CN202611450U - Energy-saving and heat-insulated internal inverted window of curtain wall - Google Patents

Energy-saving and heat-insulated internal inverted window of curtain wall Download PDF

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Publication number
CN202611450U
CN202611450U CN201220203760.9U CN201220203760U CN202611450U CN 202611450 U CN202611450 U CN 202611450U CN 201220203760 U CN201220203760 U CN 201220203760U CN 202611450 U CN202611450 U CN 202611450U
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window
frame
sash
curtain wall
heat
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CN201220203760.9U
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Chinese (zh)
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张益�
赵宁
熊一帆
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Shenyang Yuanda Aluminium Industry Group Co Ltd
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Shenyang Yuanda Aluminium Industry Group Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/90Passive houses; Double facade technology

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Abstract

一种幕墙节能型断热内倒窗,解决了现有内倒窗存在的幕墙密封不严,整体节能保温效果差等问题,包括固定在玻璃幕墙的横框和竖框上的窗框以及窗扇和隔热胶条,其技术要点是:窗框采用断桥铝合金型材制成的窗边框组装而成,窗边框是由左边框和右边框以及利用对称布置在两边框相对应侧的隔热胶条嵌槽内的隔热胶条紧密连接在一起的组合体;空腔铝合金型材制成的窗扇框通过组角角码组框成窗扇,窗扇与窗框之间采用合页及窗限位器连接,窗扇与窗框之间通过插接在相对应嵌槽内的多道胶条密封。其结构设计合理,有效地实现气水等压平衡,显著提高水密性和气密性以及通风、防水性能,增强幕墙的整体外观美感,具有节能、保温、隔音效果好的特点。

An energy-saving curtain wall heat-insulating tilted window, which solves the problems of the existing tilted window such as poor sealing of the curtain wall and poor overall energy saving and heat preservation effects, including the window frame and sash fixed on the horizontal frame and mullion of the glass curtain wall And heat insulation strips, the technical points are: the window frame is assembled with the window frame made of broken bridge aluminum alloy profiles, the window frame is composed of the left frame and the right frame and the heat insulation board symmetrically arranged on the corresponding sides of the two frames The combination of heat-insulating rubber strips tightly connected together in the grooves of the rubber strips; the sash frame made of hollow aluminum alloy profiles is assembled into a window sash through corner codes, and hinges and window limits are used between the sash and the window frame The positioner is connected, and the window sash and the window frame are sealed by multiple rubber strips inserted into the corresponding slots. Its structural design is reasonable, and it can effectively achieve equal pressure balance of air and water, significantly improve water and air tightness, ventilation and waterproof performance, and enhance the overall appearance of the curtain wall. It has the characteristics of energy saving, heat preservation and sound insulation.

Description

幕墙节能型断热内倒窗Curtain wall energy-saving heat-insulating window

技术领域 technical field

本实用新型涉及一种玻璃幕墙开启窗,特别是一种可作为整体嵌入玻璃幕墙的幕墙节能型断热内倒窗。它主要适用于明框玻璃幕墙,属于外维护幕墙技术领域。 The utility model relates to an opening window of a glass curtain wall, in particular to an energy-saving curtain wall heat-insulating inner inverted window which can be embedded in a glass curtain wall as a whole. It is mainly suitable for exposed-frame glass curtain walls and belongs to the technical field of exterior maintenance curtain walls.

背景技术 Background technique

普通玻璃幕墙的通风多数通过手动开启窗来实现,其开启形式主要有上悬窗、下悬窗、平推窗;上悬窗又分为挂钩式上悬和铰链式上悬,下悬窗又分为内倒和外倒,目前以上悬翻窗为主。目前通用的内倒窗多采用独立于整体幕墙之外的通风系统,影响内倒窗与整体明框玻璃幕墙的协调性与统一性,导致密封不严,在型材上选用非断桥铝型材,其导热系数高,影响幕墙整体的节能保温效果。 Most of the ventilation of ordinary glass curtain walls is realized by manually opening the windows. The opening forms mainly include top-hung windows, bottom-hung windows, and sliding windows; Divided into inward and outward inversions, currently the overhanging windows are the main ones. At present, the general-purpose inverted windows mostly use a ventilation system independent of the overall curtain wall, which affects the coordination and unity of the inverted windows and the overall exposed frame glass curtain wall, resulting in poor sealing. Non-broken bridge aluminum profiles are used for profiles. Its high thermal conductivity affects the overall energy-saving and thermal insulation effect of the curtain wall.

