Transverse moving extractor

By using two bottom channel steel and independent support channel steel in the lateral movement lead-out machine, the obstacles during horizontal movement are solved, process consumption and production costs are reduced, and the scope of application of material movement is expanded.

CN222845996UActive Publication Date: 2025-05-09HANDAN YOU FA STEEL PIPE CO LTD +1
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Patent Information

Application Number
CN202421911983.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-05-09
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

In the prior art, channel steel needs to be cut when moving horizontally and turning left to remove interception obstacles, increasing process consumption and production costs.

Method used

A lateral movement lead-out machine is designed, using two bottom channel steels as main support, and independent support channel steels are installed on each waist wheel, avoiding obstacles when moving horizontally and left, and moving directly.

Benefits of technology

It reduces the process consumption during horizontal movement and left turn, reduces production costs, and increases the scope of application of material movement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of leading-out machines, and discloses a transverse moving leading-out machine which comprises two bottom steel channels, a plurality of connecting steel channels are fixed between the two bottom steel channels, a plurality of supporting steel channels are fixed on the top faces of the bottom steel channels, and two supporting steel channels form a group. Fixed steel channels are fixed between the supporting steel channels, welding plates are welded to the top faces of the supporting steel channels, fixed plates are fixed to the top faces of the welding plates, rotating holes are formed in one sides of the fixed plates, bearings are fixed into the rotating holes, and rotating rods are fixed to the inner wall faces of inner rings of the bearings. And a waist wheel is fixedly inserted into the rotating rod. In the utility model, the two bottom channel steels are used as main supports, and each waist wheel is provided with the supporting channel steels which are independently mounted, so that a position for transversely moving and mounting materials is vacated, the materials can be directly moved without hindrance during transverse moving and left turning, the process consumption during transverse moving and left turning is reduced, and the production cost is further reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of lead-out machines, in particular to a transversely movable lead-out machine. Background Art

[0002] A mobile extractor is a device used to move objects in an industrial environment. The concept of a mobile extractor can be applied to a variety of fields, such as mechanical engineering and automation control. They all follow some common principles, which is to move a specific signal through some form of control or mechanical device.

[0003] In the prior art, two channel steels are punched to make a lead-out rack. Thus, when the machine moves sideways or turns left, the channel steels that may be blocked need to be cut and removed, which increases the number of steps required for the machine to move sideways or turn left, and increases production costs. Utility Model Content

[0004] The utility model aims to provide a transversely movable lead-out machine to solve the problem that the channel steel that may be blocked needs to be cut and removed, which increases the process required for transverse movement and left turn and increases the production cost.

[0005] In order to achieve the above-mentioned purpose of the utility model, the utility model adopts the following technical scheme: a transversely movable lead-out machine, comprising two bottom channel steels, a plurality of connecting channel steels are fixed between the two bottom channel steels, a plurality of supporting channel steels are fixed to the top surface of the bottom channel steels, wherein two of the supporting channel steels form a group, a fixed channel steel is fixed between each group of the supporting channel steels, a welding plate is welded to the top surface of the supporting channel steels, a fixing plate is fixed to the top surface of the welding plate, a rotating hole is opened on one side of the fixing plate, a bearing is fixed inside the rotating hole, a rotating rod is fixed to the inner wall surface of the inner ring of the bearing, and a waist wheel is fixedly inserted on the rotating rod.

[0006] Preferably, a mounting plate is fixed to the top surface of the bottom channel steel on the right side, a through hole is opened on one side of the mounting plate, a driving motor is fixed on one side of the mounting plate, and one end of the output shaft of the driving motor passes through the through hole and is fixedly inserted with a driving wheel.

[0007] Preferably, a main limit groove is opened on the surface of the driving wheel, a secondary moving wheel is fixedly inserted on one end of the rotating rod, a secondary limit groove is opened on the surface of the secondary moving wheel, and a transmission belt is surrounded by the inner bottom surface of the main limit groove, and the transmission belt is arranged around the main limit groove.

[0008] Preferably, a supporting folding beam is detachably provided below the two bottom channel steels.

[0009] Preferably, connecting plates are fixed on both sides of the two bottom channel steels away from each other, two threaded grooves are provided on the top surface of the supporting folding beam, and fixing bolts are rotatably inserted on the connecting plates, and the bottom ends of the fixing bolts pass through the connecting plates and are threadedly connected to the threaded grooves.

[0010] Preferably, stabilizing plates are fixed to the bottom surfaces of both ends of the supporting folding beam.

