CN103362268B - A kind of Side fascia - Google Patents
A kind of Side fascia Download PDFInfo
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- CN103362268B CN103362268B CN201310307971.6A CN201310307971A CN103362268B CN 103362268 B CN103362268 B CN 103362268B CN 201310307971 A CN201310307971 A CN 201310307971A CN 103362268 B CN103362268 B CN 103362268B
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- hole
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- side fascia
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- dimensional hollow
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Abstract
The present invention relates to a kind of Side fascia, mainly by least two compound rigid mesh rack-layer of three-dimensional hollow fabric poststacks by bonding agent successively bonding forming, the compound rigidity rack of described three-dimensional hollow fabric is mainly by solidifying and make after the three dimension stereo fabric dipping that adopts fibrous material to be woven into, resin-coated layer, and the compound rigidity rack of described three-dimensional hollow fabric is densely covered with through hole on bonding panel mutually; When bonding, described bonding agent is through described through hole and condense at the back of described panel the piece that diameter is greater than described through-hole diameter. Multiple such pieces just can be by two compound rigidity racks lockings of three-dimensional hollow fabric as " rivet " one by one, strengthen greatly the anti-vertical resolution after two compound rigidity racks of three-dimensional hollow fabric are bonding, " rivet " also provides the heat insulating ability of layering sealing one by one, strengthened the heat-insulating property of Side fascia.
Description
Technical field
The present invention relates to a kind of Side fascia, be specifically related to a kind of Side fascia of being made by the compound rigidity rack of three-dimensional hollow fabric.
Background technology
The composite plate that the inorfil three dimensional fabric that is representative by basalt fibre is made after solidifying not only has the feature that quality is light, fire line is good, also can bring good sound insulation and heat insulation effect because three dimensional fabric has unique hollow structure, therefore become the Side fascia that has application prospect. In addition, in daily production, usually need stacked polylith single layer composite to obtain better heat-insulating property and better soundproof effect, but two stacked composite plate faying faces are all very smooth mutually, delamination resistance can be bad (even if it is also undesirable that the effect of bonding anti-layering is carried out carrying out after hacking processing in its surface) also easily comes off after bonding, has potential safety hazard.
In construction, the method that this three-dimensional composite board is installed is generally two kinds of dry-hanging method and wet combining methods, between the warming plate that employing dry-hanging method is installed and body of wall, be provided with keel shoe, the hollow structure of keel shoe easily forms stack effect has combustion-supporting hidden danger also easily to have cold bridge, and the relative dry-hanging method of wet combining method has the advantages that construction cost is cheap, it is only 1/3rd to 1/10th of dry-hanging method. But adopt wet combining method also to have its shortcoming, because traditional composite plate only has smooth surface. Therefore in wet combining, the smooth surface of composite plate is difficult for forming contacting of close and firm with coat of plaster, is unfavorable for this composite plate to be installed in concrete and to go securely. So, when three dimensional fabric hollow heat preservation board is installed, be generally forced to select cladding form.
Therefore, find one and have powerful anti-vertical resolution, easily separated coming off not, and the Side fascia that can form strong bonded with coat of plaster in the time that wet combining is installed becomes the problem in the urgent need to being resolved.
Summary of the invention
The first technical problem that the present invention solves is: propose one and have powerful anti-vertical resolution, not segregative Side fascia between layers.
The second technical problem that the present invention solves is: this Side fascia can form firmly and be combined with bond layer in the time being installed on body of wall.
The present invention is that the technical scheme that solves the first technical problem proposition is: a kind of Side fascia, mainly by the compound rigid mesh rack-layer of the three-dimensional hollow fabric poststack of at least two by bonding agent successively bonding forming, the compound rigidity rack of described three-dimensional hollow fabric is mainly by solidifying and make after the three dimension stereo fabric impregnating resin that adopts fibrous material to be woven into, the compound rigidity rack of described three-dimensional hollow fabric comprises surface layer, backing layer and the fiber being connected between described surface layer and backing layer are connected warp, the compound rigidity rack of adjacent described three-dimensional hollow fabric is mutually all densely covered with the first through hole on bonding two bonding panels, when bonding, described bonding agent is through described the first through hole and condense at the back side of described panel the coagula that diameter is greater than described the first through-hole diameter.
