CN202324479U - Low-carbon fire-resistance, thermal-insulation and decoration integrated board - Google Patents

Low-carbon fire-resistance, thermal-insulation and decoration integrated board Download PDF

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Publication number
CN202324479U
CN202324479U CN2011204815520U CN201120481552U CN202324479U CN 202324479 U CN202324479 U CN 202324479U CN 2011204815520 U CN2011204815520 U CN 2011204815520U CN 201120481552 U CN201120481552 U CN 201120481552U CN 202324479 U CN202324479 U CN 202324479U
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CN
China
Prior art keywords
layer
inorganic
carbon
photocuring
low
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Expired - Fee Related
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CN2011204815520U
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Chinese (zh)
Inventor
李欣涛
许鑫华
刘全欣
方海东
王学良
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Easy Virtue (tianjin) Environmental Protection Building Material Co Ltd
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Easy Virtue (tianjin) Environmental Protection Building Material Co Ltd
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Priority to CN2011204815520U priority Critical patent/CN202324479U/en
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Publication of CN202324479U publication Critical patent/CN202324479U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a low-carbon fire-resistance, thermal-insulation and decoration integrated board which is characterized by comprising a decorative surface layer, an inorganic mineral tailing surface course, a first-layer inorganic structure fiber web layer, an inorganic organic composite thermal-insulation sandwich layer, a lower-layer inorganic structure fiber web layer and an inorganic mineral tailing bottom layer, which are connected in sequence from the top down. The low-carbon fire-resistance, thermal-insulation and decoration integrated board has the advantages of favorable thermal insulation performance, decoration, mechanical property, flame retardant property and the like.

