CN202324224U - Composite board containing thermal insulation mortar layers - Google Patents
Composite board containing thermal insulation mortar layers Download PDFInfo
- Publication number
- CN202324224U CN202324224U CN201120438011XU CN201120438011U CN202324224U CN 202324224 U CN202324224 U CN 202324224U CN 201120438011X U CN201120438011X U CN 201120438011XU CN 201120438011 U CN201120438011 U CN 201120438011U CN 202324224 U CN202324224 U CN 202324224U
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- China
- Prior art keywords
- insulation layer
- thermal insulation
- panels
- insulation
- insulation mortar
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Abstract
The utility model discloses a composite board containing thermal insulation mortar layers. The composite board comprises two panels (1) and a thermal insulation layer (2), wherein the two panels (1) are fixed on the front face and the rear face of the thermal insulation layer (2) and are adhered to the thermal insulation layer (2) through thermal insulation mortar layers (3). According to the composite board, the thermal insulation mortar layers are used for adhesion in place of the conventional cement mortar layer; the thermal insulation mortar is compounded with the structure of a thermal insulation wall body for use; the advantages of the thermal insulation mortar and the structure of the thermal insulation wall body are combined; and the composite board has high air permeability and radiation protection.
Description
Technical field
The utility model relates to a kind of constructional materials, relates in particular to the composite plate that a kind of exterior wall uses.
Background technology
Along with expanding economy, the violent increase of energy consumption becomes the major issue that the mankind have to face.Building, industry, traffic are three big fields of China's power consumption, and wherein proportion is generally at 30-40% in the whole energy consumption of the mankind for building energy consumption, and the overwhelming majority is the energy consumption of heating and air-conditioning, so building energy conservation is significant.The scheme that prior art is used for exterior-wall heat insulation mainly contains two kinds: a kind of is directly to select the heat-preserving wall composite plate structure for use; Another kind is at wall external layer brushing one deck thermal insulation mortar.
Thermal insulation mortar is to be aggregate with various light materials, is gelating material with cement, admixes some property-modifying additives, mixes and a kind of premixing dry powder and mortar of processing through manufacturing enterprise.Be mainly used in building exterior wall heat preserving, have advantages such as easy construction, good endurance, but often exist in solidify after cracking, problem such as intensity is low, making just needs brushing again at set intervals.Though existing various solutions to these problems are compared with directly selecting heat-insulating wall structure for use, still are not so good as.
The technical scheme that existing exterior-wall heat insulation composite plate adopts panel and insulation layer to bond reaches and can be incubated and can reach certain physical intensity; The panel of the composite plate of prior art and insulation layer generally all adopt cement layer to bond.Though this scheme is general, cement-bonded also have gas permeability poor, can not radiation proof, problem such as heat insulation effect difference.
The utility model content
To the deficiency of prior art, the utility model provides a kind of heat-insulation mortar bed composite plate that contains that has combined the thermal insulation mortar advantage.
The utility model solves the technical scheme that its technical problem adopted:
A kind ofly contain heat-insulation mortar bed composite plate, comprise two panels and insulation layer, described two panels are positioned at the two sides, front and back of insulation layer, it is characterized in that: described two panels are through heat-insulation mortar bed and insulation layer bonding.
Preferably, described heat-insulation mortar bed one side near insulation layer must be provided with fin at interval.
Preferably, the described fin that is arranged on two sides before and after the insulation layer is corresponding one by one.
Preferably, the height of described fin is 3 ~ 10mm.
Preferably, the thickness of described panel is 2 ~ 20mm.
Preferably, the thickness of described insulation layer is 30 ~ 70mm.
Preferably, described panel is selected calcium silicate board with microporous or glass magnesium plate for use.
Preferably, described insulation layer is selected rock wool, mineral wool or calcium silicates for use.
Preferably, described two panels are parallel; Described insulation layer is fibre layered structure; The fibrage of insulation layer is perpendicular to two panels.
Compared with prior art; The composite plate of the utility model has following useful technique effect: 1, adopted heat-insulation mortar bed the bonding, replaced the traditional cement screed, the compound use of thermal insulation mortar and heat-insulating wall structure; In conjunction with both advantages, good permeability, radiation proof; 2, improved the structure of polymer mortar layer in the preferred version, prevented the dislocation between panel and the insulation layer or come off, made that bonding is more reliable more by force; 3, preferred version the inside plate has adopted calcium silicate board with microporous or glass magnesium plate, makes the product of the utility model that the fireproof effect arranged; 4, insulation layer has adopted the scheme of fibrage perpendicular to panel in the preferred version, makes that the product impact resistance of the utility model is stronger.
Description of drawings
Fig. 1 is the cross-sectional view of the utility model composite plate.