The present invention is that the technical scheme that solves the second technical problem proposition is: described Side fascia is densely covered with the second through hole for being installed on the side plate on body of wall; When described Side fascia is installed on body of wall by bonding mortar, described bonding mortar is through described the second through hole and condense at the described side plate back side coagula that diameter is greater than described the second through-hole diameter.
The invention has the beneficial effects as follows:
Mentioned Side fascia in the present invention, creationary densely covered multiple through holes are set on the panel of otherwise smooth, be coated in two bonding agents between the compound rigidity rack of three-dimensional hollow fabric and be applied to respectively under two blocks of a pair of pressure on the compound rigidity rack of three-dimensional hollow fabric, through the through hole on panel and condense in the through hole of back side of panel and form the piece that diameter is one by one greater than through-hole diameter. After bonding agent solidifies, multiple such pieces just can be by two compound rigidity racks lockings of three-dimensional hollow fabric as " rivet " one by one, strengthened greatly the anti-vertical resolution after two compound rigidity racks of three-dimensional hollow fabric are bonding, thereby this Side fascia has good anti-vertical resolution. In actual stretch-draw experiment, find: even the connection warp of the compound rigidity rack of aforementioned three-dimensional hollow fabric is broken and can not be made two compound rigidity racks of three-dimensional hollow fabric separate along its bonding place. And " rivet " that bonding agent forms is except for closely connecting between enhancement Layer, and the heat insulating ability of layering sealing is also provided, and has strengthened the heat-insulating property of Side fascia.
The through hole of offering in the bottom of Side fascia also, for Side fascia pastes metope, is provided convenience. In like manner, bonding mortar, through densely covered aperture, forms rivet effect, this rivet effect, bonding force and the anti-vertical resolution of excellence can form installation time. Form excellent bonding force, can remove other warming plates from and must settle and be fixed on metope rivet operation, a step is pasted and is put in place.
Having improved of technique scheme:
In order further to strengthen heat insulation effect, and ensure the anti-vertical resolution of Side fascia, on described Side fascia, on another side plate relative with described side plate, be densely covered with third through-hole and be bonded with inorganic phase-changing material heat-insulation layer by bonding agent, described bonding agent, through after described third through-hole, condenses at the back side of described another side plate the coagula that diameter is greater than described third through-hole diameter.
In order to increase the aesthetic property of the Side fascia in the present invention, on the outer surface of described inorganic insulating layer or slurry, be also provided with decorative layer. Further improving and having decorative layer: described decorative layer is true mineral varnish layer.
Equally also can be, on described Side fascia, on another side plate relative with described side plate, be densely covered with third through-hole and be coated with polyphenyl particle heat-insulating mortar, described thermal insulation mortar condenses at the back side of described another side plate the coagula that diameter is greater than described third through-hole diameter through after described third through-hole.
In the present invention, mentioned resin can be phenolic resins, unsaturated-resin, epoxy resin, inorganic silicon or extraordinary inorganic salts bonding agent; Fibrous material is inorfil, and inorfil is basalt fibre.
Brief description of the drawings
Below in conjunction with accompanying drawing, Side fascia of the present invention is described further.
Fig. 1 is the structural representation of the Side fascia in the embodiment of the present invention one.
Fig. 2 is the panel construction schematic diagram of the compound rigidity rack of three-dimensional hollow fabric both sides in Fig. 1.
Fig. 3 is the structural representation of Side fascia in embodiment bis-.
Fig. 4 is the structural representation of the compound rigidity rack of existing three-dimensional hollow fabric.
Detailed description of the invention
Embodiment mono-
Shown in Fig. 1, the Side fascia in the present embodiment by the two compound rigid mesh rack-layer of three-dimensional hollow fabric poststacks by bonding agent successively bonding forming, certainly can be folded bonding by the compound rigid mesh rack-layer of three-dimensional hollow fabric of polylith more. The compound rigidity rack of aforesaid three-dimensional hollow fabric mainly, by solidifying and make after the three dimension stereo fabric dipping that adopts fibrous material to be woven into, resin-coated layer, is preferably basalt fibre in the present embodiment.
