CN101338646A - Ternary heat insulation window with built-in louver window - Google Patents

Ternary heat insulation window with built-in louver window Download PDF

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Publication number
CN101338646A
CN101338646A CNA2008100253480A CN200810025348A CN101338646A CN 101338646 A CN101338646 A CN 101338646A CN A2008100253480 A CNA2008100253480 A CN A2008100253480A CN 200810025348 A CN200810025348 A CN 200810025348A CN 101338646 A CN101338646 A CN 101338646A
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CN
China
Prior art keywords
window
sash
heat insulation
built
double
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Pending
Application number
CNA2008100253480A
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Chinese (zh)
Inventor
文贵贤
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SUZHOU HANSI NEW BUILDING MATERIAL CO Ltd
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SUZHOU HANSI NEW BUILDING MATERIAL CO Ltd
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Priority to CNA2008100253480A priority Critical patent/CN101338646A/en
Publication of CN101338646A publication Critical patent/CN101338646A/en
Pending legal-status Critical Current

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Abstract

The present invention relates to a triple heat insulation window of an internal shutter. The triple heat insulation window comprises a double-layer glass window, a first window sash which is connected with the double-layer glass window, the internal shutter, an elevating device which is used for controlling the internal shutter to rise and descend, a heat insulation box which is fixed at the first window sash, an inner glass window, a second window sash and a third window sash. A window chamber is formed at the position of the first window sash connected with the double-layer glass window along the lengthways direction. A heat insulation seal gasket is inserted in the window chamber. The internal shutter and the heat insulation box are arranged between the inner glass window and the double-layer glass window. The inner glass window is installed at the second window sash and is fixed by arranging a fixing seal gasket between the inner glass window and the second window sash. The window chamber is formed at the joint of the second window sash and the first window sash along the lengthways direction, and the heat insulation seal gasket is inserted in the window chamber. The third window sash comprises an inner window sash and an outer window sash. The inner window sash and the outer window sash are connected by a heat insulating handle. The third window sash and the double-layer glass window are clung closely by the fixing seal gasket. The window chamber is formed at the joint of the third window sash and the window frame along the lengthways direction, and the heat insulation seal gasket is inserted in the window chamber.

