CN210264349U - Latent fan heat-insulating inwardly opened window - Google Patents

Latent fan heat-insulating inwardly opened window Download PDF

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Publication number
CN210264349U
CN210264349U CN201920437741.4U CN201920437741U CN210264349U CN 210264349 U CN210264349 U CN 210264349U CN 201920437741 U CN201920437741 U CN 201920437741U CN 210264349 U CN210264349 U CN 210264349U
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CN
China
Prior art keywords
window
window frame
sash
outdoor
indoor
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Expired - Fee Related
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CN201920437741.4U
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Chinese (zh)
Inventor
朱立成
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Shanghai Aowei Building Energy Saving Science & Technology Co ltd
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Shanghai Aowei Building Energy Saving Science & Technology Co ltd
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Priority to CN201920437741.4U priority Critical patent/CN210264349U/en
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Abstract

本实用新型公开了一种隐扇隔热内开窗,包括窗框和设置在所述窗框内并与所述窗框铰链的窗扇,所述窗框包括窗框室外侧型材,所述窗扇包括窗扇室外侧型材,其特征在于,所述窗框室外侧型材的内框缘与所述窗扇室外侧型材的内框缘平齐。本实用在可视面上看不见窗扇的型材,更加美观,且透光性能更好,保温节能性能好。

Figure 201920437741

The utility model discloses a hidden sash thermal insulation inner opening window, which comprises a window frame and a window sash which is arranged in the window frame and is hinged with the window frame. The utility model comprises a window sash exterior profile, characterized in that the inner frame edge of the window frame exterior exterior profile is flush with the inner frame edge of the window sash exterior exterior profile. In the utility model, the profile of the window sash cannot be seen on the visible surface, which is more beautiful, has better light transmission performance, and has good thermal insulation and energy saving performance.

