CN210343169U - Building energy-saving window - Google Patents

Building energy-saving window Download PDF

Info

Publication number
CN210343169U
CN210343169U CN201920979681.9U CN201920979681U CN210343169U CN 210343169 U CN210343169 U CN 210343169U CN 201920979681 U CN201920979681 U CN 201920979681U CN 210343169 U CN210343169 U CN 210343169U
Authority
CN
China
Prior art keywords
window
sliding
rod
frame
limiting
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201920979681.9U
Other languages
Chinese (zh)
Inventor
陈嘉鑫
任斌
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Yantang Decoration Co ltd
Original Assignee
Shenzhen Yantang Decoration Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Yantang Decoration Co ltd filed Critical Shenzhen Yantang Decoration Co ltd
Priority to CN201920979681.9U priority Critical patent/CN210343169U/en
Application granted granted Critical
Publication of CN210343169U publication Critical patent/CN210343169U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Abstract

The utility model relates to a building energy-saving window, include the window frame and inlay the austral window, sliding sash of establishing in the window frame, the austral window, sliding sash include interior window and exterior window, when the austral window, sliding sash was located the closed condition, the fixed first sealing strip that is provided with between the vertical limit of laminating each other of exterior window and interior window, be provided with on the side that two vertical limits of window frame are close to each other and inlay and establish the limit, seted up on the side that exterior window and interior window were kept away from each other and inlayed and establish the groove, it inlays and establishes the inslot to inlay to establish the limit, inlay and establish the groove and inlay and establish the fixed second sealing strip that is provided with between the limit, fixed being provided with the third sealing strip between the horizontal limit of interior window one side and the window frame is kept away from at the. When the sliding window is closed, the gap between the sliding window and the window frame is sealed, so that the air leakage amount is reduced, and the sliding window has good sealing performance.

