Iron ladle cold repair platform
By designing a movable cold repair platform for ladles with guardrails, the safety hazards in cold repair of ladles were solved, and work efficiency and safety were improved.
Patent Information
- Application Number
- CN202423092747.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
The existing ladle cold repair process lacks safety measures, resulting in low employee work efficiency and safety hazards.
Design a cold repair platform for a ladle, which is made by splicing two parts into a hollow circle, equipped with a rotary table, bearings and support base, combined with an I-beam frame, cover plate and lifting lugs to form a movable maintenance platform with guardrails.
It improved employee work efficiency, shortened working hours, and effectively eliminated safety hazards.
Smart Images

Figure CN223477619U_ABST
Abstract
Description
Technical field:
[0001] This utility model relates to the field of maintenance equipment technology, specifically to a cold repair platform for iron ladles. Background technology:
[0002] Cold repair of steel ladles lacks safety measures and has no platform from bottom to top. Constructing a steel ladle repair platform can improve employee work efficiency and safety, eliminating potential safety hazards for employees. Utility Model Content:
[0003] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a cold repair platform for iron ladles, which eliminates safety hazards and improves employee work efficiency.
[0004] To address the problems existing in the background technology, this utility model adopts the following technical solution: it includes component one, component two, and a connecting plate. Component one and component two are spliced together, with a hollowed-out circular shape in the middle. The inner sides of component one and component two are opposite to the connecting plate. The connecting plate is connected to component one and component two by fixing bolts. Both component one and component two have grooves in their inner rings. A rotating platform is provided in the middle of component one and component two. One side of the rotating platform is slidably connected to the groove through an arc-shaped insert. The bottom of the rotating platform is connected to the support base through a bearing.
[0005] The component includes a single-sided guardrail, an I-beam frame, a cover plate, and lifting lugs. The I-beam frame serves as a base and contacts the ground. A cover plate is laid on the I-beam frame. The single-sided guardrail is vertically installed on one side of the cover plate. The single-sided guardrail is constructed by splicing steel frames and plates. Lifting lugs are distributed on the top surface of the component.
[0006] The second component includes a single-sided guardrail, an I-beam frame, a cover plate, and lifting lugs. The I-beam frame serves as a base and contacts the ground. The cover plate is laid on the I-beam frame. The single-sided guardrail is vertically installed on the side of the cover plate. The single-sided guardrail is constructed by splicing steel frames and plates. Lifting lugs are distributed on the top surface of the second component.
[0007] The structures of component one and component two are completely identical in size.
[0008] The beneficial effects of this utility model are: it creates a movable repair platform with guardrails, which can be moved to the vicinity of the iron bag when repairing it, thereby improving the work efficiency of employees, shortening working time, and ensuring safety. Attached image description:
[0009] Figure 1 This is a schematic diagram of the structure of this utility model;
[0010] Figure 2 This is a splicing diagram of component one and component two of this utility model;
[0011] Figure 3 This is a longitudinal sectional view of a component of this utility model;
[0012] Figure 4 This is a top view of the component of this utility model;
[0013] Figure 5 This is a longitudinal sectional view of part two of this utility model;
[0014] Figure 6 This is a top view of part two of this utility model. Detailed implementation method:
[0015] Referring to the figures, the present invention specifically adopts the following implementation method: It includes component 1, component 2, and a connecting plate 11. Component 1 and component 2 are spliced together, forming a hollow circular shape in the middle. The inner sides of component 1 and component 2 are oppositely connected to the connecting plate 11. The connecting plate 11 is connected to component 1 and component 2 by fixing bolts 12. Both component 1 and component 2 have grooves 13 on their inner rings. A rotating platform 15 is provided between component 1 and component 2. One side of the rotating platform 15 is slidably connected to the groove 13 by an arc-shaped insert 14. The bottom of the rotating platform 11 is connected to the support base 17 by a bearing 16. Component 1 includes a single-sided guardrail 3, an I-beam frame 5, a cover plate 6, and lifting lugs 7. The I-beam frame 5 serves as a base in contact with the ground. The cover plate 6 is laid on the I-beam frame 5. The single-sided guardrail 3 is vertically erected on the side of the cover plate 6. The single-sided guardrail 3 is formed by splicing steel frames and plates. The lifting lugs 7 are distributed on the top surface of component 1. The second component 2 comprises a single-sided guardrail 4, an I-beam frame 8, a cover plate 9, and lifting lugs 10. The I-beam frame 8 serves as a base and contacts the ground. The cover plate 9 is laid on the I-beam frame 8, and the single-sided guardrail 4 is vertically erected on the side of the cover plate 9. The single-sided guardrail 4 is constructed by splicing steel frames and panels. The lifting lugs 10 are distributed on the top surface of the second component 2. The structures and dimensions of the first component 1 and the second component 2 are completely identical.
