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A kind of magnesia plastic and its preparation method

A plastic and magnesium technology, applied in the field of magnesium plastic and its preparation, can solve the problems of damage, reduce the storage period and strength of plastic, MgO hydration, etc., achieve high compressive strength, improve storage period, improve Effects of Density and Strength

Active Publication Date: 2019-10-11
WUHAN UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, magnesia plastics mainly use high-purity magnesia or fused magnesia as the main raw material, supplemented with binders and corrosion inhibitors, etc., and are prepared after mixing, such as "a high-magnesia covering agent material that can be used for tundishes" and its preparation method” (CN201310276365.2), but the moisture in the binder during the preparation process of magnesia plastics can easily lead to hydration and damage of MgO, which greatly reduces the storage period and strength of the plastics

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] A magnesia plastic and a preparation method thereof. The specific steps of the preparation method described in this embodiment are:

[0031] Step 1, according to the mass ratio of tetrabutyl titanate: tartaric acid: acetylacetone: polyethylene glycol 200 is 100: (5 ~ 7): (0.5 ~ 0.7): (1 ~ 1.4), tetrabutyl titanate , tartaric acid, acetylacetone and polyethylene glycol 200 were put into a container, and stirred for 5 to 8 minutes to obtain a binding agent.

[0032] Step 2. According to the mass ratio of high-purity magnesia-zirconium sand: γ-alumina: cobaltous oxide is 100: (5~7): (1~3), put high-purity magnesia-zirconium sand, γ-alumina and cobaltous oxide into the ball mill , and ball milled to a particle size of ≤80 μm to obtain a premix.

[0033] Step 3: Compress the premixed material under the condition of 20~30MPa, then place the formed green body in the muffle furnace, heat treat for 1~2 hours under the condition of nitrogen atmosphere and 1500~1550℃, and cool w...

Embodiment 2

[0039] A magnesia plastic and a preparation method thereof. The specific steps of the preparation method described in this embodiment are:

[0040] Step 1, according to the mass ratio of tetrabutyl titanate: tartaric acid: acetylacetone: polyethylene glycol 200 is 100: (5 ~ 7): (0.6 ~ 0.8): (1.2 ~ 1.6), tetrabutyl titanate , tartaric acid, acetylacetone and polyethylene glycol 200 were put into a container, and stirred for 5 to 8 minutes to obtain a binding agent.

[0041] Step 2. According to the mass ratio of high-purity magnesia-zirconium sand: γ-alumina: cobaltous oxide is 100: (6~8): (1~3), put high-purity magnesia-zirconium sand, γ-alumina and cobaltous oxide into the ball mill , and ball milled to a particle size of ≤80 μm to obtain a premix.

[0042] Step 3: Compress the premixed material under the condition of 20~30MPa, then place the formed green body in the muffle furnace, heat treat for 1~2 hours under the condition of nitrogen atmosphere and 1500~1550℃, and cool...

Embodiment 3

[0048] A magnesia plastic and a preparation method thereof. The specific steps of the preparation method described in this embodiment are:

[0049] Step 1, according to the mass ratio of tetrabutyl titanate: tartaric acid: acetylacetone: polyethylene glycol 200 is 100: (6 ~ 8): (0.7 ~ 0.9): (1.4 ~ 1.8), tetrabutyl titanate , tartaric acid, acetylacetone and polyethylene glycol 200 were put into a container, and stirred for 5 to 8 minutes to obtain a binding agent.

[0050]Step 2. According to the mass ratio of high-purity magnesia-zirconium sand: γ-alumina: cobaltous oxide is 100: (7~9): (2~4), put high-purity magnesia-zirconium sand, γ-alumina and cobaltous oxide into the ball mill , medium ball milling to a particle size ≤ 80 μm to obtain a premix.

[0051] Step 3: Compress the premixed material under the condition of 20~30MPa, then place the formed green body in the muffle furnace, heat treat for 1~2 hours under the condition of nitrogen atmosphere and 1500~1550℃, and coo...

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Abstract

The invention relates to a magnesian plastic material and a preparing method thereof. According to the technical scheme, materials are prepared according to a mass ratio of tetrabutyl titanate to tartaric acid to acetylacetone to polyethylene glycol 200 of 100: (5-8) : (0.5-1) : (1-2), and the materials are stirred to prepare a bonding agent. Materials are prepared according to a mass ratio of high purity magnesia-zirconia powder to gamma-aluminum oxide to cobalt oxide of 100: (5-10) : (1-4), the materials are subjected to ball grinding till the particle size is smaller than or equal to 80 micrometers, forming is conducted, and heat treatment is conducted under nitrogen atmosphere and at 1,500-1,550 DEG C for 1-2 hours; the materials subjected to heat treatment are smashed, grinded and sieved to obtain a material A with the particle size being 2-3 millimeters, a material B with the particle size being 0.088-1 millimeters and a material C with the particle size being smaller than or equal to 80 micrometers separately, the material A, the material B, the material C and silica power are added into a stirring machine, and the material are mixed to prepare a mixed material. Materials are prepared according to the mass ratio of the mixed material to the bonding agent of 1: (0.07-0.10), and the material are evenly mixed and aged to prepare the magnesian plastic material. The preparing method of the preparing method is low in cost and simple in technology, and the prepared product is long in retention cycle, big in volume density and high in compressive strength.

Description

technical field [0001] The invention belongs to the field of plastic technology. It specifically relates to a magnesia plastic and a preparation method thereof. Background technique [0002] Magnesia plastic is a kind of unshaped refractory material with high plasticity and MgO as the main chemical composition. Because MgO has the characteristics of high refractoriness and strong resistance to alkaline slag erosion, magnesia plastics can be widely used in converters (Chen Shuqiu, et al. "Development of magnesia plastics and cold bonding at the bottom of oxygen top-blown converters Seam application", "Technology of Wuhan Iron and Steel", 1981 (1): pp16~21+26), tundish and ladle and other high temperature furnaces. [0003] At present, magnesia plastics mainly use high-purity magnesia or fused magnesia as the main raw material, supplemented with binders and corrosion inhibitors, etc., and are prepared after mixing, such as "a high-magnesia covering agent material that can be...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B35/043C04B35/622
Inventor 张寒赵惠忠
Owner WUHAN UNIV OF SCI & TECH
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