CN212054301U - Energy-saving waterproof flush window system - Google Patents
Energy-saving waterproof flush window system Download PDFInfo
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- CN212054301U CN212054301U CN201922278413.7U CN201922278413U CN212054301U CN 212054301 U CN212054301 U CN 212054301U CN 201922278413 U CN201922278413 U CN 201922278413U CN 212054301 U CN212054301 U CN 212054301U
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- 239000011521 glass Substances 0.000 claims abstract description 130
- 230000000149 penetrating effect Effects 0.000 claims description 40
- 238000009413 insulation Methods 0.000 claims description 37
- 238000007789 sealing Methods 0.000 claims description 32
- 229920000742 Cotton Polymers 0.000 claims description 18
- 238000000034 method Methods 0.000 claims description 17
- 239000002390 adhesive tape Substances 0.000 claims description 12
- 230000003139 buffering effect Effects 0.000 claims description 12
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 10
- 239000002131 composite material Substances 0.000 claims description 9
- 230000008569 process Effects 0.000 claims description 9
- 230000000694 effects Effects 0.000 abstract description 9
- 238000009434 installation Methods 0.000 abstract description 4
- 229910052751 metal Inorganic materials 0.000 description 4
- 239000002184 metal Substances 0.000 description 4
- 150000002739 metals Chemical class 0.000 description 4
- 230000007246 mechanism Effects 0.000 description 3
- 238000004134 energy conservation Methods 0.000 description 2
- 230000002708 enhancing effect Effects 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000004321 preservation Methods 0.000 description 2
- 238000000926 separation method Methods 0.000 description 2
- 239000004677 Nylon Substances 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 229920001778 nylon Polymers 0.000 description 1
- 239000012466 permeate Substances 0.000 description 1
- 239000007779 soft material Substances 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
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Abstract
The utility model relates to the technical field of energy-saving windows, and discloses an energy-saving waterproof flush window system, which comprises a window frame, window sashes and multilayer glass; the multiple glazing comprises a sash glass arranged in a sash and a frame glass arranged in a frame; the window frame comprises a vertical frame and a horizontal frame; the vertical frame comprises a vertical opening frame, a vertical middle frame and a vertical fixing frame which are vertically arranged; the vertical opening frame and the vertical fixing frame are connected into a square frame body through two horizontal frames, the vertical middle frame is positioned in the middle of the square frame body, and two ends of the vertical middle frame are connected with the horizontal frames; the frame glass is arranged between the vertical middle frame and the vertical fixed frame, and the window sash is arranged between the vertical opening frame and the vertical middle frame; the surfaces of the window frame and the window sash facing indoors and outdoors are flush; the horizontal frame at the bottom of the window frame is also provided with a drain hole facing outdoors. When the window sash is closed, the indoor side surface of the window sash is flush with the indoor side surface of the window frame, the installation effect of the window sash glass is the same as that of the frame glass, and the energy-saving window system is very attractive as a whole.
Description
Technical Field
The utility model relates to an energy-conserving window, in particular to energy-conserving waterproof parallel and level window system.
Background
With the shortage of energy, building energy conservation is gradually paid more and more attention by people. The reasonable selection of the building energy-saving material is a key link for realizing comprehensive building energy saving. The energy-saving window saves energy by reducing indoor heat loss, and the energy-saving window can effectively reduce indoor energy loss by 30 percent. The accumulated water in the isobaric cavity of the outdoor section bar of the traditional energy-saving window system is easy to permeate into the room, and the water tightness and the air tightness are general; the window sash of the traditional energy-saving window system is higher than the surface of the window frame, so that the attractiveness of the window is influenced; the hardware position of traditional energy-conserving window sets up unreasonablely, offers the hole of dodging the hardware on the sealing strip usually, influences holistic gas tightness and thermal insulation performance.
SUMMERY OF THE UTILITY MODEL
The technical problem solved by the utility model is to provide an energy-saving waterproof flush window system, the inner surface and the outer surface of a window frame and a window sash are flush, and the appearance is beautiful; the system is also provided with a drain hole for draining water by using the height difference, and rainwater infiltrated into the window frame can be drained outdoors. The sealing system antedisplacement, whole sealing system layer and five metals separation, the sealing layer is located the five metals outside, avoids offering the hole of dodging the hardware, makes system sealing performance more special outsidely.
