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Zirconia-based toughening dry vibration material

A dry material, zirconium technology, applied in the field of metallurgy, can solve the problems of poor corrosion resistance, carbon increase, environmental pollution, etc., to achieve the effect of strong corrosion resistance and long service life

Inactive Publication Date: 2015-07-15
浙江攀盛冶金材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in use, the resin-bonded tundish dry material has also exposed many problems: it causes the molten steel to increase carbon; the corrosion resistance is poor; the solid phenolic resin binder emits a large amount of harmful gases during baking and heating, polluting the environment, which is not conducive to Clean steelmaking and environmental protection requirements, while bringing health hazards to operators and construction personnel

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0009] Example 1 of the preparation method of the environment-friendly zirconium toughened dry material of the present invention comprises the following steps in sequence:

[0010] a) block calcined magnesia is broken into large particles with a jaw crusher;

[0011] b) using a roller crusher to roll the large particles into small particles with a particle diameter of 3 to 5 mm, and get 14 to 17 wt %;

[0012] c) crushing blocky fused magnesia into large particles with a jaw crusher;

[0013] d) Sieve the small particles according to different particle sizes, and take small particles with a particle size of 0-1mm: 32wt-35%;

[0014] e) get part of the small particles of fused magnesia and use a ball mill to finely grind it into a fine powder with a particle diameter of 0.088mm;

[0015] f) Take fused magnesia fine powder with a particle size of 0.088mm: 18-20wt%;

[0016] g) getting the small particles of bauxite with a suitable particle size to be finely ground into a fine...

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PUM

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Abstract

The invention discloses a preparation method of an environment-friendly zirconium toughening dry material, which comprises the following steps in order: crushing quartz sand into small particles of 0.3mm-3mm, sieving the small particles into two specifications with particle sizes of 3 mm and 0.3mm-3mm respectively; performing fine grinding of part of the small particles into fine power of 0.088 mm; weighing 5% of anhydrous glucose and 0.7% of borax; stirring for 18-22 min for premixing, after premixing, conveying the premixed-material into a mixing system; filling 14% of quartz sand with a particle size of 3 mm, 64.3% of quartz sand with a particle size of 0.3-3 mm, and 16% of quartz sand with a particle size of 0.088 mm into a material mixing system tank, mixing for 4-6 min, conveying the mixture into the mixing system; performing split charging of quartz sand, anhydrous glucose and borax simultaneously to obtain the dry material finished product. When the environment-friendly zirconium dry material prepared in the invention is used for smelting ordinary steel, the using amount of mineral product resources is greatly reduced; thus the steel-making cost is greatly reduced in terms of raw materials; the smelting requirements for ordinary steel are completely met; and the product quality is not reduced.

Description

[0001] The patent application of the present invention is a divisional application of the invention title "Preparation Method of Environmentally Friendly Zirconium Toughening Dry Material". The filing date of the original application is September 10, 2013, and the application number is 201310408958X. technical field [0002] The invention relates to the field of metallurgy, in particular to an environment-friendly zirconium toughened dry material. Background technique [0003] At present, dry material is widely used in metallurgical industrial furnaces, thermal equipment and structures, and is the preferred material for working lining of tundish for converter steelmaking. Its use increases the amount of molten steel contained in the tundish and reduces the amount of slag sticking to steel slag. , Improve the safety factor, reduce the thermal conductivity, thereby greatly improving the efficiency of steelmaking, saving energy consumption, and comprehensively improving the qual...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B35/66
Inventor 江群英于琪芳
Owner 浙江攀盛冶金材料有限公司