CN218092728U - Foldable rotary energy-saving door and window - Google Patents
Foldable rotary energy-saving door and window Download PDFInfo
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- CN218092728U CN218092728U CN202221831551.9U CN202221831551U CN218092728U CN 218092728 U CN218092728 U CN 218092728U CN 202221831551 U CN202221831551 U CN 202221831551U CN 218092728 U CN218092728 U CN 218092728U
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Abstract
The utility model discloses a collapsible rotatory energy-conserving door and window, including the window frame, the casement to and glass door and window, glass door and window includes first glass door and window, second glass door and window, third glass door and window and fourth glass door and window, still be provided with the rotation axis between the casement of first glass door and window, fourth glass door and window and the window frame, be provided with on first glass door and window and the fourth glass door and window handle lock, the window frame left and right sides all is equipped with the lock seat, between first glass door and window and the second glass door and window, be equipped with hinge structure between third glass door and window and the fourth glass door and window, still be equipped with the crescent moon lock on second glass door and window and the third glass door and window, the rotation axis, hinge structure's setting makes glass door and window can rotate, fold, has reached the best effect of opening of energy-conserving door and window, also convenient the washing simultaneously, handle lock makes during the glass window can stably be fixed in the window frame with the setting up of crescent moon lock, and has the security.
Description
Technical Field
The utility model relates to an energy-conserving door and window technical field especially relates to a collapsible rotatory energy-conserving door and window.
Background
The development in city has made more and more high-rise buildings nowadays, the window is as a part of building, the window of wide use is the push-pull type window of aluminum alloy in higher floor, the push-pull type window of aluminum alloy that exists now is shown in fig. 4, mainly by window frame (81), tool to lock (82) and glass window (83) are constituteed, the window is push-pull type, the draught area can only reach 50% of window area to the maximum when opening, there is the draught area little, the ventilation effect is poor, the push-pull is not smooth and easy not enough after long service life, and outside glass washs comparatively inconveniently when wasing, dismantle the washing or to the windowsill washing all have the potential safety hazard when the floor is than higher.
Common energy-conserving door and window can satisfy daylighting, thermal-insulated and heat retaining demand, but also has the window to open incomplete shortcoming simultaneously, still exists not enoughly in the ventilation, opens door and window's occasion in some needs by a wide margin, and traditional energy-conserving door and window can not fine satisfy this demand, need design a collapsible rotatory door and window, satisfying under rotatable this prerequisite of door and window, can also open door and window's effect in order to realize by a wide margin through folding.
SUMMERY OF THE UTILITY MODEL
In view of present push-pull type window of aluminum alloy and other windows be difficult to when the floor is high wash, door and window open the little problem of range when opening, the utility model provides a rotatable anti-fogging glass door and window can also realize opening door and window's effect by a wide margin under the 360 degrees rotatory prerequisite of realization window.
In order to achieve the above object, the embodiments of the present invention adopt the following technical solutions:
the foldable rotary energy-saving door and window comprises a window frame, window sashes and glass door and window bodies, wherein the glass door and window bodies comprise a first glass door and window body, a second glass door and window body, a third glass door and window body and a fourth glass door and window body, rotating shafts are arranged between the window sashes of the first glass door and window body and the window frame of the fourth glass door and window body, handle locks are arranged on the first glass door and window body and the fourth glass door and window body, lock seats are arranged on the left side and the right side of the window frame, a hinge structure is arranged between the first glass door and window body and the second glass door and window body and between the third glass door and window body and the fourth glass door and window body, and crescent moon locks are arranged on the second glass door and window body and the third glass door and window body.
According to an aspect of the present invention, the rotating shaft includes an inner shaft and an outer shaft, and the inner shaft is sleeved in the outer shaft.
According to the utility model discloses an aspect still is equipped with spacing subassembly in the rotation axis for the rotation angle of first glass door and window of restriction and second glass door and window.
According to an aspect of the utility model, first glass door and window and second glass door and window's rotation angle is 0 ~ 90 degrees and 180 degrees ~ 270 degrees.
According to an aspect of the utility model, the handle lock includes the handle, tapered end and control hole, and handle rotation angle is 0 ~ 90 degrees.
According to the utility model discloses an aspect, when handle rotation angle is 0 degree, the tapered end was located the control hole outside, and when handle rotation angle was 90 degrees, the tapered end was located the control hole inboard.
According to an aspect of the utility model, when the tapered end is located the lock seat inboard, the casement is fixed in the window frame, and is unrotatable.