The utility model provides a technical scheme that its technical problem adopted is: an energy-saving waterproof flush window system comprises a window frame, a window sash and a plurality of layers of glass; the multilayer glass comprises sash glass arranged in a sash and frame glass arranged in a window frame; the window frame comprises a vertical frame and a horizontal frame; the vertical frame comprises a vertical opening frame, a vertical middle frame and a vertical fixing frame which are vertically arranged; the vertical opening frame and the vertical fixing frame are connected into a square frame body through two horizontal frames, the vertical middle frame is positioned in the middle of the square frame body, and two ends of the vertical middle frame are connected with the horizontal frames; the frame glass is arranged between the vertical middle frame and the vertical fixing frame, and the window sash is arranged between the vertical opening frame and the vertical middle frame; the partial surfaces of the window frame and the window sash facing indoors and outdoors are flush; a drain hole for draining water by using a height step difference is formed at the lowest point of the upper surface of the horizontal frame at the bottom of the window frame; when the window sash is closed, the indoor side surface of the window sash is flush with the indoor side surface of the window frame, the installation effect of the window sash glass is the same as that of the frame glass, and the overall attractiveness of the energy-saving window system is improved.
Further, the method comprises the following steps: the vertical opening frame comprises a vertical indoor side opening frame and a vertical outdoor side opening frame; the vertical middle frame comprises a vertical indoor middle frame and a vertical outdoor middle frame; the vertical fixing frame comprises a vertical indoor side fixing frame and a vertical outdoor side fixing frame; the horizontal frame comprises a horizontal indoor side opening frame and a horizontal outdoor side opening frame; the vertical indoor side opening frame and the vertical outdoor side opening frame, the vertical indoor side middle frame and the vertical outdoor side middle frame, the indoor side fixing frame and the vertical outdoor side fixing frame, and the horizontal indoor side opening frame and the horizontal outdoor side opening frame are connected into an integrated composite structure through a strip penetrating process, and the middle connecting part is two heat insulation penetrating strips; and heat-insulating filling cotton is arranged between the two heat-insulating penetrating strips. The indoor side frame and the outdoor side frame of the window frame are connected into an integrated composite mechanism through the strip penetrating process, the heat insulation penetrating strip and the heat insulation filling cotton in the middle can reduce indoor heat loss, and the energy-saving effect is achieved.
Further, the method comprises the following steps: the window sash comprises two vertical fans which are vertically arranged and two horizontal fans which are horizontally arranged; the fan glass is arranged in a direction fan body formed by the two vertical fans and the two horizontal fans; the vertical fans comprise a vertical indoor side opening fan and a vertical outdoor side opening fan; the horizontal fan comprises a horizontal indoor side opening fan and a horizontal outdoor side opening fan; the vertical indoor side opening fan, the vertical outdoor side opening fan, the horizontal indoor side opening fan and the horizontal outdoor side opening fan are connected into an integrated composite structure through a strip penetrating process, and the middle connecting part is provided with two heat insulation penetrating strips; and heat-insulating filling cotton is arranged between the two heat-insulating penetrating strips. The indoor side frame and the outdoor side frame of the window sash are connected into an integrated composite mechanism through the strip penetrating process, the heat insulation penetrating strip and the heat insulation filling cotton in the middle can reduce the loss of indoor heat, and the energy-saving effect is achieved.
Further, the method comprises the following steps: a hidden hinge is arranged on one side, close to the vertical indoor side middle frame, of the vertical indoor side opening frame; the vertical indoor side opening sash is connected with the hidden hinge; an isobaric waterproof sealing strip is arranged between the vertical outdoor side opening frame and the vertical indoor side opening frame; the isobaric waterproof sealing rubber strip is in contact with a heat insulation penetrating strip between the vertical outdoor side opening fan and the vertical indoor side opening fan; a soft rubber strip for buffering is arranged on one side, close to the vertical indoor side opening frame, of the vertical indoor side opening fan; and a soft rubber strip for buffering is also arranged on one side of the vertical outdoor side opening frame, which is close to the vertical outdoor side opening fan. Hidden hinge setting opens between frame and the vertical indoor side opening fan at vertical indoor side, reduces the hinge to the influence of window frame and casement junction planarization, improves energy-conserving window system's pleasing to the eye degree. When the window sash is closed, the isobaric waterproof sealing strip between the window frame and the window sash and the isobaric space between the window sash and the window frame are sealed, so that heat loss can be reduced, and the air tightness of the system is improved. The soft rubber strip is made of soft materials, so that the sound generated when the window is closed can be reduced, the effect of enhancing the air tightness of the system can be achieved, and the heat loss is reduced. Isobaric waterproof sealing strip and five metals separation are located the hardware outside, avoid offering the hole of dodging the hardware, make system sealing performance more special.
