CN102765949A - Light-weight cordierite castable and preparation method thereof - Google Patents

Light-weight cordierite castable and preparation method thereof Download PDF

Info

Publication number
CN102765949A
CN102765949A CN2012102722658A CN201210272265A CN102765949A CN 102765949 A CN102765949 A CN 102765949A CN 2012102722658 A CN2012102722658 A CN 2012102722658A CN 201210272265 A CN201210272265 A CN 201210272265A CN 102765949 A CN102765949 A CN 102765949A
Authority
CN
China
Prior art keywords
cordierite ceramic
trichroite
preparation
powder
fine powder
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN2012102722658A
Other languages
Chinese (zh)
Other versions
CN102765949B (en
Inventor
鄢文
李楠
魏耀武
陈俊峰
李媛媛
刘光平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuhan University of Science and Engineering WUSE
Original Assignee
Wuhan University of Science and Engineering WUSE
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Wuhan University of Science and Engineering WUSE filed Critical Wuhan University of Science and Engineering WUSE
Priority to CN201210272265.8A priority Critical patent/CN102765949B/en
Publication of CN102765949A publication Critical patent/CN102765949A/en
Application granted granted Critical
Publication of CN102765949B publication Critical patent/CN102765949B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Compositions Of Oxide Ceramics (AREA)

Abstract

The invention relates to a light-weight cordierite castable and a preparation method thereof. The technical scheme includes that the preparation method includes: using 40-70wt% of porous cordierite ceramic grains, 20-48wt% of cordierite ceramic fine powder, 2-10wt% of calcium aluminate cement, 2-4wt% of talcum fine powder, 2-4wt% of silicon oxide micro powder and 2-4wt% of active alpha alumina micro powder as raw materials, additionally adding water accounting for 8-20wt% of the raw materials and 0.02-1wt% of water reducers, uniformly stirring and molding by casting; and naturally drying molded green bodies for 24 hours and then drying the dried green bodies for 8-48 hours at the temperature of 110 DEG C. The light-weight cordierite castable prepared by the method not only has the advantages of high apparent porosity, small average pore size, high strength, low thermal conductivity, good thermal shock stability and high medium erosion resistance, but also has the advantages of convenience to construct, environmental friendliness, controllability in apparent porosity and pore size and small volume change after firing, and is applicable to backing layers or working layers of high-temperature kilns or containers at the working temperature lower than 1340 DEG C.