实用新型内容 Utility model content

本实用新型的目的是提供一种幕墙节能型断热内倒窗,解决了现有内倒窗存在的幕墙密封不严,整体节能保温效果差等问题,其结构设计合理,有效地实现气水等压平衡,显著提高水密性和气密性以及通风、防水性能,增强幕墙的整体外观美感,具有节能、保温、隔音效果好的特点。 The purpose of this utility model is to provide a curtain wall energy-saving heat-insulating inverted window, which solves the problems of the existing inverted window such as the poor sealing of the curtain wall and poor overall energy-saving and heat-preservation effects. Equal pressure balance can significantly improve water tightness, air tightness, ventilation and waterproof performance, enhance the overall appearance and beauty of the curtain wall, and have the characteristics of energy saving, heat preservation and sound insulation.

本实用新型所采用的技术方案是:该幕墙节能型断热内倒窗包括固定在玻璃幕墙的横框和竖框上的窗框、组装在窗框上的窗扇和隔热胶条,其技术要点是:所述窗框采用断桥铝合金型材制成的窗边框组装而成,窗边框是由左边框和右边框以及利用对称布置在两边框相对应侧的隔热胶条嵌槽内的隔热胶条紧密连接在一起的组合体;空腔铝合金型材制成的窗扇框通过组角角码组框成窗扇,窗扇与窗框之间采用合页及窗限位器连接,窗扇与窗框之间通过插接在相对应嵌槽内的三元乙丙橡胶条和披水胶条密封。 The technical solution adopted by the utility model is: the curtain wall energy-saving heat-insulating inverted window includes a window frame fixed on the horizontal frame and mullion of the glass curtain wall, a window sash assembled on the window frame and a heat-insulating rubber strip. The main point is: the window frame is assembled with a window frame made of broken bridge aluminum alloy profiles. A combination of heat-insulating rubber strips tightly connected together; the sash frame made of hollow aluminum alloy profiles is assembled into a window sash through corner codes, and the sash and the window frame are connected by hinges and window stoppers. The window frames are sealed by EPDM strips and water-coated rubber strips inserted into corresponding slots.

所述窗边框的左边框通过不锈钢自攻钉固定在玻璃幕墙的横框或竖框的侧壁上。 The left frame of the window frame is fixed on the side wall of the horizontal frame or mullion of the glass curtain wall by stainless steel self-tapping screws.

所述窗边框的右边框通过压板和不锈钢自攻钉固定在玻璃幕墙的横框或竖框的插接装饰扣盖一侧的侧壁上。 The right frame of the window frame is fixed on the side wall of the horizontal frame or the vertical frame of the glass curtain wall by means of a pressing plate and stainless steel self-tapping screws.

本实用新型的优点是:由于本实用新型的窗框采用断桥铝合金型材制成的窗边框组装而成,窗边框是由左边框和右边框以及利用对称布置在两边框相对应侧的隔热胶条嵌槽内的隔热胶条紧密连接在一起的组合体,使窗边框的左边框和右边框的两层断桥铝合金型材既隔开,又能紧密连接成一个整体;由空腔铝合金型材制成的窗扇框通过组角角码组框成窗扇,窗扇与窗框之间通过插接在相对应嵌槽内的三元乙丙橡胶条和披水胶条等多道多道胶条密封,所以其结构设计合理,有效地实现气水等压平衡,显著提高水密性和气密性以及通风、防水性能。以上制成的幕墙节能型断热内倒窗可作为整体嵌入玻璃幕墙,增强幕墙的整体外观美感,具有节能、保温、隔音效果好的特点。因此,本实用新型解决了现有内倒窗存在的幕墙密封不严,整体节能、保温效果差等问题。   The utility model has the advantages that: because the window frame of the utility model is assembled with a window frame made of a bridge-broken aluminum alloy profile, the window frame is composed of a left frame and a right frame and a partition symmetrically arranged on the corresponding sides of the two frames. The heat-insulating adhesive strips in the hot-glue strip slots are tightly connected together, so that the two-layer broken bridge aluminum alloy profiles of the left frame and the right frame of the window frame can be separated and tightly connected into a whole; The window sash frame made of aluminum alloy profiles is assembled into a window sash by grouping corner codes, and the window sash and the window frame are connected by multiple channels such as EPDM strips and water-covered rubber strips inserted in the corresponding slots. Road rubber strip seal, so its structural design is reasonable, effectively achieve equal pressure balance of air and water, significantly improve water tightness and air tightness as well as ventilation and waterproof performance. The curtain wall energy-saving heat-insulating inverted window made above can be embedded in the glass curtain wall as a whole to enhance the overall appearance and beauty of the curtain wall, and has the characteristics of energy saving, heat preservation and sound insulation. Therefore, the utility model solves the problems of lax curtain wall sealing, overall energy saving and poor thermal insulation effect existing in the existing inverted windows. the

附图说明 Description of drawings

下面结合附图和实施例对本实用新型进一步说明。 Below in conjunction with accompanying drawing and embodiment the utility model is further described.

