Adjustable spare part operation rechecking and packaging table
By designing the lifting groove and mobile base structure on the packaging table, the problem of fixed height and inconvenient movement of the packaging table is solved, height adjustment and convenient movement are achieved, and the operational comfort and efficiency of the staff are improved.
Patent Information
- Application Number
- CN202422353419.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-26
AI Technical Summary
The existing packaging table has a fixed height and cannot be adjusted, which causes tall workers to bend down to work, affecting their health; it is difficult to flip and view when the objects are larger and heavier, and the packaging table is inconvenient to move, so multiple people need to cooperate to carry it together.
An adjustable bulk parts operation review packaging table is designed, adopting a lifting groove, rack and rack mechanism and a mobile base structure. The lifting table height is driven by a servo motor, equipped with a moving wheel and a limiting mechanism, which facilitates table height adjustment and movement.
It realizes flexible adjustment of the height of the packaging countertop, reduces the waist burden of the staff, facilitates object flip inspection, and can be quickly moved and stable positioned by a single person, improving the practicality and operation convenience of the device.
Smart Images

Figure CN223116856U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of warehousing logistics, in particular to an adjustable loose parts operation review and packing table. Background Art
[0002] With the rapid development of the Internet, the warehousing logistics technology has been continuously improved. In the face of the increasing demand for goods transportation, the goods packaging has also been continuously improved. Different goods have different packaging requirements. At present, in the process of packing goods, first, the goods need to be carried to the packing table, and different packing methods are adopted for different goods for packing. Then, labels, waybills, etc. with distribution information are attached to the packed goods. Finally, they are carried to the conveyor line for distribution.
[0003] However, when the existing packing tables are in use, most of them have a fixed height. When taller staff use them, they need to bend down to pack, which has a greater impact on the waist of the staff after long-term work and affects the physical health of the staff. At the same time, some objects are large and heavy, which is not convenient to turn them over for inspection. In addition, most of the existing packing tables lack a moving mechanism. When it is necessary to move the packing table, multiple staff members are required to cooperate in carrying, which is very inconvenient. Summary of the Utility Model
[0004] In order to achieve the above object, the utility model adopts the following technical scheme:
[0005] An adjustable loose parts operation review and packing table, including a packing table, a controller is fixedly installed on one side of the packing table, and a lifting groove is opened at the top of the packing table; lifting metal frames are slidably installed on the inner walls of the left and right sides of the lifting groove, two racks are fixedly installed on the inner sides of the two lifting metal frames, and lifting gears are rotatably installed on the inner walls of the left and right sides of the lifting groove, and the two lifting gears are respectively adapted to the corresponding two racks; a lifting shaft is rotatably installed on one inner wall of the lifting groove, and the two lifting gears are fixedly sleeved on the same lifting shaft, and a driven gear is fixedly sleeved on the lifting shaft.
[0006] Specifically, a driving housing is fixedly installed on the bottom inner wall of the lifting groove, a driving gear is rotatably installed on one side of the driving housing, and the driving gear meshes with the driven gear, which is convenient for the driving gear to drive the driven gear to rotate.
[0007] Specifically, an active servo motor is fixedly installed inside the active outer shell. The output shaft of the active servo motor is connected to an active gear. The tops of two lifting metal frames are fixedly installed with the same lifting tabletop. A rotating groove is formed at the top of the lifting tabletop. A rotating bearing is rotatably installed inside the rotating groove. The top of the rotating bearing is fixedly installed with a rotating disc. A handle is slidably installed through the top of the rotating disc. A plurality of limiting grooves are formed inside the rotating groove. The handle is adapted to the plurality of limiting grooves, which facilitates the handle to limit the rotating disc.
[0008] Specifically, a plurality of moving bases are fixedly installed at the bottom of the packing table. Moving shafts are fixedly installed inside the plurality of moving bases. Moving wheels are rotatably sleeved on the plurality of moving shafts. Limiting bases are fixedly sleeved on the plurality of moving shafts.
[0009] Specifically, one side of each of the plurality of limiting bases is rotatably connected to one side of the corresponding moving wheel. Positioning grooves are formed on one side of the plurality of moving bases. Positioning shafts are fixedly installed inside the plurality of positioning grooves. Sliding grooves are formed on one side of the plurality of moving bases. Positioning blocks are slidably installed inside the plurality of sliding grooves.
