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A blast furnace swing nozzle castable and its preparation process

The invention relates to a technology of swinging flow nozzle and preparation process, which is applied in the field of refractory materials, and can solve the problems of reduced material structure strength, uncontrollable time and amount of hydrogen generation, damage to the inner lining of swing flow nozzle, etc., so as to improve the strength at room temperature and high temperature. , Prevent cracks or even burst, and improve the effect of high temperature flexural strength

Active Publication Date: 2015-10-07
CHANGXING MINGTIAN FURNACE CHARGE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

After desiliconization in front of the furnace, the damage to the inner lining of the swing nozzle is very serious, and the service life of the swing nozzle is greatly reduced. The main ways of analyzing its damage are: (1) Impact corrosion of molten iron: due to Al 2 o 3 -The high-temperature strength of SiC-C material is low, and the ability to resist the high-temperature impact of molten iron is weak, resulting in faster corrosion, which is the main damage form of the material; (2) cyclic thermal shock: resulting in a reduction in the structural strength of the material; ( 3) Oxidation damage: The SiC and C components of the system material are easily oxidized, especially the oxidation of the C component, which leads to loose material structure and decreased strength, which is the main reason for the damage of the system material. At the same time, the existing technology Aluminum powder is still the main anti-explosion agent in castables for swing nozzles. Due to the influence of factors such as the type, fineness, addition amount, construction environment, and curing temperature of aluminum powder, the castables with added metal aluminum will generate hydrogen gas. The time and amount cannot be controlled, and problems such as foaming and fine powder floating will occur. In severe cases, cracks or explosions will occur.

Method used

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Examples

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Effect test

preparation example Construction

[0020] The preparation technology of blast furnace swing nozzle castable of the present invention comprises the following steps:

[0021] a) Mullite particles are subjected to four-level screening according to the particle size of greater than or equal to 5mm and less than 7mm, greater than or equal to 3mm and less than 5mm, greater than or equal to 1mm and less than 3mm and <1mm, after the screening is completed, the particle size is greater than or equal to Or the part equal to 5mm and less than 7mm, the part whose particle size is greater than or equal to 3mm and less than 5mm, the part whose particle size is greater than or equal to 1mm and less than 3mm, and the part whose particle size is <1mm are mixed uniformly in a mass ratio of 1:2:3:2 , weigh 25 to 35 parts;

[0022] b) Weigh 20-30 parts of bauxite, 5-10 parts of high-alumina bauxite fine powder, 5-10 parts of mullite fine powder, 5-10 parts of platy corundum, 1-4 parts of steel fiber and 4-8 1 part of activated al...

Embodiment 1

[0029] The mass ratio of the above components is: bauxite: 20 parts, high alumina bauxite fine powder: 5 parts, mullite particles: 25 parts, mullite fine powder: 5 parts, tabular corundum: 5 parts, active oxidation Aluminum powder: 4 parts, silicon powder: 4 parts, steel fiber: 1 part, silica sol: 2 parts, fused Mg0 fine powder: 1 part; polycarboxylate superplasticizer: 3 parts, made of azodicarbonamide Anti-explosion agent mixed with foaming agent, aluminum lactate and polypropylene fiber: 0.5 part, anti-oxidant: 0.5 part.

Embodiment 2

[0031] The mass ratio of the above components is: bauxite: 25 parts, high alumina fine powder 8 parts, mullite particles: 30 parts, mullite fine powder: 7 parts, tabular corundum: 8 parts, activated alumina Powder: 6 parts, silicon powder: 6 parts, steel fiber: 2 parts, silica sol: 3 parts, fused Mg0 fine powder: 2 parts; polycarboxylate superplasticizer: 5 parts, made of azodicarbonamide Anti-explosion agent mixed with foaming agent, aluminum lactate and polypropylene fiber: 1 part, anti-oxidant: 0.8 part.

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PUM

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Abstract

The invention discloses a swing spout castable for blast furnace and a preparation process thereof. The swing spout castable comprises the following components in mass ratio: 20-30 parts of alumina, 5-10 parts of bauxite powder, 25-35 parts of mullite particle, 5-10 parts of mullite powder, 5-10 parts of tabular corundum, 4-8 parts of activated alumina powder, 4-8 parts of silica powder, 1-4 parts of steel fiber, 2-5 parts of silica sol, 1-3 parts of fused MgO powder, 3-8 parts of polycarboxylate superplasticizer, 0.5-2 parts of detonation inhibitor which is a mixture of an azodicarbonamide foaming agent, aluminum lactate and polypropylene fiber, and 0.5-1 part of antioxidant. According to the swing spout castable, carbon-contained components such as brown fused alumina, silicon carbide and asphalt in a conventional swing spout castable are omitted, oxidization is prevented; mullite with low thermal expansivity is introduced and a mullite phase is formed in a substrate so as to reinforce thermal shock resistance and improve high temperature bending strength; compared with the prior art, the swing spout castable has better oxidation resistance, explosion-proof performance and high-temperature strength.

Description

【Technical field】 [0001] The invention relates to the technical field of refractory materials, in particular to a pouring material for a blast furnace swing nozzle and a preparation process thereof. 【Background technique】 [0002] Before the desiliconization process is implemented in front of the blast furnace, the pouring material for the swing nozzle is Al 2 o 3 -SiC-C castable lining. After desiliconization in front of the furnace, the damage to the inner lining of the swing nozzle is very serious, and the service life of the swing nozzle is greatly reduced. The main ways of analyzing its damage are: (1) Impact corrosion of molten iron: due to Al 2 o 3 -The high-temperature strength of SiC-C material is low, and the ability to resist the high-temperature impact of molten iron is weak, resulting in faster corrosion, which is the main damage form of the material; (2) cyclic thermal shock: resulting in a reduction in the structural strength of the material; ( 3) Oxidatio...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B35/66
Inventor 佘成明佘亚锋佘凤娅金金王娇
Owner CHANGXING MINGTIAN FURNACE CHARGE
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