CN86103637A - Featherweight heat-insulation material of powdery coal cinder - Google Patents

Featherweight heat-insulation material of powdery coal cinder Download PDF

Info

Publication number
CN86103637A
CN86103637A CN86103637.9A CN86103637A CN86103637A CN 86103637 A CN86103637 A CN 86103637A CN 86103637 A CN86103637 A CN 86103637A CN 86103637 A CN86103637 A CN 86103637A
Authority
CN
China
Prior art keywords
lime
water
flyash
content
oven dry
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.)
Withdrawn
Application number
CN86103637.9A
Other languages
Chinese (zh)
Other versions
CN1008361B (en
Inventor
柏绿山
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN86103637A priority Critical patent/CN1008361B/en
Publication of CN86103637A publication Critical patent/CN86103637A/en
Publication of CN1008361B publication Critical patent/CN1008361B/en
Expired legal-status Critical Current

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/91Use of waste materials as fillers for mortars or concrete

Landscapes

  • Processing Of Solid Wastes (AREA)
  • Ceramic Products (AREA)

Abstract

The present invention is a main raw material with power plant's waste material flyash, lime putty, asbestos, adds less water glass and gypsum and can be made into ultralight body lagging material.Quality index: 10-15 kilograms/cm of ultimate compression strength 3Thermal conductivity 0.038-0.060 kilocalorie/rice, the time, degree; 3.8-5 kilograms/cm of folding strength 3250-280 kilograms/m of capacity 3Raw material of the present invention is easy to get, and is cheap.

