CN201891180U - High-strength flame retardant heat insulation material withhigh heat insulation performance - Google Patents

High-strength flame retardant heat insulation material withhigh heat insulation performance Download PDF

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Publication number
CN201891180U
CN201891180U CN 201020623562 CN201020623562U CN201891180U CN 201891180 U CN201891180 U CN 201891180U CN 201020623562 CN201020623562 CN 201020623562 CN 201020623562 U CN201020623562 U CN 201020623562U CN 201891180 U CN201891180 U CN 201891180U
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China
Prior art keywords
layer
attached
heat insulation
proof
heat
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Expired - Fee Related
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CN 201020623562
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Chinese (zh)
Inventor
裴作清
马汝军
马昊
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Suzhou Junyue New Material Technology Co Ltd
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Suzhou Junyue New Material Technology Co Ltd
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Priority to CN 201020623562 priority Critical patent/CN201891180U/en
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Abstract

The utility model relates to a high-strength flame retardant heat insulation material with high heat insulation performance, which takes a flame retardant polyethylene foam layer as an intermediate base layer; a first aluminum film layer is attached on the upper surface of the flame retardant polyethylene foam layer; a second aluminum film layer is attached on the lower surface of the flame retardant polyethylene foam layer; a chemical cross-linked polyethylene (XPE) foam material layer is attached on the lower surface of the second aluminum film layer; a non-woven cloth or woven cloth layer is attached on the lower surface of the XPE foam material layer; and a third aluminum film layer is attached on the lower surface of the non-woven cloth or woven cloth layer. The heat insulation material is a novel heat insulation material which is high in strength, good in elasticity, oxidation-resistant, corrosion-resistant, good in heat insulation effect and high in flame retardant effect.