图1是本实用新型的一种结构示意图; Fig. 1 is a kind of structural representation of the utility model;

图2是图1沿A-A线的剖视图; Fig. 2 is a sectional view along line A-A of Fig. 1;

图3是图1沿B-B线的剖视图; Fig. 3 is a sectional view along line BB of Fig. 1;

图4是图2中的翻窗边框的一种左边框结构示意图; Fig. 4 is a schematic diagram of a left frame structure of the flip window frame in Fig. 2;

图5是图2中的翻窗边框的一种右边框结构示意图; Fig. 5 is a schematic diagram of a right frame structure of the flip window frame in Fig. 2;

图6是图2中的翻窗扇框的一种结构示意图。 Fig. 6 is a structural schematic diagram of the sash frame in Fig. 2 .

图中序号说明:1外幕墙玻璃、2横向装饰扣盖、3竖向装饰扣盖、4三元乙丙胶条、5窗扇框、6窗限位器、7窗边框、7.1左边框、7.2隔热胶条嵌槽、7.3三元乙丙胶条嵌槽、7.4右边框、7.5披水胶条嵌槽、8披水胶条、9钢化夹胶中空玻璃、10隔热胶条、11压板、12竖框、13密封胶、14橡胶垫、15横框、16不锈钢自攻钉、17窗执手、18结构胶、19双面贴、20合页。 Description of the serial numbers in the figure: 1 outer curtain wall glass, 2 horizontal decorative buckle cover, 3 vertical decorative buckle cover, 4 EPDM strip, 5 sash frame, 6 window stopper, 7 window frame, 7.1 left frame, 7.2 Insulation groove of heat insulation rubber strip, 7.3 EPDM rubber groove, 7.4 right frame, 7.5 water glue strip groove, 8 water glue strip, 9 tempered laminated insulating glass, 10 heat insulation glue strip, 11 pressure plate , 12 mullions, 13 sealants, 14 rubber pads, 15 horizontal frames, 16 stainless steel self-tapping screws, 17 window handles, 18 structural adhesives, 19 double-sided stickers, 20 hinges.

