An operating device that can be used for a baler

By using slide chutes and drive devices in the baler to control the wire path and rotation, the problem of low efficiency of existing steel balers is solved, and efficient wire bundling effect is achieved.

CN113619845BActive Publication Date: 2025-08-08SHOUGANG SHUICHENG IRON & STEEL GRP
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Patent Information

Application Number
CN202110970994.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-23
Publication Date
2025-08-08
Estimated Expiration
2041-08-23

AI Technical Summary

Technical Problem

The working efficiency of existing steel balers is low and need to be improved to improve their working efficiency.

Method used

The first body part, the second body part and the third body part are formed by overlapping and splicing each other in parallel, and the walking path and rotation of the steel wire are controlled through the slide groove and the drive device, and the wire feeding mechanism and the drive device are tied and knotted.

Benefits of technology

The wire channel is provided and assisted in rotation to achieve efficient binding and knotting, which improves the working efficiency of the baler.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an operating device that can be used for a baler, which can be used for a baler, comprising a first body, a second body and a third body, wherein the first body, the second body and the third body are parallel to each other and overlap and splice to form an operating part, the first body and the third body are respectively on one side of the second body, and the first body and the second body are respectively provided with slide grooves on the splicing surface, where the slide grooves are spliced with the first body and the second body to form a first channel, and the second body and the third body are respectively provided with slide grooves on the splicing surface, where the slide grooves are spliced with the second body and the third body to form a second channel, the first channel is connected to the C-shaped guide rail end position direction end near the C-shaped guide rail end position direction end of the second channel is connected to the C-shaped guide rail end, and the other end is connected to the wire feeding mechanism, and a third driving device is provided on the second body to control the splicing or opening of the first body and the third body relative to the second body.
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Description

Technical Field

[0001] The present invention relates to a baler, in particular to an operating device that can be used for a baler. Background Art

[0002] Most steel balers in the prior art use iron wire rods (steel wires) to bundle and pack steel bundles. However, the working efficiency of the current steel balers is relatively low and needs to be improved to improve the working efficiency. Summary of the Invention

[0003] The purpose of the present invention is to provide an operating device that can be used for a baler. The device of the present invention can be used for a baler.

[0004] In order to achieve the above object, the present invention adopts the following technical solutions:

[0005] The second body and the third body are connected to each other in parallel and overlap to form an operating part, and the first body and the third body are respectively on one side of the second body, and the first body and the second body are respectively provided with a slide groove on the joint surface, where the slide groove is spliced with the first body and the second body to form a first channel, and the second body and the third body are respectively provided with a slide groove on the joint surface, where the slide groove is spliced with the second body and the third body to form a second channel, the first channel is connected to the end of the C-shaped guide rail at a direction end near the end position of the C-shaped guide rail, the second channel is connected to the end of the C-shaped guide rail at a direction end near the end position of the C-shaped guide rail, and the other end is connected to the wire feeding mechanism, and a third driving device is provided on the second body to control the first body and the third body to be spliced or opened relative to the second body.

[0006] On the basis of the above scheme and as a preferred scheme of the above scheme: it also includes a second driving device that can be driven to rise and fall, a connecting part is provided on the second body, and the rotating shaft of the connecting part is vertically rotatably connected to the movable part at the lower end of the second driving device, and a first motor is provided on the movable part at the lower end of the second driving device, a first gear is provided on the output shaft of the first motor, and a second gear coaxial with the rotating shaft is provided on the connecting part and meshes with the first gear.

[0007] On the basis of the above scheme and as a preferred scheme of the above scheme: the second driving device includes a mounting flange, two guide columns are vertically arranged on the mounting flange, and a first telescopic driving device with a movable end connected to the mounting flange is vertically arranged on the mounting flange.

[0008] On the basis of the above solution and as a preferred solution of the above solution: the first telescopic drive device is a hydraulic drive cylinder.