Description

Building energy-saving window
Technical Field
The utility model relates to a building door and window's technical field especially relates to a building energy-saving window.
Background
Under the action of indoor and outdoor pressure difference caused by wind and hot pressing, outdoor cold air permeates into a room through a gap between a door and a window and escapes after being heated, and the heat consumed by heating the part of cold air from the outdoor temperature to the indoor temperature is the cold air permeation heat consumption. In heating areas in China in winter, such as severe cold areas, the most used window type is a hollow glass plastic steel window at present, and the cold air permeation phenomenon can be obviously sensed at the gap between the window and the door. If the heat supply is simply increased from the heat source, but not from the energy-saving consideration of the building structure, a great energy waste is easily caused. In summer, outdoor hot air enters the room through the door and window gaps, so that the indoor temperature is increased, and the energy consumed by the air conditioner is increased. Therefore, there is a need for an energy-saving window for buildings that can reduce the amount of air leakage.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a building energy-saving window, its sealing performance is good, the effectual volume of leaking that has reduced.
The above object of the present invention can be achieved by the following technical solutions: an energy-saving window for building is composed of window frame, slide window consisting of internal window and external window, frame and glass plate, the sum of the widths of the inner window and the outer window is larger than the width of the window frame and smaller than the sum of the widths of the window frame and the two frames, when the sliding window is in a closed state, a first sealing strip is fixedly arranged between the vertical edges which are mutually jointed with the outer window and the inner window, an embedding edge is arranged on the side surface of the window frame, which is close to the two vertical edges, an embedding groove is arranged on the side surface of the outer window, which is far away from the inner window, the embedding edge is embedded in the embedding groove, a second sealing strip is fixedly arranged between the embedding groove and the embedding edge, and a third sealing strip is fixedly arranged between the horizontal edge of the outer window far away from the inner window and the window frame, and a third sealing strip is also fixedly arranged between the horizontal edge of the inner window far away from the outer window and the window frame.
Through adopting above-mentioned technical scheme, when austral window, sliding sash was closed, exterior window and interior window laminated each other, and sealed vertical gap between interior window and the exterior window through first sealing strip. And a gap between the side edge, far away from each other, of the outer window and the inner window and the window frame is sealed through a second sealing strip. And a gap between the horizontal edge of the sliding window and the window frame is sealed by a third sealing strip. When the sliding window is closed, the gap between the sliding window and the window frame is sealed, so that the air leakage amount is reduced, and the sliding window has good sealing performance.
The utility model discloses further set up to: the sliding window is characterized in that a limiting hole is formed in the horizontal edge, close to the third sealing strip, of the window frame, a limiting rod penetrates through the limiting hole, one end, close to the sliding window, of the limiting rod is fixedly connected with a pressing rod parallel to the sliding window, the third sealing strip is fixedly arranged on one side, close to the sliding window, of the pressing rod, a compression groove is formed in the limiting rod, a limiting clamping block is installed in the compression groove, and an elastic piece is arranged between the limiting clamping block and the bottom surface of the compression groove.
Through adopting above-mentioned technical scheme, because interior window and exterior window need carry out the push-and-pull removal at ordinary times, through promoting the gag lever post, make spacing fixture block on the gag lever post block the gag lever post to make the third sealing strip that connects on the compression bar and the inseparable butt in the horizontal limit of austral window, thereby can compress the gap between the horizontal limit of austral window, sliding sash and the window frame, thereby reduced the gap size between the horizontal limit of austral window, sliding sash and the window frame, improved sealing performance. When the sliding window needs to be moved, the limiting rod cannot be clamped by pressing the limiting clamping block, and the limiting rod moves towards one side away from the sliding window, so that the third sealing strip can not abut against the horizontal edge of the sliding window, and the sliding window is convenient to move. The third sealing strip can play a role in buffering, so that the compressing rod is not easy to damage the sliding window when the sliding window is extruded.
The utility model discloses further set up to: the pressing rod is fixedly provided with a guide rod perpendicular to the pressing rod, the guide rod is positioned at two ends of one side of the pressing rod, which is far away from the sliding window, and the guide rod penetrates through the window frame.
Through adopting above-mentioned technical scheme, the guide bar limits the position that compresses tightly the pole, when the removal compresses tightly the pole, makes that compressing tightly that the pole can remove more steady, is difficult for appearing the phenomenon of offset. The push-pull window can be extruded by the pressing rod more stably.
