Zircon mullite brick for cement kiln and preparation method thereof

A technology of zirconium molybdenum bricks and cement kilns, which is applied in the field of zirconium molybdenum bricks, can solve the problems of aggravated refractory material wear speed, material damage, and speed up, and achieve the goal of promoting matrix densification, excellent wear resistance, and good heat insulation performance Effect

Active Publication Date: 2018-09-11
WUHAN UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, harmful substances in these alternative energy sources such as alkaline substances, chlorides, and sulfides will form gaseous substances during the combustion process, and will continue to accumulate in the interior of the cement rotary kiln as the service time of the cement rotary kiln prolongs. erosion
On the other hand, the new dry-process cement rotary kiln is developing towards large-scale development, with increased volume and faster rotation speed, which also intensifies the wear rate of refractory materials.
During high-temperature service, the surface of high-alumina silicon carbide refractories in the transition zone cannot form a kiln

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0041] Example 1

[0042] A zirconium molybdenum brick for cement kiln and a preparation method thereof. The preparation method described in this example is as follows: firstly, 58-68wt% of granular material, 10-20wt% of zirconium mullite fine powder, 3-6wt% of Guangxi white mud fine powder, 1-3wt% of Ti 3 AlC 2 / Ti 3 SiC 2 The composite powder, 2-5wt% of elemental silicon fine powder, 9-15wt% of raw alumina fine powder and 0.5-1.0wt% of zirconium boride fine powder are the A raw material, and an additional 0.5-2wt% of the A raw material is added. The cerium chloride and 3-6wt% pulp waste liquid are stirred uniformly and pressed into shape; dried, and then kept at 1400-1460°C for 2-5 hours to obtain zirconium molybdenum bricks for cement kilns.

[0043] The preparation method of the granular material is as follows: taking kyanite tailings fine powder or coal gangue fine powder as the B raw material, adding 0.5-2 wt% yttrium oxide fine powder and 4-6 wt% pulp waste liquid o...

Example Embodiment

[0045] Example 2

[0046] A zirconium molybdenum brick for cement kiln and a preparation method thereof. The preparation method described in this example is as follows: firstly, 63-73wt% of granular material, 5-15wt% of zirconium mullite fine powder, 5-8wt% of Guangxi white mud fine powder, 1-3wt% of Ti 3 AlC 2 / Ti 3 SiC 2 The composite powder, 4-7wt% of elemental silicon fine powder, 5-11wt% of raw alumina fine powder and 0.5-1.0wt% of zirconium boride fine powder are A raw material, and additionally 0.5-2wt% of the A raw material The cerium chloride and 4-7wt% pulp waste liquid are stirred evenly, and pressed into shape; dried, and then kept at 1450-1510 DEG C for 4-7 hours to obtain the zirconium molybdenum brick for cement kiln.

[0047] The preparation method of the granular material is as follows: taking kyanite tailings fine powder or coal gangue fine powder as the B raw material, adding 0.5-2 wt% yttrium oxide fine powder and 4-6 wt% pulp waste liquid of the B raw ...

Example Embodiment

[0049] Example 3

[0050] A zirconium molybdenum brick for cement kiln and a preparation method thereof. The preparation method described in this embodiment is as follows: firstly, 65-75wt% of granular material, 3-13wt% of zirconium mullite fine powder, 7-10wt% of Guangxi white mud fine powder, 1-3wt% of Ti 3 AlC 2 / Ti 3 SiC 2 The composite powder, 4-7wt% of elemental silicon fine powder, 3-9wt% of raw alumina fine powder and 0.5-1.0wt% of zirconium boride fine powder are A raw material, and additionally 0.5-2wt% of the A raw material The cerium chloride and 5-8wt% pulp waste liquid are stirred evenly and pressed into shape; dried, and then kept at 1500-1560 DEG C for 5-8h to obtain the zirconium molybdenum brick for cement kiln.

[0051] The preparation method of the granular material is as follows: taking kyanite tailings fine powder or coal gangue fine powder as the B raw material, adding 0.5-2 wt% yttrium oxide fine powder and 4-6 wt% pulp waste liquid of the B raw mat...

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Abstract

The invention relates to a zircon mullite brick for a cement kiln and a preparation method thereof. According to the technical scheme, by weight, 58-75% of particles, 3-20% of zircon mullite fine powder, 3-10% of Guangxi white clay fine powder, 1-3% of Ti3AlC2/Ti3SiC2 composite powder, 2-7% of monatomic silicon fine powder, 3-15% of raw bauxite micro powder and 0.5-1.0% of zirconium boride fine powder are adopted as a raw material A, cerium chloride accounting for 0.5-2% of the raw material A by weight and sulfite lye accounting for 3-8% of the raw material A by weight are additionally added,stirring, forming and drying are performed, the temperature of 1,400-1,600 DEG C is kept constant for 2-8 h, and the zircon mullite brick for the cement kiln is obtained. According to the particles, kyanite tailing fine powder or gangue fine powder are adopted as a raw material B, yttrium oxide fine powder accounting for 0.5-2% of the raw material B by weight and sulfite lye accounting for 4-6% ofthe raw material B by weight are additionally added, uniform mixing, forming and drying are performed, the temperature of 1,300-1,500 DEG C is kept constant for 3-9 h, and cooling and breaking are performed to obtain the particles. The cost is low, and the prepared zircon mullite brick for the cement kiln is good in abrasion resistance, low in heat conductivity coefficient, good in thermal shockresistance and good in corrosion resistance.

Description

technical field [0001] The invention belongs to the technical field of zirconium molybdenum bricks. Specifically, it relates to a zirconium molybdenum brick for cement kiln and a preparation method thereof. Background technique [0002] As an important cementitious material, cement is widely used in civil engineering, water conservancy and national defense projects. As the key equipment of cement production, cement rotary kiln can be divided into preheating zone, decomposition zone, transition zone, firing zone and cooling zone according to the different temperature of each zone. High-alumina silicon carbide refractories have become the most widely used refractories in the transition zone due to their good thermal shock resistance and high softening temperature under load. [0003] In recent years, the use of cement rotary kilns to co-dispose of municipal solid waste and the use of waste as an alternative energy source for the cement industry has become the development dir...

Claims

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Application Information

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IPC IPC(8): C04B35/66
CPCC04B35/66
Inventor 徐义彪李亚伟桑绍柏王庆虎朱天彬
Owner WUHAN UNIV OF SCI & TECH
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