[0009] On the basis of the above scheme and as a preferred scheme of the above scheme: the third driving device includes two support rods perpendicular to the joint surface of the first body and the second body, the first body and the third body are slidably connected to the support rods, and mounting blocks are respectively provided at both ends of the support rods, and second telescopic driving devices are respectively provided on the mounting blocks to connect the first body and the third body.

[0010] On the basis of the above solution and as a preferred solution of the above solution: the second telescopic drive device is a hydraulic drive cylinder or a pneumatic cylinder.

[0011] The beneficial effects of the present invention are:

[0012] The present invention provides an operating device that can be used for a baler. The device of the present invention can be used for a baler.

[0013] It mainly provides a passage for the traveling path of the steel wire used for bundling, and assists in the rotation to bundle and knot the steel wire. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic structural diagram of an operating device that can be used for a baler according to the present invention;

[0015] Figure 2 It is a schematic structural diagram of the working part of the present invention;

[0016] Figure 3 This is a schematic diagram of the exploded assembly of the working part of the present invention;

[0017] Figure 4 A schematic diagram of the structure of a baler is provided for use in an operating device of a baler according to the present invention;

[0018] Figure 5 It is a partial structural schematic diagram of the baler of the present invention.

[0019] In the figure: the first conveyor-1, the second conveyor-2, the connecting bracket-3, the support frame-4, the C-shaped guide rail-5, the cover plate-6, the first drive device-7, the second drive device-8, the wire feeding mechanism-9, the first body-10, the second body-11, the mounting block-12, the third body-13, the first channel-14, the second channel-15, the third drive device-16, the connecting part-17, the first motor-18, the first gear-19, the second gear-20, the mounting seat-21, the driving wheel-22, the second motor-23, the third gear-24, the fourth gear-25, the cutting device-26, the mounting flange-27, the guide column-28, the first telescopic drive device-29, the support rod-30, and the second telescopic drive device-31. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present invention are clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0021] See Figure 1-5 , an operating device for a baler, comprising a first body 10, a second body 11 and a third body 13, wherein the first body 10, the second body 11 and the third body 13 are parallel to each other and overlapped to form an operating portion, wherein the first body 10 and the third body 13 are respectively on one side of the second body 11, and the first body 10 and the second body 11 are respectively provided with a slide groove on the joint surface, wherein the slide groove is formed with the first body 10 and the second body 11 to form a first channel 14, and the second body 11 and the third body are respectively provided with a slide groove on the joint surface, and the first channel 14 is formed with the first body 10 and the second body 11. The second body 13 is spliced with a slide groove, where the slide groove is spliced with the second body 11 and the third body 13 to form a second channel 15, the first channel 14 is connected to the end of the C-shaped guide rail 5 at the direction end near the end position of the C-shaped guide rail 5, the second channel 15 is connected to the end of the C-shaped guide rail 5 at the direction end near the end position of the C-shaped guide rail 5, and the other end is connected to the wire feeding mechanism 9, and a third driving device 16 is provided on the second body 11 to control the splicing or opening of the first body 10 and the third body 13 relative to the second body 11.

[0022] Furthermore, it also includes a second driving device 8 that can be driven to rise and fall, a connecting portion 17 is provided on the second body 11, and the rotating axis of the connecting portion 17 is vertically rotatably connected to the movable portion at the lower end of the second driving device 8, and a first motor 18 is provided on the movable portion at the lower end of the second driving device 8, and a first gear 19 is provided on the output shaft of the first motor 18, and a second gear 20 coaxial with the rotating axis is provided on the connecting portion 17 and meshes with the first gear 19.

[0023] Furthermore, the second driving device 8 includes a mounting flange 27 , two guide columns 28 are vertically provided on the mounting flange 27 , and a first telescopic driving device 29 is vertically provided on the mounting flange 27 with a movable end connected to the mounting flange 27 .

[0024] Furthermore, the first telescopic driving device 29 is a hydraulic driving cylinder.