Description

Featherweight heat-insulation material of powdery coal cinder
The present invention is a kind of ultralight body lagging material.It is the ultralight body lagging material of mainly making by power plant's waste material flyash and lime putty.
Increasing along with Highrise buildings, and the developing rapidly of industry such as generating, oilfield exploitation, chemical industry, boats and ships are badly in need of light weight, high-strength, lagging material that thermal conductivity is little.Light weight, high-strength lagging material, material of construction not only can reduce the consumption of the energy in a large number, but also can alleviate the weight of object, and research in recent years has many effects.As US4328034, US3957501, US4453978 etc.
The objective of the invention is to select for use the power plant's waste material-flyash and the raw material lime that is easy to get to make main raw material, preparation ultralight body lagging material, but both decontaminations bring good to and remove all evil, can make cheap lagging material again with higher use value.
The selected raw material of this lagging material is that to contain major ingredient be SiO to levigated 2, Al 2O 3Reach the flyash of CaO and contain the lime putty after clearing up that major ingredient is CaO, also have water glass, refractory fibre and terra alba etc.These raw materials in use will be through prudent screening, and rationally batching is mixed then and heated up, the steam foaming, and steam press maintenance just can make qualified finished product after the oven dry.
Making preferably, the suitable ratio of components of ultralight body lagging material is:
Flyash 50%~65%
Lime 32%~43%
Refractory fibre 3%~7%
Wherein the Chemical Composition content in flyash, the lime fluctuates greatlyyer sometimes, so require the mol of each effective ingredient of control recently to regulate actual charging capacity, now represents the mole ratio of effective ingredient with A, and the calculating formula and the limited range of A value are:
A= X c a o X S i o 2 +X Al 2 O 3 =0.78~1.00
In the formula: X CaOContain the calcium oxide mole number in the-prepared product total amount.
X S iO 2 +X Al 2 O 3 Contain SiO in the required flyash of-prepared product total amount 2And Al 2O 3The mole number sum.
When actual feeding intake, obviously, after total charging capacity was determined, after the starting material Chemical Composition was measured, the consumption that calculates flyash, lime putty by last ratio again dropped in the gel cylinder together.
By above-mentioned ratio, flyash, lime and refractory fibre consumption are as the criterion with this total amount after determining again, count by weight percentage water glass (water glass) consumption 0.01~0.20%, and the gypsum consumption is 2-5%, and water is 4-8 times of total amount, doubly is advisable with 5-7.What deserves to be explained is: contained a certain amount of water in the lime putty, when adding Total Water again, the water yield in the lime putty also counts within the Total Water.
The detailed process process of making this ultralight body lagging material is:
One, select materials and get the raw materials ready:
Get CaO content greater than 80% unslaked lime,, filter, and measure the content of CaO in the filter pulp with the 80-120 mesh sieve in advance with 5~10 times of water yield predigestion in jar, this content as above-mentioned material than the foundation of calculating.
Flyash is levigate to more than 180 orders, and oven dry makes moisture content less than 4%, and measures the content of its silicon-dioxide, aluminium sesquioxide and calcium oxide etc., and this content is also as the foundation of above-mentioned material than calculating.Should satisfy following qualification to the flyash specification of quality:
SiO 250-70%
Al 2O 315-30%
SiO 2+ Al 2O 3Greater than 75%
Ignition loss is less than 8%
Refractory fibre in the materials generally selects for use asbestos and mineral wool comparatively cheap.
Water glass and terra alba generally are commercially available industrial goods.
Material is got all the ready prefabricated, and screening after expecting that ratio calculating finishes, except that water glass, gypsum, drops in the gel tank in the lump.The water content of lime putty is much smaller than water total amount, and the water yield of deficiency is supplied it by calculating.
Two, gel foaming:
To feed intake mixes intensification, makes a gesture of measuring by material when treating that temperature rises to 100 ℃ to add water glass, terra alba, and insulated and stirred is about 30 minutes.
The colloid of above-mentioned generation gelling is entered foamed pot relaying supervention bubble, foaming can form hollow structure, and foaming must keep 2-4 saturated vapour pressure, and temperature must be higher than 100 ℃, slowly kept 2-4 hour under the stirring at 3-8 rev/min, enter the compressed moulding operation immediately.
Three, compressed moulding:
For making base substrate level and smooth, to add slick filtered water cover on the model, compression moulding under 30~50 tons of pressure.
Four, steam press maintenance:
For making base substrate generation qualitative change, have intensity, generate aquation sulphur Calucium Silicate powder and aquation calcium sulphoaluminate, must under the high-temperature water heat condition, carry out steam press maintenance to base substrate.The pressure of autoclave is high more, and quality of item is good more.Slowly heat up earlier when steam press maintenance heats up and be raised to 6 barometric points in 5 hours, after-acceleration heats up one hour to eight more than the normal atmosphere.Carry out constant-voltage phase then, the time is 10~14 hours, carries out step-down (cooling) thereupon, and the time was controlled at 5 hours, and when pressure reduced to zero, palpus was driven still after stopping half hour, goes out goods.
Five, oven dry:
Go out goods behind the still, must advance the drying shed oven dry, make moisture content below 2%, packing is dispatched from the factory then.
The quality of resulting product of the present invention and technical indicator can reach:
Ultimate compression strength 10kg-15kg/cm 3
Folding strength 3.8kg-5kg/cm 3
Thermal conductivity 0.038 kilocalorie-0.060 kilocalorie/Mi Shidu
Capacity 250kg-280kg/m 3
Ultralight body lagging material of the present invention can be made different type bodies as required, and meal.
These lagging materials can be used for each industrial sector, as lagging material, or weighting material.They are cheap and can bring good to and remove all evil, and have economy and social value.
Example
To contain CaO earlier and be 975 kilograms of 90% unslaked limes, and in the digester of packing into, add 5850 kg of water by the digestion operation and digest, stir and make it to become lime putty.After 100 eye mesh screens filter, squeeze in the lime putty storage tank stand-by.
The water yield required according to total, the water yield of having brought in the deduction lime putty, the water yield 11650 kg of water that need add are squeezed in the gel tank, and stand-by lime putty is also squeezed in the gel tank, puts into SiO simultaneously 2Content is 50%, Al 2O 3Content is 1375 kilograms in 34% flyash, and 140 kilograms in asbestos are warming up to 100 ℃ under whipped state.Add 0.45 kilogram of water glass, 50 kilograms of terra albas are 100 ℃ of following insulated and stirred about 30 minutes, till producing gel.
Gel is all entered in the foamed pot, keep 3 saturation vapour pressure, to become bubble granular dynamically down making it foaming, and this stage finished about 2-4 greatly in individual hour.
Base substrate type shape as required with the granular colloid of finishing after the foaming, is inserted mold, starts compression moulding under ton pressure of oil press to 30~50.
With the base substrate of compression moulding, send into autoclave, the maintenance that adds high pressure makes it to generate aquation sulphur Calucium Silicate powder and aquation calcium sulphoaluminate, and steam press maintenance slowly heats up earlier, rises to 6 normal atmosphere in 5 hours, and after-acceleration heats up and was raised to 8 more than the normal atmosphere in one hour.Constant voltage is 12 hours then, step-down (cooling) 5 hours, and pressure is reduced to and was stopped to drive still after half an hour at 0 o'clock and go out goods.Go out the still goods and advance kiln in 75 ℃-130 ℃ oven dry down.Goods moisture content below 2% promptly the packing dispatch from the factory.

