Ladle refining furnace electrode adjusting system

A ladle refining furnace and electrode adjustment technology, applied in furnaces, electric furnaces, furnace types, etc., can solve the problems that cannot meet the needs of optimal operation of power circuits, three-phase electrodes cannot be adjusted independently, and are prone to shaking during use, etc., to achieve lifting Highly accurate, reduced size, less prone to shaking effects

Active Publication Date: 2021-04-30
西安中天冶金工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] 1) During the operation of the refining furnace, the height of the electrodes needs to be adjusted frequently. The three-phase electrodes of the existing part of the refining furnace structure cannot be adjusted independently. Even if the three-phase electrodes of some refining furnace structures can be adjusted independently, their verticality and strength are low , it is prone to shaking during use;
[0005] 2) In the process of heating the ladle, the refining furnace generally adopts the structure of "one furnace and one ladle". When the ladle is in the process of transportation, fixing, installation, etc., the refining furnace can only start heating when the ladle is ready, which wastes a lot of energy. operating hours;
[0006] 3) At present, mature refining furnace electrode regulators include constant impedance regulators, constant power regulators, three-phase power balance regulators, constant arc length regulators, etc., and mainstream electrode regulation control algorithms include arc current method and impedance method. Type: the former takes keeping the secondary current of the furnace constant as the control target, and the latter takes keeping the secondary load impedance of the furnace constant as the control target. However, the above-mentioned electrode regulators generally work according to the static impedance setting value, but in actual production Among them, the optimal operating point of the circuit has many relationships with the actual state of the circuit. The electrode regulator only using the static design point cannot actually meet the needs of the optimal operation of the power circuit.

Method used

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  • Ladle refining furnace electrode adjusting system
  • Ladle refining furnace electrode adjusting system
  • Ladle refining furnace electrode adjusting system

Examples

Experimental program
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Effect test

Embodiment 1

[0056] Such as Figure 1 to Figure 3 As shown, the electrode adjustment system of the ladle refining furnace includes a rotating base frame 1, a base 2, a lifting device 3, a station adjustment device 4, a cross arm 5 and a clamping device 6, wherein: the rotating base frame 1 is rotatable as a load-bearing body The base platform is installed on the foundation platform, the foundation platform is a cement structure or a frame base, three upper through holes 101 are opened on the load-bearing plate of the rotating base frame 1, and a plurality of upper guide wheels 102 are arranged symmetrically around the upper through holes 101, and the rotating base frame The lower bearing plate of 1 is correspondingly provided with three lower through holes 103, and a plurality of lower guide wheels 104 are arranged symmetrically around the lower through holes 103. Specifically, the upper through hole 101 and the lower through hole 103 are correspondingly provided for vertically installing ...

Embodiment 2

[0058] Such as figure 1 with Figure 4 As shown, the base 2 is arranged on the bottom of the rotating base frame 1 and is used for installing the lifting device 3. The base 2 includes two sets of double-headed hinged seats 201, four sets of mounting arms 202 and a horizontal mounting base 203. The head hinged seat 201 is parallel and symmetrically installed on the bottom of the rotating base frame 1. One end of the mounting arm 202 is hinged on the double-headed hinged seat 201, and the other end of the mounting arm 202 is fixed on the horizontal mounting seat 203. There are reinforcing beams 204, four mounting arms 202 and a horizontal mounting seat 203 to form a swingable frame structure, which is used to eliminate errors in the installation process and avoid movement interference. At the same time, it ensures that the horizontal mounting seat 203 is always horizontal and And it can rotate along with the rotating base frame 1 .

Embodiment 3

[0060] Such as Figure 5 to Figure 8 As shown, the lifting device 3 includes three groups of lifting cylinders 301, lifting platform 302, lifting column 303, lifting sleeve 304 and connecting seat 305. Specifically, the lifting cylinder 301 is controlled by a hydraulic valve, and the bottom of the lifting cylinder 301 is fixed at a horizontal On the mounting base 203, the lifting platform 302 is arranged on the telescopic rod of the lifting cylinder 301, the lifting platform 302 can move with the telescopic rod, the lifting column 303 is coaxially arranged inside the lifting sleeve 304, and the bottom of the lifting column 303 is installed through a flange On the lifting platform 302, the top of the lifting column 303 is hinged. Specifically, the top of the lifting column 303 is provided with a connecting platform 3031, and the connecting platform 3031 is rotatably installed in the hinge hole 3041 of the lifting sleeve 304 through the hinge shaft 3032. When the lifting oil cyl...

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Abstract

The invention discloses a ladle refining furnace electrode adjusting system, belongs to the technical field of electric furnace control, and particularly relates to an adjusting control system with a three-phase electrode stand column capable of ascending and descending independently and automatically, and a hardware part of the ladle refining furnace electrode adjusting system comprises a rotating base frame, a base, a lifting device, a station adjusting device, a cross arm and a clamping device. The lifting device adopts an independent scheme and can realize free lifting of each electrode stand column, and the station adjusting device can realize integral rotation of the electrode stand columns so as to realize uninterrupted continuous heating of a plurality of steel ladles; the software part of the arc furnace electrode adjusting system adopts an impedance control strategy, and the electrode state can be automatically adjusted according to the optimal working point pre-selected by the power circle diagram. Compared with the prior art, the energy consumption can be remarkably reduced, the production efficiency is improved, and the interference of the electric furnace to a power grid is reduced.

Description

technical field [0001] The invention belongs to the technical field of electric furnace control, and in particular relates to an electrode adjustment system of a ladle refining furnace. Background technique [0002] Ladle refining furnace is the main refining equipment outside the furnace in steel production. Due to its simple equipment, low investment cost, flexible operation and good refining effect, it has become a rising star in the metallurgical industry and has been widely used and developed at home and abroad. The ladle refining furnace mainly relies on the white slag in the barrel. In a low-oxygen atmosphere (oxygen content is 5%), argon is blown into the barrel for stirring, and the molten steel passing through the primary furnace is heated by graphite electrodes to refine. Since the argon gas stirring accelerates the chemical reaction between slag and steel, using arc heating for temperature compensation can ensure a longer refining time, thereby reducing the oxyge...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H05B7/109H05B7/101C21C5/52C21C7/00
CPCH05B7/109H05B7/101C21C5/52C21C7/00Y02P10/20
Inventor 陈勇田柏峰孙睿
Owner 西安中天冶金工程有限公司
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