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Preparation method of energy-saving fire-resistant prefabricated part for ferronickel pre-reduction rotary kiln

A prefabricated and rotary kiln technology, applied in the field of pre-reduction rotary kilns, can solve problems such as extrusion damage and cracking, and achieve the effects of eliminating interface differences, reducing furnace shell temperature and improving energy-saving effects.

Active Publication Date: 2021-07-20
SINOSTEEL LUOYANG INST OF REFRACTORIES RES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the difference in thermal expansion coefficient of the two lining materials, stress concentration is easily generated at the interface during the heating and cooling process of the materials, which may cause cracking or extrusion damage

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] An energy-saving refractory prefabricated part, which is composed of an inner layer of wear-resistant heavy castable and an outer layer of low thermal conductivity lightweight thermal insulation castable:

[0042] The wear-resistant heavy castable for the inner layer is composed of: by mass percentage:

[0043] Bauxite aggregate (8~0mm): 65%

[0044] Bauxite powder (200 mesh): 15%;

[0045] Activated alumina micropowder: 10%;

[0046] Silica powder: 5%

[0047] Aluminate cement: 5%;

[0048] Sodium tripolyphosphate: 0.15% (additional);

[0049] The outer layer of low thermal conductivity lightweight thermal insulation castable The composition of the low thermal conductivity lightweight thermal insulation castable is: by mass percentage:

[0050] Ceramsite aggregate (8~3mm): 20%

[0051] Perlite aggregate (1~3mm): 15%

[0052] Floating beads (1~3mm): 15%

[0053] Bauxite powder (200 mesh): 10%;

[0054] Activated alumina micropowder: 10%;

[0055] Silica powder...

Embodiment 2

[0068] Embodiment 2: An energy-saving refractory prefabricated part, which is composed of an inner layer of wear-resistant heavy castable and an outer layer of low thermal conductivity lightweight heat-insulating castable:

[0069] 1. The wear-resistant heavy castable for the inner layer is composed of: by mass percentage:

[0070] Corundum aggregate (8~0mm): 60%

[0071] Corundum powder (200 mesh): 20%;

[0072] Activated alumina micropowder: 10%;

[0073] Silica powder: 4%

[0074] Aluminate cement: 6%;

[0075] Sodium tripolyphosphate: 0.15% (additional);

[0076] 2. The composition of the outer layer of low thermal conductivity and lightweight thermal insulation castable is: by mass percentage:

[0077] Ceramsite aggregate (8~3mm): 25%

[0078] Perlite aggregate (1~3mm): 15%

[0079] Floating beads (1~3mm): 10%

[0080] Bauxite powder (200 mesh): 8%;

[0081] Activated alumina micropowder: 12%;

[0082] Silica powder: 5%

[0083] Aluminate cement: 25%;

[0084]...

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Abstract

The invention provides a preparation method of an energy-saving fire-resistant prefabricated part for a ferronickel pre-reduction rotary kiln. The prefabricated part is composed of an inner-layer wear-resistant heavy castable and an outer-layer low-heat-conduction light-weight heat-preservation castable. By adding an interface reactant, the heavy castable and the light castable are fused through interface reaction to prepare an integral material, the interface of the two materials is eliminated, thermal stress concentration generated by the difference of thermal expansion coefficients of materials between the inner layer and the outer layer in the operation process of the rotary kiln can be released in a transition layer between the inner layer and the outer layer, and damage caused by extrusion cracking of an interface between the heavy castable and the light castable is avoided. The problems of material damage and the like caused by falling and sliding of heavy materials in the prior art are also solved. The preparation method is simple and convenient, large-scale popularization and implementation can be achieved, and meanwhile the masonry construction efficiency is high.

Description

technical field [0001] The invention relates to a pre-reduction rotary kiln used in the field of ferronickel smelting by RKEF technology, in particular to a method for preparing an energy-saving refractory prefabricated part for the ferronickel pre-reduction rotary kiln. Background technique [0002] The lining of the pre-reduction rotary kiln used in the nickel-iron smelting field of RKEF process is usually poured and constructed on the production site. It is generally divided into anchor nail welding, fiber material laying and refractory pouring. The furnace lining is often only constructed of heavy refractory castables with deviations in thermal insulation performance. The furnace shell temperature reaches 180-250°C in the early stage of production. A large amount of heat loss leads to high coal consumption and poor production economy. In addition, with the gradual wear of refractory castables during the production process, the temperature of the furnace shell will furthe...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B35/101C04B35/66C04B35/622C22B23/02
CPCC04B35/101C04B35/66C04B35/622C22B23/023C22B23/005C04B2235/3222C04B2235/3418C04B2235/5436C04B2235/5427C04B2235/3463C04B2235/3217
Inventor 韦祎陈旗刘文涛朱小东赵亮秦红彬周军杨帆杨添贺吴云鹏
Owner SINOSTEEL LUOYANG INST OF REFRACTORIES RES
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