具体实施方式 Detailed ways

根据图1~6详细说明本实用新型的具体结构。该幕墙节能型断热内倒窗包括固定在玻璃幕墙的横框15和竖框12上的外幕墙玻璃1、窗框、组装在窗框上的窗扇和隔热胶条10等部件。其中窗框是采用断桥铝合金型材制成的窗边框7组装而成的封闭框架。窗边框7是由左边框7.1和右边框7.4以及利用对称布置在两边框相对应侧的隔热胶条嵌槽7.2内的隔热胶条10紧密连接在一起的组合体;利用隔热胶条10的紧密连接,可使左边框7.1和右边框7.4的两层断桥铝合金型材,实现既隔开,又能紧密连接成一个整体,实现断桥铝合金型材的隔热保温的功能。窗扇是由空腔铝合金型材制成的窗扇框5通过组角角码组框,然后将组框的窗扇框5与钢化夹胶中空玻璃9通过橡胶垫14、结构胶18、双面贴19和橡胶垫14进行合片而成。在合片后的窗扇的上部装入翻窗执手17,继而将合片完成的窗扇与窗框之间采用合页20及窗限位器6连接,窗扇与窗框之间通过插接在相对应的三元乙丙胶条嵌槽7.3内的三元乙丙橡胶条4和插接在相对应的披水胶条嵌槽7.5内的披水胶条8等多道胶条进行密封。窗边框7的左边框7.1通过不锈钢自攻钉16固定在玻璃幕墙的横框15或竖框12的侧壁上。窗边框7的右边框7.4通过压板11和不锈钢自攻钉16固定在玻璃幕墙的横框15的插接横向装饰扣盖2一侧的侧壁上或竖框12的插接竖向装饰扣盖3一侧的侧壁上,并在钉孔处以密封胶13进行密封。采用以上结构便制成了幕墙节能型断热内倒窗。也正因为如此,该幕墙节能型断热内倒窗可作为整体嵌入玻璃幕墙。 The specific structure of the utility model is explained in detail according to Fig. 1-6. The curtain wall energy-saving heat-insulating inverted window includes the outer curtain wall glass 1 fixed on the horizontal frame 15 and the mullion 12 of the glass curtain wall, the window frame, the window sash assembled on the window frame, and the heat-insulating rubber strip 10 and other components. Wherein the window frame is a closed frame assembled from the window frame 7 made of broken bridge aluminum alloy profiles. The window frame 7 is a combination of the left frame 7.1 and the right frame 7.4 and the heat-insulation strips 10 symmetrically arranged in the heat-insulation strip slots 7.2 on the corresponding sides of the two frames; The tight connection of 10 can make the two-layer broken bridge aluminum alloy profiles of the left frame 7.1 and the right frame 7.4 realize both separation and tight connection into a whole, and realize the heat insulation function of the broken bridge aluminum alloy profiles. The window sash is a sash frame 5 made of a hollow aluminum alloy profile, which is framed by corner codes, and then the framed sash frame 5 and tempered laminated hollow glass 9 are passed through rubber pads 14, structural glue 18, and double-sided stickers 19. It is combined with the rubber pad 14 to form. Put the window handle 17 into the top of the sash after the assembling, and then connect the sash and the window frame with the hinge 20 and the window stopper 6, and connect the sash and the frame by inserting The EPDM rubber strip 4 in the corresponding EPDM rubber strip embedding groove 7.3 and the water-dipping rubber strip 8 inserted in the corresponding water-dipping rubber strip embedding groove 7.5 are sealed. The left frame 7.1 of the window frame 7 is fixed on the side wall of the horizontal frame 15 or the mullion 12 of the glass curtain wall by stainless steel self-tapping screws 16 . The right frame 7.4 of the window frame 7 is fixed on the side wall of one side of the horizontal decorative buckle cover 2 of the horizontal frame 15 of the glass curtain wall or the vertical decorative buckle cover of the mullion 12 through the pressing plate 11 and the stainless steel self-tapping nail 16 3 on the side wall on one side, and seal the nail holes with sealant 13. With the above structure, the curtain wall energy-saving heat-insulating inverted window is made. Also because of this, the curtain wall energy-saving thermal insulation inverted window can be embedded in the glass curtain wall as a whole.

Claims (3)

1. fall window in the disconnected heat of a curtain-wall energy-saving type; Comprise the horizontal frame and the window frame on the munnion that are fixed on curtain wall, be assembled in sash and heat insulation adhesive tape on the window frame; It is characterized in that: the jamb that said window frame adopts the bridge cut-off aluminium alloy extrusions to process assembles, and jamb is to be arranged symmetrically in the assembly that the heat insulation adhesive tape in the heat insulation adhesive tape caulking groove of the corresponding side of two frames closely links together by left frame and left frame and utilization; The window sash frame that the cavity aluminium alloy extrusions is processed becomes sash through assembled corner hardware group frame, adopts hinge and window stop to be connected between sash and the window frame, between sash and the window frame through be plugged in the corresponding caulking groove the ethylene-propylene-diene monomer adhesive tape with drape over one's shoulders the glue bar and seal.
2. fall window in the disconnected heat of curtain-wall energy-saving type according to claim 1, it is characterized in that: the left frame of said jamb is fixed on through the stainless steel self threading pin on the sidewall of horizontal frame or munnion of curtain wall.
3. the interior window of the disconnected heat of curtain-wall energy-saving type according to claim 1 is characterized in that: the left frame of said jamb is fixed on the horizontal frame of curtain wall through aluminium alloys pressing plate and stainless steel self threading pin or the grafting of munnion is decorated on the sidewall of buckle closure one side.
CN201220203760.9U 2012-05-09 2012-05-09 Energy-saving and heat-insulated internal inverted window of curtain wall Expired - Fee Related CN202611450U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110056290A (en) * 2019-05-08 2019-07-26 中国建筑西南设计研究院有限公司 Fall window system in a kind of narrow frame for erecting the bright hidden glass curtain wall of cross
CN110067478A (en) * 2019-05-08 2019-07-30 中国建筑西南设计研究院有限公司 Fall window system in a kind of narrow frame for bright frame glass curtain wall

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110056290A (en) * 2019-05-08 2019-07-26 中国建筑西南设计研究院有限公司 Fall window system in a kind of narrow frame for erecting the bright hidden glass curtain wall of cross
CN110067478A (en) * 2019-05-08 2019-07-30 中国建筑西南设计研究院有限公司 Fall window system in a kind of narrow frame for bright frame glass curtain wall

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Granted publication date: 20121219

Termination date: 20140509