The utility model discloses further set up to: the length of the limiting clamping block is greater than that of the limiting hole, a limiting groove is formed in the limiting clamping block, and the length of the limiting groove is not less than that of the limiting hole.
Through adopting above-mentioned technical scheme, because the gap between window frame and the austral window, sliding sash is less, presses spacing fixture block for the convenience of people, when can block the position of gag lever post with spacing fixture block, makes partly spacing fixture block be located the window frame outside, and the people of being convenient for extrude spacing fixture block, makes spacing fixture block break away from spacing downthehole.
The utility model discloses further set up to: the pressing rod comprises a first rod and a second rod which are positioned on the same straight line, one end of one rod, which is close to the other rod, is fixedly provided with a threaded column, the axis of the threaded column and the axis of the pressing rod are positioned on the same straight line, one end of the other rod, which is close to the threaded column, is provided with a threaded hole with a cross section equal to that of the threaded column, and the limiting fixture block, the limiting groove and the elastic piece are all positioned on one rod, which is far away from the pressing rod, in the first rod and the second rod.
Through adopting above-mentioned technical scheme, because after using a period, compress tightly the extrusion window frame that the pole is unable fine easily, need increase the distance between spacing fixture block and the third sealing strip this moment. Through rotatory first pole or second pole to under the effect of guide bar, thereby can make the screw post from the screw hole internal rotation partly, and then increased the distance between spacing fixture block and the third sealing strip. The horizontal edge of the window frame can be extruded well by the pressing rod, so that the size of a gap between the horizontal edge of the sliding window and the window frame is reduced, and the phenomenon of air leakage is not easy to occur.
The utility model discloses further set up to: sliding grooves are formed in the bottom surface and the top surface of the sliding window, sliding edges embedded in the sliding grooves are arranged on the bottom surface and the top surface of the window frame, and extrusion rubber strips are embedded in the sliding grooves.
Through adopting above-mentioned technical scheme, when extrudeing the austral window, sliding tray and the gap between the slip limit in the austral window, sliding tray can reduce through compressing tightly the pole, but can not be in the same place closely attaching completely, through being provided with the extrusion adhesive tape, on filling up the gap between sliding tray and the slip limit, when compressing tightly pole extrusion austral window, sealed effect is more good.
The utility model discloses further set up to: the extrusion adhesive tape in the outer window is positioned on one side, away from the inner window, of the sliding groove in the outer window, and the extrusion adhesive tape in the inner window is positioned on one side, away from the outer window, of the sliding groove in the inner window.
Through adopting above-mentioned technical scheme, only install the extrusion adhesive tape on one side lateral wall of sliding tray, when not closing the austral window, the extrusion adhesive tape is less to the influence that the austral window, sliding sash removed at ordinary times, is convenient for remove, and when closing the austral window, can effectually seal it again.
The utility model discloses further set up to: and a knob is fixedly arranged at one end of the limiting rod far away from the pressing rod.
Through adopting above-mentioned technical scheme, rotation that can be convenient through the knob compresses tightly the pole to make first pole and second pole be close to each other or mutual separation.
To sum up, the utility model discloses a beneficial technological effect does:
1. when the sliding window is closed, the gap between the sliding window and the window frame is sealed, so that the air leakage amount is reduced, and the sliding window has good sealing performance;
2. the structure is simple, and the use is convenient for people.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic view of the structure with the upper part hidden;
FIG. 3 is a schematic view of the position of the stop lever after the partial structure is hidden;
FIG. 4 is a schematic structural view of a stop lever;
FIG. 5 is a schematic view of the structure of the extruded strip.
Reference numerals: 1. a window frame; 11. sliding windows; 111. an inner window; 112. an outer window; 113. a frame; 114. a glass plate; 12. a first seal strip; 13. embedding a groove; 14. embedding edges; 15. a second seal strip; 2. a limiting hole; 21. a guide bar; 22. a hold down bar; 23. a third seal strip; 3. a limiting rod; 31. a first lever; 32. a second lever; 33. a threaded hole; 34. a threaded post; 35. a compression groove; 36. a limiting clamping block; 37. a spring; 38. a limiting groove; 39. a knob; 4. a sliding edge; 41. a sliding groove; 42. the strip is extruded.