Description

A kind of trichroite lightening casting material and preparation method thereof
Technical field
The invention belongs to the lightening casting material technical field.Be specifically related to a kind of trichroite lightening casting material and preparation method thereof.
Background technology
Trichroite is a kind of silicate minerals, and its theory consists of 2MgO2Al 2O 35SiO 2, heat-shock resistance, low heat conductivity and better chemical with very little thermal expansivity, excellence are stable.Along with improving day by day with the requirement that reduces discharging energy-conservation, environmental protection and the research of lightening casting material efficiently more and more receive publicity.The domestic and international at present research about the trichroite light material mainly concentrates on porous cordierite ceramics material and trichroite light fire brick, and the former is feedstock production cordierite porous material (Wang Qi etc. as utilizing flyash and coal gangue.Prepare the cordierite porous material with flyash and magnesite low temperature.Silicate journal, 2012,40 (5): 745-751), the latter such as a kind of trichroite aglite brick (Xin Guozhi.The application of trichroite aglite brick on kiln car.The Jiangsu pottery, 1995,70 (3): 21-22).The trichroite light material of these technology preparations all belongs to molded article, can not prepare baroque refractory materials, can not cast-in-place shaping.
Mould material is a kind of in the unshape refractory, has easy construction, do not receive the furnace construction shape limits and can be made into advantages such as difform furnace lining easily.In traditional mould material, people are aggregate with the material of densification often.Fine and close mould material thermal conductivity is big, density is big, waste mass energy and resource.Simultaneously, in fine and close mould material use, etching medium at first corrodes matrix.Matrix surrounds aggregate, and when matrix is etched into metamorphic layer, aggregate just peels off out from mould material with matrix.Thereby directly waring oneself in front of a fire and having under the corrosive medium existence condition, the effect of fine and close aggregate is also not obvious.Aspect the lightweight unshape refractory, various lightening casting materials have been studied: like vermiculite, perlite, haydite, fire-resistant light skeletal and fibre castable etc.The thermal conductivity of comparing them with fine and close mould material is less, can be used as lagging material and uses.But their thermal shock resistance is relatively poor, and the ability of anti-flame impingement, anti-erosion medium resistance is relatively poor, can not directly be used in to warm oneself in front of a fire, have corrosive medium, position that temperature fluctuation is bigger.
Summary of the invention
The present invention is intended to overcome the prior art defective; Purpose provides the preparation method of the simple trichroite lightening casting material of a kind of preparation technology; Trichroite lightening casting material with the preparation of this method had both had the apparent porosity height, mean pore size is little, intensity is high, thermal conductivity is low, good thermal shock stability and the strong advantage of anti-erosion medium resistance ability, and it is controlled and burn the little advantage of back volume change to have environmental friendliness, apparent porosity and pore size again.
For realizing above-mentioned purpose; The technical scheme that the present invention adopts is: with the porous cordierite ceramic particle of 40 ~ 70wt%, the cordierite ceramic fine powder of 20 ~ 48wt%, the aluminous cement of 2 ~ 10wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add the water of said raw material 8 ~ 20wt% and the water reducer of said raw material 0.02 ~ 1wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 8 ~ 48 hours again.