According to an aspect of the invention, the hinge structures are arranged in pairs.
According to an aspect of the present invention, the first crescent lock of the third glass door or window is installed by rotating clockwise 180 degrees with respect to the second crescent lock of the second glass door or window.
According to one aspect of the utility model, all be provided with the coating film layer around first glass door and window, second glass door and window, third glass door and window and fourth glass door and window's glass.
The utility model discloses the advantage of implementing: the utility model provides a foldable rotary energy-saving door and window, which comprises a window frame, window sashes and glass door and window, wherein the glass door and window comprises a first glass door and window, a second glass door and window, a third glass door and window and a fourth glass door and window, a rotary shaft is arranged between the window sashes and the window frames of the first glass door and window and the fourth glass door and window, handle locks are arranged on the first glass door and window and the fourth glass door and window, lock seats are arranged on the left side and the right side of the window frame, a hinge structure is arranged between the first glass door and window and the second glass door and window and between the third glass door and window and the fourth glass door and window, a crescent moon lock is arranged on the second glass door and window and the third glass door and window, through the arrangement of the rotary shaft, the first glass door and window and the fourth glass door and window can rotate to the vertical angle between the upper window sash and the window frame, the first glass door and window can be attached to the first glass door and window through the hinge structure, the third glass door and window is attached to the fourth glass door and window, the glass door and window can be opened maximally, the first glass door and window and the third glass door and window can be fixed together through the crescent moon lock, all the glass door and window can be prevented from being stolen and also well locked, the first glass door and window and the fourth glass door and window can be locked on the window frame through the handle lock, and all the glass door and window can be effectively cleaned through the matching of the glass door and window and the assembly.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic view of an overall structure of the present invention;
FIG. 2 is a schematic view of a crescent moon lock according to the present invention;
fig. 3 is a schematic view of a rotating shaft according to the present invention;
fig. 4 is a push-pull type aluminum alloy window of the background art of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
As shown in fig. 1, 2 and 3, the foldable rotary energy-saving door and window comprises a window frame 1, a window sash 2 and glass door and windows, wherein the glass door and window comprises a first glass door and window 31, a second glass door and window 32, a third glass door and window 33 and a fourth glass door and window 34, a rotating shaft is further arranged between the window sash 2 of the first glass door and window 31 and the window frame 1 of the fourth glass door and window 34, a handle lock 5 is arranged on the first glass door and window 31 and the fourth glass door and window 34, lock seats 54 are arranged on the left side and the right side of the window frame 1, a hinge structure 6 is arranged between the first glass door and window 31 and the second glass door and window 32, a hinge structure 6 is arranged between the third glass door and window 33 and the fourth glass door and window 34, and crescent moon locks are further arranged on the second glass door and window 32 and the third glass door and window 33.
In practical application, the two sides of the window sash 2 are convex arc structures, the window frame 1 is matched with the arc structures of the window sash 2, the diameters of arcs on the two sides of the window frame 1 and the window sash 2 are equal to the width of the window sash 2, the arc diameters are used for determining the size of the arcs, and the window frame 1 and the window sash 2 are made of aluminum alloy materials.
In practical application, the rotating shaft comprises an inner shaft 41 and an outer shaft 42, the inner shaft 41 is rotatably sleeved in the outer shaft 42, and the window sash 2 can rotate 180 degrees through the rotating shaft, so that the first glass door window 31 and the fourth glass door window 34 are driven to rotate, and the toughened glass is convenient to clean.
In practical application, a limiting component is further disposed in the rotating shaft for limiting the rotation angles of the first glass door/window 31 and the second glass door/window 32.
In practical applications, the rotation angles of the first glass door/window 31 and the second glass door/window 32 are both 0 to 90 degrees and 180 to 270 degrees.
In practical applications, the handle lock 5 includes a handle 51, a lock head 52 and a control hole 53, the rotation angle is 0 to 90 degrees, and when the handle 51 rotates, the lock head 52 of the handle lock 5 can extend out of or retract into the control hole 53.
In practical applications, when the rotation angle of the handle 51 is 0 degrees, the lock 52 is located outside the control hole 53, and when the rotation angle of the handle 51 is 90 degrees, the lock 52 is located inside the control hole 53.