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1 and 2, the building energy saving window comprises a window frame 1 and a sliding window 11 embedded in the window frame 1, wherein the sliding window 11 comprises an inner window 111 close to the indoor space and an outer window 112 far away from the indoor space, and both the inner window 111 and the outer window 112 comprise a frame 113 and a glass plate 114. The width of each of the inner window 111 and the outer window 112 is equal to the sum of the width of the window frame 1 and the width of one frame 113. When the sliding window 11 is in the closed state, the edges of the outer window 112 and the inner window 111 that are close to each other abut against each other. A rubber strip as the first weather strip 12 is attached to both the side surfaces of the inner window 111 and the outer window 112 that abut against each other. The side faces, far away from each other, of the outer window 112 and the inner window 111 are provided with embedding grooves 13, the side faces, close to each other, of the two vertical edges of the window frame 1 are integrally formed with embedding edges 14, and the embedding edges 14 are embedded in the embedding grooves 13. A rubber strip as a second weather strip 15 is attached to the fitting groove 13. The lengths of the embedded edge 14, the embedded groove 13, the first sealing strip 12 and the second sealing strip 15 are equal to the length of the vertical edge of the sliding window 11. With this arrangement, when the sliding window 11 is in the closed state, the gap between the two sides of the outer window 112 and the inner window 111 that are close to each other is sealed by the first sealing tape 12. The gap between the side of the outer window 112 and the inner window 111 facing away from each other and the window frame 1 is sealed by the second sealing tape 15. Gaps between the inner window 111 and the outer window 112 and between the sliding window 11 and the window frame 1 are reduced, so that the air leakage amount is reduced, indoor air is prevented from circulating with the outside, and the energy consumption of air conditioning or heating is reduced.
As shown in fig. 3 and 4, a limiting hole 2 is formed on a horizontal edge of the window frame 1, and when the sliding window 11 is in a closed state, the limiting hole 2 is formed in the window frame 1 adjacent to a side of the outer window 112 (shown in fig. 1) far away from the inner window 111 and a side of the inner window 111 far away from the outer window 112. The limiting rod 3 penetrates through the limiting hole 2, the length of the limiting rod 3 is larger than that of the limiting hole 2, a pressing rod 22 parallel to the horizontal edge of the sliding window 11 is fixedly mounted at one end, close to the sliding window 11, of the limiting rod 3, and the length of the pressing rod 22 is equal to that of the horizontal edge of the sliding window 11. A rubber strip serving as a third sealing strip 23 is adhered to one side of the pressing rod 22 away from the limiting rod 3. Because austral window, sliding sash 11 need promote and open the window or close the window, when closing the window, through promoting gag lever post 3, make the level limit of compressing tightly pole 22 and austral window, sliding sash 11 closely butt to compress the gap between the level limit of austral window, sliding sash 11 and window frame 1, and then reduced the volume of leaking out, the effectual energy resource consumption who reduces air conditioner or heating installation. And when needs promote austral window, sliding sash 11, pull out gag lever post 3, make the compression bar 22 not with austral window, sliding sash 11 inseparable butt to be convenient for slide austral window, sliding sash 11. The third sealing strip 23 can be clamped between the pressing rod 22 and the sliding window 11 when the pressing rod 22 presses the sliding window 11, so that the sliding window 11 is well protected, and the sliding window 11 is not easy to damage.
As shown in fig. 3 and 4, a guide rod 21 parallel to the limiting rod 3 is fixedly mounted at both ends of one side of the pressing rod 22 away from the sliding window 11 (shown in fig. 1), and the length of the guide rod 21 is equal to that of the limiting rod 3 and penetrates through the window frame 1. The limiting rod 3 comprises a first rod 31 and a second rod 32 which are positioned on the same straight line, the first rod 31 is fixedly connected with the pressing rod 22, a threaded hole 33 is formed in one end, close to the second rod 32, of the first rod 31, and a threaded column 34 matched with the threaded hole 33 is integrally formed in one end, close to the first rod 31, of the second rod 32. The side surface of the second rod 32 is provided with a compression groove 35, a limiting clamping block 36 is embedded in the compression groove 35, and a spring 37 is arranged between the limiting clamping block 36 and the bottom surface of the compression groove 35. The length of the limiting clamping block 36 is greater than that of the limiting hole 2, the middle part of the limiting clamping block 36 is provided with a limiting groove 38, and the length of the limiting groove 38 is equal to that of the limiting hole 2. A knob 39 is integrally formed on an end of the second lever 32 remote from the first lever 31. When the sliding window 11 is in a closed state, the limiting rod 3 is pushed, so that the limiting clamping block 36 on the limiting rod 3 is clamped in the limiting hole 2, and the position of the limiting rod 3 is simply fixed. After the fixing, the knob 39 can be rotated to separate the first rod 31 and the second rod 32 from each other, and the pressing rod 22 can further press the sliding window 11, so that the gap between the horizontal edge and the window frame 1 is further reduced, and the air leakage rate is reduced. When needing to be opened, the limiting fixture block 36 positioned on one side, far away from the sliding window 11, of the window frame 1 is pressed down, so that the limiting fixture block 36 can be separated from the limiting hole 2, and the limiting rod 3 is pulled out.