Claims (5)

1, a kind of ultralight body lagging material is characterized in that this material is heated up through digesting, screen batching, mixing by fine-ground fly-ash, lime putty, water glass, refractory fibre, gypsum etc., the steam foaming, steam press maintenance, the oven dry and make, this material suitable proportion (W%) is:
Flyash 50%~65%
Lime 32%~43%
Refractory fibre 3%~7%
Different with aluminium sesquioxide content according to calcium oxide in flyash and the lime, silicon-dioxide, by the numerical definiteness scope of mole ratio A, the numerical evaluation of A and the scope of its value are:
A= X c a o X S i o 2 +X Al 2 O 3 =0.78~1.00
After flyash, refractory fibre and lime total amount are determined,, add water glass 0.01%~0.2%, gypsum 2-5%, water 5-8 more by weight percentage doubly, be advisable with 6 times according to total amount.
2, according to its specific manufacturing process of the said ultralight body of claim 1 lagging material be:
One, select materials and get the raw materials ready:
Get CaO content greater than 80% unslaked lime, with 5-8 water yield predigestion in jar doubly of unslaked lime weight, filter in advance, and measure the content of CaO in the filter pulp with the 80-120 mesh sieve; Flyash is levigate to more than 180 orders, and oven dry makes moisture content less than 4%, according to the suitable ratio of components of the said ultralight body of claim 1 lagging material, calculate actual dosage, except that water glass, gypsum, the moisture material that to get ready drops in the gel tank in the lump, and the water content in the lime putty is less than water total amount.The water of deficiency is supplied by calculating.
Two, gelling foaming:
To feed intake mixes intensification, makes a gesture of measuring by material when treating that temperature rises to 100 ℃ to add water glass, terra alba insulated and stirred 30 minutes.
With the colloid of above-mentioned generation gelling, enter foamed pot relaying supervention bubble, blow(ing) pressure must keep 2-4 saturated vapour pressure, and temperature must be higher than 100 ℃, slowly keeps 2-4 hour under the stirring at 3-8 rev/min, enters the compressed moulding operation immediately.
Three, compressed moulding:
For making base substrate level and smooth, to add slick filtered water cover on the model, under 30-50 ton pressure, compression moulding.
Four, steam press maintenance:
During steam press maintenance, slowly heat up earlier, be raised to 6 normal atmosphere in 5 hours, after-acceleration heats up, and is raised to 8 more than the normal atmosphere through 1 hour again, enter constant-voltage phase then, time is 10~14 hours, carries out step-down (cooling) thereupon, and the time was controlled at 5 hours, need after pressure reduces to zero to stop half an hour, drive still and go out goods.
Five, oven dry:
Go out the goods behind the still, through entering the drying shed oven dry, moisture content below 2% promptly packing dispatch from the factory.
3, be that the resulting thin ash with volcano character in combustion back is burnt in the fuel-burning power plant according to employed fine powdered coal in claim 1, the 2 said ultralight body lagging materials, require the weight percentage index of its main chemical to be:
SiO 250-70%
Al 2O 315-30%
SiO 2+ Al 2O 3Greater than 75%
Ignition loss is less than 8%
4, according to employed refractory fibre in claim 1, the 2 said ultralight body lagging materials, can be asbestos, refractory fibres such as softening mineral wool.
5, can be forming composition as required according to claim 1,2 said ultralight body lagging materials, also can be the finished product meal.
CN86103637A 1986-05-21 1986-05-21 Super light thermal insulation material made of flyash Expired CN1008361B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN86103637A CN1008361B (en) 1986-05-21 1986-05-21 Super light thermal insulation material made of flyash

