Plate blank electroslag furnace

An electroslag furnace and slab technology, applied in the field of slab electroslag furnace, can solve the problems of incomplete controlled rolling equipment, low rolling pressure, small compression ratio, etc., so as to improve the equipment power factor, increase the melting speed, reduce the The effect of loop inductance

Active Publication Date: 2009-07-29
NORTHEASTERN UNIV LIAONING
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] The existing electroslag furnace cannot meet the above-mentioned steel requirements, and the steel ingots produced by the existing equipment have low purity and small compression ratio, which is prone to inconsistencies in flaw detection defects inside the steel plate; low rolling pressure, temperature control, and The rolling equipment is not complete, the heat treatment equipment is not perfect, resulting in insufficient strength level of the steel plate; the single weight of the specification cannot meet

Method used

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  • Plate blank electroslag furnace
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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0046] Embodiment 1: The crystallizer in the present invention adopts a T-shaped crystallizer, the power supply is AC, and the power supply mode of bipolar series. Such as figure 1 , figure 2 As shown, it includes an AC power supply 15, an electrode lifting mechanism 1, a rotating frame 2, a load cell 3, an electrode I 4, an electrode II 5, a T-shaped crystallizer 6, a supporting platform 8, an ingot drawing mechanism 13, and an ingot device 11 , ingot transport trolley 12, molten steel liquid level detection device 10 and control system 14, crystallizer 6 is fixed on the support platform 8, is fixed with rotating frame 2 on support platform 8, and rotation frame 2 can be fixed along the support platform 8 The orbit rotates, and an adjustment mechanism is installed on the rotating frame 2 for adjusting the electrode lifting mechanism in the horizontal X and Y directions. The electrode lifting mechanism 1 is placed on the frame platform 18 in the rotating frame 2, and the el...

Embodiment 2

[0063] Embodiment 2: crystallizer among the present invention adopts unipolar, T-shaped conductive crystallizer, and the T-shaped conductive crystallizer that adopts is to be provided with conductive ring between crystallizer top and crystallizer bottom, crystallizer top and conductive ring Insulators are placed between the lower part of the crystallizer and the conductive ring; the insulator is made of ceramic material, and the conductive ring is made of copper. The power supply is AC, and the power supply mode is single-electrode, T-shaped crystallizer conduction. Such as image 3 , Figure 4 As shown, it includes an AC power supply 15, an electrode lifting mechanism 1, a rotating frame 2, a load cell 3, an electrode 14, a crystallizer 6, a support platform 8, an ingot drawing mechanism 13, an ingot device 11 and a control system 14. The device 6 is fixed on the supporting platform 8, and the rotating frame 2 is fixed on the supporting platform 8, and an adjustment mechani...

Embodiment 3

[0066] Embodiment 3: The crystallizer in the present invention adopts a bucket type crystallizer, the power supply is DC, and the power supply mode of bipolar series. Such as Figure 5 , Figure 6 As shown, it includes an AC power supply 15, an electrode lifting mechanism 1, a rotating frame 2, a load cell 3, an electrode I4, an electrode II 5, a T-shaped crystallizer 6, a supporting platform 8, an ingot drawing mechanism 13, an ingot device 11, The ingot conveying trolley 12, the molten steel level detection device 10 and the control system 14, the crystallizer 6 is fixed on the supporting platform 8, the rotating frame 2 is fixed on the supporting platform 8, the adjusting mechanism is installed on the rotating frame 2, and the electrodes are lifted and lowered. The mechanism 1 is placed on the frame platform 18 in the rotating frame 2, and a load cell 3 is placed between the contact surface of the electrode lifting mechanism 1 and the frame platform 18, the model is 1-RTNA...

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Abstract

A slab electroslag furnace belongs to the technical field of metal electroslag remelting. Including AC power supply, electrode lifting mechanism, electrode, crystallizer, supporting platform, dummy device, molten steel liquid level detection device, rotating frame, weighing sensor, ingot pulling mechanism and control system, the crystallizer is fixed on the supporting platform, rotates The frame is fixed on the support platform and can rotate along the fixed track on it. The electrode lifting mechanism is placed on the frame platform and can be adjusted horizontally. There is a load cell between the electrode lifting mechanism and the contact surface of the frame platform. The electrode is a single One end is fixed on the electrode lifting mechanism, the other end is placed in the crystallizer, the molten steel level detection device is installed on the side wall of the mold, and the ingot pulling mechanism is installed on the bracket below the supporting platform. An ingot transporting trolley is fixed on the ingot mechanism, and an ingot dummy device is fixed on the ingot transporting trolley, and the control system is electrically connected with the electrode lifting mechanism, the load cell, the ingot pulling mechanism, and the ingot transporting trolley.

Description

technical field [0001] The invention belongs to the technical field of metal electroslag remelting equipment, and particularly relates to a slab electroslag furnace, which is applied in the metal remelting smelting process. Background technique [0002] The electroslag furnace is a metallurgical equipment that uses the resistance heat generated when the current passes through the slag as a heat source to smelt metal. After electroslag remelting, the content of gas and inclusions in steel can be reduced, and a steel ingot with uniform composition, compact structure and excellent quality can be obtained. The plasticity and toughness of the alloy, especially the transverse properties are improved, the anisotropy is reduced, and various macroscopic and microscopic defects are eliminated or alleviated. Therefore, electroslag furnace equipment has been widely used in steel, machinery and other industries at home and abroad. [0003] At present, domestic electroslag furnaces main...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C22B9/187
Inventor 姜周华余强臧喜民张天彪任安生
Owner NORTHEASTERN UNIV LIAONING
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