The preparation method of porous cordierite ceramic particle and cordierite ceramic fine powder is: with the colliery powder of 8 ~ 12wt%, the Al of 33 ~ 37wt% (OH) 3The magnesite breeze of the talcum powder of powder, 8 ~ 12wt%, 13 ~ 17wt% and the ground silica of 28 ~ 32wt% mix, and the water that adds above-mentioned compound 3 ~ 12wt% stirs, compression moulding; With the base substrate after the moulding under 110 ℃ of conditions dry 8 ~ 36 hours, under 1300 ~ 1400 ℃ of conditions, be incubated 1 ~ 6 hour then and burn till again, promptly get porous cordierite ceramic.At last that porous cordierite ceramic is broken, screening; The particle of choosing particle diameter and be 8 ~ 0.1mm is the porous cordierite ceramic particle, and choosing particle diameter is the cordierite ceramic fine powder less than the fine powder of 88 μ m.
The particle diameter of said aluminous cement is less than 88 μ m.
The particle diameter of said talcum fine powder is less than 88 μ m.
The silica content of said ultrafine silica powder is greater than 92wt%, and particle diameter is less than 4 μ m.
The alumina content of said active alpha alumina powder is greater than 97wt%, and particle diameter is less than 4 μ m.
Said water reducer is more than one in tripoly phosphate sodium STPP, Sodium hexametaphosphate 99, dispersed aluminum oxide and the poly carboxylic acid series water reducer.
Adopt technique scheme; " a kind of porous cordierite ceramic material and preparation method thereof (CN201110038289.2) " patented technology that the present invention adopts the applicant to apply for prepares porous cordierite ceramic particle and cordierite ceramic fine powder; Be porous aggregate and be that fine and close matrix prepares lightening casting material mainly that with prepared porous cordierite ceramic particle preparation technology is simple with the cordierite ceramic fine powder.Prepared product chemical ingredients mainly is MgO, Al 2O 3And SiO 2, its principal crystalline phase is a trichroite.Existing high intensity of material and heat-insulating property that the present invention is prepared also have good thermal shock resistance and anti-erosion medium resistance ability.
Therefore; Preparation technology of the present invention is simple; It is controlled and burn the little advantage of back volume change that prepared trichroite lightening casting material has easy construction, environmental friendliness, apparent porosity and pore size, also has the apparent porosity height, mean pore size is little, intensity is high, thermal conductivity is low, good thermal shock stability and the strong performance of anti-erosion medium resistance ability.The prepared trichroite lightening casting material of the present invention is applicable to that working temperature is lower than 1340 ℃ the high temperature kiln or the permanent layer and the working lining of container.
Embodiment
Below in conjunction with embodiment the present invention being done further description, is not the restriction to protection domain:
For avoiding repetition, earlier the raw material unification in this embodiment is described below, repeat no more among the embodiment:
The particle diameter of aluminous cement is less than 88 μ m; The particle diameter of talcum fine powder is less than 88 μ m; The silica content of ultrafine silica powder is greater than 92wt%, and particle diameter is less than 4 μ m; The alumina content of active alpha alumina powder is greater than 97wt%, and particle diameter is less than 4 μ m.
The preparation method of porous cordierite ceramic particle and cordierite ceramic fine powder is: with colliery powder, the 33 ~ 37wt%Al (OH) of 8 ~ 12wt% 3Powder, 8 ~ 12wt% talcum powder, 13 ~ 17wt% magnesite breeze and 28 ~ 32wt% ground silica mix, and the water that adds above-mentioned compound 3 ~ 12wt% stirs, compression moulding; With the base substrate after the moulding under 110 ℃ of conditions dry 8 ~ 36 hours, under 1300 ~ 1400 ℃ of conditions, be incubated 1 ~ 6 hour then and burn till again, promptly get porous cordierite ceramic.At last that porous cordierite ceramic is broken, screening; The particle of choosing particle diameter and be 8 ~ 0.1mm is the porous cordierite ceramic particle, and choosing particle diameter is the cordierite ceramic fine powder less than the fine powder of 88 μ m.
Embodiment 1