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN86103637A CN1008361B (en) 1986-05-21 1986-05-21 Super light thermal insulation material made of flyash

Publications (2)

Publication Number Publication Date
CN86103637A true CN86103637A (en) 1987-09-16
CN1008361B CN1008361B (en) 1990-06-13

Family

ID=4802138

Family Applications (1)

Application Number Title Priority Date Filing Date
CN86103637A Expired CN1008361B (en) 1986-05-21 1986-05-21 Super light thermal insulation material made of flyash

Country Status (1)

Country Link
CN (1) CN1008361B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103936407A (en) * 2014-03-31 2014-07-23 合肥科斯孚安全科技有限公司 Preparation method of lightweight anorthite based thermal insulation material

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103936407A (en) * 2014-03-31 2014-07-23 合肥科斯孚安全科技有限公司 Preparation method of lightweight anorthite based thermal insulation material
CN103936407B (en) * 2014-03-31 2015-07-01 合肥科斯孚安全科技有限公司 Preparation method of lightweight anorthite based thermal insulation material

Also Published As

Publication number Publication date
CN1008361B (en) 1990-06-13

Similar Documents

Publication Publication Date Title
CA2009176C (en) Continuous production of gypsum board
RU2326842C2 (en) Siallite double component wet cement, method of production and use
CN1027690C (en) Baking-free and steaming-free flyash brick and its making method
CN101948331A (en) Autoclaved aerated concrete building block and preparation method thereof
US1901051A (en) High strength calcined gypsum and process of manufacturing same
CN102320788A (en) Lightweight foam concrete insulating brick and its manufacturing method
CN1278982C (en) Bricks and mortar made from fly ash and preparation method
CN101698586A (en) Aerated concrete produced by electrolytic manganese slag and preparation method thereof
ES2006107A6 (en) Method of manufacturing cement
CN86103637A (en) Featherweight heat-insulation material of powdery coal cinder
CN102070322A (en) Method for preparing high-strength ceramic wall material from papermaking causticized white mud residues
CN1172065C (en) Technology for making lime-sand brick cured by steam
CN1027971C (en) High-iron multifunctional cement clinker
CN1143055A (en) Fly ash light hollow wall plate
CN1081140A (en) High-performance non-cement powdered coal ash brick
CN1068555A (en) Formula of flyash cement and its production process
CN113105205A (en) Full-waste-residue autoclaved fly ash brick and preparation method thereof
CN1037506C (en) High-active flyash mixture
CN1055908A (en) The preparation method of reactive silicon dioxide phase
CN1106726A (en) Dry process for producing aerocrete
CN85109181A (en) The production method of fluorite solid water glass slag cement
CN1014784B (en) Method for preparing cement from waste residue of ammonia-soda
KR20030067075A (en) A Manufacturing method of Anhydrite using By-Product Gypsum
CN1020891C (en) Method for producing powdered coal ash brick
CN1060831A (en) Portland cement using cryogenic powdered coal dust

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C13 Decision
C14 Grant of patent or utility model
C19 Lapse of patent right due to non-payment of the annual fee
C19 Lapse of patent right due to non-payment of the annual fee