CN101948270A - Superfine glass wool insulation board and production method thereof - Google Patents

Superfine glass wool insulation board and production method thereof Download PDF

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Publication number
CN101948270A
CN101948270A CN 201010277486 CN201010277486A CN101948270A CN 101948270 A CN101948270 A CN 101948270A CN 201010277486 CN201010277486 CN 201010277486 CN 201010277486 A CN201010277486 A CN 201010277486A CN 101948270 A CN101948270 A CN 101948270A
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China
Prior art keywords
parts
glass wool
borax
glass
thermal baffle
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Pending
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CN 201010277486
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Chinese (zh)
Inventor
周介明
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.)
TAICANG HONGDA FANGYUAN ELECTRIC CO Ltd
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TAICANG HONGDA FANGYUAN ELECTRIC CO Ltd
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Priority to CN 201010277486 priority Critical patent/CN101948270A/en
Publication of CN101948270A publication Critical patent/CN101948270A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a superfine glass wool insulation board which is mainly composed of the following components in parts by weight: 600-650 parts of cullet, 70-75 parts of feldspar, 80-110 parts of borax and 30 parts of soda ash. The invention also discloses a production method of the superfine glass wool insulation board. The superfine glass wool insulation board of the invention has high flexibility and good evenness. The production method disclosed by the invention adopts recyclable cullet as a main raw material to realize the cyclic utilization of resources, protect environment and save cost. Meanwhile, the production method of the invention has simple and uncomplicated operation.