Figure 201920437741

Description

Latent fan heat-insulating inwardly opened window
Technical Field
The utility model belongs to the technical field of door and window, concretely relates to latent fan heat-insulating inwardly opened window.
Background
In a casement window actually used in life, a sash part and a common section bar are exposed and can be seen on a visible surface, the visual effect is poor, and the light transmission is poor; the energy-saving and heat-preserving effects are poor, the energy consumption is increased finally, and the brought life experience is also poor.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a fan material hiding device which can hide fan materials, has better visual effect on a vertical surface and better light transmittance; meanwhile, the energy-saving effect is good, the price is moderate, and more hidden-fan heat-insulation inward-opening windows born by common people can be used.
In order to achieve the above purpose, the technical solution adopted by the present invention is as follows:
the utility model provides a latent fan heat-insulating inwardly opened window, includes the window frame and sets up in the window frame and with the casement of window frame hinge, the window frame includes the outdoor side section bar of window frame, the casement includes the outdoor side section bar of casement, its characterized in that, the interior architrave of the outdoor side section bar of window frame with the interior architrave parallel and level of the outdoor side section bar of casement.
In a preferred embodiment of the present invention, the window frame further comprises a window frame indoor side profile and a window frame heat insulation strip, wherein the inner side surface of the window frame outdoor side profile is combined with the outer side surface of the window frame heat insulation strip by rolling; and the outer side surface of the indoor section of the window frame and the inner side surface of the heat insulation strip of the window frame are combined together in a rolling way.
In a preferred embodiment of the present invention, the window sash further comprises a window sash indoor side profile, a window sash heat insulation strip, and a hollow glass assembly, wherein an inner side surface of the window sash outdoor side profile is combined with an outer side surface of the window sash heat insulation strip by rolling; the outer side surface of the sash indoor side section bar and the inner side surface of the sash heat insulation strip are combined together in a rolling manner; the hollow glass component is clamped between the outdoor side profile of the window sash and the indoor side profile of the window sash through a glass sealing outdoor penetration strip and a glass sealing indoor plug strip, wherein the glass sealing outdoor penetration strip is embedded on the inner side surface of the outdoor side profile of the window sash and is in sealing contact with the outdoor side surface of outdoor side glass in the hollow glass component; the glass sealing indoor filler strip is embedded on the outer side surface of the window sash indoor side section bar and is in sealing contact with the indoor side surface of the indoor side glass in the hollow glass assembly.
In a preferred embodiment of the present invention, outdoor epdm sealing strips are embedded in the outdoor section bar of the window frame and the indoor section bar of the window frame, and the free side of the outdoor epdm sealing strips is lapped on the outdoor section bar of the window sash; the indoor side section bar of the window sash is embedded with an indoor side ethylene propylene diene monomer sealing strip, and the free side of the indoor side ethylene propylene diene monomer sealing strip is in lap joint with the indoor side section bar of the window frame.
In a preferred embodiment of the present invention, the outdoor side glass and the outdoor side glass are both coated glass.
The beneficial effects of the utility model reside in that: the window sash section bar can not be seen on the visible surface, the window sash section bar is more attractive, the light transmission performance is better, the position of the main heat insulation material is adjusted, and the energy-saving and heat-insulating performance is further improved by matching the hollow coated glass.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The invention is further illustrated by the accompanying drawings and the detailed description of the invention:
referring to fig. 1, the hidden-sash heat-insulation inwardly-opened window shown in the figure comprises a window frame 100 and a window sash 200, wherein the window frame 100 comprises a window frame outdoor side profile 110, a window frame indoor side profile 120 and a window frame heat-insulation strip 130, and an inner side 111 of the window frame outdoor side profile 110 and an outer side 131 of the window frame heat-insulation strip 130 are rolled and compounded together; the outer side 121 of the indoor section 120 of the window frame is combined with the inner side 132 of the heat insulating strip 130 of the window frame by rolling.
The window sash 200 is arranged in the window frame 100 and is hinged with the window frame 100, different hardware suite hinges are used between the window sash 200 and the window frame 100, and opening modes of inward opening and inward falling of the window sash, inward opening and inward falling of the window sash are achieved, and the inward opening and inward falling are preferential to open in an equal mode.
The window sash 200 includes a window sash outdoor side profile 210, a window sash indoor side profile 220, a window sash insulation bar 230, and a hollow glass assembly 240. The inner side 211 of the outdoor section 210 of the window sash is combined with the outer side 231 of the heat insulating strip 230 of the window sash by rolling; the outer side 221 of the sash indoor side profile 220 and the inner side 232 of the sash heat insulation strip 230 are rolled and compounded together.
The hollow glass component 240 is clamped between the window sash outdoor side section bar 210 and the window sash indoor side section bar 220 through a glass sealing outdoor penetration strip 250 and a glass sealing indoor plug strip 260, wherein the glass sealing outdoor penetration strip 250 is embedded on the inner side surface 211 of the window sash outdoor side section bar 210 and is in sealing contact with the outdoor side surface 241a of the outdoor side glass 241 in the hollow glass component 240; the glass sealing indoor weather strip 260 is embedded on the outer side surface 221 of the window sash indoor side profile 220 and is in sealing contact with the indoor side surface 242a of the indoor side glass 242 in the hollow glass assembly 240.
The utility model is characterized in that: the inner frame rim 112 of the window frame outdoor side sectional material 110 is flush with the inner frame rim 212 of the sash outdoor side sectional material 210, so that when the sash 200 is closed, the sash outdoor side sectional material 210 is shielded by the window frame outdoor side sectional material 110, the sash outdoor side sectional material 210 is not seen from the outdoor side, only the outdoor side glass 241 in the hollow glass assembly 240 is seen, the window sectional size seen from the outdoor side is integrally reduced, the lines are simplified, the glass size is larger, the glass size is more transparent, and the appearance effect of the material is better.
In order to further increase the overall sealing performance of the window, outdoor ethylene propylene diene monomer sealing rubber strips 300 are embedded in the window frame outdoor side section bars 110 and the window frame indoor side section bars 120, and free sides 310 of the outdoor ethylene propylene diene monomer sealing rubber strips 300 are in sealing lap joint with the window sash outdoor side section bars 210, so that the first sealing between the window frame 100 and the window sashes 200 is realized.
An indoor ethylene propylene diene monomer sealing strip 400 is embedded on the sash indoor side section bar 220, and a free side 410 of the indoor ethylene propylene diene monomer sealing strip 400 is in sealing lap joint with the window frame indoor side section bar 120, so that a second sealing between the window frame 100 and the sash 200 is realized.
The utility model discloses a cavity glass subassembly 240 can use three glasss two cavity glass, perhaps doubling cavity glass isotructure, and wherein outdoor side glass 241 and outdoor side glass 242 are coated glass.
The utility model discloses an use not unidimensional window frame heat insulating strip 130, the heat insulating strip 230 of casement, can realize different series's stealthy window, satisfy different thickness glass's installation.

