the mounting frame, a bottom plate is fixedly installed on the output shaft of the electric push rod, and a plurality of guide wheels are fixedly installed at the bottom of the bottom plate.

[0014] Compared with the prior art, the advantages of the present invention are as follows:

[0015] (1) In this solution, by setting the mounting frame, bracket, driving motor, driving shaft, mounting plate, placing box, elliptical plate, first sliding groove, connecting block, bearing, placing plate, sliding hole, driving plate, first connecting plate, second connecting plate, mounting rod, pressing plate, cover plate, second sliding groove, limiting rod, bearing rod, spring, after the goods are stacked into the placing box, the driving motor can be driven to drive the driving shaft to rotate, the driving shaft drives the elliptical plate to rotate, the placing box can be pushed onto the placing plate and drive the driving plate to move, so as to drive the mounting rod to move, the mounting rod drives the pressing plate to move, and the pressing plate drives the cover plate to move to seal the goods, which is convenient for storage and very convenient to use, improving the stacking efficiency of the goods.

[0016] (2) In this solution, by setting the electric push rod, bottom plate, and guide wheels, the entire shelf can be moved through the guide wheels, which is time-saving and labor-saving and very convenient.

[0017] The present invention is convenient to use, can seal the placing box while stacking the goods, and greatly improves the stacking efficiency of the goods. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic structural diagram of a material automatic classification and stacking storage device proposed by the present invention;

[0019] Figure 2 is a schematic side view structural diagram of a material automatic classification and stacking storage device proposed by the present invention;

[0020] Figure 3Schematic diagram of part A of a warehousing device for automatic classification and stacking of materials proposed by the present invention;

[0021] Figure 4 Schematic diagram of part B of a warehousing device for automatic classification and stacking of materials proposed by the present invention;

[0022] Figure 5 Schematic diagram of the elliptical plate, connecting block and other structures of a warehousing device for automatic classification and stacking of materials proposed by the present invention.

[0023] In the figure: 1, mounting frame; 2, support; 3, driving motor; 4, driving shaft; 5, mounting plate; 6, placing box; 7, elliptical plate; 8, first chute; 9, connecting block; 10, bearing; 11, placing plate; 12, sliding hole; 13, driving plate; 14, first connecting plate; 15, second connecting plate; 16, mounting rod; 17, pressing plate; 18, cover plate; 19, second chute; 20, limiting rod; 21, bearing rod; 22, spring; 23, electric push rod; 24, bottom plate; 25, guide wheel. Specific implementation mode

[0024] Next, the technical solutions in this embodiment will be clearly and completely described in conjunction with the accompanying drawings in this embodiment. Obviously, the described embodiments are only a part of the embodiments of this embodiment, rather than all the embodiments.

[0025] Embodiment 1

[0026] Refer to Figures 1-5 , a warehousing device for automatic classification and stacking of materials, including a mounting frame 1. Two supports 2 are symmetrically and fixedly installed at the bottom of the mounting frame 1. A driving motor 3 is fixedly installed at the top of the mounting frame 1. The top end of a driving shaft 4 is fixedly installed on the output shaft of the driving motor 3. The bottom end of the driving shaft 4 is rotatably installed on the mounting frame 1. Two mounting plates 5 are symmetrically and slidably installed in the mounting frame 1. A plurality of placing boxes 6 are fixedly installed on both of the two mounting plates 5. Both of the two mounting plates 5 cooperate with the driving shaft 4. A plurality of placing plates 11 are fixedly installed on the mounting frame 1. A driving plate 13 is slidably installed on each of the plurality of placing plates 11. Each of the plurality of driving plates 13 cooperates with one of the plurality of placing boxes 6. Two mounting rods 16 are symmetrically and slidably installed in the mounting frame 1. A plurality of pressing plates 17 are fixedly installed on both of the two mounting rods 16. A cover plate 18 is fixedly installed at the bottom of each of the plurality of pressing plates 17. A first connecting plate 14 is fixedly installed at the bottom of each of the plurality of driving plates 13. One end of a second connecting plate 15 is fixedly installed on each of the plurality of first connecting plates 14. The other ends of the plurality of second connecting plates 15 are respectively fixedly installed on the two mounting rods 16.

[0027] In this embodiment, two elliptical plates 7 are symmetrically and fixedly installed on the drive shaft 4. One end of two connecting blocks 9 is symmetrically and slidably installed on each of the two elliptical plates 7. The other ends of the four connecting blocks 9 are respectively fixedly installed on the two mounting plates 5, so that the rotation of the drive shaft 4 can drive the two mounting plates 5 to reciprocate.

[0028] In this embodiment, first sliding grooves 8 are formed on each of the two elliptical plates 7. The four connecting blocks 9 are respectively slidably installed in the two first sliding grooves 8, ensuring the stable sliding of the four connecting blocks 9.