Description

A kind of super glass wool thermal baffle and production method thereof
Technical field
The present invention relates to a kind of super glass wool thermal baffle, is a kind of lightweight specifically, uniform super glass wool thermal baffle of diameter and production method thereof.
Background technology
The super glass wool thermal baffle is as a kind of fibrous novel admittance material, and it has lightweight, insulation, fire prevention, sound-absorbing, high-performance such as mothproof, anticorrosion, is widely used in chemical industry, metallurgy, light industry, electric power, oil and building trade.But at present, the production method that the super glass wool on the market adopts is very complicated, and the glass wool diameter deviation that draws is big, and the super glass wool minimum diameter of producing is also at 3 μ m~5 μ m.This will have a strong impact on glass wool and glass wool Products Quality thereof, limit the development of glass wool goods.
Summary of the invention
Goal of the invention: the objective of the invention is provides a kind of lightweight in order to overcome the deficiencies in the prior art, uniform super glass wool thermal baffle of diameter and production method thereof.
Technical scheme: in order to solve the problems of the technologies described above, the invention provides a kind of super glass wool thermal baffle, the mass fraction proportioning of its main ingredient is as follows: glass cullet: 600 parts-650 parts; 70 parts-75 parts of feldspars; 80 parts-110 parts of boraxs; 30 parts of soda ash.
Borax can adopt BORAX PENTAHYDRATE-99.9 MIN among the present invention, and when adopting BORAX PENTAHYDRATE-99.9 MIN, the mass fraction of BORAX PENTAHYDRATE-99.9 MIN is: 80 parts; The mass fraction that is super glass wool thermal baffle of the present invention is as follows: glass cullet: 600 parts-650 parts; 70 parts-75 parts of feldspars; 80 parts of BORAX PENTAHYDRATE-99.9 MIN; 30 parts of soda ash.
Borax can adopt borax decahydrate among the present invention, and when adopting borax decahydrate, the mass fraction of borax decahydrate is: 110 parts; The mass fraction that is super glass wool thermal baffle of the present invention is as follows: glass cullet: 600 parts-650 parts; 70 parts-75 parts of feldspars; 110 parts of borax decahydrates; 30 parts of soda ash.
Among the present invention, borax also can be mixed by BORAX PENTAHYDRATE-99.9 MIN and borax decahydrate, and BORAX PENTAHYDRATE-99.9 MIN adopts 37.5 parts, and borax decahydrate adopts 50 parts; The mass fraction that is super glass wool thermal baffle of the present invention is as follows: glass cullet: 600 parts-650 parts; 70 parts-75 parts of feldspars; BORAX PENTAHYDRATE-99.9 MIN adopts 37.5 parts; Borax decahydrate adopts 50 parts; 30 parts of soda ash.
Among the present invention, the moisture content of super glass wool thermal baffle should be controlled at 5%-6%.
The invention also discloses the production method of above-mentioned super glass wool thermal baffle, the step of this production method is as follows:
(a) reclaim glass cullet, to its clean, fragmentation;
(b) prepare starting material: feldspar, borax, soda ash, and assay composition of raw material;
(c) as requested: 70 parts-75 parts of feldspars, 30 parts of soda ash, 80 parts-110 parts of boraxs, 600 parts-650 parts in glass; Calculate various raw material consumptions; Then raw material and glass cullet are carried out weighing, mixing, make admixtion;
(d) with the admixtion dissolving, obtain even, pure, transparent glass liquid;
(e) glass metal is imported the whizzer fibrosis and obtain glass wool.
(f) coating is equivalent to the binding agent of 2-3% of glass wool weight on glass wool;
(g) glass wool that will be coated with binding agent is through typing, oven dry, cutting back formation product super glass wool thermal baffle of the present invention.
The main chemical compositions of admixtion is as follows in the step of the present invention (c):
SiO in the admixtion 264.5%~66%; AL 2O 3With Fe 2O 3Sum is 2.6%~2.9%; B 2C 3Be 4.8%~5%; CaO and MgO sum are: 10.6%~11%; Na 2O and K 2The O sum is 15.8%~16%.
During batching, at first will measure the composition of all cpds in each raw material, the ratio that requires according to each compound is weighed to raw material then, and batching is mixed;
Among the present invention, the glass diameter in the described step (a) after the fragmentation is less than 30mm; Glass is broken into the glass of diameter less than 30mm, is easier to mix, reach the batch uniformity requirement.
Beneficial effect: a kind of super glass wool thermal baffle of the present invention compared with prior art, has the following advantages:
1, super glass wool thermal baffle of the present invention, suppleness height, good uniformity;
2, adopting the cullet that reclaims in the production method of disclosed super glass wool thermal baffle among the present invention is main raw material, has realized the resource circulation utilization, has protected environment, simultaneously the cost of also saving; The production method of super glass wool thermal baffle of the present invention, simple to operate, uncomplicated.
Embodiment
Below in conjunction with specific embodiment, further illustrate the present invention, should understand these embodiment only is used to the present invention is described and is not used in and limit the scope of the invention, after having read the present invention, those skilled in the art all fall within the application's claims to the modification of the various equivalent form of values of the present invention and limit.
Embodiment 1
A kind of super glass wool thermal baffle, it is made up of following material: glass cullet: 600 parts; 70 parts of feldspars; 110 parts of borax decahydrates; 30 parts of soda ash.
The method of above-mentioned super glass wool thermal baffle is:
(a) reclaim glass cullet, to its clean, fragmentation;
(b) prepare starting material: feldspar, borax, soda ash, and assay composition of raw material;
(c) as requested: 600 parts in glass, 70 parts of feldspars, 30 parts of soda ash, 110 parts of borax decahydrates; Calculate various raw material consumptions; Then raw material and glass cullet are carried out weighing, mixing, make admixtion;
Main chemical compositions is SiO in the admixtion 265.5%; AL 2O 3With Fe 2O 3Sum is 2.7%; B 2C 3Be 4.85%; CaO and MgO sum are: 10.8%; Na 2O and K 2The O sum is 15.8%;
(d) with the admixtion dissolving, obtain even, pure, transparent glass liquid;
(e) glass metal is imported the whizzer fibrosis and obtain glass wool.
(f) coating is equivalent to 2.5% binding agent of glass wool weight on glass wool;
(g) glass wool that will be coated with binding agent is through typing, oven dry, cutting back formation product super glass wool thermal baffle of the present invention.
Embodiment 2
A kind of super glass wool thermal baffle, it is made up of following material: glass cullet: 650 parts; 75 parts of feldspars; 80 parts of BORAX PENTAHYDRATE-99.9 MIN; 30 parts of soda ash.
The method of above-mentioned super glass wool thermal baffle is:
(a) reclaim glass cullet, to its clean, fragmentation;
(b) prepare starting material: feldspar, borax, soda ash, and assay composition of raw material;
(c) as requested: 650 parts in glass, 75 parts of feldspars; 80 parts of BORAX PENTAHYDRATE-99.9 MIN; 30 parts of soda ash; Calculate various raw material consumptions; Then raw material and glass cullet are carried out weighing, mixing, make admixtion;
Main chemical compositions is in the admixtion: SiO 265.1%; AL 2O 3With Fe 2O 3Sum is 2.8%; B 2C 3Be 5%; CaO and MgO sum are: 10.7%; Na 2O and K 2The O sum is 15.9%.
(d) with the admixtion dissolving, obtain even, pure, transparent glass liquid;
(e) glass metal is imported the whizzer fibrosis and obtain glass wool.
(f) coating is equivalent to 2.6% binding agent of glass wool weight on glass wool;
(g) glass wool that will be coated with binding agent is through typing, oven dry, cutting back formation product super glass wool thermal baffle of the present invention.
Embodiment 3
A kind of super glass wool thermal baffle, it is made up of following material: glass cullet: 635 parts; 72 parts of feldspars; BORAX PENTAHYDRATE-99.9 MIN adopts 37.5 parts; Borax decahydrate adopts 50 parts; 30 parts of soda ash.
The method of above-mentioned super glass wool thermal baffle is:
(a) reclaim glass cullet, to its clean, fragmentation;
(b) prepare starting material: feldspar, borax, soda ash, and assay composition of raw material;
(c) as requested: glass cullet: 635 parts; 72 parts of feldspars; BORAX PENTAHYDRATE-99.9 MIN adopts 37.5 parts; Borax decahydrate adopts 50 parts; 30 parts of soda ash; Calculate various raw material consumptions; Then raw material and glass cullet are carried out weighing, mixing, make admixtion;
Main chemical compositions is in the admixtion: SiO 264.8%; AL 2O 3With Fe 2O 3Sum is 2.7%; B 2C 3Be 4.9%; CaO and MgO sum are: 10.7%; Na 2O and K 2The O sum is 15.9%.
(d) with the admixtion dissolving, obtain even, pure, transparent glass liquid;
(e) glass metal is imported the whizzer fibrosis and obtain glass wool.
(f) coating is equivalent to 2% binding agent of glass wool weight on glass wool;
(g) glass wool that will be coated with binding agent is through typing, oven dry, cutting back formation product super glass wool thermal baffle of the present invention.