Further, the method comprises the following steps: a lock catch for fixing the window sash is arranged between one side of the vertical indoor side middle frame close to the vertical indoor side opening frame and the vertical indoor side opening fan; a handle is arranged on one side, facing the indoor, of the vertical indoor side opening fan; an isobaric waterproof sealing strip is arranged between the vertical indoor side middle frame and the vertical outdoor side middle frame; the isobaric waterproof sealing rubber strip is contacted with the heat insulation penetrating strip on the window sash; a soft rubber strip for buffering is arranged on one side, close to the vertical indoor side opening frame, of the vertical indoor side opening fan; and a soft rubber strip for buffering is also arranged on one side of the vertical outdoor side middle frame, which is close to the vertical outdoor side opening fan.
Further, the method comprises the following steps: an isobaric waterproof sealing rubber strip is arranged on one side, close to the horizontal fan, between the horizontal outdoor side opening frame and the horizontal indoor side opening frame; the isobaric waterproof sealing rubber strip is contacted with the heat insulation penetrating strip on the window sash; one end of the horizontal outdoor side opening frame, which is close to the horizontal outdoor side opening fan, is provided with a soft rubber strip; the horizontal indoor side opening fan is also provided with a soft rubber strip at one end close to the horizontal indoor side opening frame.
Further, the method comprises the following steps: one end of the vertical outdoor side opening fan, which is close to the sash glass, is provided with an outdoor side glass mounting rubber strip; a glass buckling strip is arranged on one side, close to the sash glass, of the vertical indoor side opening sash; one end of the horizontal outdoor opening fan, which is close to the glass sash, is provided with an outdoor glass mounting rubber strip; a glass buckling strip is arranged on one side, close to the glass sash, of the horizontal indoor side opening sash; the sash glass is arranged between the outdoor side glass mounting adhesive tape and the glass buckling strip; an indoor side glass mounting adhesive tape is arranged between the sash glass and the glass buckling strip; and heat insulation cotton is arranged between the fan glass and the heat insulation penetrating strip. The fan glass adopts multilayer vacuum glass, has good heat-proof quality, and the thermal-insulated heat preservation cotton that sets up between fan glass and the casement frame can effectively reduce indoor heat and run off, plays energy-conserving effect.
Further, the method comprises the following steps: the frame glass is arranged in a direction frame body enclosed by the horizontal frame, the vertical middle frame and the vertical fixing frame; one end of the vertical outdoor side middle frame, which is close to the vertical indoor side fixing frame, is provided with an outdoor side glass mounting rubber strip; a glass buckling strip is arranged on one side, close to the vertical indoor side fixing frame, of the vertical indoor side middle frame; one end of the vertical outdoor side fixing frame, which is close to the vertical outdoor side middle frame, is provided with an outdoor side glass mounting rubber strip; one side of the vertical indoor side fixing frame, which is close to the vertical indoor side middle frame, is provided with a glass buckling strip; one end of the horizontal outdoor side opening frame, which is close to the frame glass, is provided with an outdoor side glass mounting rubber strip; a glass buckling strip is arranged on one side, close to the frame glass, of the horizontal indoor side opening frame; the frame glass is arranged between the outdoor side glass mounting rubber strip and the glass buckling strip; an indoor side glass mounting adhesive tape is arranged between the frame glass and the glass buckling strip; and heat insulation cotton is arranged between the frame glass and the heat insulation penetrating strip. The frame glass adopts multilayer vacuum glass, has good heat-proof quality, and the thermal-insulated heat preservation cotton that sets up between frame glass and the window frame can effectively reduce indoor heat and run off, plays energy-conserving effect.