[0025] Furthermore, the third driving device 16 includes two support rods 30 perpendicular to the joint surface of the first body 10 and the second body 11, the first body 10 and the third body 13 are slidably connected to the support rods 30, and mounting blocks 12 are respectively provided at both ends of the support rods 30, and second telescopic driving devices 31 are respectively provided on the mounting blocks to connect the first body 10 and the third body 13.

[0026] Furthermore, the second telescopic driving device 31 is a hydraulic driving cylinder or a pneumatic cylinder.

[0027] A baler using the present invention and an operating device for a baler includes a first conveyor 1, a second conveyor 2, and a connecting bracket 3. The first conveyor 1 and the second conveyor 2 are connected in the first position. The connecting bracket 3 is arranged between the first conveyor 1 and the second conveyor 2 and connected and supported on the first conveyor 1 and the second conveyor 2. A support frame 4 is provided between the first conveyor 1 and the second conveyor 2. A C-shaped guide rail 5 with an upward opening is provided between the first conveyor 1 and the second conveyor 2. The C-shaped guide rail 5 is fixed on the connecting bracket 3 just below the support frame 4. The inner side of the C-shaped guide rail 5 has a sliding The upper opening of the C-shaped guide rail 5 tends to converge toward the middle, and a cover plate 6 is provided on the inner side of the C-shaped guide rail 5 to cover the slide groove, and a first driving device 7 is provided to control the cover plate 6 to cover or open the slide groove. The support frame 4 is provided with a second driving device 8 that can be driven to rise and fall, and an operating device provided on the movable part at the lower end of the second driving device 8. The support frame 4 is provided with a wire feeding mechanism 9, and the cover plate 6 covers the slide groove. The wire feeding mechanism 9 feeds the steel wire into the slide groove, and the direction end of the steel wire far from the wire feeding mechanism 9 slides with the slide groove and crosses with the direction end of the steel wire near the wire feeding mechanism 9, and the crossed steel wire ends are driven to rotate by the operating device for bundling operation.

[0028] During operation, the bundle of long materials to be bundled is conveyed from the first conveyor 1 toward the second conveyor 2. During this process, the bundle passes through the C-shaped guide rail, while the wire feed mechanism 9 delivers the wire. The wire, passing through the chute and the cover plate 6, forms a channel around the bundle. After the wire wraps around the bundle, the operating device moves the wire ends downward at the intersection and rotates the wire to bundle the bundle. Note that the cover plate 6 must be opened during bundling to ensure smooth wire retraction.

[0029] Furthermore, the operating device includes a first body 10, a second body 11 and a third body 13, wherein the first body 10, the second body 11 and the third body 13 are parallel to each other and overlapped to form an operating portion, and the first body 10 and the third body 13 are respectively on one side of the second body 11, and the first body 10 and the second body 11 are respectively provided with a slide groove on the joint surface, where the slide groove is formed with the first body 10 and the second body 11 to form a first channel 14, and the second body 11 and the third body are respectively connected to each other. 13 joint surfaces are respectively provided with a slide groove, where the slide groove forms a second channel 15 as the second body 11 and the third body 13 are joined together. The first channel 14 is connected to the end of the C-shaped guide rail 5 at the end position direction end near the end position direction end of the C-shaped guide rail 5, and the second channel 15 is connected to the end of the C-shaped guide rail 5 at the end position direction end near the end position direction end of the C-shaped guide rail 5, and the other end is connected to the wire feeding mechanism 9. A third drive device 16 is provided on the second body 11 to control the first body 10 and the third body 13 to be joined or opened relative to the second body 11. The operating device also includes a connecting portion 17 on the second body 11, the rotating shaft of the connecting portion 17 is vertically rotatably connected to the lower end movable portion of the second drive device 8, and a first motor 18 is provided on the lower end movable portion of the second drive device 8, and a first gear 19 is provided on the output shaft of the first motor 18. A second gear 20 coaxial with the rotating shaft is provided on the connecting portion 17 and meshes with the first gear 19.