Description

A kind of ternary heat insulation window of window with built-in louver
Technical field
The present invention relates to a kind of heat insulation window, particularly a kind of ternary heat insulation window of the built-in shutter that is used for anti-falling stop ash or pollutes.
Background technology
Common heat insulation window is to set fixed interval on window frame with two glass plates, and filling nitrogen forms air layer between glass plate, thereby improve its heat-proof quality, and external variation played cushioning effect, or possesses interior windows more than left and right folding a pair of at the esconson that is fixed in body of wall, and constitute at the outside a pair of above outside window that left and right folding is installed of window frame, between this inside and outside window, form air layer exactly, the raising heat-proof quality.
And, the front of window or back, for prevent the perspective and shading, but shelters such as curtain, shutter are installed in addition.But in recent years, consider apparent aesthetic feeling and convenience etc., more than various shading means combine with electric device, control automatically.And, electric-powered shutter is installed in the inner space between the double window, can control automatically shutter.
As mentioned above; filling nitrogen between double window in the past, window with built-in louver finishes up with encapsulant at last again; so structure usually can be because the variation of ambient temperature make air layer between the double window phenomenon of expanding with heat and contract with cold, so glass also deforms easily.The big more air layer in interval between the double window is thick more, and the air layer distortion probability of heavy sheet glass more is big more, so the slit occurs between glass and the encapsulant, exists effect of heat insulation to reduce phenomenon.For preventing the appearance of above problem, consider from the permission distortion probability of glass, can only the space width between the double window of window with built-in louver be limited.
But if the space width between the double window is limited, the width of shutter naturally also can be restricted, and therefore, the possibility that occurs flaw during the shutter lifting is just very high.When flaw appears in window with built-in louver, for repairing shutter in the window that has sealed, dismantle the window of window with built-in louver in the past, it is studied for a second time courses one has flunked, just there is the problem of the too much repair cost of waste in this.
Yet, if shutter is placed not between filling nitrogen, the not Packed double window, though can not have restricted problem to the space width between the double window like this, each glass window of shutter both sides can't play normal cushioning effect to external temperature or pressure variation, and the formation of functions such as the due maximum characteristics of double window---heat insulation, sound insulation, waterproof just is difficult to expectation.
Still more, window frame or sash be all based on the fast aluminium that conducts heat, so the heat by its material building outside will pass to inside, at this moment only relies on the inner double window that forms air layer, is difficult to reach high efficiency effect of heat insulation.
Summary of the invention
The present invention is for addressing the above problem motion, its purpose just provides a kind of ternary heat insulation window of the built-in shutter that is fit to anti-falling stop ash or pollutes, make the interval between the window glass not be subjected to any restriction, guarantee stronger heat insulation, sound insulation, water resistance simultaneously, external temperature or pressure are changed also can fully play cushioning effect.
Technical scheme of the present invention is: a kind of ternary heat insulation window of window with built-in louver, it comprises the double window that is installed in the exterior wall front, first sash, the window with built-in louver that are connected with double window and the lifting gear that is used to control the window with built-in louver lifting, is fixed in heat insulation box, inner glass window, second sash on first sash and the 3rd sash that is connected with first sash.Described double window keeps sealing at interval and with encapsulant with parting bead; Having the window thorax that forms along the length direction of first sash, insert heat insulation sealing gasket in this window thorax on described first sash with the double window joint; Window with built-in louver, heat insulation box are arranged between inner glass window and the double window; Described second sash is connected with first sash, the inner glass window is installed on second sash and is arranged between the two with the fixing seal pad and fixes, described second sash and the first sash joint form fenestrate thorax along its length, insert heat insulation sealing gasket in the window thorax; The 3rd sash comprises the medial and lateral sash, connect the medial and lateral sash by heat insulation, described the 3rd sash utilizes the fixing seal pad to be adjacent to mutually with double window, and the 3rd sash and window frame join and the length direction along the 3rd sash forms the window thorax in the joint, insert heat insulation sealing gasket in this window thorax.
Further, described window frame comprises inboard sash and outside sash, and its medial and lateral sash is connected by heat insulation handle, and described window frame fixedly is formed at building masonry wall.
Described window frame is connected by hinge with the 3rd sash.
The present invention compared with prior art, have following advantage: the present invention makes when not being subjected to any restriction between the window glass of window with built-in louver at interval, performances such as it is heat insulation, sound insulation, waterproof are superpower, can fully play cushioning effect to external temperature or pressure variation, moreover, can also increase apparent aesthetic feeling, and, be fit to prevent the fall ash or the pollution of shutter.In addition, because of the installation and the convenient separation of window with built-in louver, reduce the shutter management and study for a second time courses one has flunked required expense.And, the sash of fixed-pane window is cut off with outside, prevent that the heat of building outside from passing to inside by sash.
Description of drawings
Fig. 1 is the front view according to the ternary heat insulation window of window with built-in louver of the invention process;
Fig. 2 is for showing the sectional drawing of A-A ' line among Fig. 1;
Fig. 3 is the enlarged drawing of I part among Fig. 2;
Fig. 4 is for showing the sectional drawing of B-B ' line among Fig. 1;
Fig. 5 plants the enlarged drawing of M part for Fig. 4;
Fig. 6 is the open mode sectional side view of the ternary heat insulation window of window with built-in louver implemented according to the invention;
Wherein:
10, double window; 11, parting bead; 12, encapsulant;
20, first sash; 21, window thorax; 22, heat insulation sealing gasket; 23, draw-in groove;
30, heat insulation box; 31, shutter; 32, heat insulation lid;
40, inner glass window;
