CN211573158U - Internal opening type novel aluminum alloy screen integrated window - Google Patents
Internal opening type novel aluminum alloy screen integrated window Download PDFInfo
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- CN211573158U CN211573158U CN202020016865.8U CN202020016865U CN211573158U CN 211573158 U CN211573158 U CN 211573158U CN 202020016865 U CN202020016865 U CN 202020016865U CN 211573158 U CN211573158 U CN 211573158U
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Abstract
The utility model belongs to the technical field of the technique of aluminum alloy window and specifically relates to an integrative window of interior open novel aluminum alloy gauze is related to. The utility model provides an integrative window of interior open novel aluminum alloy screen, includes the window frame and is located casement and the screen window on the window frame, install hinge post, frame in the frame of window frame down the bottom surface install hinge post down, install the connecting block on one side of screen window upper end, go up the connecting block shaping and have the last hinge hole that penetrates hinge post, the connecting block is installed down on one side of screen window lower extreme, the lower hinge hole that has the hinge post that penetrates down to the connecting block shaping down. An upper hinge post and a lower hinge post are arranged in the window frame so that the screen window is hinged on the window frame through the matching of the upper hinge hole and the lower hinge hole. The screen window structure can be opened and closed, and can be directly connected to the window sash, so that the screen window does not need to be additionally arranged.
Description
Technical Field
The utility model belongs to the technical field of the technique of aluminum alloy window and specifically relates to an integrative window of interior open novel aluminum alloy gauze is related to.
Background
At present, the aluminum-mould composite window adopts a structure of outer aluminum and inner wood, the heat-insulating and energy-saving performance of the window is improved through the structure of the inner wood, and the energy consumption of heating and refrigerating of a room is reduced.
The existing Chinese patent with the publication number of CN203626525U discloses a hidden sash type sliding window. According to the technical scheme, the window sash is only provided with one piece of glass when the opening surface of the window sash is seen from the outside through the hidden sash processing, the area of aluminum profile leakage is reduced while the lighting area is increased, and the heat insulation performance of the whole window is improved.
The above prior art solution has the following drawbacks: when the window sash of the hidden sash type sliding window needs to be opened under the condition of more mosquitoes in summer, the mosquito-proof effect can be achieved only by additionally arranging the screen window on the window frame.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an integrative window of interior open novel aluminum alloy gauze, its advantage is in need not additionally to install the mosquito-proof of screen window additional to the not enough of prior art existence.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme: the utility model provides an integrative window of interior open novel aluminum alloy screen, includes the window frame and is located casement and the screen window on the window frame, install hinge post, frame in the frame of window frame down the bottom surface install hinge post down, install the connecting block on one side of screen window upper end, go up the connecting block shaping and have the last hinge hole that penetrates hinge post, the connecting block is installed down on one side of screen window lower extreme, the lower hinge hole that has the hinge post that penetrates down to the connecting block shaping down.
Through adopting above-mentioned technical scheme, set up articulated post and articulated post down in the window frame and make the screen window articulate on the window frame through last hinge hole and lower hinge hole cooperation. The screen window structure can be opened and closed, and can be directly connected to the window sash, so that the screen window does not need to be additionally arranged.
The present invention may be further configured in a preferred embodiment as: the upper end shaping of articulated post has waist type reference column down, and the width of waist type reference column is less than the diameter of articulated post down, and the side shaping of lower connecting block has the constant head tank that is passed by waist type reference column, the hinge hole is linked together under the constant head tank, and the diameter of going up the hinge post is less than the diameter of hinge hole.
Through adopting above-mentioned technical scheme, because the diameter of going up the hinge post is less than the diameter of going up the hinge hole, consequently go up the hinge hole and have certain surplus space when going up hinge post and last hinge hole plug and connect for the screen window can carry out the angle modulation of certain limit. Therefore, during installation, the upper hinge post can be firstly inserted into the upper hinge hole, and then the waist-shaped positioning post enters the lower hinge hole through the positioning groove. And then the screen window is moved downwards, so that the lower hinge post penetrates into the lower hinge hole.
