Continuous casting billet transportation climbing roller way
By designing the continuous casting billet transportation climbing rollers, the problems of high transportation costs and low efficiency caused by the height difference between the steelmaking workshop and the steel rolling workshop are solved, and direct hot delivery of the continuous casting billet is realized, reducing transportation costs and improving production efficiency.
Patent Information
- Application Number
- CN202421439910.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-21
AI Technical Summary
The height difference between the steelmaking workshop and the steel rolling workshop production line leads to high transportation costs and low efficiency of continuous casting billets, making it difficult for the existing technology to achieve efficient and low-cost hot-transport solutions.
A continuous casting billet transportation climbing roller is designed, including a hill starting point roller, a hill straight line roller and a hill end roller. Through the individual transmission of the reducer motor and the cooperation of the side guide plate, the direct hot delivery of the continuous casting billet is achieved.
Through this technical solution, direct hot delivery of continuous casting billets is achieved, transportation costs are reduced, production efficiency is improved, and energy consumption is saved.
Smart Images

Figure CN222856288U_ABST
Abstract
Description
Technical Field
[0001] The utility model patent belongs to the field of metallurgical technology and relates to a continuous casting billet transportation climbing roller. Background Art
[0002] The continuous casting billets produced in the steelmaking workshop need to be sent to the rolling workshop for rolling. When the steelmaking workshop and the rolling workshop are far apart and there is a height difference, some steel mills use automobile transportation, but the cost of automobile transportation is high; some steel mills use roller conveyor plus elevator transportation, but the elevator transportation is inefficient and the equipment investment is high. Summary of the invention
[0003] In view of the characteristics of the above background technology, the utility model patent provides a climbing roller for transporting continuous casting billets to solve the problem of height difference between the steelmaking workshop and the rolling workshop production line, realize direct hot delivery of continuous casting billets, and improve production efficiency at a lower cost.
[0004] This utility model patent is realized through the following technical solutions:
[0005] The continuous casting billet transport climbing roller table is composed of a climbing starting point roller table, a climbing straight line roller table and a climbing end point roller table. The climbing starting point roller table is located on the -2.0~0m floor, and the climbing end point roller table is located on the +3~+5m platform. The continuous casting billet is made of carbon steel or stainless steel. The length of the continuous casting billet is 7~11m. The cross-section of the continuous casting billet is square or rectangular with a side length of 100~200mm. The continuous casting billet is transported from the climbing starting point roller table to the climbing end point roller table. The climbing starting point roller table, the climbing straight line roller table and the climbing end point roller table are all equipped with side guide plates, and are all driven separately by reduction motors.
[0006] The roller conveyor track at the starting point of the climbing slope is arc-shaped with a radius of 50 to 200 m.
[0007] The slope of the climbing straight roller conveyor is 2 to 6 degrees.
[0008] The roller conveying track at the climbing end is arc-shaped with a radius of 50 to 200 m.
[0009] The elevations in the patent specification and drawings of this utility model are all relative elevations, among which the floor elevation of the steelmaking workshop is 0.0m.
[0010] The beneficial effects of the utility model patent are: solving the problem of hot delivery of continuous casting billets under the condition of height difference between the steelmaking workshop and the rolling workshop production line, realizing direct hot delivery of continuous casting billets, saving energy consumption, and improving production efficiency at a lower cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is the main view of a continuous casting billet transportation climbing roller table of this utility model patent
[0012] Figure 2 This is a side view of a continuous casting slab transport climbing roller table of the utility model patent
[0013] Part Number Description
[0014] 1. Roller track at the starting point of the climb
[0015] 2Climbing straight roller conveyor
[0016] 3. Climbing end roller
[0017] 4Continuous casting billet
[0018] 5 side guides
[0019] 6. Gear motor DETAILED DESCRIPTION
[0020] Example:
[0021] Figure 1 , Figure 2 They are respectively the front view and the side view of a continuous casting slab transport climbing roller table of the utility model patent.
[0022] The production line of the steelmaking workshop is located on the +0m floor, and the production line of the steel rolling workshop is located on the +5m platform. This elevation is a representative elevation. In actual implementation, the steel rolling production line can be located on a platform within the range of +3 to +5m.
[0023] The continuous casting billet 4 is made of carbon steel or stainless steel, and has a length of 7 to 11 m and a cross-sectional dimension of 160×160 mm, which is a representative dimension.
[0024] The climbing start roller 1, the climbing straight roller 2 and the climbing end roller 3 are driven separately by a reduction motor. The climbing start roller 1, the climbing straight roller 2 and the climbing end roller 3 are all provided with a side guide plate 5.
[0025] The climbing start roller 1 receives the continuous casting billets sent from the steelmaking workshop, and transports the continuous casting billets 4 to the rolling workshop through the climbing linear roller 2 and the climbing end roller 3. The ground elevation at the uphill starting point of the climbing start roller 1 is +0m, the track of the climbing start roller 1 is arc-shaped with a radius of 100m, the terminal platform elevation of the climbing end roller 3 is +5m, the transportation track of the climbing end roller 3 is arc-shaped with a radius of 100m, and the slope of the climbing linear roller 2 is 4°.
[0026] The specific technical parameters of the climbing starting roller 1, the climbing straight roller 2 and the climbing end roller 3 are as follows:
[0027] Roller diameter: Φ268mm, hollow roller
[0028] Roller surface length: 600mm
[0029] Number of rollers: 80
[0030] Roller spacing: 1000~1500mm
[0031] Roller speed: 0.2~2.0m / s
[0032] Transmission type: single transmission
[0033] Gear motor power: 2.2kWx80, AC380V.
Claims
1. A continuous casting billet transport climbing roller table, which is composed of a climbing starting point roller table, a climbing straight line roller table, and a climbing end point roller table. The continuous casting billet is transported and climbed to a target position by the roller table, and is characterized in that: The climbing starting roller is located on the -2.0~0m floor, the climbing ending roller is located on the +3~+5m platform, the climbing straight roller slope is 2~6 degrees, the continuous casting billet is made of carbon steel or stainless steel, the length of the continuous casting billet is 7~11m, the cross-section of the continuous casting billet is square or rectangular, and the side length is 100~200mm.
2. The continuous casting slab transport climbing roller table according to claim 1, characterized in that: Side guide plates are arranged on both sides of the climbing starting roller way, the climbing straight roller way and the climbing end roller way.
3. The continuous casting slab transport climbing roller table according to claim 1, characterized in that: The climbing starting roller, climbing straight roller and climbing end roller are driven separately by reduction motors.
4. The continuous casting slab transport climbing roller table according to claim 1, characterized in that: The roller conveyor track at the starting point of the climb is arc-shaped with a radius of 50 to 200m.
5. The continuous casting slab transport climbing roller table according to claim 1, characterized in that: The roller conveyor track at the starting point of the climb is arc-shaped with a radius of 50 to 200m.