Further, the method comprises the following steps: the drain hole is arranged on one side of the opening frame outside the horizontal chamber facing the outside of the chamber; the lowest point of the drain hole is lower than the frame of the opening frame on the outer side of the horizontal chamber close to the indoor side; and a drainage end cover for covering the drainage hole is also arranged above the drainage hole. The position of the drainage hole is lower than that of the indoor side frame, so that the rainwater is prevented from accumulating and permeating into the room by utilizing the height difference for drainage; the drainage end cover is positioned below the drainage hole and extends downwards to shield the drainage hole, so that water drops are prevented from being blown back to the indoor space.
Drawings
FIG. 1 is a front view of an energy saving waterproof flush window system;
FIG. 2 is a cross-sectional view taken at 1-1;
FIG. 3 is a cross-sectional view taken at 2-2;
FIG. 4 is a cross-sectional view taken at 3-3;
FIG. 5 is a cross-sectional view taken at 4-4;
fig. 6 is a cross-sectional view taken at 5-5.
Labeled as: 100. a window frame; 110. opening the frame vertically at the indoor side; 120. a vertical outdoor side opening frame; 121. a soft adhesive tape; 111. heat insulation penetrating strips; 112. insulating filling cotton; 113. an isobaric waterproof sealing strip; 114. a hidden hinge; 130. a vertical indoor side intermediate frame; 131. locking; 140. a vertical outdoor side intermediate frame; 150. a vertical indoor side fixing frame; 160. a vertical outdoor side fixing frame; 170. opening the frame at the inner side of the horizontal chamber; 180. opening the frame outside the horizontal chamber; 181. a drain hole; 182. a drainage end cover; 200. a window sash; 210. opening the fan at the indoor side; 211. glass buckling strips; 212. mounting an adhesive tape on the indoor glass; 213. a handle; 220. opening a fan outside the vertical chamber; 222. an adhesive tape is arranged on the outdoor glass; 230. opening a fan outside the horizontal chamber; 240. opening a fan at the inner side of the horizontal chamber; 310. glass fan; 320. and (4) frame glass.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
As shown in fig. 1 and 6, an energy saving waterproof flush window system includes a window frame 100, a window sash 200, and multiple glass sheets; the multiple glazing unit includes a sash glass 310 installed in the window sash 200 and a frame glass 320 installed in the window frame 100; the window frame 100 includes a vertical frame and a horizontal frame; the vertical frame comprises a vertical opening frame, a vertical middle frame and a vertical fixing frame which are vertically arranged; the vertical opening frame and the vertical fixing frame are connected into a square frame body through two horizontal frames, the vertical middle frame is positioned in the middle of the square frame body, and two ends of the vertical middle frame are connected with the horizontal frames; the frame glass 320 is installed between the vertical middle frame and the vertical fixing frame, and the window sash 200 is installed between the vertical opening frame and the vertical middle frame; the partial surfaces of the window frame 100 and the window sash 200 facing the indoor and the outdoor are flush; the lowest point of the upper surface of the horizontal frame at the bottom of the window frame 100 is provided with a drain hole 181 for draining water by using a height step. When the window sash 200 is closed, the indoor side surface of the window sash 200 is flush with the indoor side surface of the window frame 100, and the installation effect of the sash glass 310 is the same as that of the frame glass 320, so that the overall aesthetic degree of the energy-saving window system is improved. Isobaric waterproof sealing strip 113 moves forward, separates with the five metals for the sealing member is located the hardware outside, avoids offering the hole of dodging the hardware, makes system sealing performance more special.