In practical application, when the rotation angle of the handle 51 is 0 degree, the lock head 52 extends out of the control hole 53, and at this time, if the first glass door/window 31 or the fourth glass door/window 34 is fixed in the window frame 1, the lock head 52 is located inside the lock seat 54, and the window sash 2 cannot rotate; if the first glass door/window 31 or the fourth glass door/window 34 is not fixed in the window frame 1 at this time, and the position of the lock head 52 is not positioned inside the lock seat 54, the first glass door/window 31 or the fourth glass door/window 34 can also normally rotate at this time, and because the foldable second glass door/window 32 or the foldable third glass door/window 33 is provided, the rotation angle of the first glass door/window 31 or the foldable fourth glass door/window 34 is limited, and can only rotate to the left or to the right, and the rotation angle is 0 to 90 degrees; when the first glass door/window 31 or the fourth glass door/window 34 needs to be restored to the position of the window frame 1, the first glass door/window 34 or the fourth glass door/window 34 needs to be rotated to the position which is close to the window frame 1, the handle 51 needs to be rotated by 90 degrees, the lock head 52 retracts into the control hole 53, the first glass door/window 31 or the fourth glass door/window 34 is restored, the handle 51 is loosened, the lock head 52 extends out of the control hole 53 and is fixed in the lock seat 54, and the first glass door/window 31 and the fourth glass door/window 34 are restored and fixed to the original positions.
In practice, the window sash 2 is fixed in the frame 1 against rotation when the locking head 52 is inside the lock housing 54.
In practical applications, the hinge structures 6 are arranged in pairs and are disposed between the first glass door/window 31 and the second glass door/window 32, and between the third glass door/window 33 and the fourth glass door/window 34, and the arrangement of the hinge structures 6 can satisfy the requirement of folding the second glass door/window 32 or the third glass door/window 33.
In practical application, the first crescent lock 71 of the third glass door and window 33 rotates 180 degrees clockwise relative to the second crescent lock 72 of the second glass door and window 32, the crescent lock comprises a handle 74 and a lock catch 73, the crescent lock handle 74 can rotate 0-90 degrees, the handle 74 rotates to drive the lock catch 73 on the lock to rotate, the lock catch 73 is crescent-shaped, the crescent lock can be locked when the two crescent-shaped lock catches 73 rotate to a certain angle, at the moment, the second glass door and window 32 and the third glass door and window 33 can be locked together and cannot move, and the two crescent-shaped lock catches 73 can be separated by rotating the handle 74 again when the lock catch is required to be opened.
In practical application, still post the coating film layer on first glass door and window 31, second glass door and window 32, third glass door and window 33 and fourth glass door and window 34's the glass, through coating film layer 5's setting, can effectively weaken the intensity of external light, reduce 5 luminosities of glass, avoid external light too strong to the injury of people's eye, coating film layer 24 surface adhesion nature is poor, also can effectually play antifouling effect.
In practical application, when the door and window need to be cleaned, the first glass door and window 31, the second glass door and window 32, the third glass door and window 33 and the fourth glass door and window 34 are positioned at fixed positions, and the inner glass is cleaned; after the inner glass is cleaned, firstly opening a crescent lock between the second glass door and window 32 and the third glass door and window 33, folding the second glass door and window 32 to the rear side of the first glass door and window 31 through a hinge device, folding the third glass door and window 33 to the rear side of the fourth glass door and window 34, and cleaning the outer glass of the second glass door and window 32 and the outer glass of the third glass door and window 33; the first and fourth windows 31 and 34 are rotated by the rotation shaft, and the outer glasses of the first and fourth windows 31 and 34 are cleaned.
In practical application, when the door and window needs to be opened maximally, the crescent lock between the second glass door and window 32 and the third glass door and window 33 is firstly opened, the second glass door and window 32 is folded to the rear side of the first glass door and window 31 through the hinge device, the third glass door and window 33 is folded to the rear side of the fourth glass door and window 34, then the first glass door and window 31 and the fourth glass door and window 34 are rotated by using the rotating shaft, when the rotating shaft rotates to a certain angle, the limiting component can prevent the first glass door and window 31 and the fourth glass door and window 34 from continuously rotating, and at the moment, the door and window is opened maximally, so that the maximum ventilation and lighting are obtained.