[0029] In this embodiment, a bearing 10 is fixedly installed in the mounting frame 1. The bottom end of the drive shaft 4 is fixedly connected to the inner ring of the bearing 10, ensuring the stable rotation of the drive shaft 4.

[0030] In this embodiment, sliding holes 12 are formed on each of several placing plates 11. Several driving plates 13 are respectively slidably installed in the several sliding holes 12, ensuring the stable sliding without shaking of the several driving plates 13.

[0031] In this embodiment, four second sliding grooves 19 are symmetrically formed on the mounting frame 1. A limiting rod 20 is fixedly installed in each of the four second sliding grooves 19. A support rod 21 is slidably installed on each of the four limiting rods 20. The four support rods 21 are respectively fixedly installed on the two mounting rods 16, ensuring the stable movement of the two mounting rods 16.

[0032] In this embodiment, a spring 22 is fixedly installed in each of the four second sliding grooves 19. The four springs 22 are respectively fixedly connected to the four support rods 21, ensuring that the four support rods 21 can reset after losing the thrust.

[0033] In this embodiment, an electric push rod 23 is fixedly installed at the bottom of the mounting frame 1. A bottom plate 24 is fixedly installed on the output shaft of the electric push rod 23. Several guide wheels 25 are fixedly installed at the bottom of the bottom plate 24, facilitating the movement of the entire device.

[0034] Embodiment Two

[0035] Refer to Figures 1-5, An automatic material classification and stacking storage device, including a mounting frame 1. Two brackets 2 are symmetrically and fixedly installed at the bottom of the mounting frame 1 by welding. A driving motor 3 is fixedly installed at the top of the mounting frame 1 by screws. The top end of a driving shaft 4 is fixedly installed on the output shaft of the driving motor 3 by welding. The bottom end of the driving shaft 4 is rotatably installed on the mounting frame 1. Two mounting plates 5 are symmetrically and slidably installed inside the mounting frame 1. A number of placement boxes 6 are fixedly installed on both of the two mounting plates 5 by welding. Both of the two mounting plates 5 cooperate with the driving shaft 4. A number of placement plates 11 are fixedly installed on the mounting frame 1 by welding. A driving plate 13 is slidably installed on each of the number of placement plates 11. Each of the number of driving plates 13 cooperates with one of the number of placement boxes 6. Two mounting rods 16 are symmetrically and slidably installed inside the mounting frame 1. A number of pressing plates 17 are fixedly installed on both of the two mounting rods 16 by welding. A cover plate 18 is fixedly installed at the bottom of each of the number of pressing plates 17 by welding. A first connecting plate 14 is fixedly installed at the bottom of each of the number of driving plates 13 by welding. One end of a second connecting plate 15 is fixedly installed on each of the number of first connecting plates 14 by welding. The other ends of the number of second connecting plates 15 are respectively fixedly installed on the two mounting rods 16 by welding.

[0036] In this embodiment, two elliptical plates 7 are symmetrically and fixedly installed on the driving shaft 4 by welding. One end of two connecting blocks 9 is symmetrically and slidably installed on each of the two elliptical plates 7. The other ends of the four connecting blocks 9 are respectively fixedly installed on the two mounting plates 5 by welding, so that the rotation of the driving shaft 4 can drive the two mounting plates 5 to reciprocate.

[0037] In this embodiment, a first sliding groove 8 is formed on each of the two elliptical plates 7. The four connecting blocks 9 are respectively slidably installed in the two first sliding grooves 8, ensuring the stable sliding of the four connecting blocks 9.

[0038] In this embodiment, a bearing 10 is fixedly installed inside the mounting frame 1 by welding. The bottom end of the driving shaft 4 is fixedly connected to the inner ring of the bearing 10, ensuring the stable rotation of the driving shaft 4.

[0039] In this embodiment, a sliding hole 12 is formed on each of the number of placement plates 11. Each of the number of driving plates 13 is respectively slidably installed in the number of sliding holes 12, ensuring the stable sliding without shaking of the number of driving plates 13.

[0040] In this embodiment, four second sliding grooves 19 are symmetrically formed on the mounting frame 1. A limiting rod 20 is fixedly installed in each of the four second sliding grooves 19 by welding. A support rod 21 is slidably installed on each of the four limiting rods 20. The four support rods 21 are respectively fixedly installed on the two mounting rods 16 by welding, ensuring the stable movement of the two mounting rods 16.

[0041] In this embodiment, springs 22 are fixedly installed in the four second sliding grooves 19 by welding, and the four springs 22 are respectively fixedly connected to the four support rods 21, ensuring that the four support rods 21 can reset after losing the thrust force.

[0042] In this embodiment, an electric push rod 23 is fixedly installed at the bottom of the mounting frame 1 by screws. A bottom plate 24 is fixedly installed on the output shaft of the electric push rod 23 by welding. A plurality of guide wheels 25 are fixedly installed at the bottom of the bottom plate 24 by screws, facilitating the movement of the entire device.

