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Casting blank transverse moving mechanism

A technology of traversing mechanism and casting slab, which is applied in the field of metallurgy, can solve the problems of unable to meet the billet discharge cycle of the casting machine, the structure of the transfer machine is complex, and the casting billet cycle is long, so as to achieve small space occupation, improve billet discharge efficiency, and cycle time short effect

Active Publication Date: 2011-02-09
CISDI ENG CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Due to the complex structure of the above-mentioned transfer machine, it takes up a lot of space, so it is only suitable for the lateral movement of medium and long slabs between the roller tables, and is not suitable for short slabs, especially after secondary cold cutting. Ultra-short and fixed-length casting billets; at the same time, due to the long cycle and low efficiency of the transfer machine, it cannot meet the requirements of short billet discharge cycle and high efficiency of the casting machine

Method used

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  • Casting blank transverse moving mechanism
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  • Casting blank transverse moving mechanism

Examples

Experimental program
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Effect test

Embodiment 1

[0020] Embodiment 1, a slab traversing mechanism, including a traversing trolley 2 and a driving device, the traversing trolley 2 is connected to the driving device, a slide rail 10 is provided between the first-stage roller table 9 and the second-stage roller table 11, and the sliding A guide rail 1 is provided above the rail 10, and the traverse trolley 2 is placed on the guide rail 1 and can move along the guide rail 1. Three push heads 3 are arranged on the traverse trolley 2; two parking positions are provided on the slide rail 10, and the driving device Including connecting rod 4, swing rod 5 and hydraulic cylinder 6, one end of connecting rod 4 is connected with traverse trolley 2, the other end is flexibly connected with one end of swing rod 5, and the other end of swing rod 5 is flexibly connected with swing rod base 8, Two connecting rods 4 are respectively connected to two swing rods 5, and the hydraulic cylinder 6 is connected to the swing rod 5 through the cross ro...

Embodiment 2

[0022] Embodiment 2, a slab traversing mechanism, including a traversing trolley 2 and a driving device, the traversing trolley 2 is connected to the driving device, a slide rail 10 is provided between the first-stage roller table 9 and the second-stage roller table 11, and the sliding A guide rail 1 is provided above the rail 10, and the traverse trolley 2 is placed on the guide rail 1 and can move along the guide rail 1. Two push heads 3 are arranged on the traverse trolley 2; a parking position is provided on the slide rail 10, and the driving device Including connecting rod 4, swing rod 5 and hydraulic cylinder 6, one end of connecting rod 4 is connected with traverse trolley 2, the other end is flexibly connected with one end of swing rod 5, and the other end of swing rod 5 is flexibly connected with swing rod base 8, Two connecting rods 4 are respectively connected to two swing rods 5, and the hydraulic cylinder 6 is connected to the swing rod 5 through the cross rod 7 an...

Embodiment 3

[0024] Embodiment 3, a slab traversing mechanism, including a traversing trolley 2 and a driving device, the traversing trolley 2 is connected to the driving device, a slide rail 10 is provided between the first-stage roller table 9 and the second-stage roller table 11, and the sliding A guide rail 1 is arranged above the rail 10, and the traverse trolley 2 is placed on the guide rail 1 and can move along the guide rail 1. Four push heads 3 are arranged on the traverse trolley 2; three parking positions are arranged on the slide rail 10, and the driving device Including connecting rod 4, swing rod 5 and hydraulic cylinder 6, one end of connecting rod 4 is connected with traverse trolley 2, the other end is flexibly connected with one end of swing rod 5, and the other end of swing rod 5 is flexibly connected with swing rod base 8, Two connecting rods 4 are respectively connected to two swing rods 5, and the hydraulic cylinder 6 is connected to the swing rod 5 through the cross r...

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Abstract

The invention discloses a casting blank transverse moving mechanism, which comprises a transverse moving trolley and a drive device which are connected. The casting blank transverse moving mechanism is characterized by also comprising a sliding rail arranged between roller ways and a guide rail arranged above the sliding rail, wherein the transverse moving trolley is positioned on the guide rail and can move along the guide rail; and at least two push heads are arranged on the transverse moving trolley and a casting blank is moved from one roller way to the other roller way by the push heads in a relay way. In the invention, the transverse moving trolley with the push heads travels back and forth on the guide rail to push the casting blank on the sliding rail and the casting blank is moved from a primary roller way to a secondary roller way by a plurality of push heads in a relay way. The casting blank transverse moving mechanism has a simple and compact structure, occupies a small space, has a high speed, a short period and high efficiency, is flexible, moveable and suitable for moving the casting blanks of various thickness specifications and specified lengths, particularly ultra-short cut-length casting blanks, and can greatly improve blank production efficiency.

Description

technical field [0001] The invention belongs to the technical field of metallurgy, and relates to a billet traverse mechanism of a slab continuous casting machine. Background technique [0002] With the rapid development of domestic iron and steel metallurgy, the market share of continuous casting machines has been steadily expanding year by year. As the core product in the field of continuous casting, slab continuous Casting machines occupy a huge market share, and the double-strand billet discharge at the same time has greatly increased the output of cast billets and increased the production scale of steel mills. The steel rolling workshop usually only has the first-class roller table to receive the cast slabs transferred from the slab continuous caster. Therefore, the cast slabs on the two-strand slab continuous caster need to be merged into the first-class, and then sent to the steel rolling workshop. [0003] At present, the co-current equipment on the double-strand sl...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B22D11/128
Inventor 徐晓郭春枝彭晓华刘志鹏
Owner CISDI ENG CO LTD
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