[0011] Compared with the prior art, a transverse moving lead-out machine using the above technical solution has the following beneficial effects:

[0012] 1. During the movement of the material, it will contact the surface of the waist wheel, and then the rotating waist wheel can drive the material to move. When the material is moved horizontally or turned left, two bottom channel steels are used as the main support, and each waist wheel has an independently installed support channel steel, so there is a space for the installation of the material for horizontal movement. There is no obstacle when moving horizontally or turning left, and it can move directly, which reduces the process consumption when moving horizontally or turning left, thereby reducing production costs;

[0013] Second, the driving motor in the working state will use the rotating output shaft to drive the driving wheel to rotate, and the rotating driving wheel will drive the transmission belt to transfer kinetic energy to the secondary driving wheel, which can drive the rotating rod to rotate synchronously. When the rotating rod rotates, it will drive the waist wheel to rotate, thereby driving the material to move, and then the material can be moved to a higher position, increasing the scope of application during use;

[0014] 3. The bottom channel steel is supported upward by the supporting folding beam, which increases the height of the bottom channel steel. When the material needs to be transported to a higher position, the staff will first unscrew the fixing bolts from the threaded groove to separate the bottom channel steel and the supporting folding beam. Then the staff will replace the supporting folding beam with a higher height, thereby changing the inclination angle of the bottom channel steel, increasing the applicability of moving materials. The stabilizing plate fixed on the bottom surface of the supporting folding beam increases the contact area between the supporting folding beam and the ground, and increases the stability of the supporting folding beam on the ground. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a three-dimensional schematic diagram of an embodiment.

[0016] Figure 2 It is an exploded perspective schematic diagram of an embodiment.

[0017] Figure 3 It is a schematic diagram of the explosion of the fixed plate and the rotating rod in the embodiment.

[0018] Figure 4 It is a schematic diagram of the explosion of the mounting plate and the secondary driving wheel in the embodiment.

[0019] In the figure: 1. Bottom channel steel; 2. Connecting channel steel; 3. Support channel steel; 4. Fixed channel steel; 5. Welding plate; 6. Fixed plate; 7. Rotating hole; 8. Bearing; 9. Rotating rod; 10. Waist pulley; 11. Mounting plate; 12. Penetration hole; 13. Driving motor; 14. Driving wheel; 15. Main limit groove; 16. Secondary driving wheel; 17. Secondary limit groove; 18. Transmission belt; 19. Support folding beam; 20. Stabilizing plate; 21. Connecting plate; 22. Threaded groove; 23. Fixing bolt. DETAILED DESCRIPTION

[0020] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings.

[0021] like Figure 1-Figure 3 As shown, a transversely movable lead-out machine comprises two bottom channel steels 1, a plurality of connecting channel steels 2 are fixed between the two bottom channel steels 1, a plurality of supporting channel steels 3 are fixed to the top surface of the bottom channel steels 1, wherein two supporting channel steels 3 form a group, a fixed channel steel 4 is fixed between each group of supporting channel steels 3, a welding plate 5 is welded to the top surface of the supporting channel steels 3, a fixed plate 6 is fixed to the top surface of the welding plate 5, a rotating hole 7 is opened on one side of the fixed plate 6, a bearing 8 is fixed inside the rotating hole 7, a rotating rod 9 is fixed to the inner wall surface of the inner ring of the bearing 8, and a waist wheel 10 is fixedly inserted on the rotating rod 9.

[0022] During use, the material will contact the surface of the waist wheel 10 during the movement, and then the material can be driven to move by the rotating waist wheel 10. When the material is moved horizontally or turned left, two bottom channel steels 1 are used as the main support, and each waist wheel 10 has an independently installed supporting channel steel 3, so the position for the horizontal movement installation of the material is vacated, and there is no obstacle when moving horizontally or turning left, and it can move directly, which reduces the process consumption during the horizontal movement and left turn, and thus reduces the production cost.

[0023] like Figure 3-Figure 4 As shown, a mounting plate 11 is fixed to the top surface of the right bottom channel steel 1, a through hole 12 is provided on one side of the mounting plate 11, a driving motor 13 is fixed to one side of the mounting plate 11, one end of the output shaft of the driving motor 13 passes through the through hole 12 and is fixedly inserted with a driving wheel 14, a main limiting groove 15 is provided on the surface of the driving wheel 14, a secondary driving wheel 16 is fixedly inserted on one end of the rotating rod 9, a secondary limiting groove 17 is provided on the surface of the secondary driving wheel 16, a transmission belt 18 is surrounded by the inner bottom surface of the main limiting groove 15, and the transmission belt 18 is arranged around the main limiting groove 15.