On the basis, as shown in fig. 1 to 5, the vertical opening frame includes a vertical indoor side opening frame 110 and a vertical outdoor side opening frame 120; the vertical middle frame includes a vertical indoor side middle frame 130 and a vertical outdoor side middle frame 140; the vertical fixing frame includes a vertical indoor-side fixing frame 150 and a vertical outdoor-side fixing frame 160; the horizontal frame comprises a horizontal indoor side opening frame 170 and a horizontal outdoor side opening frame 180; the vertical indoor side opening frame 110 and the vertical outdoor side opening frame 120, the vertical indoor side intermediate frame 130 and the vertical outdoor side intermediate frame 140, the indoor side fixing frame 150 and the vertical outdoor side fixing frame 160, and the horizontal indoor side opening frame 170 and the horizontal outdoor side opening frame 180 are connected into an integrated composite structure through a strip penetrating process, and the middle connecting part is two heat insulation penetrating strips 111; and heat-insulating filling cotton 112 is arranged between the two heat-insulating penetrating strips 111. The indoor side frame and the outdoor side frame of the window frame 100 are connected into an integrated composite mechanism through a strip penetrating process, and the heat insulation penetrating strip 111 and the heat insulation filling cotton 112 in the middle can reduce indoor heat loss and play a role in energy conservation. The heat insulation rubber strip 111 can be made of nylon with good heat insulation performance, indoor and outdoor heat exchange is reduced, and indoor heat loss is reduced.
On the basis of the above, as shown in fig. 1, 2 and 5, the window sash 200 includes two vertically arranged vertical fans and two horizontally arranged horizontal fans; the fan glass 310 is arranged in a direction fan body formed by two vertical fans and two horizontal fans; the vertical fans include a vertical indoor side opening fan 210 and a vertical outdoor side opening fan 220; the horizontal fans include a horizontal indoor side opening fan 230 and a horizontal outdoor side opening fan 240; the vertical indoor side opening fan 210, the vertical outdoor side opening fan 220, the horizontal indoor side opening fan 230 and the horizontal outdoor side opening fan 240 are connected into an integrated composite structure through a strip penetrating process, and the middle connecting part is two heat insulation penetrating strips 111; and heat-insulating filling cotton 112 is arranged between the two heat-insulating penetrating strips 111.
On the basis, as shown in fig. 2, a hidden hinge 114 is arranged on one side of the vertical indoor side opening frame 110 close to the vertical indoor side middle frame 130; the vertical indoor side opening sash 210 is connected with the hidden hinge 114; an isobaric waterproof sealing strip 113 is arranged between the vertical outdoor side opening frame 120 and the vertical indoor side opening frame 110; the isobaric waterproof sealing rubber strip 113 is in contact with a heat insulation penetrating strip 111 between the vertical outdoor side opening fan 220 and the vertical indoor side opening fan 210; a soft rubber strip 121 for buffering is arranged on one side, close to the vertical indoor side opening frame 110, of the vertical indoor side opening fan 210; a soft rubber strip 121 for buffering is also disposed on one side of the vertical outdoor side opening frame 120 close to the vertical outdoor side opening fan 220. When the window sash 200 is closed, the isobaric waterproof sealing strip 113 between the window frame 100 and the window sash 200 and the isobaric space between the window sash 200 and the window frame 100 are sealed, so that heat loss can be reduced, and the air tightness of the system is improved. The isobaric waterproof sealing strip 113 and the soft rubber strip 112 can be made of soft rubber materials, so that the collision between the window sash 200 and the window frame 100 when the window sash is closed is reduced, the noise generated when the window is closed is reduced, the effect of enhancing the air tightness of the system can be achieved, and the heat loss is reduced.
On the basis, as shown in fig. 3, a lock catch 131 for fixing the window sash 200 is arranged between one side of the vertical indoor side intermediate frame 130 close to the vertical indoor side opening frame 110 and the vertical indoor side opening fan 210; a handle 213 is arranged on one side of the vertical indoor side opening fan 210 facing the indoor; an isobaric waterproof sealing strip 113 is arranged between the vertical indoor side middle frame 130 and the vertical outdoor side middle frame 140; the isobaric waterproof sealing rubber strip 113 is in contact with the heat insulation penetrating strip 111 on the window sash 200; a soft rubber strip 121 for buffering is arranged on one side, close to the vertical indoor side opening frame 110, of the vertical indoor side opening fan 210; a soft rubber strip 121 for buffering is also arranged on one side of the vertical outdoor side middle frame 140 close to the vertical outdoor side opening fan 220.