The specific embodiment
To combine the accompanying drawing and the specific embodiment that the utility model is further specified below.
Please refer to Fig. 1, the shock resistance thermal insulating composite panel of the utility model comprises two panels 1 and insulation layer 2, and described two panels 1 are fixed in the two sides, front and back of insulation layer 2, also are provided with heat-insulation mortar bed 3 between described two panels 1 and the insulation layer 2.
Two panels 1 are selected calcium silicate board with microporous or glass magnesium plate for use.The thickness of panel 1 is 2 ~ 20mm, in implementation process according to the thickness of concrete impact strength requirement of strength Selection Floater 1.Insulation layer 2 is selected rock wool or mineral wool for use.The thickness of insulation layer 2 is 30 ~ 70mm, in implementation process, requires to select the thickness of insulation layer 2 according to concrete thermal resistance.
In the present embodiment, panel 1 is selected glass magnesium plate for use, and the thickness that is bonded in the panel 1 on two sides, insulation layer 2 front and back is respectively 5.5mm and 5mm.Insulation layer 2 is selected rock wool for use, and the thickness of insulation layer 2 is 50mm.
Preferably, heat-insulation mortar bed 3 one sides near insulation layer 2 must be provided with fin 31 at interval.The fin 31 that is arranged on two sides, insulation layer 2 front and back is corresponding one by one.The height of described fin 31 is 3 ~ 10mm, and the height of fin 31 is 7mm in the present embodiment.
Preferably, described two panels 1 are parallel, and insulation layer 2 is fibre layered structure; The fibrage of insulation layer 2 is perpendicular to two panels 1.
The composite plate insulation layer of the utility model has adopted heat-insulation mortar bed the bonding, has replaced the traditional cement screed, and the compound use of thermal insulation mortar and heat-insulating wall structure is in conjunction with both advantages, good permeability, radiation proof; Improved the structure of polymer mortar layer, prevented the dislocation between panel and the insulation layer or come off, made that bonding is more reliable more by force; Panel has adopted calcium silicate board with microporous or glass magnesium plate, makes the product of the utility model that the fireproof effect arranged; Insulation layer has adopted the scheme of fibrage perpendicular to panel, makes that the product impact resistance of the utility model is stronger.
The foregoing description is the utility model preferred implementation, and all its principles are identical with present embodiment or approximate with basic structure, all within the utility model protection domain.
Claims (9)
1. one kind contains heat-insulation mortar bed composite plate; Comprise two panels (1) and insulation layer (2); Described two panels (1) are fixed in the two sides, front and back of insulation layer (2), it is characterized in that: described two panels (1) are through heat-insulation mortar bed (3) and insulation layer (2) bonding.
2. composite plate according to claim 1 is characterized in that: described heat-insulation mortar bed (3) must be provided with fin (31) at interval near the one side of insulation layer (2).
3. composite plate according to claim 2 is characterized in that: the described fin (31) that is arranged on two sides before and after the insulation layer (2) is corresponding one by one.
4. according to claim 2 or 3 described composite plates, it is characterized in that: the height of described fin (31) is 3 ~ 10mm.
5. composite plate according to claim 1 is characterized in that: the thickness of described panel (1) is 2 ~ 20mm.
6. composite plate according to claim 1 is characterized in that: the thickness of described insulation layer (2) is 30 ~ 70mm.
7. according to claim 1 or 5 described composite plates, it is characterized in that: described panel (1) is selected calcium silicate board with microporous or glass magnesium plate for use.
8. according to claim 1 or 6 described composite plates, it is characterized in that: described insulation layer (2) is selected rock wool, mineral wool or calcium silicates for use.
9. composite plate according to claim 1 is characterized in that: described two panels (1) are parallel; Described insulation layer (2) is fibre layered structure; The fibrage of insulation layer (2) is perpendicular to two panels (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201120438011XU CN202324224U (en) | 2011-11-08 | 2011-11-08 | Composite board containing thermal insulation mortar layers |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201120438011XU CN202324224U (en) | 2011-11-08 | 2011-11-08 | Composite board containing thermal insulation mortar layers |
Publications (1)
Publication Number | Publication Date |
---|---|
CN202324224U true CN202324224U (en) | 2012-07-11 |
Family
ID=46436207
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201120438011XU Expired - Fee Related CN202324224U (en) | 2011-11-08 | 2011-11-08 | Composite board containing thermal insulation mortar layers |
Country Status (1)
Country | Link |
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CN (1) | CN202324224U (en) |
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2011
- 2011-11-08 CN CN201120438011XU patent/CN202324224U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
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: 20120711 Termination date: 20161108 |
|
CF01 | Termination of patent right due to non-payment of annual fee |