The present invention may be further configured in a preferred embodiment as: the width of the positioning groove in the direction far away from the lower hinge hole is gradually increased, and the minimum width of the positioning groove is equal to the width of the waist-shaped positioning column.
Through adopting above-mentioned technical scheme, set up the constant head tank and to keeping away from hinge hole direction width crescent down for the constant head tank just begins to be the widest position of constant head tank when cooperating with waist type reference column, makes waist type reference column conveniently block in the constant head tank.
The present invention may be further configured in a preferred embodiment as: the length direction of the cross section of the waist-shaped positioning column is perpendicular to the front direction of the window frame, and the length of the cross section of the waist-shaped positioning column is equal to the diameter of the lower hinge column.
Through adopting above-mentioned technical scheme, set up the cross-sectional length of waist type reference column and the diameter of hinge post equals makes waist type reference column card go into down the hinge hole after, only need rotate the casement just can make waist type reference column along cross-sectional length direction's both ends and the inner wall butt of hinge hole down, the axis of hinge post and hinge hole overlaps down this moment. The lower hinge post can be inserted into the lower hinge hole by moving the screen window downwards. The length direction of the section of the waist-shaped positioning column is perpendicular to the front direction of the window frame, so that the screen window can be disassembled and assembled only when the screen window is rotated to a state perpendicular to the front of the window frame.
The present invention may be further configured in a preferred embodiment as: the window frame includes first bridge cut-off frame, second bridge cut-off frame and connects the frame joint strip of first bridge cut-off frame and second bridge cut-off frame, the casement includes first bridge cut-off fan, second bridge cut-off fan and connects the fan joint strip of first bridge cut-off fan and second bridge cut-off fan.
Through adopting above-mentioned technical scheme, connect bridge cut-off frame, fan-shaped window frame and casement of bridge cut-off through frame connection adhesive tape and fan connection adhesive tape for window frame and casement form the bridge cut-off structure, owing to connect through connecting the adhesive tape in bridge cut-off structure department, the heat conductivility is relatively weak, consequently can play good thermal-insulated heat preservation effect.
The present invention may be further configured in a preferred embodiment as: first bridge cut-off frame includes first frame supporting part, shaping in the left horizontal extension board in first frame supporting part upper end and shaping in the last extension board that the left end of horizontal extension board upwards extended, the right side of going up the extension board is equipped with first frame fan sealing strip.
Through adopting above-mentioned technical scheme, set up first sash sealing strip on last extension board, form first sealing through first sash sealing strip and screen window butt.
The present invention may be further configured in a preferred embodiment as: the upper right side shaping of first frame supporting part has first last spread groove, the second bridge cut-off frame includes second frame supporting part, and the upper left side shaping of second frame supporting part has spread groove on the second, is connected with second frame fan sealing strip on first spread groove and the second between the spread groove, and the upper left end shaping right side of second frame fan sealing strip has first butt sand grip.
Through adopting above-mentioned technical scheme, first bridge cut-off frame and second bridge cut-off frame are connected to the closely knit portion of second frame fan sealing strip, play the effect of strengthening both connection structure. And forming a first abutting convex strip on the second frame sash sealing strip to be matched with the sash to form a sealing surface.
The present invention may be further configured in a preferred embodiment as: first bridge cut-off fan includes first supporting part, the shaping in the lower extension board of the right side downwardly extending of first supporting part, and the left side fixedly connected with third frame fan sealing strip of lower extension board lower extreme.
Through adopting above-mentioned technical scheme, come to form the third sealing face with the window frame butt through setting up third frame fan sealing strip, further strengthen the sealed effect of window.