[0010] Specifically, limiting shafts are fixedly installed on one side of the plurality of limiting bases. Two arc-shaped metal blocks are rotatably installed on the outer sides of the plurality of limiting shafts. One side of each of the plurality of arc-shaped metal blocks is slidably installed on one side of the corresponding limiting base. Two connecting metal blocks are fixedly installed on one side of each of the plurality of arc-shaped metal blocks.
[0011] Specifically, on the two connecting metal blocks on the same side of the two arc-shaped metal blocks located on the same limiting base among the plurality of connecting metal blocks, a traction spring is fixedly installed on the side where they are close to each other. Control shafts are rotatably installed on one side of the plurality of limiting bases. Rhombic metal blocks are fixedly sleeved on the plurality of control shafts. Control cranks are fixedly installed at one end of the plurality of control shafts. Card slots are formed on one side of the plurality of control cranks. The plurality of card slots are respectively adapted to the corresponding positioning shafts, which facilitates the plurality of control cranks to be clamped with the corresponding positioning shafts.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] (1) A height-adjustable loose parts operation review and packing table of the present utility model can adjust the height of the tabletop of the packing table to adapt to the heights of different workers, reducing the burden on the waists of the workers. At the same time, it can rotate the objects conveniently and quickly, facilitating the inspection of the objects, and increasing the practicability of the device.
[0014] (2) An adjustable loose parts operation review and packing table of the present utility model can conveniently and quickly move the packing table through the provided mechanism. After moving to the designated position, it can quickly and stably limit the movement wheels at the bottom. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 FIG. 6 is a schematic three-dimensional structure diagram of an adjustable loose parts operation review and packing table proposed by the present utility model;
[0016] Figure 2 FIG. 10 is a schematic exploded three-dimensional structure diagram of the rotating mechanism of an adjustable loose parts operation review and packing table proposed by the present utility model;
[0017] Figure 3 FIG. 14 is a schematic three-dimensional structure diagram of the tabletop adjustment mechanism of an adjustable loose parts operation review and packing table proposed by the present utility model;
[0018] Figure 4 FIG. 18 is a schematic three-dimensional structure diagram of the moving mechanism of an adjustable loose parts operation review and packing table proposed by the present utility model;
[0019] Figure 5 FIG. 22 is a schematic exploded three-dimensional structure diagram of the moving mechanism of an adjustable loose parts operation review and packing table proposed by the present utility model.
[0020] In the figure: 1, packing table; 2, controller; 3, lifting tabletop; 4, lifting metal frame; 5, rack; 6, lifting gear; 7, lifting shaft; 8, driven gear; 9, driving gear; 10, driving housing; 11, driving servo motor; 12, moving base; 13, moving shaft; 14, moving wheel; 15, positioning shaft; 16, positioning block; 17, limiting base; 18, arc-shaped metal block; 19, connecting metal block; 20, traction spring; 21, limiting shaft; 22, control shaft; 23, diamond-shaped metal block; 24, control crank; 25, limiting groove; 26, rotating bearing; 27, rotating disc; 28, handle. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] Referring to Figures 1-5 , an adjustable loose parts operation review and packing table includes a packing table 1. A controller 2 is fixedly installed on one side of the packing table 1. A lifting groove is formed at the top of the packing table 1; lifting metal frames 4 are slidably installed on the inner walls of the left and right sides of the lifting groove. Two racks 5 are fixedly installed on the inner sides of the two lifting metal frames 4. Lifting gears 6 are rotatably installed on the inner walls of the left and right sides of the lifting groove. The two lifting gears 6 are respectively adapted to the corresponding two racks 5; a lifting shaft 7 is rotatably installed on the inner wall of one side of the lifting groove. The two lifting gears 6 are fixedly sleeved on the same lifting shaft 7, and a driven gear 8 is fixedly sleeved on the lifting shaft 7.
[0022] In this embodiment, a driving housing 10 is fixedly installed on the inner wall of the bottom of the lifting groove. A driving gear 9 is rotatably installed on one side of the driving housing 10. The driving gear 9 meshes with the driven gear 8, facilitating the driving gear 9 to drive the driven gear 8 to rotate.
[0023] In this embodiment, a driving servo motor 11 is fixedly installed inside the driving housing 10. The output shaft of the driving servo motor 11 is connected to the driving gear 9. The tops of the two lifting metal frames 4 are fixedly installed with the same lifting tabletop 3. A rotating groove is formed in the top of the lifting tabletop 3. A rotating bearing 26 is rotatably installed inside the rotating groove. The top of the rotating bearing 26 is fixedly installed with a rotating disk 27. A handle 28 is slidably installed through the top of the rotating disk 27. A plurality of limiting grooves 25 are formed inside the rotating groove. The handle 28 is adapted to the plurality of limiting grooves 25, facilitating the handle 28 to limit the rotating disk 27.