On the basis, as shown in fig. 5, an isobaric waterproof sealing rubber strip 113 is arranged between the horizontal outdoor side opening frame 180 and the horizontal indoor side opening frame 170 and close to one side of the horizontal fan; the isobaric waterproof sealing rubber strip 113 is in contact with the heat insulation penetrating strip 111 on the window sash 200; a soft rubber strip 121 is arranged at one end of the horizontal outdoor side opening frame 180 close to the horizontal outdoor side opening fan 230; one end of the horizontal indoor side opening fan 240 close to the horizontal indoor side opening frame 170 is also provided with a soft rubber strip 121.
On the basis, as shown in fig. 1, 2, 3 and 5, an outdoor glass mounting strip 222 is arranged at one end of the vertical outdoor opening fan 220 close to the fan glass 310; a glass buckling strip 211 is arranged on one side, close to the glass sash 310, of the vertical indoor side opening sash 210; an outdoor glass mounting rubber strip 222 is arranged at one end of the horizontal outdoor opening fan 230 close to the fan glass 310; a glass buckling strip 211 is arranged on one side of the horizontal indoor side opening fan 240 close to the fan glass 310; the glass sash 310 is arranged between the outdoor side glass mounting rubber strip 222 and the glass buckling strip 211; an indoor glass mounting adhesive tape 212 is arranged between the fan glass 310 and the glass buckling strip 211; and heat insulation cotton 112 is arranged between the fan glass 310 and the heat insulation penetrating strip 111.
On the basis, as shown in fig. 1, 3, 4 and 6, the frame glass 320 is installed in a direction frame body enclosed by the horizontal frame, the vertical middle frame and the vertical fixing frame; an outdoor glass mounting rubber strip 222 is arranged at one end of the vertical outdoor side middle frame 140 close to the vertical indoor side fixing frame 150; a glass buckle 211 is arranged on one side of the vertical indoor side middle frame 130 close to the vertical indoor side fixing frame 150; one end of the vertical outdoor side fixing frame 160 close to the vertical outdoor side middle frame 140 is provided with an outdoor side glass mounting rubber strip 222; a glass buckling strip 211 is arranged on one side of the vertical indoor side fixing frame 150 close to the vertical indoor side middle frame 130; one end of the horizontal outdoor side opening frame 180 close to the frame glass 320 is provided with an outdoor side glass installation rubber strip 222; a glass buckle strip 211 is arranged on one side, close to the frame glass 320, of the horizontal indoor side opening frame 170; the frame glass 320 is arranged between the outdoor side glass mounting rubber strip 222 and the glass buckle strip 211; an indoor glass mounting adhesive tape 212 is arranged between the frame glass 320 and the glass buckling strip 211; and heat insulation cotton 112 is arranged between the frame glass 320 and the heat insulation penetrating strip 111.
On the basis, as shown in fig. 5 and 6, the drainage hole 181 is disposed on the outdoor side of the horizontal outdoor opening frame 180; the lowest point of the drain hole 181 is lower than the border of the horizontal outdoor side opening frame 180 close to the indoor side, and a height difference is formed between the drain hole 181 and the indoor side, so that accumulated water flows to the drain hole 181 and cannot continue to flow in the window frame, and the water tightness of the whole system is improved; a drainage end cover 182 covering the drainage hole 181 is further arranged above the drainage hole 181, the drainage end cover 182 can effectively prevent rainwater from flowing backwards into the drainage hole 181, and the water tightness of the system is improved.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above-mentioned embodiments are only specific embodiments of the present invention, and are not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.
Claims (9)
1. The utility model provides an energy-conserving waterproof flush window system which characterized in that: comprises a window frame (100), a window sash (200) and a plurality of layers of glass; the multiple glazing comprises a sash glass (310) installed in a sash (200) and a frame glass (320) installed in a frame (100); the window frame (100) comprises a vertical frame and a horizontal frame; the vertical frame comprises a vertical opening frame, a vertical middle frame and a vertical fixing frame which are vertically arranged; the vertical opening frame and the vertical fixing frame are connected into a square frame body through two horizontal frames, the vertical middle frame is positioned in the middle of the square frame body, and two ends of the vertical middle frame are connected with the horizontal frames; the frame glass (320) is arranged between the vertical middle frame and the vertical fixing frame, and the window sash (200) is arranged between the vertical opening frame and the vertical middle frame; the partial surfaces of the window frame (100) and the window sash (200) facing indoors and outdoors are flush; and a drain hole (181) for draining water by using a height step is formed at the lowest point of the upper surface of the horizontal frame at the bottom of the window frame (100).