As shown in fig. 1 and 5, the sliding edge 4 is integrally formed on the bottom surface and the top surface of the window frame 1, and the sliding groove 41 is formed on both the bottom surface and the top surface of the sliding window 11. An extrusion tape 42 is stuck to the inner side surface of the slide groove 41, and the length of the extrusion tape 42 is equal to the length of the slide groove 41. The pressing tape 42 is stuck to both the side wall of the sliding groove 41 of the outer window 112 away from the inner window 111 and the side wall of the sliding groove 41 of the inner window 111 away from the outer window 112. On the effectual gap between 41 with sliding tray and the slip limit 4 of extrusion adhesive tape 42 was filled up, when compressing tightly pole 22 extrusion austral window, sliding sash 11, sealed effect was more good, and when not closing austral window, sliding sash 11 at ordinary times, the influence that extrusion adhesive tape 42 removed austral window, sliding sash 11 was less, was convenient for remove.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides a building energy-saving window, includes window frame (1) and inlays austral window, sliding sash (11) of establishing in window frame (1), austral window, sliding sash (11) include interior window (111) and exterior window (112), interior window (111) and exterior window (112) all include frame (113) and glass board (114), its characterized in that: the sum of the widths of the inner window (111) and the outer window (112) is larger than the width of the window frame (1), and is smaller than the sum of the widths of the window frame (1) and the two frames (113), when the sliding window (11) is in a closed state, a first sealing strip (12) is fixedly arranged between the vertical edges of the outer window (112) and the inner window (111) which are mutually jointed, the side surfaces of two vertical edges of the window frame (1) which are close to each other are provided with embedded edges (14), the side surfaces of the outer window (112) and the inner window (111) which are far away from each other are provided with embedded grooves (13), the embedded edges (14) are embedded in the embedded grooves (13), second sealing strips (15) are fixedly arranged between the embedded grooves (13) and the embedded edges (14), a third sealing strip (23) is fixedly arranged between the horizontal edge of the outer window (112) far away from the inner window (111) and the window frame (1), and a third sealing strip (23) is also fixedly arranged between the horizontal edge of the inner window (111) far away from the outer window (112) and the window frame (1).
2. The building energy saving window of claim 1, wherein: window frame (1) on be close to the horizontal edge of third sealing strip (23) seted up spacing hole (2), wear to be equipped with gag lever post (3) in spacing hole (2), gag lever post (3) are close to one of austral window, sliding sash (11) serve fixedly connected with austral window, sliding sash (11) parallel compress tightly pole (22), third sealing strip (23) are fixed to be set up in one side that compress tightly pole (22) are close to austral window, sliding sash (11), gag lever post (3) on seted up compression groove (35), install spacing fixture block (36) in compression groove (35), and be provided with the elastic component between spacing fixture block (36) and compression groove (35) bottom surface.
3. The building energy saving window of claim 2, wherein: the sliding window is characterized in that a guide rod (21) perpendicular to the pressing rod (22) is fixedly mounted on the pressing rod (22), the guide rod (21) is located at two ends of one side, away from the sliding window (11), of the pressing rod (22), and the guide rod (21) penetrates through the window frame (1).
4. A building energy saving window as claimed in claim 3, wherein: the length of the limiting clamping block (36) is greater than that of the limiting hole (2), a limiting groove (38) is formed in the limiting clamping block (36), and the length of the limiting groove (38) is not less than that of the limiting hole (2).
5. The building energy saving window of claim 4, wherein: the pressing rod (22) comprises a first rod (31) and a second rod (32) which are located on the same straight line, one end, close to the other rod, of one rod is fixedly provided with a threaded column (34), the axis of the threaded column (34) and the axis of the pressing rod (22) are located on the same straight line, one end, close to the threaded column (34), of the other rod is provided with a threaded hole (33) with the cross section equal to that of the threaded column (34), and a limiting clamping block (36), a limiting groove (38) and an elastic piece are located in the first rod (31) and the second rod (32) and are far away from the pressing rod (22).
6. The building energy saving window of claim 2, wherein: sliding grooves (41) are formed in the bottom surface and the top surface of the sliding window (11), sliding edges (4) embedded in the sliding grooves (41) are arranged on the bottom surface and the top surface of the window frame (1), and extrusion rubber strips (42) are embedded in the sliding grooves (41).
7. The building energy saving window of claim 6, wherein: the extrusion adhesive tape (42) in the outer window (112) is positioned on one side, away from the inner window (111), of the sliding groove (41) in the outer window (112), and the extrusion adhesive tape (42) in the inner window (111) is positioned on one side, away from the outer window (112), of the sliding groove (41) in the inner window (111).
8. The building energy saving window of claim 2, wherein: and a knob (39) is fixedly installed at one end of the limiting rod (3) far away from the pressing rod (22).
CN201920979681.9U 2019-06-26 2019-06-26 Building energy-saving window Expired - Fee Related CN210343169U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920979681.9U CN210343169U (en) 2019-06-26 2019-06-26 Building energy-saving window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920979681.9U CN210343169U (en) 2019-06-26 2019-06-26 Building energy-saving window