[0024] In this embodiment, a plurality of moving bases 12 are fixedly installed at the bottom of the packing table 1. A moving shaft 13 is fixedly installed inside each of the plurality of moving bases 12. A moving wheel 14 is rotatably sleeved on each of the plurality of moving shafts 13. A limiting base 17 is fixedly sleeved on each of the plurality of moving shafts 13.
[0025] In this embodiment, one side of each of the plurality of limiting bases 17 is rotatably connected to one side of the corresponding moving wheel 14. A positioning groove is formed in one side of each of the plurality of moving bases 12. A positioning shaft 15 is fixedly installed inside each of the plurality of positioning grooves. A sliding groove is formed in one side of each of the plurality of moving bases 12. A positioning block 16 is slidably installed inside each of the plurality of sliding grooves.
[0026] In this embodiment, a limiting shaft 21 is fixedly installed on one side of each of the plurality of limiting bases 17. Two arc-shaped metal blocks 18 are rotatably installed on the outer sides of the plurality of limiting shafts 21. One side of each of the plurality of arc-shaped metal blocks 18 is slidably installed on one side of the corresponding limiting base 17. Two connecting metal blocks 19 are fixedly installed on one side of each of the plurality of arc-shaped metal blocks 18.
[0027] In this embodiment, on the same side of the two arc-shaped metal blocks 18 located on the same limiting base 17 among the plurality of connecting metal blocks 19, a traction spring 20 is fixedly installed on the side where the two connecting metal blocks 19 are close to each other. A control shaft 22 is rotatably installed on one side of each of the plurality of limiting bases 17. A rhombus-shaped metal block 23 is fixedly sleeved on each of the plurality of control shafts 22. A control crank 24 is fixedly installed at one end of each of the plurality of control shafts 22. A clamping groove is formed in one side of each of the plurality of control cranks 24. The plurality of clamping grooves are respectively adapted to the corresponding positioning shafts 15, facilitating the plurality of control cranks 24 to be clamped with the corresponding positioning shafts 15.
[0028] Working principle: During use, the operator starts the active servo motor 11 through the controller 2. The start of the active servo motor 11 drives the active gear 9 to rotate. The rotation of the active gear 9 drives the driven gear 8 to rotate. The rotation of the driven gear 8 drives the lifting shaft 7 to rotate. The rotation of the lifting shaft 7 drives the two lifting gears 6 to rotate. When the two lifting gears 6 rotate to a specified angle, they come into contact with the corresponding racks 5, thereby driving the corresponding racks 5 to move. Since multiple racks 5 are fixedly installed inside the corresponding lifting metal frames 4, and the two lifting metal frames 4 are slidably installed on the inner wall of the lifting groove, when the racks 5 move, they can only drive the corresponding lifting metal frames 4 to move up and down. The movement of the two lifting metal frames 4 drives the same lifting table surface 3 to rise. When the lifting table surface 3 rises to a height suitable for the operator to use, the operator turns off the active servo motor 11 through the controller 2 to complete the adjustment of the height of the lifting table surface 3. Subsequently, the object is placed on the rotating disk 27, the handle 28 is lifted, and the rotating disk 27 is driven to rotate by the handle. When it rotates to the specified position, the handle 28 is put down. The handle 28 drops due to gravity and falls into the corresponding limiting groove 25 to limit the rotating disk 27, facilitating the operator to inspect the object. When it is necessary to move the packing table 1, after the operator pushes the packing table 1 to the specified position, multiple control cranks 24 are turned, so that the multiple control cranks 24 come into contact with the corresponding positioning shafts 15. At the same time, the corresponding positioning blocks 16 are manually slid down to block the corresponding control cranks 24 from resetting. At the same time, the multiple control cranks 24 rotate to drive the corresponding control shafts 22 to rotate. The rotation of the multiple control shafts 22 drives the corresponding diamond-shaped metal blocks 23 to rotate. The rotation of the multiple diamond-shaped metal blocks 23 squeezes the corresponding two arc-shaped metal blocks 18. When the two arc-shaped metal blocks 18 on the same limiting base 17 are squeezed, they slide outwards around the corresponding limiting shaft 21 as the center. The outward sliding of the two arc-shaped metal blocks 18 comes into contact with the inner wall of the corresponding same moving wheel 14, providing resistance to it, making the moving wheel 14 unable to rotate, completing the limiting of the moving wheel 14, and preventing the packing table 1 from shifting during the packing process.