A kind of trichroite lightening casting material and preparation method thereof: with the porous cordierite ceramic particle of 50 ~ 70wt%, the cordierite ceramic fine powder of 20 ~ 38wt%, the aluminous cement of 2 ~ 6wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add the water of said raw material 8 ~ 12wt% and the tripoly phosphate sodium STPP of said raw material 0.02 ~ 0.4wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 8 ~ 18 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 35 ~ 40%, and mean pore size is 10 ~ 20 μ m; Porous cordierite ceramic particulate grain composition ratio is: 8 ~ 5mm accounts for raw material 8 ~ 12wt%, and 5 ~ 3mm accounts for raw material 18 ~ 24wt%, and 3 ~ 1mm accounts for raw material 18 ~ 24wt%, and 1 ~ 0.1mm accounts for raw material 6 ~ 10wt%.
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 35 ~ 42%, volume density is 1.40 ~ 1.60g/cm 3With folding strength be the trichroite lightening casting material of 3 ~ 6MPa; Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 2 ~ 6 hours, obtains apparent porosity and be 34 ~ 44%, volume density is 1.39 ~ 1.61g/cm 3, mean pore size is that 10 ~ 20 μ m and folding strength are the trichroite lightening casting material of 8 ~ 15MPa.
Embodiment 2
A kind of trichroite lightening casting material and preparation method thereof: with the porous cordierite ceramic particle of 40 ~ 60wt%, the cordierite ceramic fine powder of 25 ~ 43wt%, the aluminous cement of 4 ~ 8wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add water and the tripoly phosphate sodium STPP of said raw material 0.1 ~ 0.3wt% and the Sodium hexametaphosphate 99 of 0.1 ~ 0.3wt% of said raw material 12 ~ 16wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 16 ~ 32 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 38 ~ 46%, and mean pore size is 20 ~ 30 μ m; Porous cordierite ceramic particulate grain composition ratio is: 5 ~ 3mm accounts for raw material 15 ~ 22wt%, and 3 ~ 1mm accounts for raw material 15 ~ 22wt%, and 1 ~ 0.1mm accounts for raw material 10 ~ 16wt%.
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 40 ~ 48%, volume density is 1.34 ~ 1.40g/cm 3With folding strength be the trichroite lightening casting material of 2 ~ 4MPa.Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 3 ~ 8 hours, obtains apparent porosity and be 40 ~ 50%, volume density is 1.33 ~ 1.40g/cm 3, mean pore size is that 20 ~ 30 μ m and folding strength are the trichroite lightening casting material of 5 ~ 10MPa.
Embodiment 3
A kind of trichroite lightening casting material and preparation method thereof: with the porous cordierite ceramic particle of 40 ~ 60wt%, the cordierite ceramic fine powder of 28 ~ 48wt%, the aluminous cement of 6 ~ 10wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add the water of said raw material 16 ~ 20wt% and the dispersed aluminum oxide of said raw material 0.5 ~ 1wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 30 ~ 48 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 45 ~ 55%, and mean pore size is 15 ~ 25 μ m; Porous cordierite ceramic particulate grain composition ratio is: 3 ~ 1mm accounts for raw material 15 ~ 25wt%, and 1 ~ 0.1mm accounts for raw material 25 ~ 35wt%.
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 45 ~ 58%, volume density is 1.22 ~ 1.40g/cm 3, folding strength is the trichroite lightening casting material of 1 ~ 3MPa; Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 3 ~ 8 hours, obtains apparent porosity and be 44 ~ 60%, volume density is 1.21 ~ 1.39g/cm 3, mean pore size is that 15 ~ 25 μ m, folding strength are the trichroite lightening casting material of 4 ~ 8MPa.
Embodiment 4
A kind of trichroite lightening casting material and preparation method thereof: with the porous cordierite ceramic particle of 40 ~ 60wt%, the cordierite ceramic fine powder of 25 ~ 43wt%, the aluminous cement of 4 ~ 8wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add water and the dispersed aluminum oxide of said raw material 0.2 ~ 0.8wt% and the poly carboxylic acid series water reducer of 0.05 ~ 0.15wt% of said raw material 13 ~ 17wt%; Stir; Casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 16 ~ 32 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 40 ~ 45%, and mean pore size is 10 ~ 20 μ m; Porous cordierite ceramic particulate grain composition ratio is: 5 ~ 3mm accounts for raw material 15 ~ 22wt%, and 3 ~ 1mm accounts for raw material 15 ~ 22wt%, and 1 ~ 0.1mm accounts for raw material 10 ~ 16wt%.