[0043] In this embodiment, when stacking goods, the goods are classified and placed in different placement boxes 6. After placement, the driving motor 3 is connected to the power supply and the driving motor 3 is started. The driving motor 3 drives the driving shaft 4 to rotate, the driving shaft 4 drives the two elliptical plates 7 to rotate, the two elliptical plates 7 drive the two mounting plates 5 to move, the two mounting plates 5 drive a plurality of placement boxes 6 to move, and the plurality of placement boxes 6 are respectively pushed onto a plurality of placement plates 11 and squeeze a plurality of driving plates 13 to move. The plurality of driving plates 13 drive a plurality of first connecting plates 14 to move, the plurality of first connecting plates 14 drive a plurality of second connecting plates 15 to move, the plurality of second connecting plates 15 drive the two mounting rods 16 to move, the plurality of mounting rods 16 drive a plurality of pressing plates 17 to move, the plurality of pressing plates 17 drive a plurality of cover plates 18 to move, and the plurality of cover plates 18 cover the plurality of placement boxes 6 through movement, ensuring the storage effect, being convenient to use. And if the entire device needs to be moved, the electric push rod 23 is started. The electric push rod 23 drives the bottom plate 24 to move, the bottom plate 24 drives the plurality of guide wheels 25 to move, and the plurality of guide wheels 25 support the entire device, and then the entire device can be moved through the plurality of guide wheels 25.

[0044] The above is only the preferred specific implementation manner of this embodiment, but the protection scope of this embodiment is not limited thereto. Any person skilled in the art within the technical scope disclosed in this embodiment, according to the technical solution and inventive concept of this embodiment, makes equivalent substitutions or changes, and should be covered by the protection scope of this embodiment.

Claims

1. An automatic material classification and stacking storage device, including a mounting frame (1), characterized in that, Two brackets (2) are symmetrically and fixedly installed at the bottom of the mounting frame (1). A driving motor (3) is fixedly installed at the top of the mounting frame (1). The top end of a driving shaft (4) is fixedly installed on the output shaft of the driving motor (3). The bottom end of the driving shaft (4) is rotatably installed on the mounting frame (1). Two mounting plates (5) are symmetrically and slidably installed in the mounting frame (1). A plurality of placing boxes (6) are fixedly installed on each of the two mounting plates (5). The two mounting plates (5) are both matched with the driving shaft (4). A plurality of placing plates (11) are fixedly installed on the mounting frame (1). A driving plate (13) is slidably installed on each of the plurality of placing plates (11). The plurality of driving plates (13) are respectively matched with the plurality of placing boxes (6). Two mounting rods (16) are symmetrically and slidably installed in the mounting frame (1). A plurality of pressing plates (17) are fixedly installed on each of the two mounting rods (16). A cover plate (18) is fixedly installed at the bottom of each of the plurality of pressing plates (17). A first connecting plate (14) is fixedly installed at the bottom of each of the plurality of driving plates (13). One end of a second connecting plate (15) is fixedly installed on each of the plurality of first connecting plates (14). The other ends of the plurality of second connecting plates (15) are respectively fixedly installed on the two mounting rods (16). Two elliptical plates (7) are symmetrically and fixedly installed on the driving shaft (4). One end of two connecting blocks (9) is symmetrically and slidably installed on each of the two elliptical plates (7). The other ends of the four connecting blocks (9) are respectively fixedly installed on the two mounting plates (5). A first sliding groove (8) is formed on each of the two elliptical plates (7). The four connecting blocks (9) are respectively slidably installed in the two first sliding grooves (8).

2. The automatic classification and stacking storage equipment for materials according to claim 1, characterized in that A bearing (10) is fixedly installed in the mounting frame (1). The bottom end of the driving shaft (4) is fixedly connected to the inner ring of the bearing (10).

3. The automatic material classification and stacking storage device according to claim 1, characterized in that A sliding hole (12) is formed on each of the plurality of placing plates (11). The plurality of driving plates (13) are respectively slidably installed in the plurality of sliding holes (12).

4. An automatic material classification and stacking storage device according to claim 1, characterized in that, Four second sliding grooves (19) are symmetrically formed on the mounting frame (1). A limiting rod (20) is fixedly installed in each of the four second sliding grooves (19). A support rod (21) is slidably installed on each of the four limiting rods (20). The four support rods (21) are respectively fixedly installed on the two mounting rods (16).

5. An automatic material classification and stacking storage device according to claim 4, characterized in that, A spring (22) is fixedly installed in each of the four second sliding grooves (19). The four springs (22) are respectively fixedly connected to the four support rods (21).

6. The automatic classification and stacking storage equipment for materials according to claim 1, characterized in that, An electric push rod (23) is fixedly installed at the bottom of the mounting frame (1). A bottom plate (24) is fixedly installed on the output shaft of the electric push rod (23). A plurality of guide wheels (25) are fixedly installed at the bottom of the bottom plate (24).

Citation Information

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