Description

A kind of high strength, high heat-insulating and fire-proof heat-barrier material
Technical field
The utility model relates to a kind of constructional materials, and particularly a kind of heat-barrier material of architectural usefulness belongs to building materials technology field.
Background technology
Along with expanding economy, the whole world increases day by day to the demand of the energy, and in the total energy consumption that constantly increases, building energy consumption accounts for 11%~25% of total energy consumption, and therefore, the building energy conservation problem has caused the attention of more and more countries.Facts have proved that the most direct effective method of building energy conservation is to use heat preserving and insulating material.Heat-barrier material commonly used at present mainly contains: foam glass, polystyrene foam plastics, nano-pore heat-barrier material, glue powder polyphenyl granule insulating material, thermal insulation mortar, gas concrete, litaflex, composite silicate thermal insulation material etc.But it generally has following shortcoming: at first, damping performance is poor, and easily oxidation and corrosion, and application life is short, loses waterproof, heat insulation function in general two to three years gradually.Secondly, this material extending and lower to tensile strength in length and breadth, contact with foreign matter or weight under easily break, and surface finish is relatively poor, the sunray reflectivity is lower; Heat insulation, heat-insulating property is relatively poor relatively.Once more, no air barrier layer in the middle of this material, interior outside energy forms convection current, conduction easily, thereby influences heat insulation usefulness; At last, burning easily, poor fire.
Therefore, develop a kind of not only had higher-strength and elasticity and can be anti-oxidant and corrosion-resistant but also have high effect of heat insulation, the novel heat insulation material of economy and durability is the relevant industries urgent problems.
The utility model content
The utility model purpose is to provide a kind of to have higher-strength and elasticity can the anti-oxidant and corrosion-resistant novel heat insulation material that also has high effect of heat insulation, economy and durability in order to overcome the deficiencies in the prior art.
For achieving the above object, the technical solution adopted in the utility model is: a kind of high strength, high heat-insulating and fire-proof heat-barrier material, and it is the intermediate base layer with the flame-proof polyethylene bubble layer, attached first aluminum membranous layer that is knotted on the upper surface of described flame-proof polyethylene bubble layer; Attached second aluminum membranous layer that is knotted of the soffit of described flame-proof polyethylene bubble layer, the attached XPE foamed material layer that is knotted of the soffit of described second aluminum membranous layer, attached nonwoven or the base fabric of being knotted on the soffit of described XPE foamed material layer, attached the 3rd aluminum membranous layer that is knotted on the soffit of described nonwoven or base fabric.
Preferably, described polyethylene anti-flaming bubble layer is made up of the air bladder that the blowing of polyethylene interpolation fire retardant forms, and the diameter of described air bladder is the 3-30 millimeter, highly is the 3-15 millimeter.
Preferably, the expansion ratio that described XPE foamed material layer is made by polyethylene is that the foamed cotton of 15-50 multiplying power is formed, and the height of described foamed cotton is the 3-15 millimeter.
Preferably, the thickness of described each aluminum membranous layer is the 6-30 micron, and the thickness of described woven cloth or nonwoven layer is the 10-100 micron.
Preferably, connect by the polyurethanes coupler between described XPE foamed material layer, flame-proof polyethylene bubble layer, each aluminum membranous layer, woven cloth or nonwoven layer are adjacent, the thickness of described polyurethanes coupler is the 5-30 micron.
Technique scheme has following beneficial effect: high strength, high heat-insulating and fire-proof heat-barrier material have made full use of base fabric or nonwoven layer high strength, good toughness and the high reflection of aluminium film and characteristics such as expanded material and the insulation of fire-retardant bubble floor height, particularly add fire retardant and make heat-barrier material also have high flame resistance when having highly corrosion resistant, high heat insulation, high-intensity performance.
Description of drawings
Below in conjunction with accompanying drawing technical solutions of the utility model are described further:
Fig. 1 is the structural representation of the utility model embodiment;
Wherein: 1, flame-proof polyethylene bubble layer; 2, first aluminum membranous layer; 3, second aluminum membranous layer; 4, XPE foamed material layer; 5, nonwoven or base fabric; 6, the 3rd aluminum membranous layer.
The specific embodiment
The utility model is described in further detail below in conjunction with drawings and the specific embodiments.
As shown in Figure 1, this high strength, high heat-insulating and fire-proof heat-barrier material are the intermediate base layer with flame-proof polyethylene bubble layer 1, and flame-proof polyethylene bubble layer 1 is made up of the air bladder that the polyethylene blowing forms, and the diameter of described air bladder is the 3-30 millimeter, highly is the 3-15 millimeter.Attached first aluminum membranous layer 2 that is knotted on the upper surface of described flame-proof polyethylene bubble layer 1; Attached second aluminum membranous layer 3 that is knotted of the soffit of described flame-proof polyethylene bubble layer 1, the attached XPE foamed material layer 4 that is knotted of the soffit of described second aluminum membranous layer 3, attached nonwoven or the base fabric 5 of being knotted on the soffit of described XPE foamed material layer 4, attached the 3rd aluminum membranous layer 6 that is knotted on the soffit of described nonwoven or base fabric 5.
The expansion ratio that XPE foamed material layer 4 is made by polyethylene is that the foamed cotton of 15-50 multiplying power is formed, and the height of described foamed cotton is the 3-15 millimeter.XPE is the processes for chemically crosslinked polyethylene expanded material, is to add crosslinking agent and blowing agent with ldpe resin to form through high temperature is continuous foamed, compares with EPE (physical blowing polyethylene), and tensile strength is higher, and abscess is thinner.
The thickness of each aluminum membranous layer is the 6-30 micron, and the thickness of woven cloth or nonwoven layer is the 10-25 micron.
Connect by the polyurethanes coupler between XPE foamed material layer, flame-proof polyethylene bubble layer, each aluminum membranous layer, woven cloth or nonwoven layer are adjacent, the thickness of described polyurethanes coupler is the 5-30 micron.
All additional proportion is 10% nano-meter flame retardants in XPE foamed material layer, flame-proof polyethylene bubble layer, woven cloth or nonwoven layer, can play better flame retardant effect like this.
This high strength, high heat-insulating and fire-proof heat-barrier material have made full use of base fabric or nonwoven layer high strength, good toughness and the high reflection of aluminium film and characteristics such as expanded material and the insulation of fire-retardant bubble floor height, particularly add fire retardant and make heat-barrier material also have high flame resistance when having highly corrosion resistant, high heat insulation, high-intensity performance.
Below only be concrete exemplary applications of the present utility model, protection domain of the present utility model is not constituted any limitation.All employing equivalents or equivalence are replaced and the technical scheme of formation, or any to move mode dull and stereotyped described in the utility model, all drop within the utility model rights protection scope.