2. The energy saving waterproof flush window system according to claim 1, wherein: the vertical opening frame comprises a vertical indoor side opening frame (110) and a vertical outdoor side opening frame (120); the vertical middle frame comprises a vertical indoor side middle frame (130) and a vertical outdoor side middle frame (140); the vertical fixing frame includes a vertical indoor side fixing frame (150) and a vertical outdoor side fixing frame (160); the horizontal frame comprises a horizontal indoor side opening frame (170) and a horizontal outdoor side opening frame (180); the vertical indoor side opening frame (110), the vertical outdoor side opening frame (120), the vertical indoor side middle frame (130), the vertical outdoor side middle frame (140), the indoor side fixing frame (150), the vertical outdoor side fixing frame (160), the horizontal indoor side opening frame (170) and the horizontal outdoor side opening frame (180) are connected into an integrated composite structure through a strip penetrating process, and the middle connecting part is divided into two heat insulation penetrating strips (111); and heat-insulating filling cotton (112) is arranged between the two heat-insulating penetrating strips (111).
3. The energy saving waterproof flush window system according to claim 2, wherein: the window sash (200) comprises two vertical fans which are vertically arranged and two horizontal fans which are horizontally arranged; the fan glass (310) is arranged in a direction fan body formed by two vertical fans and two horizontal fans; the vertical fans include a vertical indoor side opening fan (210) and a vertical outdoor side opening fan (220); the horizontal fan comprises a horizontal indoor side opening fan (240) and a horizontal outdoor side opening fan (230); the vertical indoor side opening fan (210), the vertical outdoor side opening fan (220), the horizontal indoor side opening fan (240) and the horizontal outdoor side opening fan (230) are connected into an integrated composite structure through a strip penetrating process, and the middle connecting part is provided with two heat insulation penetrating strips (111); and heat-insulating filling cotton (112) is arranged between the two heat-insulating penetrating strips (111).
4. An energy saving waterproof flush window system according to claim 3, wherein: a hidden hinge (114) is arranged on one side, close to the vertical indoor middle frame (130), of the vertical indoor opening frame (110); the vertical indoor side opening fan (210) is connected with the hidden hinge (114); an isobaric waterproof sealing strip (113) is arranged between the vertical outdoor side opening frame (120) and the vertical indoor side opening frame (110); the isobaric waterproof sealing strip (113) is in contact with a heat insulation penetrating strip (111) between the vertical outdoor side opening fan (220) and the vertical indoor side opening fan (210); a soft rubber strip (121) for buffering is arranged on one side, close to the vertical indoor side opening frame (110), of the vertical indoor side opening fan (210); and a soft rubber strip (121) for buffering is also arranged on one side, close to the vertical outdoor side opening fan (220), of the vertical outdoor side opening frame (120).
5. The energy saving waterproof flush window system according to claim 4, wherein: a lock catch (131) used for fixing the window sash (200) is arranged between one side, close to the vertical indoor side opening frame (110), of the vertical indoor side middle frame (130) and the vertical indoor side opening fan (210); a handle (213) is arranged on one side of the vertical indoor side opening fan (210) facing the indoor space; an isobaric waterproof sealing strip (113) is arranged between the vertical indoor side middle frame (130) and the vertical outdoor side middle frame (140); the isobaric waterproof sealing strip (113) is in contact with the heat insulation penetrating strip (111) on the window sash (200); a soft rubber strip (121) for buffering is arranged on one side, close to the vertical indoor side opening frame (110), of the vertical indoor side opening fan (210); and a soft rubber strip (121) for buffering is also arranged on one side, close to the vertical outdoor side opening fan (220), of the vertical outdoor side middle frame (140).
6. An energy saving waterproof flush window system according to claim 3, wherein: an isobaric waterproof sealing strip (113) is arranged on one side, close to the horizontal fan, between the horizontal outdoor side opening frame (180) and the horizontal indoor side opening frame (170); the isobaric waterproof sealing strip (113) is in contact with the heat insulation penetrating strip (111) on the window sash (200); one end of the horizontal outdoor side opening frame (180) close to the horizontal outdoor side opening fan (230) is provided with a soft rubber strip (121); one end of the horizontal indoor side opening fan (240) close to the horizontal indoor side opening frame (170) is also provided with a soft rubber strip (121).
