CN202117500U - Broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window - Google Patents
Broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window Download PDFInfo
- Publication number
- CN202117500U CN202117500U CN2011201439126U CN201120143912U CN202117500U CN 202117500 U CN202117500 U CN 202117500U CN 2011201439126 U CN2011201439126 U CN 2011201439126U CN 201120143912 U CN201120143912 U CN 201120143912U CN 202117500 U CN202117500 U CN 202117500U
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- sash
- air
- aluminum alloy
- chamber
- heat insulation
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Abstract
A broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window belongs to the technical field of window designing and manufacturing. The broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window is provided with a sash window frame which is made of broken-bridge aluminum alloy section bar. A piece of hollow window and a piece of heat insulation coated glass are fastened on the sash window frame. A clearance is provided between the hollow glass and the heat insulation coated glass for forming an air exchange chamber. The upper part of the air exchange chamber is communicated with a chamber in an upper crosspiece of the sash window frame through an air flow hole. The chamber in the upper crosspiece is provided with an air flow hole which is communicated with the outside part of one side of the heat insulation coated glass. The lower part of the air exchange chamber is communicated with the chamber in a lower crosspiece of the sash window frame through an air flow hole. The chamber in the lower crosspiece is also communicated with the outside part of one side of the hollow glass. The broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window is in a room temperature increase mode when the sash window is mounted in a direction that the heat insulation coated glass faces the indoor space; and is in a room temperature reduction mode when the sash window is mounted in a direction that the heat insulation coated glass faces outdoor space. Compared with the prior art, not only is temperature-adjusting air-exchange effect improved because of high heat insulation performance, but also high convenience is obtained in using the sliding window.
Description
Affiliated technical field
The utility model belongs to the design and manufacturing technology field of window.
Background technology
Chinese patent number has been announced a kind of " solar energy temperature-regulating air hole " for the file of ZL200920110815.X, and this window has the sash overturn structure, is not sliding sash.On the other hand, sliding sash is because open flexibly, and is easy to operate simple and receive users' favor.
Existing bridge cut-off aluminium alloy extrusions is divided into inside and outside two parts through the Reinforced Nylon parting bead with aluminium alloy extrusions, and with the conduction of heat of blocking-up aluminium, its outstanding advantage is that heat insulation property is fine, therefore is particularly suitable for solar energy ventilation temperature adjustment window and adopts.
Application number is that 200810216329.6 Chinese patent file has been announced a kind of transparent heat insulation coating of alkyd resin glass; " the heat insulating coating film glass " that uses this coating is present patent application existing procucts a few days ago; It and other coated glasses are relatively; Have the visible light transmissivity height, therefore advantages such as the infrared rays transmitance is low, hardness is high, strong adhesion are specially adapted to solar energy ventilation temperature adjustment window.
The utility model content
The purpose of the utility model provides a kind of bridge cut-off aluminium alloys solar energy ventilation temperature adjustment sliding sash, thereby further improves the thermoregulation effect and the ease of use of solar energy ventilation temperature adjustment window.
The utility model is a sash left and right sides push-pull configuration; Has the sash frame of making by the bridge cut-off aluminium alloy extrusions; Be fastened with a hollow glass and a heat insulating coating film glass on the sash frame; Leave between hollow glass and the heat insulating coating film glass and form ventilation lumen at interval, ventilation lumen top is communicated with the interior cavity of sash frame top rail through airflow hole, and the cavity in the top rail is established the external communications of airflow hole and heat insulating coating film glass one side; The ventilation lumen bottom also is communicated with the interior cavity of sash frame bottom rail through airflow hole, and the cavity in the bottom rail is also established the external communications of airflow hole and hollow glass one side.Sash left and right sides push-pull configuration is a prior art.Hollow glass has the commercially available prod, also is prior art.
The use of the utility model:
Test shows, when the installation direction of sash be " heat insulating coating film glass " face when indoor, the air in the ventilation lumen can be under the effect of outdoor solar thermal energy and heat up rapidly, forms the thermal current rising.Thermal current is through the airflow hole of top rail internal cavity and external communications and continue to flow into indoor.Simultaneously, the continuous suction chamber outer air of the airflow hole of bottom rail internal cavity and external communications, outdoor air gets in the ventilation lumen and is heated again.Above process is carried out continuously, thereby it is indoor to realize having warm air to flow into continuously, improves room temperature, ventilation.This is a rising room temperature pattern.