Claims (5)

1. super glass wool thermal baffle, it is characterized in that: the mass fraction proportioning of its main ingredient is as follows: glass cullet: 600 parts-650 parts; 70 parts-75 parts of feldspars; 80 parts-110 parts of boraxs; 30 parts of soda ash.
2. a kind of super glass wool thermal baffle according to claim 1 is characterized in that: borax is a BORAX PENTAHYDRATE-99.9 MIN, adopts mass fraction to be: 80 parts.
3. a kind of super glass wool thermal baffle according to claim 1 is characterized in that: borax is a borax decahydrate, adopts mass fraction to be: 110 parts.
4. a kind of super glass wool thermal baffle according to claim 1, it is characterized in that: borax is mixed by BORAX PENTAHYDRATE-99.9 MIN and borax decahydrate, and BORAX PENTAHYDRATE-99.9 MIN adopts 37.5 parts, and borax decahydrate adopts 50 parts.
5. the production method of a kind of super glass wool thermal baffle according to claim 1 is characterized in that: the step of this production method is as follows:
(a) reclaim glass cullet, to its clean, fragmentation;
(b) prepare starting material: feldspar, borax, soda ash, and assay composition of raw material;
(c) as requested: 70 parts-75 parts of feldspars, 30 parts of soda ash, 80 parts-110 parts of boraxs, 600 parts-650 parts in glass; Calculate various raw material consumptions; Then raw material and glass cullet are carried out weighing, mixing, make admixtion;
(d) with the admixtion dissolving, obtain even, pure, transparent glass liquid;
(e) glass metal is imported the whizzer fibrosis and obtain glass wool.
(f) coating is equivalent to the binding agent of 2-3% of glass wool weight on glass wool;
(g) will be coated with the glass wool drying machine oven dry of binding agent, cutting constitutes product super glass wool thermal baffle of the present invention.
CN 201010277486 2010-09-09 2010-09-09 Superfine glass wool insulation board and production method thereof Pending CN101948270A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010277486 CN101948270A (en) 2010-09-09 2010-09-09 Superfine glass wool insulation board and production method thereof