Claims (5)

1. a high strength, high heat-insulating and fire-proof heat-barrier material, it is the intermediate base layer with the flame-proof polyethylene bubble layer, it is characterized in that: attached first aluminum membranous layer (2) that is knotted on the upper surface of described flame-proof polyethylene bubble layer (1); Attached second aluminum membranous layer (3) that is knotted of the soffit of described flame-proof polyethylene bubble layer (1), the attached XPE foamed material layer (4) that is knotted of the soffit of described second aluminum membranous layer (3), attached nonwoven or the base fabric (5) of being knotted on the soffit of described XPE foamed material layer (4), attached the 3rd aluminum membranous layer (6) that is knotted on the soffit of described nonwoven or base fabric (5).
2. high strength according to claim 1, high heat-insulating and fire-proof heat-barrier material, it is characterized in that: described polyethylene anti-flaming bubble layer is made up of the air bladder that the blowing of polyethylene interpolation fire retardant forms, the diameter of described air bladder is the 3-30 millimeter, highly is the 3-15 millimeter.
3. high strength according to claim 1, high heat-insulating and fire-proof heat-barrier material is characterized in that: the expansion ratio that described XPE foamed material layer is made by polyethylene is that the foamed cotton of 15-50 multiplying power is formed, and the height of described foamed cotton is the 3-15 millimeter.
4. according to claim 2 or 3 described high strength, high heat-insulating and fire-proof heat-barrier material, it is characterized in that: described woven cloth or nonwoven layer are made by polyethylene or polypropylene, and thickness is the 10-100 micron, and the thickness of described aluminum membranous layer is the 6-30 micron.
5. high strength according to claim 1, high heat-insulating and fire-proof heat-barrier material, it is characterized in that: connect by the polyurethanes coupler between described XPE foamed material layer, flame-proof polyethylene bubble layer, each aluminum membranous layer, woven cloth or nonwoven layer are adjacent, the thickness of described polyurethanes coupler is the 5-30 micron.
CN 201020623562 2010-11-25 2010-11-25 High-strength flame retardant heat insulation material withhigh heat insulation performance Expired - Fee Related CN201891180U (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102477773A (en) * 2010-11-25 2012-05-30 苏州市君悦新材料科技有限公司 High-strength and high-insulation flame-retardant heat-insulating material
CN102627008A (en) * 2012-04-25 2012-08-08 苏州市莱赛电车技术有限公司 Composite heating insulation sheet material
CN104013146A (en) * 2014-06-24 2014-09-03 公安部上海消防研究所 Heat insulation layer material for firemen fire protective clothing
CN105155764A (en) * 2015-09-24 2015-12-16 北京宝丰钢结构工程有限公司 Vacuum heat insulation color steel plate
CN105500829A (en) * 2015-11-27 2016-04-20 太仓清宇特种塑料有限公司 Antibacterial and mildewproof heat insulation material
CN107286407A (en) * 2017-07-27 2017-10-24 浙江德清金威建筑保温材料有限公司 A kind of rubber-plastic insulating insulation material

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102477773A (en) * 2010-11-25 2012-05-30 苏州市君悦新材料科技有限公司 High-strength and high-insulation flame-retardant heat-insulating material
CN102627008A (en) * 2012-04-25 2012-08-08 苏州市莱赛电车技术有限公司 Composite heating insulation sheet material
CN104013146A (en) * 2014-06-24 2014-09-03 公安部上海消防研究所 Heat insulation layer material for firemen fire protective clothing
CN105155764A (en) * 2015-09-24 2015-12-16 北京宝丰钢结构工程有限公司 Vacuum heat insulation color steel plate
CN105500829A (en) * 2015-11-27 2016-04-20 太仓清宇特种塑料有限公司 Antibacterial and mildewproof heat insulation material
CN107286407A (en) * 2017-07-27 2017-10-24 浙江德清金威建筑保温材料有限公司 A kind of rubber-plastic insulating insulation material

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Granted publication date: 20110706

Termination date: 20121125