Coiled material transportation frame used in workshop
By designing a roll transport rack with inclined frames and clearance grooves, the problem of fiberboard rolls not being able to be placed upright before packaging was solved, achieving stable transportation and efficient roll transfer, and reducing manual labor intensity and safety risks.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU AOSHENG COMPOSITE MATERIALS HI TECH
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-22
AI Technical Summary
In the existing technology, fiberboard rolls need to be handled manually before packaging and cannot be placed upright, which leads to inconvenience in transportation and safety hazards. In particular, when using forklifts, the rolls are prone to rolling and difficult to place.
Design a roll material transport frame with a structure that includes a slanted frame and a clearance groove on the base frame. The slanted frame has an inclination angle of 60° to 80°, and the support column forms an obtuse angle with the slanted frame. Side rollers and casters work in conjunction with guide side rails to achieve stable erection and smooth transport of the roll material.
This technology enables stable erection and efficient transportation of steel coils, reduces manual labor intensity, improves transportation efficiency, and lowers safety risks during transportation.
Smart Images

Figure CN224266197U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of manufacturing technology of roll material transport equipment in workshops, specifically a roll material transport rack for use in workshops. Background Technology
[0002] In the production of fiberboard, to minimize the space occupied in the workshop, a winding device is installed at the end of the fiberboard production line to wind the fiberboard together. After a certain amount is wound, the fiberboard roll (the shape formed after the fiberboard is rolled up, hereinafter referred to as a roll) is cut off and placed at the packaging station for packaging. Because the fiberboard production line is relatively long and the packaging process is difficult to synchronize with the fiberboard production process, the packaging machine for the rolls is located away from the fiberboard production line. This allows for storage space in the workshop, ensuring that rolls that cannot be packaged in time are stored if the packaging speed cannot keep up with the fiberboard production speed. Therefore, before packaging the rolls, workers need to lift them onto the packaging machine. A single roll weighs several hundred kilograms. If a forklift is used, workers need to lift the roll onto the packaging machine after it arrives at the packaging station, which is very strenuous. Current packaging machines have automatic gripping devices for the rolls, but these require the roll to be upright (i.e., the central axis of the roll is horizontal) to be gripped. When transporting sheet rolls by forklift, the sheet rolls must be laid flat, otherwise it is difficult to place them upright on the forklift. Also, it is dangerous to place the sheet rolls upright on the forklift because the sheet rolls are prone to rolling. Utility Model Content
[0003] This application addresses the shortcomings of existing technologies by designing a roll material transport rack for workshops. This rack utilizes a method of setting up a slanted frame on the base frame to place the roll material and setting a clearance groove at the bottom of the slanted frame. This solves the problem that existing workshops cannot stand the rolls upright to accommodate the packaging machine.
[0004] The technical solution of this application is as follows:
[0005] A roll material transport rack for use in a workshop includes a base frame, casters, side rollers, a slant frame, and support columns. The casters are mounted on the lower surface of the base frame, and the slant frame is mounted on the upper surface of the base frame. Two support columns are mounted on the lower end of the side of the slant frame that forms an obtuse angle with the upper surface of the base frame. The support columns are perpendicular to the side of the slant frame. A clearance groove is provided between the two support columns at the lower end of the slant frame. The side rollers are mounted on the side wall of the base frame that is perpendicular to the slant frame.
[0006] Preferably, the upper surface of the base frame is provided with two inclined frames, and the angle formed by the two inclined frames on a plane A perpendicular to the upper surface of the base frame is an acute angle, with the opening direction of the acute angle facing the base frame. The side rollers are provided on the side wall of the base frame parallel to the plane A, and two support columns are provided at the bottom end of the opposite sides of the two inclined frames.
[0007] Preferably, a buffer sleeve is fitted onto the support column.
[0008] Preferably, there is a preset distance between the two inclined frames, and the two inclined frames are fixedly connected together by a crossbar parallel to the plane A.
[0009] Preferably, handles are provided on the side walls of the two inclined frames that are parallel to plane A.
[0010] Preferably, the omnidirectional wheel is equipped with a braking device.
[0011] Preferably, a cushioning pad is laid on the side of the inclined frame that forms an obtuse angle with the upper surface of the base frame.
[0012] Preferably, the tilt angle of the inclined frame is between 60° and 80°.