[0016] When using this cold repair platform for iron ladles, first assemble parts 1 and 2 together, with a circular support base 17 placed in the middle. The support base 17 is connected to the rotating platform 15 via bearings 16. One end of the rotating platform 15 is slidably connected to the groove 13 via an arc-shaped insert 14. The rotating platform 15 can rotate 360 degrees clockwise or counterclockwise within the groove 13. The rotating platform 15 serves as the repair platform, meeting the needs of the staff. After installing the rotating platform 15, fix parts 1 and 2 with connecting plates 11 and fixing bolts 12.
[0017] Component 1 and Component 2 are identical in structure and dimensions, and are equipped with single-sided guardrails, I-beam steel frames, cover plates, and lifting lugs. The I-beam steel frames serve as the bottom support, with cover plates laid on top to support the single-sided guardrails. The single-sided guardrails are erected vertically, acting as a barrier. The interior of the single-sided guardrails forms a full-span scaffold structure through a steel frame, and the top is covered with panels as needed. Lifting lugs are installed on the panels for easy hoisting and securing in position for workers to perform cold repairs on the ladle.
[0018] In summary, this cold repair platform for tin ladles is a movable repair platform with guardrails. It can be moved to the vicinity of the tin ladle during repair, improving employee work efficiency, shortening working time, and ensuring safety.
Claims
1. A cold repair platform for iron ladles, characterized in that: Includes component one (1), component two (2) and connecting plate (11). Component one (1) and component two (2) are spliced together, with a hollow circle in the middle. The inner sides of component one (1) and component two (2) are opposite to the connecting plate (11). The connecting plate (11) is connected to component one (1) and component two (2) by fixing bolts (12). Both component one (1) and component two (2) have grooves (13) in their inner rings. A rotating platform (15) is provided between component one (1) and component two (2). One side of the rotating platform (15) is slidably connected to the groove (13) by an arc-shaped plug (14). The bottom of the rotating platform (15) is connected to the support base (17) by a bearing (16).
2. The ladle cold repair platform according to claim 1, characterized in that: The component one (1) includes a single-sided guardrail one (3), an I-beam frame one (5), a cover plate one (6) and a lifting lug one (7). The I-beam frame one (5) serves as a base and contacts the ground. The cover plate one (6) is laid on the I-beam frame one (5). The single-sided guardrail one (3) is vertically erected on the side of the cover plate one (6). The single-sided guardrail one (3) is formed by splicing steel frames and plates. The lifting lug one (7) is distributed on the top surface of the component one (1).
3. The ladle cold repair platform according to claim 1, characterized in that: The second component (2) includes a single-sided guardrail (4), an I-beam frame (8), a cover plate (9), and lifting lugs (10). The I-beam frame (8) serves as a base and contacts the ground. The cover plate (9) is laid on the I-beam frame (8). The single-sided guardrail (4) is vertically erected on the side of the cover plate (9). The single-sided guardrail (4) is formed by splicing steel frames and plates. The lifting lugs (10) are distributed on the top surface of the second component (2).
4. The ladle cold repair platform according to claim 1, characterized in that: The structures of component one (1) and component two (2) are completely identical in size.