The present invention may be further configured in a preferred embodiment as: the second bridge cut-off fan includes that the second fans the supporting part, and the left side shaping of first supporting part of fanning has two first spread grooves of fanning, and the right side shaping of second supporting part has two second spread grooves of fanning, and two first spread grooves and second fan all are connected through a connection adhesive tape between the spread groove, and the downside shaping of the fan connection adhesive tape of below has the second butt sand grip sealed with the cooperation of first butt sand grip.
Through adopting above-mentioned technical scheme, connect first supporting part and second fan supporting part through fan the joint strip, set up second butt sand grip and first butt sand grip butt and reach sealed effect on the fan joint strip of below.
The present invention may be further configured in a preferred embodiment as: a positioning block mounting groove is formed in the position, close to the right, of the upper end face of the first fan supporting part, a first glass positioning block is inserted in the positioning block mounting groove, and a first glass sealing strip is fixed on the left side of the first glass positioning block; the second bridge cut-off fan comprises a second fan supporting part and a second glass positioning block located at the position, close to the left side, of the upper end of the second fan supporting part, and a second glass sealing strip is fixed on the right side of the upper end of the second glass positioning block.
By adopting the technical scheme, the hollow glass is positioned by matching the first glass positioning block and the second glass positioning block. And the first glass sealing strip and the second glass sealing strip are matched with the hollow glass to form a sealing surface.
To sum up, the utility model discloses a following at least one useful technological effect:
1. in the scheme, the screen window structure can be opened and closed and can be directly connected to the window sash, so that the screen window does not need to be additionally arranged;
2. the user can select different decorative boards according to the indoor decoration style of the user, and the coordinated decoration effect is achieved.
Drawings
FIG. 1 is a schematic sectional view of an embodiment;
FIG. 2 is a schematic sectional view of a window frame portion in the embodiment;
FIG. 3 is a schematic sectional view of a sash portion in the embodiment;
figure 4 is an exploded view of the screen portion of the embodiment;
FIG. 5 is an exploded view of the lower connector block portion in the embodiment;
FIG. 6 is an exploded view of the upper connector block portion in the embodiment;
FIG. 7 is a schematic structural view of the lower joint block portion in another view in the embodiment;
fig. 8 is an overall structural schematic diagram of the embodiment.
Reference numerals: 1. a window frame; 2. a window sash; 3. a screen window; 4. a first bridge cutoff frame; 5. a second bridge cut-off frame; 6. the frame is connected with the adhesive tape; 7. a first bridge cutoff fan; 8. a second bridge cutoff fan; 9. a fan connecting rubber strip; 10. a first frame support portion; 11. a laterally extending plate; 12. an upper extension plate; 13. a first lower connecting groove; 14. a first middle connecting groove; 15. a first upper connecting groove; 16. a first sash seal strip; 17. a second frame support section; 18. a second lower connecting groove; 19. a second middle connecting groove; 20. a second upper connecting groove; 22. a second sash seal strip; 23. a first abutting convex strip; 24. a lower mounting groove; 25. a lock seat; 26. a first fan support portion; 27. a lower extension plate; 28. mounting a mounting groove; 29. a locking block; 30. a third sash seal strip; 31. a first fan connecting groove; 32. a positioning block mounting groove; 33. a first glass positioning block; 34. a first glass seal strip; 35. a second fan support part; 36. a second glass positioning block; 37. a second fan connecting groove; 38. a second abutting convex strip; 39. a second glass seal strip; 40. a fourth frame sash sealing rubber strip; 41. an upper hinge post; 42. a lower hinge post; 43. a waist-shaped positioning column; 44. an upper connecting block; 45. an upper hinge hole; 46. a lower connecting block; 47. a lower hinge hole; 48. positioning a groove; 49. a magnet; 50. an iron block; 51. a first proximity switch; 52. a second proximity switch.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1, the novel inward opening type aluminum alloy screen integrated window comprises a window frame 1, and a window sash 2 and a screen 3 which are positioned on the window frame 1. The window frame 1 comprises a first bridge cut-off frame 4, a second bridge cut-off frame 5 and a frame connecting rubber strip 6 for connecting the first bridge cut-off frame 4 and the second bridge cut-off frame 5. The window sash 2 comprises a first bridge-cut-off sash 7, a second bridge-cut-off sash 8 and a sash connecting rubber strip 9 for connecting the first bridge-cut-off sash 7 and the second bridge-cut-off sash 8.