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 38 ~ 47%, volume density is 1.34 ~ 1.42g/cm 3With folding strength be the trichroite lightening casting material of 2 ~ 6MPa; Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 2 ~ 6 hours, obtains apparent porosity and be 39 ~ 48%, volume density is 1.34 ~ 1.41g/cm 3, mean pore size is that 10 ~ 20 μ m and folding strength are the trichroite lightening casting material of 7 ~ 12MPa.
Embodiment 5
A kind of trichroite lightening casting material and preparation method thereof: the active alpha alumina powder with talcum fine powder, 2 ~ 4wt% ultrafine silica powder and the 2 ~ 4wt% of the aluminous cement of the cordierite ceramic fine powder of the porous cordierite ceramic particle of 50 ~ 70wt%, 20 ~ 38wt%, 2 ~ 6wt%, 2 ~ 4wt% is a raw material; Add water and the tripoly phosphate sodium STPP of said raw material 0.1 ~ 0.3wt% and the Sodium hexametaphosphate 99 of 0.1 ~ 0.3wt% of said raw material 11 ~ 16wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 8 ~ 18 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 40 ~ 45%, and mean pore size is 10 ~ 20 μ m; Porous cordierite ceramic particulate grain composition ratio is: 8 ~ 5mm is raw material 8 ~ 12wt%, and 5 ~ 3mm is raw material 18 ~ 24wt%, and 3 ~ 1mm is raw material 18 ~ 24wt%, and 1 ~ 0.1mm is raw material 6 ~ 10wt%;
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 39 ~ 46%, volume density is 1.37 ~ 1.41g/cm 3With folding strength be the trichroite lightening casting material of 4 ~ 7MPa; Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 3 ~ 8 hours, obtains apparent porosity and be 40 ~ 46%, volume density is 1.34 ~ 1.40g/cm 3, mean pore size is that 10 ~ 20 μ m and folding strength are the trichroite lightening casting material of 9 ~ 16MPa.
Embodiment 6
A kind of trichroite lightening casting material and preparation method thereof: with the porous cordierite ceramic particle of 40 ~ 60wt%, the cordierite ceramic fine powder of 25 ~ 43wt%, the aluminous cement of 4 ~ 8wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add water and the tripoly phosphate sodium STPP of said raw material 0.1 ~ 0.3wt%, the Sodium hexametaphosphate 99 of 0.1 ~ 0.3wt% and the dispersed aluminum oxide of 0.1 ~ 0.3wt% of said raw material 14 ~ 18wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 28 ~ 45 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 45 ~ 55%, and mean pore size is 15 ~ 25 μ m; Porous cordierite ceramic particulate grain composition ratio is: 5 ~ 3mm accounts for raw material 15 ~ 22wt%, and 3 ~ 1mm accounts for raw material 15 ~ 22wt%, and 1 ~ 0.1mm accounts for raw material 10 ~ 16wt%.
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 43 ~ 55%, volume density is 1.24 ~ 1.42g/cm 3With folding strength be the trichroite lightening casting material of 2 ~ 4MPa; Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 3 ~ 8 hours, obtains apparent porosity and be 42 ~ 58%, volume density is 1.23 ~ 1.40g/cm 3, mean pore size is that 15 ~ 25 μ m and folding strength are the trichroite lightening casting material of 5 ~ 10MPa.
Embodiment 7
A kind of trichroite lightening casting material and preparation method thereof: with the porous cordierite ceramic particle of 40 ~ 60wt%, the cordierite ceramic fine powder of 28 ~ 48wt%, the aluminous cement of 6 ~ 10wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% is raw material; Add water and the tripoly phosphate sodium STPP of said raw material 0.1 ~ 0.2wt%, the Sodium hexametaphosphate 99 of 0.1 ~ 0.2wt%, the dispersed aluminum oxide of 0.1 ~ 0.2wt% and the poly carboxylic acid series water reducer of 0.05 ~ 0.1wt% of said raw material 11 ~ 16wt%; Stir casting; Base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 15 ~ 30 hours again.
In the present embodiment: porous cordierite ceramic particulate apparent porosity is 40 ~ 45%, and mean pore size is 10 ~ 20 μ m; Porous cordierite ceramic particulate grain composition ratio is: 3 ~ 1mm accounts for raw material 15 ~ 25wt%, and 1 ~ 0.1mm accounts for raw material 25 ~ 35wt%.
Adopt the said technical scheme of present embodiment, obtain apparent porosity and be 37 ~ 46%, volume density is 1.35 ~ 1.43g/cm 3With folding strength be the trichroite lightening casting material of 3 ~ 6MPa; Burn till under 1300 ~ 1410 ℃ of conditions, soaking time is 2 ~ 6 hours, obtains apparent porosity and be 38 ~ 46%, volume density is 1.35 ~ 1.43g/cm 3, mean pore size is that 10 ~ 20 μ m and folding strength are the trichroite lightening casting material of 8 ~ 14MPa.
 