[0030] During wire feeding, the wire enters the C-shaped guide rail from the second channel 15 and then enters the first channel 14. The working unit then moves downward, and the wire feed mechanism 9 pulls the wire in the opposite direction to gather it. At this point, the first motor 18, via the first gear, drives the working unit to rotate, knotting the wire and bundling the long materials. Once tied, the third body 13 controls the separation of the first, second, and third bodies 10, 11, and 13 to release the ends of the wire, allowing the working unit to move upward smoothly.

[0031] Furthermore, the wire feeding mechanism 9 includes a mounting base 21 provided on the support frame 4, on which two parallel and tangential drive wheels 22 are rotatably provided, and a second motor 23 is provided on the mounting base 21 and is in transmission connection with one of the drive wheels 22. Coaxial third gears 24 are provided on each of the drive wheels 22, and a fourth gear 25 is provided on the mounting base 21 to simultaneously engage with the two third gears 24. The second motor 23 drives the drive wheels 22 to rotate in opposite directions to clamp and control the steel wire for wire drawing and feeding operations. Furthermore,

[0032] A cutting device 26 for cutting the steel wire is provided on the C-shaped guide rail 5. The cutting device 26 is used to cut the steel wire between the second channel 15 and the wire feeding mechanism.

[0033] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. An operating device that can be used for a baler, characterized in that: The first body (10), the second body (11) and the third body (13) are parallel to each other and overlapped to form an operating part. The first body (10) and the third body (13) are respectively on one side of the second body (11). The first body (10) and the second body (11) are respectively provided with a slide groove on the joint surface. The slide groove is formed along the joint surface of the first body (10) and the second body (11) to form a first channel (14). The second body (11) and the third body (13) are respectively provided with a slide groove on the joint surface. A slide groove is separately provided, where the slide groove is spliced with the second body (11) and the third body (13) to form a second channel (15), the first channel (14) is connected to the end of the C-shaped guide rail (5) at a direction end near the end position of the C-shaped guide rail (5), the second channel (15) is connected to the end of the C-shaped guide rail (5) at a direction end near the end position of the C-shaped guide rail (5), and the other end is connected to the wire feeding mechanism (9), and a third driving device (16) is provided on the second body (11) to control the splicing or opening of the first body (10) and the third body (13) relative to the second body (11); The invention also includes a second driving device (8) that can be driven to rise and fall, a connecting portion (17) is provided on the second body (11), a rotating shaft of the connecting portion (17) is vertically rotatably connected to the lower movable portion of the second driving device (8), a first motor (18) is provided on the lower movable portion of the second driving device (8), a first gear (19) is provided on the output shaft of the first motor (18), and a second gear (20) coaxial with the rotating shaft is provided on the connecting portion (17) and meshes with the first gear (19); The third driving device (16) comprises two support rods (30) perpendicular to the joint surface of the first body (10) and the second body (11); the first body (10) and the third body (13) are slidably connected to the support rods (30); mounting blocks (12) are respectively provided at both ends of the support rods (30); and second telescopic driving devices (31) are respectively provided on the mounting blocks to connect the first body (10) and the third body (13).

2. The working device for a baler according to claim 1, characterized in that: The second driving device (8) includes a mounting flange (27), two guide columns (28) are vertically arranged on the mounting flange (27), and a first telescopic driving device (29) is vertically arranged on the mounting flange (27) with a movable end connected to the mounting flange (27).

3. The working device for a baler according to claim 2, characterized in that: The first telescopic drive device (29) is a hydraulic drive cylinder.

4. The working device for a baler according to claim 1, characterized in that: The second telescopic drive device (31) is a hydraulic drive cylinder or a pneumatic cylinder.

Citation Information

Patent Citations

  • Working device capable of being used for bundling machine

    CN216070643U