Three dimension stereo fabric is mainly made up of the surface layer being woven into by basalt fibre yarn, the basalt fibre connection warp 2 of uncured and the backing layer being woven into by basalt fibre yarn. Three dimension stereo fabric once weaves out by rapier loom. In the time of braiding, taking basalt fibre yarn as main braided material, at surface layer, continuously arranged several warps and independent another root warp and surface layer fabric parallel form friendship volume; At the backing layer of fabric, continuously arranged warp and independent another root warp and backing layer fabric parallel form friendship volume; Between the surface layer and backing layer of fabric, connect warp 2 by basalt fibre and form the connection to surface layer parallel and backing layer parallel, after solidifying, the compound rigidity rack of three-dimensional hollow fabric comprises panel, backboard and the fiber that is connected between described panel and backboard is connected warp 2.
As shown in Figure 2, in the time of braiding three dimension stereo fabric, there is object to reduce the count of surface layer and backing layer, form multiple loose meshes. Three dimension stereo fabric has at impregnation, the curing rear compound rigidity rack of three-dimensional hollow fabric forming the top panel, the bottom panel that are formed by fabric face layer, backing layer, and aforementioned mesh just forms the first through hole 4 gathering on panel after solidifying. Can certainly be that the artificial perforate of the compound rigidity rack of three-dimensional hollow fabric that does not have a through hole by tradition is made.
Again two compound rigid mesh rack-layers of above-mentioned three-dimensional hollow fabric are stacked, and by resin 5(or other bonding agent) successively the compound rigidity rack of these two three-dimensional hollow fabric is carried out bondingly, make the Side fascia in the present invention after bonding. Resin 5 is after the first through hole 4 through on the compound rigidity rack of three-dimensional hollow fabric and be frozen into the coagula 6 that diameter is greater than the first through-hole diameter at the back side of panel under pressure. These coagulas by two compound rigidity racks lockings of three-dimensional hollow fabric, have been strengthened greatly the anti-vertical resolution after two compound rigidity racks of three-dimensional hollow fabric are bonding as " rivet " one by one.
Embodiment bis-
As shown in Figure 3, on the basis of embodiment mono-, aforementioned Side fascia is densely covered with the second through hole for being installed on the side plate 3 on body of wall, in the time that Side fascia is installed on body of wall by bonding mortar, bonding mortar is through the second through hole and condense at the back side of side plate 3 coagula that diameter is greater than the second through-hole diameter.
On Side fascia, on another side plate 1 relative with side plate 3, be densely covered with third through-hole and cover, be bonded with inorganic phase-changing material heat-insulation layer 7, resin 5 is frozen at the back side of another side plate 1 of Side fascia the coagula that diameter is greater than third through-hole diameter through after third through-hole, and these coagulas also play similar aforementioned " rivet " effect for anti-layering. Can certainly directly on another side plate 1 of Side fascia, be coated with polyphenyl particle heat-insulating mortar, thermal insulation mortar passes after third through-hole, and is frozen at top side plate 1 back side coagula that diameter is greater than third through-hole diameter.
Also be coated with true mineral varnish layer on the surface of inorganic phase-changing material heat-insulation layer 7 or polyphenyl particle heat-insulating mortar, to reach decoration function. The decorative layer that can certainly adopt other kind, as sial, aluminium layer etc., can be fixed on the surface of inorganic phase-changing material heat-insulation layer 7 or polyphenyl particle heat-insulating mortar by gluing form, also can take alternate manner to fix.
For the described technical scheme of above-described embodiment, the conversion of the one that obviously can expect is: the inorfil with glass fibre or carbon fiber etc. with high fiber reinforcement effect replaces basalt fibre.
Resin in the application is phenolic resins, unsaturated-resin, epoxy resin, inorganic silicon or extraordinary inorganic salts bonding agent.
The above-described embodiment that is not limited to of the present invention, all employings be equal to replace the technical scheme that forms as: with other bonding agent substitute the application in resin etc., all drop in the protection domain of requirement of the present invention.