As shown in fig. 2, the first bridge cutoff frame 4 includes, from a cross-sectional view, a first frame support portion 10, a laterally extending plate 11 formed on the left side of the upper end of the first frame support portion 10, and an upper extending plate 12 formed on the left end of the laterally extending plate 11 and extending upward. The right side of the first frame supporting part 10 is formed with a first lower connecting groove 13, a first middle connecting groove 14 and a first upper connecting groove 15 from bottom to top in sequence. A first sash seal 16 is mounted to the upper end of the upper extension panel 12 on the right side thereof.
As shown in fig. 2, the second bridge-cut frame 5 includes a second frame supporting portion 17, and a second lower connecting groove 18, a second middle connecting groove 19 and a second upper connecting groove 20 are formed on the left side of the second frame supporting portion 17 from bottom to top in sequence. Frame joint rubber strips 6 are connected between the first lower connecting groove 13 and the second lower connecting groove 18 and between the first middle connecting groove 14 and the second middle connecting groove 19. Be connected with second sash sealing strip 22 between first last spread groove 15 and the second spread groove 20, the upper left end shaping of second sash sealing strip 22 has first butt sand grip 23 right, and the upper end shaping of second frame supporting part 17 has lower mounting groove 24, installs lock seat 25 in the lower mounting groove 24.
As shown in fig. 3, the first bridge-cut fan 7 includes a first fan support portion 26, and a lower extension plate 27 formed at the right side of the first fan support portion 26 to extend downward. An upper mounting groove 28 is formed at the lower end of the first leaf support portion 26, and a locking piece 29 matched with the locking seat 25 is installed in the upper mounting groove 28. A third sash seal 30 is fixedly connected to the left side of the lower end of the lower extension plate 27. Two first fan coupling grooves 31 are formed at the left side of the first fan supporting part 26. A positioning block mounting groove 32 is formed at a position close to the right of the upper end surface of the first sash supporting portion 26, a first glass positioning block 33 is inserted into the positioning block mounting groove 32, and a first glass sealing strip 34 is fixed at the left side of the first glass positioning block 33.
As shown in fig. 3, the second bridge-cut fan 8 includes a second fan support portion 35 and a second glass positioning block 36 formed at a position on the upper end of the second fan support portion 35 close to the left side. The right side shaping of second fan supporting part 35 has two second fan connecting grooves 37, all is connected through fan joint strip 9 between two first fan connecting grooves 31 and the second fan connecting groove 37, and the downside shaping of the fan joint strip 9 of below has the second butt sand grip 38 sealed with first butt sand grip 23 cooperation. A second glass sealing strip 39 is fixed on the right side of the upper end of the second glass positioning block 36. The hollow glass is placed between the first glass positioning block 33 and the second glass positioning block 36, and a sealing surface is formed by matching the first glass sealing strip 34 and the second glass sealing strip 39 with the hollow glass.
As shown in fig. 1, the screen window 3 is located between the upper extension plate 12 and the window sash 2, and a fourth frame sash sealing rubber strip 40 is fixed to the right side of the lower end of the screen window 3. When the screen window 3 and the window sash 2 are both closed, the left side of the screen window 3 is abutted and sealed with the first frame sash sealing rubber strip, and the right side of the fourth frame sash sealing rubber strip 40 is abutted and sealed with the window sash 2.