[0029] The technical progress obtained by the present utility model compared with the prior art is that the height of the table surface of the packing table can be adjusted to adapt to the heights of different operators, reducing the burden on the waists of the operators. At the same time, the object can be rotated conveniently and quickly for easy inspection, increasing the practicality of the device. And through the provided mechanism, the packing table 1 can be moved conveniently and quickly. When it is moved to the specified position, the moving wheels 14 at the bottom can be quickly and stably limited.
Claims
1. An adjustable loose parts operation verification and packing table, characterized in that, Including: A packing table (1), a controller (2) is fixedly installed on one side of the packing table (1), and a lifting groove is formed at the top of the packing table (1); Lifting metal frames (4) are slidably installed on the inner walls of the left and right sides of the lifting groove. Two racks (5) are fixedly installed on the inner sides of the two lifting metal frames (4). Lifting gears (6) are rotatably installed on the inner walls of the left and right sides of the lifting groove. The two lifting gears (6) are respectively adapted to the corresponding two racks (5); A lifting shaft (7) is rotatably installed on the inner wall of one side of the lifting groove. The two lifting gears (6) are fixedly sleeved on the same lifting shaft (7), and a driven gear (8) is fixedly sleeved on the lifting shaft (7).
2. The adjustable loose parts operation review and packing table according to claim 1, characterized in that, A driving housing (10) is fixedly installed on the bottom inner wall of the lifting groove. A driving gear (9) is rotatably installed on one side of the driving housing (10). The driving gear (9) meshes with the driven gear (8).
3. The adjustable loose parts operation verification and packing table according to claim 2, characterized in that, A driving servo motor (11) is fixedly installed inside the driving housing (10). The output shaft of the driving servo motor (11) is connected to the driving gear (9). The tops of the two lifting metal frames (4) are fixedly installed with the same lifting tabletop (3). A rotating groove is formed at the top of the lifting tabletop (3). A rotating bearing (26) is rotatably installed inside the rotating groove. A rotating disk (27) is fixedly installed at the top of the rotating bearing (26). A handle (28) is slidably installed through the top of the rotating disk (27). A plurality of limiting grooves (25) are formed inside the rotating groove. The handle (28) is adapted to the plurality of limiting grooves (25).
4. An adjustable loose parts operation verification and packing table according to claim 1, characterized in that, A plurality of moving bases (12) are fixedly installed at the bottom of the packing table (1). Moving shafts (13) are fixedly installed inside the plurality of moving bases (12). Moving wheels (14) are rotatably sleeved on the plurality of moving shafts (13). Limiting bases (17) are fixedly sleeved on the plurality of moving shafts (13).
5. The adjustable loose parts operation verification and packing table according to claim 4, wherein One sides of the plurality of limiting bases (17) are respectively rotatably connected to one sides of the corresponding moving wheels (14). Positioning grooves are formed on one sides of the plurality of moving bases (12). Positioning shafts (15) are fixedly installed inside the plurality of positioning grooves. Sliding grooves are formed on one sides of the plurality of moving bases (12). Positioning blocks (16) are slidably installed inside the plurality of sliding grooves.
6. The adjustable loose parts operation review and packing table according to claim 5, characterized in that Limiting shafts (21) are fixedly installed on one sides of the plurality of limiting bases (17). Two arc-shaped metal blocks (18) are rotatably installed on the outer sides of the plurality of limiting shafts (21). One sides of the plurality of arc-shaped metal blocks (18) are respectively slidably installed on one sides of the corresponding limiting bases (17). Two connecting metal blocks (19) are fixedly installed on one sides of the plurality of arc-shaped metal blocks (18).
7. The adjustable loose parts operation review and packing table according to claim 6, characterized in that, On the two connecting metal blocks (19) on the same side of the two arc-shaped metal blocks (18) located on the same limiting base (17) among the multiple connecting metal blocks (19), traction springs (20) are fixedly installed on the mutually approaching sides of the two connecting metal blocks (19). On one side of the multiple limiting bases (17), control shafts (22) are rotatably installed. Diamond-shaped metal blocks (23) are fixedly sleeved on the multiple control shafts (22). Control cranks (24) are fixedly installed at one ends of the multiple control shafts (22). Card slots are formed on one side of the multiple control cranks (24), and the multiple card slots are respectively adapted to the corresponding positioning shafts (15).