Claims (6)
1. a Side fascia, mainly by the compound rigid mesh rack-layer of the three-dimensional hollow fabric poststack of at least two by bonding agent successively bonding forming, the compound rigidity rack of described three-dimensional hollow fabric is mainly by solidifying and make after the three dimension stereo fabric impregnating resin that adopts fibrous material to be woven into, described three dimension stereo fabric has surface layer and backing layer, the count of described surface layer and backing layer is sparse is formed with multiple meshes, the compound rigidity rack of described three-dimensional hollow fabric comprises panel, backboard and the fiber being connected between described panel and backboard are connected warp, it is characterized in that: the compound rigidity rack of adjacent described three-dimensional hollow fabric is mutually all densely covered with the first through hole on a bonding side panel, when bonding, described bonding agent is through described the first through hole and condense at the back side of described panel the coagula that diameter is greater than described the first through-hole diameter, and described Side fascia is densely covered with the second through hole for being installed on the side plate on body of wall, when described Side fascia is installed on body of wall by bonding mortar, described bonding mortar is through described the second through hole and condense at the described side plate back side coagula that diameter is greater than described the second through-hole diameter, on described Side fascia, on another side plate relative with described side plate, be densely covered with third through-hole and be bonded with inorganic phase-changing material heat-insulation layer by bonding agent, described bonding agent is through after described third through-hole, condense at the back side of described another side plate the coagula that diameter is greater than described third through-hole diameter, described first, second and third through-hole be all through solidifying to form by described mesh.
2. Side fascia according to claim 1, is characterized in that: on described inorganic phase-changing material heat-insulation layer, be covered with decorative layer.
3. Side fascia according to claim 2, is characterized in that: described decorative layer is true mineral varnish layer.
4. Side fascia according to claim 1, is characterized in that: described fibrous material is inorfil.
5. Side fascia according to claim 4, is characterized in that: described inorfil is basalt fibre.
6. Side fascia according to claim 1, is characterized in that: described bonding agent is phenolic resins, unsaturated-resin, epoxy resin, inorganic silicon or extraordinary inorganic salts bonding agent.
Priority Applications (1)
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CN201310307971.6A CN103362268B (en) | 2013-07-22 | 2013-07-22 | A kind of Side fascia |
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CN201310307971.6A CN103362268B (en) | 2013-07-22 | 2013-07-22 | A kind of Side fascia |
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CN103362268A CN103362268A (en) | 2013-10-23 |
CN103362268B true CN103362268B (en) | 2016-05-18 |
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CN201310307971.6A Expired - Fee Related CN103362268B (en) | 2013-07-22 | 2013-07-22 | A kind of Side fascia |
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Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1523181A (en) * | 2003-02-19 | 2004-08-25 | 东陶机器株式会社 | Building material soleplate |
CN200985610Y (en) * | 2006-12-21 | 2007-12-05 | 郑瑞源 | Fixing structure of building board |
CN201190387Y (en) * | 2008-05-16 | 2009-02-04 | 于纳 | Decorative panels for building |
CN102852273A (en) * | 2012-09-14 | 2013-01-02 | 江苏鑫石器玄武岩纤维有限公司 | Three-dimensional hollow fabric reinforced composite plate |
CN203373930U (en) * | 2013-07-22 | 2014-01-01 | 新疆拓新节能新材料有限公司 | External wall board |
-
2013
- 2013-07-22 CN CN201310307971.6A patent/CN103362268B/en not_active Expired - Fee Related
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1523181A (en) * | 2003-02-19 | 2004-08-25 | 东陶机器株式会社 | Building material soleplate |
CN200985610Y (en) * | 2006-12-21 | 2007-12-05 | 郑瑞源 | Fixing structure of building board |
CN201190387Y (en) * | 2008-05-16 | 2009-02-04 | 于纳 | Decorative panels for building |
CN102852273A (en) * | 2012-09-14 | 2013-01-02 | 江苏鑫石器玄武岩纤维有限公司 | Three-dimensional hollow fabric reinforced composite plate |
CN203373930U (en) * | 2013-07-22 | 2014-01-01 | 新疆拓新节能新材料有限公司 | External wall board |
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Granted publication date: 20160518 Termination date: 20160722 |