This embodiment adopts " a kind of porous cordierite ceramic material and preparation method thereof (CN201110038289.2) " patented technology of applicant's application to prepare porous cordierite ceramic particle and cordierite ceramic fine powder; Be porous aggregate and be that matrix prepares the trichroite lightening casting material mainly that with prepared porous cordierite ceramic preparation technology is simple with the cordierite ceramic fine powder.Prepared product chemical ingredients mainly is MgO, Al 2O 3And SiO 2, its principal crystalline phase is a trichroite.Through existing high intensity of the prepared material of this embodiment and heat-insulating property, good thermal shock resistance and anti-erosion medium resistance ability are arranged also.
Therefore; This embodiment preparation technology is simple; It is controlled and burn the little advantage of back volume change that prepared trichroite lightening casting material has easy construction, environmental friendliness, apparent porosity and pore size, also has the apparent porosity height, mean pore size is little, intensity is high, thermal conductivity is low, good thermal shock stability and the strong advantage of anti-erosion medium resistance ability.The prepared trichroite lightening casting material of this embodiment is applicable to that working temperature is lower than 1340 ℃ the high temperature kiln or the permanent layer and the working lining of container.

Claims (7)

1. the preparation method of a trichroite lightening casting material; It is characterized in that the porous cordierite ceramic particle with 40 ~ 70wt%, the cordierite ceramic fine powder of 20 ~ 48wt%, the aluminous cement of 2 ~ 10wt%, the talcum fine powder of 2 ~ 4wt%, the ultrafine silica powder of 2 ~ 4wt% and the active alpha alumina powder of 2 ~ 4wt% are raw material; Add the water of said raw material 8 ~ 20wt% and the water reducer of said raw material 0.02 ~ 1wt%; Stir; Casting, the base substrate seasoning after the moulding 24 hours, under 110 ℃ of conditions dry 8 ~ 48 hours again;
The preparation method of porous cordierite ceramic particle and cordierite ceramic fine powder is: with the colliery powder of 8 ~ 12wt%, the Al of 33 ~ 37wt% (OH) 3The magnesite breeze of the talcum powder of powder, 8 ~ 12wt%, 13 ~ 17wt% and the ground silica of 28 ~ 32wt% mix, and the water that adds above-mentioned compound 3 ~ 12wt% stirs, compression moulding; With the base substrate after the moulding under 110 ℃ of conditions dry 8 ~ 36 hours, under 1300 ~ 1400 ℃ of conditions, be incubated 1 ~ 6 hour then and burn till again, promptly get porous cordierite ceramic; At last that porous cordierite ceramic is broken, screening, the particle of choosing particle diameter and be 8 ~ 0.1mm is the porous cordierite ceramic particle, choosing particle diameter is the cordierite ceramic fine powder less than the fine powder of 88 μ m.
2. the preparation method of trichroite lightening casting material according to claim 1, the particle diameter that it is characterized in that said aluminous cement is less than 88 μ m.
3. the preparation method of trichroite lightening casting material according to claim 1, the particle diameter that it is characterized in that said talcum fine powder is less than 88 μ m.
4. the preparation method of trichroite lightening casting material according to claim 1, the silica content that it is characterized in that said ultrafine silica powder is greater than 92 wt%, and particle diameter is less than 4 μ m.
5. the preparation method of trichroite lightening casting material according to claim 1, the alumina content that it is characterized in that said active alpha alumina powder is greater than 97 wt%, and particle diameter is less than 4 μ m.
6. the preparation method of trichroite lightening casting material according to claim 1 is characterized in that said water reducer is more than one in tripoly phosphate sodium STPP, Sodium hexametaphosphate 99, dispersed aluminum oxide and the poly carboxylic acid series water reducer.
7. according to the prepared trichroite lightening casting material of preparation method of each described trichroite lightening casting material in the claim 1 ~ 6.
CN201210272265.8A 2012-08-02 2012-08-02 Light-weight cordierite castable and preparation method thereof Expired - Fee Related CN102765949B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201210272265.8A CN102765949B (en) 2012-08-02 2012-08-02 Light-weight cordierite castable and preparation method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201210272265.8A CN102765949B (en) 2012-08-02 2012-08-02 Light-weight cordierite castable and preparation method thereof

Publications (2)

Publication Number Publication Date
CN102765949A true CN102765949A (en) 2012-11-07
CN102765949B CN102765949B (en) 2014-08-13

Family

ID=47093562

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201210272265.8A Expired - Fee Related CN102765949B (en) 2012-08-02 2012-08-02 Light-weight cordierite castable and preparation method thereof

Country Status (1)

Country Link
CN (1) CN102765949B (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103242051A (en) * 2013-05-30 2013-08-14 武汉科技大学 Lightweight corundum-mullite castable and preparation method thereof
CN103449830A (en) * 2013-08-26 2013-12-18 武汉科技大学 Light-weight aluminum-silicon aggregate and preparation method thereof
CN103952121A (en) * 2014-04-04 2014-07-30 湖南省美程陶瓷科技有限公司 Steatite ceramics composite water reducer and preparation method thereof
CN108424016A (en) * 2017-02-14 2018-08-21 西南科技大学 A kind of Structural Engineering high performance lightweight aggregate
CN109354485A (en) * 2018-11-09 2019-02-19 洛阳索莱特材料科技有限公司 A kind of fixed structure of ceramic nozzle and the preparation method of ceramic nozzle
CN111393156A (en) * 2020-03-26 2020-07-10 攀枝花学院 Preparation method of cordierite porous ceramic

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101016211A (en) * 2006-12-21 2007-08-15 武汉科技大学 Aluminum-magnesium series lightweight pouring material and manufacturing method thereof
CN101591182A (en) * 2008-05-30 2009-12-02 北京通达耐火技术股份有限公司 The preparation method of abrasion resistant castable in a kind of
WO2010087099A1 (en) * 2009-01-28 2010-08-05 京セラ株式会社 Cordierite-based sintered body
CN102180699A (en) * 2011-02-15 2011-09-14 武汉科技大学 Porous cordierite ceramic material and preparation method thereof