Test also shows, when the installation direction of sash be " heat insulating coating film glass " face when outdoor, not only can block and reflecting sun heat radiation, can also reduce interior temperature.Air in the ventilation lumen can be under the effect of outdoor solar thermal energy and heat up rapidly, forms the thermal current rising.Thermal current is through the airflow hole of top rail internal cavity and external communications and continue to flow into outdoor.Simultaneously, the airflow hole of bottom rail internal cavity and external communications constantly sucks room air, and room air gets in the ventilation lumen and heated up again.Above process is carried out continuously, thereby realizes that indoor hot air constantly discharges outdoorly in a steady stream, and ventilation reduces room temperature.This is to reduce the room temperature pattern.
Installation direction as for sash is rising room temperature pattern or reduces the room temperature pattern, can according to circumstances confirm according to user's request.Such as, northern user generally can select to be mounted to rising room temperature pattern; To summer, the user can get in touch the supporting after-sale service site of manufacturer if needs are arranged, and transfers turnback to be replaced as sash and reduces the room temperature pattern.In general northern user, summer, the meeting of sensible heat was directly windowed.
Installation direction as for sash is rising room temperature pattern or reduces the room temperature pattern, can according to circumstances confirm according to user's request.Such as, northern user generally can select to be mounted to rising room temperature pattern; To summer, the general cooling of directly windowing of user's sensible heat.The user need be replaced with the pattern in summer as if having, and can get in touch the supporting after-sale service site of manufacturer, transfers turnback to be replaced as sash and reduces the room temperature pattern.
The advantage of the utility model: compared with prior art, not only because of heat insulation property improves easily the temperature adjustment ventilation effect, and sliding sash is very convenient to use.
Description of drawings
Fig. 1 is an embodiment stereoscopic sketch map.
Fig. 2 is the separation perspective view of ventilation lumen part among the embodiment.
Fig. 3 is the cross-sectional view of a sash among the embodiment.
The specific embodiment
Embodiment: see Fig. 1~3.The utility model is a sash left and right sides push-pull configuration, has the housing 1 and sash frame 2 made by the bridge cut-off aluminium alloy extrusions.Be fastened with a hollow glass 3 and a heat insulating coating film glass 4 on the sash frame 2.Thereby accompany an aluminum alloy frame 6 between hollow glass 3 and the heat insulating coating film glass 4 and form ventilation lumen 5.Aluminum alloy frame 6 tops are provided with airflow hole 7, and airflow hole 7 is communicated with the interior cavity 8 of sash frame 2 top rails, and cavity 8 is established the external communications of airflow hole 9 and heat insulating coating film glass 4 one sides.Aluminum alloy frame 6 bottoms also are provided with airflow hole 10, and airflow hole 10 is communicated with the interior cavity 11 of sash frame 2 bottom rails, and cavity 11 also passes through the external communications of airflow hole 12,13 and hollow glass 3 one sides.12 is the aluminium alloys press strip of heat insulating coating film glass 4 among the figure.
Above embodiment has been merely the utility model has been further described, and the scope of the utility model does not receive the limitation of the embodiment that lifts.
Claims (2)
1. bridge cut-off aluminium alloys solar energy ventilation temperature adjustment sliding sash; It is characterized in that: be sash left and right sides push-pull configuration; Have the sash frame of making by the bridge cut-off aluminium alloy extrusions, be fastened with a hollow glass and a heat insulating coating film glass on the sash frame, leave between hollow glass and the heat insulating coating film glass and form ventilation lumen at interval; Ventilation lumen top is communicated with the interior cavity of sash frame top rail through airflow hole; Cavity in the top rail is established the external communications of airflow hole and heat insulating coating film glass one side, and the ventilation lumen bottom also is communicated with the interior cavity of sash frame bottom rail through airflow hole, and the cavity in the bottom rail is also established the external communications of airflow hole and hollow glass one side.
2. like the said bridge cut-off aluminium alloys of claim 1 solar energy ventilation temperature adjustment sliding sash, it is characterized in that: accompany an aluminum alloy frame (6) between hollow glass (3) and the heat insulating coating film glass (4) thereby formation ventilation lumen (5).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011201439126U CN202117500U (en) | 2011-05-09 | 2011-05-09 | Broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011201439126U CN202117500U (en) | 2011-05-09 | 2011-05-09 | Broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window |
Publications (1)
Publication Number | Publication Date |
---|---|
CN202117500U true CN202117500U (en) | 2012-01-18 |
Family
ID=45458574
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN2011201439126U Expired - Fee Related CN202117500U (en) | 2011-05-09 | 2011-05-09 | Broken-bridge aluminum alloy solar air-exchange temperature-adjusting sliding window |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN202117500U (en) |
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2011
- 2011-05-09 CN CN2011201439126U patent/CN202117500U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20120118 Termination date: 20150509 |
|
EXPY | Termination of patent right or utility model |