[0013] The beneficial effects of this application are as follows:
[0014] 1. A roll material transport rack for workshops was designed by setting up a slanted frame on the base frame to place the roll material and setting a clearance groove at the bottom of the slanted frame. This solves the problem that existing workshops cannot stand the roll material upright to cooperate with the packaging machine.
[0015] 2. This application features two inclined frames, allowing two plate rolls to be placed on a single base frame, thus improving transportation efficiency. The acute angle design ensures that both inclined frames are tilted, and that the plate rolls placed on both frames are stable.
[0016] 3. To ensure the base frame loaded with the sheet rolls aligns with the inlet of the baling machine after being pushed to the machine's entrance, two parallel guide rails are installed on the workshop floor. This allows the worker to easily align the base frame with the machine's inlet after pushing it between the two guide rails. Therefore, the side rollers in this application are designed so that after the base frame is pushed between the two guide rails, the circumferential surface of the side rollers rolls in contact with the guide rails, thereby reducing the friction between the base frame and the guide rails. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this application;
[0018] Figure 2This is a schematic diagram of the structure after removing one of the buffer sleeves in this application;
[0019] Figure 3 This is a schematic diagram of the structure in this application in which a plate roll is placed;
[0020] Figure 4 This is a schematic diagram of the structure for transporting the sheet roll to the inlet of the packing machine in this application.
[0021] The components include: 1. Base frame; 2. Casters; 3. Side rollers; 4. Inclined frame; 5. Support column; 6. Clearance groove; 7. Plane A; 8. Buffer sleeve; 9. Handle; 10. Buffer pad; 11. Acute angle; 12. Plate roll; 13. Braking device; 14. Guide side rail; 15. Packing machine inlet end. Detailed Implementation
[0022] like Figure 1-4 As shown, a roll material transport rack for use in a workshop includes a base frame 1, casters 2, side rollers 3, a slant frame 4, and support columns 5. The casters 2 are arranged on the lower surface of the base frame 1, and the slant frame 4 is arranged on the upper surface of the base frame 1. Two support columns 5 are arranged at the lower end of the side of the slant frame 4 that forms an obtuse angle with the upper surface of the base frame 1. The support columns 5 are perpendicular to the side of the slant frame 4. A clearance groove 6 is provided between the two support columns 5 at the lower end of the slant frame 4. The side rollers 3 are arranged on the side wall of the base frame 1 perpendicular to the side wall of the slant frame 4.
[0023] In this application, during use, the plate roll 12 is placed on the inclined frame 4. Since the inclined frame 4 is tilted, the weight of the plate roll 12 is distributed on the surface supporting the plate roll 12 on the inclined frame 4 and on the support column 5, thereby increasing the contact surface of the plate roll 12, preventing the plate roll 12 from sliding, and in this condition, the plate roll 12 is upright (e.g., Figure 3 As shown, the support column 5 is used to support the sheet roll 12. The clearance groove 6 between the two support columns 5 allows the fingers of the robotic arm on the packing machine, which grips the sheet roll 12, to extend directly under it and lift it up. This eliminates the need for the robotic arm's fingers to apply pressure to the sheet roll 12, thus preventing deformation. The casters 2 are provided so that workers can drag or pull the base frame 1 across the workshop floor 2 after placing the sheet roll 12 on the inclined frame 4. Figure 4As shown, in order to align the base frame 1, which is loaded with the sheet roll 12, with the inlet end 15 of the packing machine after it is pushed to the inlet end 15, two parallel guide side rails 14 are set on the workshop floor. This allows the base frame 1 to be aligned with the inlet end 15 of the packing machine after the worker pushes it between the two guide side rails 14. The side rollers 3 are designed so that after the base frame 1 is pushed between the two guide side rails 14, the circumferential surface of the side rollers 3 rolls in contact with the guide side rails 14, thereby reducing the friction between the base frame 1 and the guide side rails 14.
[0024] As a preferred embodiment, two inclined frames 4 are provided on the upper surface of the base frame 1. The angle formed by the two inclined frames 4 on a plane A7 perpendicular to the upper surface of the base frame 1 is an acute angle 11, with the opening of the acute angle 11 facing the base frame 1. The side rollers 3 are provided on the sidewalls of the base frame 1 parallel to the plane A7. Two support columns 5 are provided at the bottom ends of the opposite sides of each of the two inclined frames 4. This arrangement of two inclined frames 4 allows two plate rolls 12 to be placed on one base frame 1, improving transportation efficiency. The acute angle 11 ensures that both inclined frames 4 are tilted, and that the plate rolls 12 placed on both inclined frames 4 are stable.