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101016211A (en) * 2006-12-21 2007-08-15 武汉科技大学 Aluminum-magnesium series lightweight pouring material and manufacturing method thereof
CN101591182A (en) * 2008-05-30 2009-12-02 北京通达耐火技术股份有限公司 The preparation method of abrasion resistant castable in a kind of
WO2010087099A1 (en) * 2009-01-28 2010-08-05 京セラ株式会社 Cordierite-based sintered body
CN102180699A (en) * 2011-02-15 2011-09-14 武汉科技大学 Porous cordierite ceramic material and preparation method thereof

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103242051A (en) * 2013-05-30 2013-08-14 武汉科技大学 Lightweight corundum-mullite castable and preparation method thereof
CN103449830A (en) * 2013-08-26 2013-12-18 武汉科技大学 Light-weight aluminum-silicon aggregate and preparation method thereof
CN103952121A (en) * 2014-04-04 2014-07-30 湖南省美程陶瓷科技有限公司 Steatite ceramics composite water reducer and preparation method thereof
CN108424016A (en) * 2017-02-14 2018-08-21 西南科技大学 A kind of Structural Engineering high performance lightweight aggregate
CN108424016B (en) * 2017-02-14 2021-08-06 西南科技大学 High-performance lightweight aggregate for structural engineering
CN109354485A (en) * 2018-11-09 2019-02-19 洛阳索莱特材料科技有限公司 A kind of fixed structure of ceramic nozzle and the preparation method of ceramic nozzle
CN111393156A (en) * 2020-03-26 2020-07-10 攀枝花学院 Preparation method of cordierite porous ceramic

Also Published As

Publication number Publication date
CN102765949B (en) 2014-08-13

Similar Documents

Publication Publication Date Title
CN103804002B (en) Light corundum-mullite refractory brick and preparation method thereof
CN102765949B (en) Light-weight cordierite castable and preparation method thereof
CN103242051A (en) Lightweight corundum-mullite castable and preparation method thereof
CN101987793B (en) Anti-skinning pouring material for cement kiln
CN102491766B (en) Calciclase light heat-insulating refractory material and preparation method thereof
CN102603347B (en) High-performance ultra-lightweight foam ceramic prepared by taking shale as main raw material and method thereof
CN102815951A (en) Flame-resistant corrosion-resistant coating
CN102701763A (en) Low-aluminum sintered alumina-silica refractory material and preparation method thereof
CN102775163A (en) Silicon carbide-cordierite composite ceramic kiln furniture and preparation method thereof
CN105622122B (en) A kind of ultra micro kyanite refractory casting and its application
CN102617171A (en) MgAlON combined aluminum magenisum permeable brick and preparation method thereof
CN106747525A (en) A kind of kilneye high-performance composite refractory
CN105272189A (en) Microporous mullite ceramic separation membrane support and preparation method thereof
CN102765950B (en) Cordierite light fire brick and preparation method of cordierite light fire brick
CN104725058A (en) Periclase-pleonaste and hercynite/forsterite composite brick
CN104671805A (en) Anti-skinning castable and preparation method thereof
CN105174718A (en) Matt glaze and fabrication process
CN106431434B (en) A kind of obturator-type alumina base mullite material and preparation method thereof
CN103833383A (en) Corundum-magnesium aluminum spinelle-textured refractory aggregate with closed-hole structure and preparation method of refractory aggregate
CN104446657A (en) Dry granular additive for full polishing of ceramic tiles and preparation method of dry granular additive
CN103641505B (en) A kind of continuous casting production working lining slag line coating and preparation method thereof
CN102850044B (en) Light cordierite-spinel castable and preparation method thereof
CN104876605A (en) Refractory brick for boiler
CN108002848A (en) Refractory brick containing magnesium aluminate spinel and preparation method thereof
CN108017397A (en) Refractory brick containing quartz sand and preparation method thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140813

Termination date: 20150802

EXPY Termination of patent right or utility model