The utility model discloses the advantage of implementing: the utility model provides a foldable rotary energy-saving door and window, which comprises a window frame 1, a window sash 2 and glass door and windows, wherein the glass door and window comprises a first glass door and window 31, a second glass door and window 32, a third glass door and window 33 and a fourth glass door and window 34, a rotating shaft is arranged between the window sash 2 of the first glass door and window 31 and the fourth glass door and window 34 and the window frame 1, handle locks 5 are arranged on the first glass door and window 31 and the fourth glass door and window 34, lock seats 54 are arranged on the left side and the right side of the window frame 1, a hinge structure 6 is arranged between the first glass door and window 31 and the second glass door and window 32 and between the third glass door and window 33 and the fourth glass door and window 34, and crescent moon locks are arranged on the second glass door and window 32 and the third glass door and window 33, through the arrangement of the rotating shafts, the first glass door and window 31 and the fourth glass door and window 34 can rotate to the vertical angle between the upper window sash 2 and the lower window sash 1, the second glass door and window 32 can be attached to the first glass door and window 31 through the hinge structure 6, the third glass door and window 33 is attached to the fourth glass door and window 34, the glass door and window can be opened to the maximum, the second glass door and window 32 and the third glass door and window 33 can be fixed together through the arrangement of the crescent moon lock, the antitheft effect can be achieved, all the glass doors and windows can be well locked, the first glass door and window 31 and the fourth glass door and window 34 can be locked on the window frame 1 through the arrangement of the handle lock 5, and the effective cleaning effect on all the glass doors and windows can be achieved through the matching of the glass doors and windows and the components.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention are all covered by the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.
Claims (10)
1. The foldable rotary energy-saving door and window comprises a window frame (1), window sashes (2) and glass door and windows, wherein the glass door and window comprises a first glass door and window (31), a second glass door and window (32), a third glass door and window (33) and a fourth glass door and window (34), and is characterized in that a rotating shaft (4) is further arranged between the window sashes (2) of the first glass door and window (31) and the fourth glass door and window (34) and the window frame (1), handle locks (5) are arranged on the first glass door and window (31) and the fourth glass door and window (34), lock seats (54) are arranged on the left side and the right side of the window frame (1), a hinge structure (6) is arranged between the first glass door and window (31) and the second glass door and window (32), and a crescent moon lock is further arranged on the third glass door and window (32) and the third glass door and window (33).
2. A foldable and rotatable energy-saving door and window according to claim 1, characterized in that the rotating shaft (4) comprises an inner shaft (41) and an outer shaft (42), the inner shaft (41) is sleeved in the outer shaft (42).
3. The foldable rotating energy-saving door and window as claimed in claim 2, characterized in that a limiting component is further arranged in the rotating shaft (4) for limiting the rotating angles of the first glass door and window (31) and the second glass door and window (32).
4. The foldable rotating energy-saving door and window as claimed in claim 3, characterized in that the rotation angles of the first glass door and window (31) and the second glass door and window (32) are both 0-90 degrees and 180-270 degrees.
5. The foldable rotating energy-saving door and window as claimed in claim 1, wherein the handle lock (5) comprises a handle (51), a lock head (52) and a control hole (53), and the rotation angle of the handle (51) is 0-90 degrees.
6. The foldable rotating energy-saving door and window as claimed in claim 5, wherein when the rotation angle of the handle (51) is 0 degree, the lock head (52) is located outside the control hole (53), and when the rotation angle of the handle (51) is 90 degrees, the lock head (52) is located inside the control hole (53).
7. A foldable and rotatable energy-saving door and window according to claim 5, characterized in that when the lock head (52) is located inside the lock seat (54), the window sash (2) is fixed in the window frame (1) and is not rotatable.
8. Foldable and rotatable energy-saving door and window according to claim 1, characterized in that said hinge structures (6) are arranged in pairs.
9. A foldable and rotatable energy-saving door and window according to claim 1, characterized in that the first crescent (71) of the third glazed door and window (33) is mounted rotated 180 degrees clockwise with respect to the second crescent (72) of the second glazed door and window (32).
10. The foldable rotary energy-saving door and window as claimed in claim 1, characterized in that the front and the back of the glass of the first glass door and window (31), the second glass door and window (32), the third glass door and window (33) and the fourth glass door and window (34) are provided with coating layers.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221831551.9U CN218092728U (en) | 2022-07-16 | 2022-07-16 | Foldable rotary energy-saving door and window |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221831551.9U CN218092728U (en) | 2022-07-16 | 2022-07-16 | Foldable rotary energy-saving door and window |
Publications (1)
Publication Number | Publication Date |
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CN218092728U true CN218092728U (en) | 2022-12-20 |
Family
ID=84480001
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221831551.9U Active CN218092728U (en) | 2022-07-16 | 2022-07-16 | Foldable rotary energy-saving door and window |
Country Status (1)
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CN (1) | CN218092728U (en) |
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2022
- 2022-07-16 CN CN202221831551.9U patent/CN218092728U/en active Active
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