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Application Number Priority Date Filing Date Title
CN 201010277486 CN101948270A (en) 2010-09-09 2010-09-09 Superfine glass wool insulation board and production method thereof

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CN101948270A true CN101948270A (en) 2011-01-19

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102331157A (en) * 2011-06-22 2012-01-25 苏州维艾普新材料有限公司 Drying method of glass wool core material
CN102351413A (en) * 2011-07-13 2012-02-15 苏州维艾普新材料有限公司 Manufacturing method of grade A fireproof and flame retardant energy saving ultrafine glass wool
CN103291227A (en) * 2013-06-04 2013-09-11 无锡金顶石油管材配件制造有限公司 High-temperature-resistant and antioxidative heat-insulating petroleum pipe
CN104556712A (en) * 2013-10-22 2015-04-29 镇江胡氏光电科技有限公司 Insulating material and technology for manufacturing insulating piece with insulating material
CN107311452A (en) * 2017-06-29 2017-11-03 清远瀚江玻璃棉科技有限公司 A kind of mineral wool of steady quality and preparation method thereof
CN107354267A (en) * 2017-06-27 2017-11-17 常州市协旺纺织品有限公司 A kind of heat preserving agent for liquid steel

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1120027A (en) * 1995-02-20 1996-04-10 中国东北电力集团科技开发公司 Production technology menthod of superfine glass wool
CN101139161A (en) * 2006-09-06 2008-03-12 上海达能玻璃棉有限公司 Glass wool and preparation method thereof

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1120027A (en) * 1995-02-20 1996-04-10 中国东北电力集团科技开发公司 Production technology menthod of superfine glass wool
CN101139161A (en) * 2006-09-06 2008-03-12 上海达能玻璃棉有限公司 Glass wool and preparation method thereof

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102331157A (en) * 2011-06-22 2012-01-25 苏州维艾普新材料有限公司 Drying method of glass wool core material
CN102351413A (en) * 2011-07-13 2012-02-15 苏州维艾普新材料有限公司 Manufacturing method of grade A fireproof and flame retardant energy saving ultrafine glass wool
CN103291227A (en) * 2013-06-04 2013-09-11 无锡金顶石油管材配件制造有限公司 High-temperature-resistant and antioxidative heat-insulating petroleum pipe
CN104556712A (en) * 2013-10-22 2015-04-29 镇江胡氏光电科技有限公司 Insulating material and technology for manufacturing insulating piece with insulating material
CN107354267A (en) * 2017-06-27 2017-11-17 常州市协旺纺织品有限公司 A kind of heat preserving agent for liquid steel
CN107311452A (en) * 2017-06-29 2017-11-03 清远瀚江玻璃棉科技有限公司 A kind of mineral wool of steady quality and preparation method thereof

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Effective date of registration: 20110610

Address after: 215400 Taicang City, Jiangsu Province town of Chengxiang City Industrial Park, Yanshan Mountain Road No. 136

Applicant after: Suzhou dimensional materials Co., Ltd.

Address before: 215400 Taicang city of Jiangsu Province Yanshan Mountain Road No. 136 (Grand Fangyuan Industrial Park)

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Application publication date: 20110119