[0024] During use, the driving motor 13 in the working state will utilize the rotating output shaft to drive the active wheel 14 to rotate, and the rotating active wheel 14 will drive the transmission belt 18 to transfer kinetic energy to the secondary active wheel 16, thereby driving the rotating rod 9 to rotate synchronously. When the rotating rod 9 rotates, it will drive the waist wheel 10 to rotate, thereby driving the material to move, and then the material can be moved to a higher position, increasing the scope of application during use.

[0025] like Figure 1 and Figure 2 As shown, a supporting folding beam 19 is detachably provided below the two bottom channel steels 1, and connecting plates 21 are respectively fixed on the two sides of the two bottom channel steels 1 away from each other. Two threaded grooves 22 are provided on the top surface of the supporting folding beam 19, and fixing bolts 23 are rotatably inserted on the connecting plate 21. The bottom end of the fixing bolt 23 passes through the connecting plate 21 and is threadedly connected to the threaded groove 22. Stabilizing plates 20 are fixed to the bottom surfaces of both ends of the supporting folding beam 19.

[0026] During use, the bottom channel steel 1 is supported upward by the supporting folding beam 19, which increases the height of the bottom channel steel 1. When the material is to be transported to a higher position, the staff will first unscrew the fixing bolt 23 from the threaded groove 22 to separate the bottom channel steel 1 and the supporting folding beam 19. Then the staff will replace the supporting folding beam 19 with a higher height, thereby changing the inclination angle of the bottom channel steel 1, thereby increasing the applicability of moving materials. The stabilizing plate 20 fixed on the bottom surface of the supporting folding beam 19 increases the contact area between the supporting folding beam 19 and the ground, thereby increasing the stability of the position of the supporting folding beam 19 on the ground.

[0027] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A transversely movable lead-out machine, comprising two bottom channel steels (1), characterized in that: A plurality of connecting channel steels (2) are fixed between the two bottom channel steels (1), and a plurality of supporting channel steels (3) are fixed on the top surface of the bottom channel steels (1), wherein two supporting channel steels (3) form a group, and a fixing channel steel (4) is fixed between each group of supporting channel steels (3). A welding plate (5) is welded to the top surface of the supporting channel steel (3), and a fixing plate (6) is fixed to the top surface of the welding plate (5). A rotating hole (7) is opened on one side of the fixing plate (6), and a bearing (8) is fixed inside the rotating hole (7). A rotating rod (9) is fixed to the inner wall surface of the inner ring of the bearing (8), and a waist wheel (10) is fixedly inserted on the rotating rod (9).

2. A lateral moving lead-out machine according to claim 1, characterized in that: A mounting plate (11) is fixed to the top surface of the bottom channel steel (1) on the right side, a through hole (12) is provided on one side of the mounting plate (11), a driving motor (13) is fixed to one side of the mounting plate (11), and one end of the output shaft of the driving motor (13) passes through the through hole (12) and is fixedly inserted with a driving wheel (14).

3. A transverse moving lead-out machine according to claim 2, characterized in that: A main limiting groove (15) is provided on the surface of the driving wheel (14), a secondary driving wheel (16) is fixedly inserted on one end of the rotating rod (9), a secondary limiting groove (17) is provided on the surface of the secondary driving wheel (16), a transmission belt (18) is surrounded by the inner bottom surface of the main limiting groove (15), and the transmission belt (18) and the main limiting groove (15) are arranged in a surrounding manner.

4. A transverse moving lead-out machine according to claim 1, characterized in that: A supporting folding beam (19) is detachably provided below the two bottom channel steels (1).

5. A transverse moving lead-out machine according to claim 4, characterized in that: A connecting plate (21) is fixed to two sides of the two bottom channel steels (1) that are away from each other, and two threaded grooves (22) are provided on the top surface of the supporting folding beam (19). A fixing bolt (23) is rotatably inserted into the connecting plate (21), and the bottom end of the fixing bolt (23) passes through the connecting plate (21) and is threadedly connected to the threaded groove (22).

6. A transverse moving lead-out machine according to claim 4, characterized in that: Stabilizing plates (20) are fixed to the bottom surfaces of both ends of the supporting folding beam (19).