Description

Low-carbon (LC) fireproof heat insulating decorative integrated plate
Technical field
The utility model belongs to building decorative plates, relates in particular to a kind of low-carbon (LC) fireproof heat insulating decorative integrated plate that is mainly used in architectural exterior insulation.
Background technology
In recent years, China's construction business development has greatly improved the living condition and the working environment of urban and rural residents rapidly.But the most of building heat preservation of China is heat insulation not good with tightness, and the heating heating system falls behind, and causes China's building energy consumption high.According to statistics; The specific energy consumption of China, exterior wall is flat 4-5 times of developed country's par, the roof is 2.5-5.5 times; Exterior window is 1.5-2.5 times; The door and window tightness is 3-6 times, and wherein the exterior wall energy consumption accounts for total energy consumption proportion and reaches 50-60%, so the skin heat-insulation system is significant for reducing building energy consumption.
Current, the building heat preserving structure of China mainly comprises outer insulation pattern, interior insulation pattern and sandwich heat preservation pattern.Show that through building energy conservation test for many years the advantage of outer insulation pattern is the most remarkable, become the principal mode and the developing direction of China's wall thermal insulating gradually.It is a lot of to be used for the heat insulating material kind at present, mainly comprises rock wool, polystyrene foam plastics, foam cement or the like.Mostly the heat insulating material that wherein is widely used in construction work is molded polystyrene plate (EPS), extruded polystyrene plate (XPS) and polyurethane thermal insulation system (PU) etc.Because the market negligence of management, manufacturer is very different, and the insulation and the fireproof performance of most products do not reach national standard.Particularly domestic recurring owing to the heat insulating material fire protection flame retarding large-sized fire that causes not up to standard causes very big infringement for the people's the security of the lives and property.Up-to-date " about the notice of further clear and definite civilian construction heat insulating material for external fire supervision management relevant requirements " that issues of the Ministry of Public Security stipulated clearly that especially it is the material of A level that the civilian construction heat insulating material for external must adopt combustibility.Though make the EPS plate reach the difficult combustion of B2 level through in the foaming polyphenyl, adding graphite, but still can not satisfy application requirements.Therefore, according to the fireproof heat insulating standard of building, take corresponding technology research and development and produce the heat insulating material that satisfies insulation, fire prevention, decoration integrated requirement; To realize low-carbon (LC), environmental protection; The target that reduces energy consumption and assure the safety for life and property of the people is imperative, extremely urgent.
The utility model content
The purpose of the utility model is to overcome the deficiency of above-mentioned technology, and a kind of low-carbon (LC) fireproof heat insulating decorative integrated plate is provided, can the recruitment mining wastes the synthetic use of environmental protection low-carbon (LC) products substitution lithotome in building and ornament materials; Solved thoroughly that at present existing external insulating system for thinly plastered external wall exists easy to crack, be prone to come off, problem such as poor durability; Captured the difficult problem of current building heat preservation ornament materials security against fire.
The utility model is for realizing above-mentioned purpose; Adopt following technical scheme: a kind of low-carbon (LC) fireproof heat insulating decorative integrated plate is characterized in that: comprise the finish coat, inorganic mineral tailing surface layer, first floor inorganic structure fiber web layer, inorganic organic complex heat-preservation sandwich layer, lower floor's inorganic structure fiber web layer and the inorganic mineral tailing bottom that connect successively from top to bottom.
Said finish coat comprises from bottom to top that the UV photocuring bleeding agent layer, the UV photocuring that connect are successively repaiied in look fluorine carbon enamelled coating, the mute light of UV photocuring and is coated with fluorine carbon enamelled coating and UV light cured fluorine carbon finishing paint finish coat.
Said UV photocuring is repaiied to be coated with in look fluorine carbon enamelled coating, the mute light of UV photocuring and is respectively equipped with single particle size or the composite cenosphere that gets of multiple particle diameter in fluorine carbon enamelled coating and the UV light cured fluorine carbon finishing paint finish coat.
The diameter of said cenosphere is 5 μ m-10 μ m.
Said UV photocuring bleeding agent layer thickness 15-25 μ m, the UV photocuring is repaiied look fluorine carbon thickness of paint layer 10-20 μ m, is coated with fluorine carbon thickness of paint layer 15-25 μ m, UV light cured fluorine carbon finishing paint finish coat thickness 10-15 in the mute light of UV photocuring.
Said inorganic structure fiber web layer is made up of inorganic glass fiber net and mineral wool fiber net, and it is identical with inorganic mineral tailing surface layer formation that said inorganic mineral tailing bottom constitutes.
Beneficial effect: be mainly used in the architectural exterior insulation field of materials.Except having good heat-insulating property and ornamental, also have excellent mechanical performances, fire resistance etc.Utilize the industry and mining discarded object; Can the recruitment mining wastes the synthetic use of environmental protection low-carbon (LC) products substitution lithotome in building and ornament materials; Dissolve in the problem solving the industry and mining discarded object, reduced in the lithotome recovery process destruction ecological environment.Solved thoroughly that at present existing external insulating system for thinly plastered external wall exists easy to crack, be prone to come off, problem such as poor durability because its fireproof performance reaches the A level and do not fire, thoroughly solved present puzzlement insider's security against fire problem.
Description of drawings
Fig. 1 is the structural representation of the utility model.
The specific embodiment
The specific embodiment below in conjunction with accompanying drawing and preferred embodiment detailed description the utility model.As shown in the figure; A kind of low-carbon (LC) fireproof heat insulating decorative integrated plate comprises from top to bottom the finish coat 1 that connects successively, inorganic mineral tailing surface layer 2, first floor inorganic structure fiber web layer 3, inorganic organic complex heat-preservation sandwich layer 4, lower floor's inorganic structure fiber web layer 5 and bottom 6.
Said finish coat comprises from bottom to top that the UV photocuring bleeding agent layer, the UV photocuring that connect are successively repaiied in look fluorine carbon enamelled coating, the mute light of UV photocuring and is coated with fluorine carbon enamelled coating and UV light cured fluorine carbon finishing paint finish coat.
Said UV photocuring is repaiied to be coated with in look fluorine carbon enamelled coating, the mute light of UV photocuring and is respectively equipped with single particle size or the composite cenosphere that gets of multiple particle diameter in fluorine carbon enamelled coating and the UV photocuring finish paint fluorine carbon finish coat.The diameter of said cenosphere is 5 μ m-10 μ m.Said UV photocuring bleeding agent underlayer thickness 15-25 μ m, the UV photocuring is repaiied look fluorine carbon thickness of paint layer 10-20 μ m, is coated with fluorine carbon thickness of paint layer 15-25 μ m, UV photocuring finish paint fluorine carbon finish coat thickness 10-15 in the mute light of UV photocuring.Said inorganic structure fiber web layer is made up of inorganic glass fiber net and mineral wool fiber net, and said inorganic mineral tailing bottom constitutes and constitutes with inorganic mineral tailing surface layer.
Be added with reflective heat-insulation paint in each coating in the finish coat except that UV photocuring bleeding agent layer; Said reflective heat-insulation paint is in the suspension of hollow glass micropearl and surfactant SDS, to add titanium sulfate solution as the titanium source; Use the pH value 7-7.6 of ammoniacal liquor maintenance system, add TiO 2Through 800-1200 ℃; 1 minute to 2 hours calcining obtains TiO 2The hollow glass micropearl of coat handling, and it is added on processes the reflective heat-insulation paint that has reflection, intercepts the solar radiation ability in the UV light cured fluorine carbon resin emulsion.
Wherein, adopt the reflective insulation coating of the cenosphere preparation of single particle size, have a large amount of gaps in the coating after solidifying, be unfavorable for the obstruct of heat, and anti-permeability performance is relatively poor.Adopt multiple particle diameter cenosphere composite, be the main body, utilize the cenosphere of small particle diameter to fill the space, can improve the infrared external reflection ability of heat insulating coat effectively with the cenosphere of big particle diameter.
Inorganic organic complex heat-preservation sandwich layer reaches the fireproof function by inorganic coagulation material as continuous phase, and the inorganic or organic foam material of polystyrene dragon pearl or cenosphere or enhancing foam glass plays the effect that is incubated and alleviates as sandwich layer or core material.
In inorganic organic complex heat-preservation sandwich layer manufacturing process, the existing way of polystyrene dragon pearl particle in insulation layer has following several kinds: 1, single size polystyrene dragon pearl uniform particles be present in inorganic mutually in; 2, multiple size polystyrene dragon pearl particle mix be present in inorganic mutually in; 3, single size polystyrene dragon pearl grain density concentration gradients be present in inorganic mutually in; 4, multiple size polystyrene dragon pearl grain density gradient be present in inorganic mutually in.Single size polystyrene dragon pearl particle diameter is respectively single 1mm or 2mm or 3mm or 4mm raw material and evenly is stirred in the inorganic slurry alone by adding proportion; The different-diameter of multiple size polystyrene dragon pearl particle 1mm, 2mm, 3mm or 4mm mix be present in inorganic mutually in.
The inorganic structure fiber web layer mainly plays support structure and humidification, makes low-carbon (LC) fireproof heat insulating decorative integrated plate not fragile in processing, installation and use.
Low-carbon (LC) fireproof heat insulating decorative integrated plate technical indicator and specification:
1, it is fire-retardant that fireproof performance reaches the A level;
2, coefficient of thermal conductivity should be less than 0.06 W/ (mK);
3, MOR is greater than >=20MPa
4, the top layer decorative cover has the skin texture and the performance of lithotome or timber
Sheet material specification (long * wide * thick): 1200/2400 * 600 * 30-100mm;
1200×800×30-100mm
The above only is the preferred embodiment of the utility model, is not the structure of the utility model is done any pro forma restriction.Every technical spirit according to the utility model is to any simple modification, equivalent variations and modification that above embodiment did, all still belongs in the scope of technical scheme of the utility model.