7. An energy saving waterproof flush window system according to claim 3, wherein: one end of the vertical outdoor side opening fan (220) close to the fan glass (310) is provided with an outdoor side glass mounting rubber strip (222); a glass buckle strip (211) is arranged on one side, close to the sash glass (310), of the vertical indoor side opening sash (210); one end of the horizontal outdoor side opening fan (230) close to the fan glass (310) is provided with an outdoor side glass mounting rubber strip (222); a glass buckle strip (211) is arranged on one side, close to the sash glass (310), of the horizontal indoor side opening sash (240); the fan glass (310) is arranged between the outdoor side glass mounting adhesive tape (222) and the glass buckling strip (211); an indoor side glass mounting adhesive tape (212) is arranged between the fan glass (310) and the glass buckling strip (211); and heat insulation cotton is arranged between the fan glass (310) and the heat insulation penetrating strip (111).
8. An energy saving waterproof flush window system according to claim 3, wherein: the frame glass (320) is arranged in a direction frame body enclosed by the horizontal frame, the vertical middle frame and the vertical fixing frame; one end, close to the vertical indoor side fixing frame (150), of the vertical outdoor side middle frame (140) is provided with an outdoor side glass mounting rubber strip (222); a glass buckle strip (211) is arranged on one side, close to the vertical indoor side fixing frame (150), of the vertical indoor side middle frame (130); one end of the vertical outdoor side fixing frame (160) close to the vertical outdoor side middle frame (140) is provided with an outdoor side glass mounting rubber strip (222); a glass buckle strip (211) is arranged on one side, close to the vertical indoor middle frame (130), of the vertical indoor fixed frame (150); one end of the horizontal outdoor side opening frame (180) close to the frame glass (320) is provided with an outdoor side glass mounting rubber strip (222); a glass buckle strip (211) is arranged on one side, close to the frame glass (320), of the horizontal indoor side opening frame (170); the frame glass (320) is arranged between the outdoor side glass mounting adhesive tape (222) and the glass buckling strip (211); an indoor glass mounting adhesive tape (212) is arranged between the frame glass (320) and the glass buckle strip (211); and heat insulation cotton is arranged between the frame glass (320) and the heat insulation penetrating strip (111).
9. The energy saving waterproof flush window system according to claim 2, wherein: the drain hole (181) is arranged on one side of the horizontal outdoor opening frame (180) facing the outdoor; the lowest point of the drain hole (181) is lower than the frame of the horizontal outdoor side opening frame (180) close to the indoor side; and a drainage end cover (182) for covering the drainage hole (181) is also arranged above the drainage hole (181).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201922278413.7U CN212054301U (en) | 2019-12-18 | 2019-12-18 | Energy-saving waterproof flush window system |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113914748A (en) * | 2021-11-22 | 2022-01-11 | 哈尔滨阁韵窗业有限公司 | End angle non-welding seam full-splicing type bridge-cut-off aluminum window |
| CN114622804A (en) * | 2022-04-06 | 2022-06-14 | 抚顺市佳瑞铭金属门窗有限公司 | Novel building energy-saving outer window with flush waterproof frame and sash |
| CN120520496A (en) * | 2025-07-11 | 2025-08-22 | 珠海市年顺建筑有限公司 | An eccentric strip-type thermally broken aluminum alloy window |
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2019
- 2019-12-18 CN CN201922278413.7U patent/CN212054301U/en active Active
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN113914748A (en) * | 2021-11-22 | 2022-01-11 | 哈尔滨阁韵窗业有限公司 | End angle non-welding seam full-splicing type bridge-cut-off aluminum window |
| CN114622804A (en) * | 2022-04-06 | 2022-06-14 | 抚顺市佳瑞铭金属门窗有限公司 | Novel building energy-saving outer window with flush waterproof frame and sash |
| CN120520496A (en) * | 2025-07-11 | 2025-08-22 | 珠海市年顺建筑有限公司 | An eccentric strip-type thermally broken aluminum alloy window |
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