50, second sash; 51, window thorax; 52, heat insulation sealing gasket; 53, fixing seal pad; 54, stuff up a crack material;
60, the 3rd sash; 61, window thorax; 62, heat insulation sealing gasket; 63, fixing seal pad; 64, heat insulation; 70, window frame; 71, heat insulation;
80, hinge; 90, handle.
The specific embodiment
Describe the possible embodiments of the present invention that above structure is formed with reference to the accompanying drawings in detail.
Illustrated in Fig. 1 to Fig. 6, the present invention is basically on the window frame 70 that is fixed on building masonry wall, but the heat insulation window of fixed installation folding, at first, be fixed in the medial and lateral sash of the above-mentioned window frame 70 of building masonry wall, connect 71 by the heat insulation of strong resin of thermal insulation or polyamide material, reduce the coefficient of overall heat transmission of metal material sash, heat waste is controlled to minimize with this.For firm combination can utilize the medial and lateral sash that connects window frame 70 and heat insulation 71 splicing associated methods such as (not diagrams).
And double window 10 is to keep interval between glass with parting bead 11, with encapsulant 12 sealings, is installed in the exterior wall front.Common above-mentioned double window 10 inside are formed by the minimum air layer of the coefficient of overall heat transmission that nitrogen filling gas is included, and its effect of heat insulation and soundproof effect are superpower.But, if the interval between the double window 10 has surpassed experiment and use experience is basic Max. Clearance _M., because producing the air layer between the double window 10, external variations in temperature expands with heat and contract with cold, cause surpassing the phenomenon that allows deformation rate, thereby cause glass deformation, perhaps the slit occurs between glass and the encapsulant 12, this can cause effect of heat insulation to reduce unavoidably, therefore wants these problems of exactissima diligentia.
And first sash, 20 secure bond are to cut off outside air, rainwater and noise etc. in the time of the 3rd sash 60, and itself and double window 10 joints are inserted in heat insulation sealing gasket 22 in the window thorax 21 of length direction formation.Between first sash 20 and the 3rd sash 60, be preferably formed as the draw-in groove 23 that mutually combines here,, do not use other associated methods with its combination, but at the sash place that is bonded with each other, for the maximization of sealing and thermal insulation, the draw-in groove 23 of sash engages each other closely, in case the slit occurs.
Above-mentioned first sash 20 has part to form the window frame of window with built-in louver 31, (use associated methods always by heat insulation lid 32 according to splicing, diagram not) associated methods secure bond such as, and the lifting gear of window with built-in louver 31 (usual means, diagram not) is built in heat insulation box 30, heat insulation box 30 adopts the plug-in type associated methods with heat insulation lid 32, also can be in first sash 20 by heat insulation box 30 direct secure bond.Here the lift control method of window with built-in louver 31 can utilize motor, perhaps utilizes other automated manner, also can utilize manual mode etc., in the light of actual conditions does selection when using.
Further, the shutter 31 that is connected with the lifting gear that is built in heat insulation box 30 (not having diagram), be positioned at the centre of forward and backward face-port glass, not only, can also prevent owing to shutter 31 is exposed to the phenomenon that ash fouling is brought in the outside from increasing aesthetic feeling in appearance.
And, join to being in the window thorax 51 that length direction forms with above-mentioned first sash 20 and insert on second sash 50 of heat insulation sealing gasket 52, with fixing seal pad 53 that above-mentioned inner glass window 40 is fixing.Above-mentioned first sash 20 and second sash 50 are according to splicing associated methods such as (not diagrams) with secure bond.
At this moment, behind inner glass window 40 insertions second sash 50, be the space between the filling inner glass window 40 and second sash 50, the most handy stuff up a crack material 54 finishes up, and improves the sealing and the water proofing property of heat insulation window with this.
The double window in the past or the window of window with built-in louver, through complicated step such as nitrogen filling by produce in factory after, just do simple installation to the scene, therefore, field conditions is if some variation just is difficult to find out corresponding solution.But inner glass window 40 of the present invention can be assembled and install at the scene, so can carry out design alteration according to field conditions.
Therefore the present invention will install inner glass window 40 and double window 10 separately, and the interval between the window glass when built-in to shutter 31 can not be subjected to any restriction, only according to double window 10, external temperature or pressure is changed, and can reach sufficient buffering effect.
And, in shutter 31 uses, if flaw, can remove splicing associated methods such as (not diagrams), separate the combination of first sash 20 and second sash 50, therefore only, just shutter 31 can be exposed to the outside, put into expense and the manpower that shutter 31 manages afterwards and from then on can significantly reduce by shirtsleeve operation like this.
The 3rd sash 60 is combined closely with the draw-in groove 23 of first sash 20 for preventing the slit, and the 3rd sash 60 utilizes fixing seal pad 63 to be close to double window 10.For cutting off outside air, rainwater and noise etc.,, heat insulation sealing gasket 62 is inserted in the window thorax 61 of length direction formation in window frame 70 and the 3rd sash 60 joints.
Above-mentioned the 3rd sash 60 equally also utilizes the heat insulation of strong resin of thermal insulation or polyamide material its medial and lateral sash to be connected 64, has reduced the coefficient of overall heat transmission of the metal material sash that conducts heat fast, heat waste is controlled to minimize.Be firm combination, can utilize the medial and lateral sash that connects the 3rd sash 60 and heat insulation as required 64 splicing associated methods such as (not diagrams).
So, illustrated in Fig. 6, above-mentioned window frame 70 utilizes hinge 80 to be connected with the 3rd sash 60 as fruit part, and double window 10, first sash 20, heat insulation box 30, inner glass window 40, second sash 50, the 3rd sash 60 are formed as one, and can realize plug-type folding by hinge 80.On the 3rd sash 60, increase mounting strap lock handle hand 90, can pin window, need open handle 90 and just can open a window, prevent from window to be opened from the outside.
And above-mentioned sash preferably adopts refractoriness strong and do not arrange the aluminum material of pernicious gas when breaking out of fire.
More than specific embodiment of the present invention is illustrated and illustrates but the present invention is not only limited to above embodiment.In the technical field of the invention, the common knowledge of a GPRS just can be carried out diversified change in technical main idea scope of the present invention.