Publications (1)

Publication Number Publication Date
CN210343169U true CN210343169U (en) 2020-04-17

Family

ID=70191002

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920979681.9U Expired - Fee Related CN210343169U (en) 2019-06-26 2019-06-26 Building energy-saving window

Country Status (1)

Country Link
CN (1) CN210343169U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111794637A (en) * 2020-06-19 2020-10-20 中电建建筑装饰工程有限公司 Novel energy-saving door and window with sealing and heat insulation functions

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111794637A (en) * 2020-06-19 2020-10-20 中电建建筑装饰工程有限公司 Novel energy-saving door and window with sealing and heat insulation functions

Similar Documents

Publication Publication Date Title
WO2016034078A1 (en) Highly-watertight door/window system
CN201318098Y (en) Flat closed and energy saving sliding door and window
CN210343169U (en) Building energy-saving window
CN202611457U (en) Sliding door with high water tightness and air tightness
CN207673208U (en) A kind of solid-wood energy-saving door and window
CN207538686U (en) A kind of high sealing environmental protection medi-empty glass window
CN101654990B (en) Broken-bridge energy-saving window
CN204552481U (en) Pure wooden outward opening door window system
CN203285253U (en) Novel energy-saving environment-friendly aluminum alloy casement window
CN209817805U (en) Firm and durable attractive splicing mechanism
CN112681955A (en) Inside and outside adhesive tape structure that sealed effectual
CN217632013U (en) High leakproofness keeps warm and insulates against heat type inwardly opened window structure
CN210768377U (en) a modular window
CN204663311U (en) A kind of novel fixing sliding sash
CN204728902U (en) Aluminum-clad wood outwardly-opened door window system
CN2599193Y (en) Energy-saving plastic-aluminum composite casement doors and windows
CN210685749U (en) Energy-conserving door and window subassembly structure of aluminum alloy
CN204552475U (en) A kind of energy-saving heat preserving door and window
CN205135294U (en) Single -track sliding window
CN216974581U (en) An environmentally friendly sliding window sealing structure
CN214943535U (en) Drainage window frame structure
CN103422781A (en) Sliding door with high water tightness and air tightness
CN213743125U (en) Sealing rubber strip of aluminum plate heat preservation window
CN201103315Y (en) Section bar for heat-insulating internally bending and opening window
CN203321212U (en) Side frame of outer frame profile

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200417

CF01 Termination of patent right due to non-payment of annual fee