[0025] As a preferred embodiment, a buffer sleeve 8 is fitted onto the support column 5. The buffer sleeve 8 is provided to increase the contact surface between the support column 5 and the plate roll 12, and to prevent the plate roll 12 from deforming due to the supporting force applied by the support column 5.
[0026] As a preferred embodiment, a predetermined distance is maintained between the two inclined frames 4, and the two inclined frames 4 are fixedly connected together by a crossbar parallel to the plane A7. The predetermined distance between the two inclined frames 4 is to prevent interference between the two plate rolls 12 after they are placed, such as... Figure 3 and Figure 4 As shown, after there is a distance between the two inclined frames 4, there is also a distance between the plate rolls 12 placed on the two inclined frames 4 respectively.
[0027] As a preferred embodiment, handles 9 are provided on the side walls of both inclined frames 4, parallel to the plane A7. The handles 9 facilitate workers' gripping of the handles to push or pull the base frame 1.
[0028] As a preferred embodiment, the caster wheel 2 is equipped with a braking device 13. With this configuration, the caster wheel 2 can be locked in place when parked by the braking device 13, which is a prior art technology.
[0029] As a preferred embodiment, a cushioning pad 10 is laid on the side of the inclined frame 4 that forms an obtuse angle with the upper surface of the base frame 1. The cushioning pad 10 is used to protect the sheet roll placed on the inclined frame 4.
[0030] As a preferred embodiment, the tilt angle of the inclined frame 4 is between 60° and 80°. This angle facilitates the robotic arm on the packing machine to grasp the sheet roll 12, prevents the upright sheet roll 12 from falling in opposite directions between the two inclined frames 4, and ensures that the sheet roll 12 on the inclined frame 4 will not sway when the worker pushes or pulls the base frame 1.
Claims
1. A roll material transport rack for use in a workshop, characterized in that, The system includes a base frame (1), casters (2), side rollers (3), a slant frame (4), and support columns (5). The casters (2) are provided on the lower surface of the base frame (1), and the slant frame (4) is provided on the upper surface of the base frame (1). Two support columns (5) are provided at the lower end of the side of the slant frame (4) that forms an obtuse angle with the upper surface of the base frame (1). The support columns (5) are perpendicular to the side of the slant frame (4). A clearance groove (6) is provided between the two support columns (5) at the lower end of the slant frame (4). The side rollers (3) are provided on the side wall of the base frame (1) that is perpendicular to the slant frame (4).
2. The roll material transport rack for use in a workshop according to claim 1, characterized in that, Two inclined frames (4) are provided on the upper surface of the base frame (1). The angle formed by the two inclined frames (4) on the plane A (7) perpendicular to the upper surface of the base frame (1) is an acute angle (11). The opening direction of the acute angle (11) is towards the base frame (1). The side roller (3) is provided on the side wall of the base frame (1) parallel to the plane A (7). Two support columns (5) are provided at the bottom end of the opposite sides of the two inclined frames (4).
3. A roll material transport rack for use in a workshop according to claim 2, characterized in that, A buffer sleeve (8) is fitted onto the support column (5).
4. A roll material transport rack for use in a workshop according to claim 2, characterized in that, The two inclined frames (4) are spaced at a predetermined distance and are fixedly connected together by a crossbar parallel to the plane A (7).
5. A roll material transport rack for use in a workshop according to claim 2, characterized in that, Handles (9) are provided on the side walls of the two inclined frames (4) that are parallel to the plane A (7).
6. A roll material transport rack for use in a workshop according to claim 1, characterized in that, The universal wheel (2) is equipped with a braking device.
7. A roll material transport rack for use in a workshop according to claim 1, characterized in that, A cushioning pad (10) is laid on the side of the inclined frame (4) that forms an obtuse angle with the upper surface of the base frame (1).
8. A roll material transport rack for use in a workshop according to claim 1, characterized in that, The tilt angle of the inclined frame (4) is between 60° and 80°.