As shown in fig. 4, the window frame 1 has an upper hinge pillar 41 mounted on the upper bottom surface of the frame and a lower hinge pillar 42 mounted on the lower bottom surface of the frame. As shown in fig. 5 and 6, a waist-shaped positioning column 43 is formed at the upper end of the lower hinge column 42, the height of the waist-shaped positioning column 43 is greater than the height of the lower hinge column 42, the length direction of the cross section of the waist-shaped positioning column 43 is along the direction perpendicular to the front surface of the window frame 1, the length of the cross section of the waist-shaped positioning column 43 is equal to the diameter of the lower hinge column 42, and the width of the waist-shaped positioning column 43 is smaller than the diameter of the lower hinge column 42. An upper connecting block 44 is arranged at the upper end of the screen window 3 close to one side, an upper hinge hole 45 is formed on the upper end surface of the upper connecting block 44, and the diameter of the upper hinge hole 45 is slightly larger than that of the upper hinge column 41. The lower end of the screen window 3 is provided with a lower connecting block 46 at a position close to the same side, the lower end surface of the lower connecting block 46 is provided with a lower hinge hole 47, and the diameter of the lower hinge hole 47 is equal to that of the lower hinge column 42. The side of the lower connecting block 46 is formed with a positioning groove 48 communicated with the lower hinge hole 47, the width of the positioning groove 48 is gradually increased towards the direction far away from the lower hinge hole 47, and the minimum width of the positioning groove 48 is equal to the width of the waist-shaped positioning column 43.
As shown in fig. 5 and 7, a magnet 49 is embedded in the middle of the upper end surface of the positioning column 43, and an iron block 50 is embedded in the lower end surface of the lower connecting block 46, which is located on the side of the lower hinge hole 47 opposite to the positioning groove 48.
As shown in fig. 8, the window frame 1 is embedded with a first proximity switch 51 facing the window sash 2 when the window sash 2 is closed, and the window sash 2 is embedded with a second proximity switch 52 facing the handle when the handle is in the closed position. When the second proximity switch 52 detects that the handle is in the closed position and the first proximity switch 52 detects that the window sash 2 is opened, this means that the window sash 2 is not normally opened, and an alarm is given through an alarm.
The specific using process is as follows:
when the screen window 3 is installed, the upper hinge post 41 and the upper hinge hole 45 are matched and inserted together. Then the screen window 3 is rotated to a state of being vertical to the surface of the window frame 1, and the waist-shaped positioning column 43 passes through the positioning groove 48 and is clamped in the lower hinge hole 47. The screen window 3 is rotated so that both ends of the waist-shaped positioning column 43 in the length direction of the section are abutted against the inner wall of the lower hinge hole 47, and the axes of the lower hinge column 42 and the lower hinge hole 47 are overlapped. The lower hinge post 42 can be inserted into the lower hinge hole 47 by moving the screen window 3 downwards.
When the screen window 3 is detached for cleaning, the screen window 3 can be detached only by the reverse steps when the screen window 3 is installed.
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 (10)
1. The utility model provides an integrative window of interior open novel aluminum alloy gauze, characterized by: including window frame (1) and casement (2) and screen window (3) that are located on window frame (1), install hinge post (41) in the frame of window frame (1), hinge post (42) down are installed to the bottom surface down in the frame, connecting block (44) are installed on one side of screen window (3) upper end, go up connecting block (44) shaping and have last hinge hole (45) that penetrate hinge post (41), connecting block (46) down are installed on one side of screen window (3) lower extreme, connecting block (46) shaping has lower hinge hole (47) that penetrate hinge post (42) down.
2. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 1, which is characterized in that: the upper end shaping of articulated post (42) has waist type reference column (43) down, and the width of waist type reference column (43) is less than the diameter of articulated post (42) down, and the side shaping of lower connecting block (46) has constant head tank (48) that are passed by waist type reference column (43), hinge hole (47) are linked together under constant head tank (48), and the diameter of going up articulated post (41) is less than the diameter of last hinge hole (45).
3. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 2, wherein: the width of the positioning groove (48) is gradually increased towards the direction far away from the lower hinge hole (47), and the minimum width of the positioning groove (48) is equal to the width of the waist-shaped positioning column (43).
4. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 2, wherein: the length direction of the cross section of the waist-shaped positioning column (43) is perpendicular to the front direction of the window frame (1), and the length of the cross section of the waist-shaped positioning column (43) is equal to the diameter of the lower hinge column (42).
5. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 1, which is characterized in that: the window frame (1) comprises a first bridge cut-off frame (4), a second bridge cut-off frame (5) and a frame connecting adhesive tape (6) for connecting the first bridge cut-off frame (4) and the second bridge cut-off frame (5), and the window sash (2) comprises a first bridge cut-off sash (7), a second bridge cut-off sash (8) and a sash connecting adhesive tape (9) for connecting the first bridge cut-off sash (7) and the second bridge cut-off sash (8).
6. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 5, wherein: first bridge cut-off frame (4) include first frame supporting part (10), shaping in left horizontal extension board (11) of first frame supporting part (10) upper end and shaping in the last extension board (12) that upwards extends of the left end of horizontal extension board (11), the right side of going up extension board (12) is equipped with first sash sealing strip (16).
7. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 6, wherein: the upper right side shaping of first frame supporting part (10) has first last spread groove (15), second bridge cut-off frame (5) are including second frame supporting part (17), and the upper left side shaping of second frame supporting part (17) has spread groove (20) on the second, is connected with second frame fan sealing strip (22) between spread groove (20) on first spread groove (15) and the second, and the upper left end shaping right side of second frame fan sealing strip (22) has first butt sand grip (23).
8. The inward opening new aluminum alloy screen integrated window as claimed in claim 7, wherein: first bridge cut-off fan (7) include first supporting part (26), the shaping in lower extension board (27) of the right side downwardly extending of first supporting part (26), and the left side fixedly connected with third frame fan sealing strip (30) of lower extension board (27) lower extreme.
9. The inward opening new aluminum alloy screen integrated window as claimed in claim 8, wherein: second bridge cut-off fan (8) includes that the second fans supporting part (35), the left side shaping of first supporting part (26) has two first spread groove (31), the right side shaping of second supporting part (35) has two second spread groove (37), all be connected through fan connection adhesive tape (9) between two first spread groove (31) and the second spread groove (37), the downside shaping of fan connection adhesive tape (9) of below has second butt sand grip (38) sealed with first butt sand grip (23) cooperation.
10. The inward opening type novel aluminum alloy screen integrated window as claimed in claim 9, wherein: a positioning block mounting groove (32) is formed in the position, close to the right, of the upper end face of the first fan supporting part (26), a first glass positioning block (33) is inserted into the positioning block mounting groove (32), and a first glass sealing strip (34) is fixed to the left side of the first glass positioning block (33); the second bridge-cut fan (8) comprises a second fan supporting part (35) and a second glass positioning block (36) which is positioned at the left side position of the upper end of the second fan supporting part (35), and a second glass sealing strip (39) is fixed at the right side of the upper end of the second glass positioning block (36).
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CN202020016865.8U CN211573158U (en) | 2020-01-03 | 2020-01-03 | Internal opening type novel aluminum alloy screen integrated window |
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CN202020016865.8U CN211573158U (en) | 2020-01-03 | 2020-01-03 | Internal opening type novel aluminum alloy screen integrated window |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111173407A (en) * | 2020-01-03 | 2020-05-19 | 北京米兰之窗节能建材有限公司 | Internal opening type novel aluminum alloy screen integrated window |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111173407A (en) * | 2020-01-03 | 2020-05-19 | 北京米兰之窗节能建材有限公司 | Internal opening type novel aluminum alloy screen integrated window |
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