Claims (5)

1. The utility model provides a latent fan heat-insulating inwardly opened window, includes the window frame and sets up in the window frame and with the casement of window frame hinge, the window frame includes the outdoor side section bar of window frame, the casement includes the outdoor side section bar of casement, its characterized in that, the interior architrave of the outdoor side section bar of window frame with the interior architrave parallel and level of the outdoor side section bar of casement.
2. The hidden-sash heat-insulating inwardly opened window as claimed in claim 1, wherein the window frame further comprises a window frame indoor side profile and a window frame heat-insulating strip, and the inner side surface of the window frame outdoor side profile and the outer side surface of the window frame heat-insulating strip are rolled and compounded together; and the outer side surface of the indoor section of the window frame and the inner side surface of the heat insulation strip of the window frame are combined together in a rolling way.
3. The hidden-sash heat-insulation inwardly-opened window as claimed in claim 2, wherein the window sash further comprises a window sash indoor side profile, a window sash heat-insulation strip and a hollow glass assembly, and the inner side surface of the window sash outdoor side profile is combined with the outer side surface of the window sash heat-insulation strip in a rolling manner; the outer side surface of the sash indoor side section bar and the inner side surface of the sash heat insulation strip are combined together in a rolling manner; the hollow glass component is clamped between the outdoor side profile of the window sash and the indoor side profile of the window sash through a glass sealing outdoor penetration strip and a glass sealing indoor plug strip, wherein the glass sealing outdoor penetration strip is embedded on the inner side surface of the outdoor side profile of the window sash and is in sealing contact with the outdoor side surface of outdoor side glass in the hollow glass component; the glass sealing indoor filler strip is embedded on the outer side surface of the window sash indoor side section bar and is in sealing contact with the indoor side surface of the indoor side glass in the hollow glass assembly.
4. The hidden-sash heat-insulation inwardly-opened window as claimed in claim 3, wherein outdoor side ethylene propylene diene monomer sealing rubber strips are embedded on the outdoor side section bar of the window frame and the indoor side section bar of the window frame, and free side sealing overlapping of the outdoor side ethylene propylene diene monomer sealing rubber strips is carried out on the outdoor side section bar of the window sash; the indoor side section bar of the window sash is embedded with an indoor side ethylene propylene diene monomer sealing strip, and the free side of the indoor side ethylene propylene diene monomer sealing strip is in lap joint with the indoor side section bar of the window frame.
5. The hidden fan heat-insulating inwardly opened window as claimed in claim 4, wherein the outdoor side glass and the outdoor side glass are both coated glass.
CN201920437741.4U 2019-04-02 2019-04-02 Latent fan heat-insulating inwardly opened window Expired - Fee Related CN210264349U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920437741.4U CN210264349U (en) 2019-04-02 2019-04-02 Latent fan heat-insulating inwardly opened window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920437741.4U CN210264349U (en) 2019-04-02 2019-04-02 Latent fan heat-insulating inwardly opened window

Publications (1)

Publication Number Publication Date
CN210264349U true CN210264349U (en) 2020-04-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920437741.4U Expired - Fee Related CN210264349U (en) 2019-04-02 2019-04-02 Latent fan heat-insulating inwardly opened window

Country Status (1)

Country Link
CN (1) CN210264349U (en)

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Granted publication date: 20200407