Claims (3)

1, a kind of ternary heat insulation window of window with built-in louver is characterized in that it comprises:
Be installed in the double window (10) of exterior wall front, described double window (10) keeps sealing at interval and with encapsulant (12) with parting bead (11);
First sash (20), described first sash (20) is connected with double window (10), described first sash (20) is gone up having the window thorax (21) that forms along the length direction of first sash (20) with double window (10) joint, inserts heat insulation sealing gasket (22) in this window thorax (21);
Window with built-in louver (31) and be used to control the lifting gear of window with built-in louver (31) lifting;
Heat insulation box (30), described heat insulation box (30) are fixed on first sash (20);
Inner glass window (40), window with built-in louver (31), heat insulation box (30) are arranged between inner glass window (40) and the double window (10);
Second sash (50), described second sash (50) is connected with first sash (20), inner glass window (40) is installed in to be arranged between the two on second sash (50) and with fixing seal pad (53) and fixes, described second sash (50) forms fenestrate thorax (51) along its length with first sash (20) joint, inserts heat insulation sealing gasket (52) in the window thorax (51);
The 3rd sash (60), the 3rd sash (60) is connected with first sash (20), the 3rd sash (60) comprises the medial and lateral sash, connect the medial and lateral sash by heat insulation handle (64), described the 3rd sash (60) utilizes fixing seal pad (63) to be adjacent to mutually with double window (10), the 3rd sash (60) joins with window frame (70) and the length direction along the 3rd sash (60) forms window thorax (61) in the joint, inserts heat insulation sealing gasket (62) in this window thorax (61).
2, the ternary heat insulation window of a kind of window with built-in louver according to claim 1, it is characterized in that: described window frame (70) comprises inboard sash and outside sash, its medial and lateral sash is connected by heat insulation handle (71), and described window frame (70) fixedly is formed at building masonry wall.
3, the ternary heat insulation window of a kind of window with built-in louver according to claim 1 is characterized in that: described window frame (70) is connected by hinge (80) with the 3rd sash (60).
CNA2008100253480A 2008-04-29 2008-04-29 Ternary heat insulation window with built-in louver window Pending CN101338646A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNA2008100253480A CN101338646A (en) 2008-04-29 2008-04-29 Ternary heat insulation window with built-in louver window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNA2008100253480A CN101338646A (en) 2008-04-29 2008-04-29 Ternary heat insulation window with built-in louver window

Publications (1)

Publication Number Publication Date
CN101338646A true CN101338646A (en) 2009-01-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CNA2008100253480A Pending CN101338646A (en) 2008-04-29 2008-04-29 Ternary heat insulation window with built-in louver window

Country Status (1)

Country Link
CN (1) CN101338646A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102182392A (en) * 2011-04-11 2011-09-14 南京臣功节能材料有限责任公司 Awning blind
CN102518380A (en) * 2011-12-30 2012-06-27 上海玻机幕墙工程有限公司 Hollow sunshade louver
CN103437684A (en) * 2013-08-13 2013-12-11 浙江雅德居节能环保门窗有限公司 Built-in louver broken bridge aluminum window
CN106703605A (en) * 2017-01-17 2017-05-24 江苏建科节能技术有限公司 Detachable inwards opened hollow glass embedded photovoltaic window shade

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102182392A (en) * 2011-04-11 2011-09-14 南京臣功节能材料有限责任公司 Awning blind
CN102182392B (en) * 2011-04-11 2014-09-10 南京臣功节能材料有限责任公司 Awning blind
CN102518380A (en) * 2011-12-30 2012-06-27 上海玻机幕墙工程有限公司 Hollow sunshade louver
CN103437684A (en) * 2013-08-13 2013-12-11 浙江雅德居节能环保门窗有限公司 Built-in louver broken bridge aluminum window
CN106703605A (en) * 2017-01-17 2017-05-24 江苏建科节能技术有限公司 Detachable inwards opened hollow glass embedded photovoltaic window shade

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Open date: 20090107