Claims (6)

1. a low-carbon (LC) fireproof heat insulating decorative integrated plate is characterized in that: comprise the finish coat, inorganic mineral tailing surface layer, first floor inorganic structure fiber web layer, inorganic organic complex heat-preservation sandwich layer, lower floor's inorganic structure fiber web layer and the inorganic mineral tailing bottom that connect successively from top to bottom.
2. low-carbon (LC) fireproof heat insulating decorative integrated plate according to claim 1 is characterized in that: said finish coat comprises from bottom to top that the UV photocuring bleeding agent layer, the UV photocuring that connect are successively repaiied in look fluorine carbon enamelled coating, the mute light of UV photocuring and is coated with fluorine carbon enamelled coating and UV light cured fluorine carbon finishing paint finish coat.
3. low-carbon (LC) fireproof heat insulating decorative integrated plate according to claim 2 is characterized in that: said UV photocuring is repaiied to be coated with in fluorine carbon enamelled coating and the UV light cured fluorine carbon finishing paint finish coat in look fluorine carbon enamelled coating, the mute light of UV photocuring and is respectively equipped with single particle size or the composite cenosphere of multiple particle diameter.
4. low-carbon (LC) fireproof heat insulating decorative integrated plate according to claim 3 is characterized in that: the diameter of said cenosphere is 5 μ m-10 μ m.
5. low-carbon (LC) fireproof heat insulating decorative integrated plate according to claim 2; It is characterized in that: said UV photocuring bleeding agent layer thickness 15-25 μ m; The UV photocuring is repaiied look fluorine carbon thickness of paint layer 10-20 μ m; Be coated with fluorine carbon thickness of paint layer 15-25 μ m, UV light cured fluorine carbon finishing paint finish coat thickness 10-15 in the mute light of UV photocuring.
6. low-carbon (LC) fireproof heat insulating decorative integrated plate according to claim 1 is characterized in that: said inorganic structure fiber web layer is made up of inorganic glass fiber net and mineral wool fiber net, and it is identical with inorganic mineral tailing surface layer formation that said inorganic mineral tailing bottom constitutes.
CN2011204815520U 2011-11-28 2011-11-28 Low-carbon fire-resistance, thermal-insulation and decoration integrated board Expired - Fee Related CN202324479U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011204815520U CN202324479U (en) 2011-11-28 2011-11-28 Low-carbon fire-resistance, thermal-insulation and decoration integrated board

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Application Number Priority Date Filing Date Title
CN2011204815520U CN202324479U (en) 2011-11-28 2011-11-28 Low-carbon fire-resistance, thermal-insulation and decoration integrated board

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102400530A (en) * 2011-11-28 2012-04-04 易科美德(天津)环保建材有限公司 Low-carbon fireproof thermal insulation decoration integrated board and preparation method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102400530A (en) * 2011-11-28 2012-04-04 易科美德(天津)环保建材有限公司 Low-carbon fireproof thermal insulation decoration integrated board and preparation method thereof

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120711

Termination date: 20141128

EXPY Termination of patent right or utility model