Aluminum alloy window
By designing sliding and rotating aluminum alloy window components, combined with magnetic and elastic elements, the problems of ventilation and rainwater prevention in aluminum alloy windows under different weather conditions are solved, achieving flexible air circulation and aesthetic effects.
Patent Information
- Application Number
- CN202310602314.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-25
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2043-05-25
AI Technical Summary
Existing aluminum alloy windows have difficulty maintaining air circulation between indoors and outdoors while preventing rainwater from entering the room under different weather conditions.
An aluminum alloy window was designed, comprising a first window assembly and a second window assembly. It can be adjusted by sliding and rotating, combined with magnetic and elastic components, to achieve switching between push-pull and rotating modes, thereby enhancing ventilation and reducing the probability of rainwater entering the room.
It allows users to choose the appropriate opening method according to their needs under different weather conditions, maintaining air circulation while reducing the probability of rainwater entering the room, thus improving aesthetics and ease of use.
Smart Images

Figure CN116658013B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of doors and windows, and particularly relates to an aluminum alloy window. BACKGROUND
[0002] The aluminum alloy window is a window with a frame and a sash structure made of aluminum alloy building profiles, has the advantages of being beautiful, sealed, strong and the like, and is widely used in the field of construction engineering. The surface of the aluminum alloy is bright and clean after oxidation; the sash frame is large, and can inlay a large-area glass, so that indoor light is sufficient and bright, the contrast between the indoor and outdoor facades is enhanced, and the room is more rich in levels; and the aluminum alloy is easy to be extruded, the cross-sectional size of the profile is accurate, and the processing accuracy is high, so many owners choose to use the aluminum alloy window in decoration.
[0003] For the existing aluminum alloy window, according to the different opening modes, it is mainly divided into a push-pull type and a rotating type. Since the rotating angle range of the rotating type aluminum alloy window is usually less than 90°, therefore, under the condition that the size of the aluminum alloy window is the same, the ventilation effect of the push-pull type aluminum alloy window after being opened will be better than that of the rotating type aluminum alloy window. However, when it is rainy, if the push-pull type aluminum alloy window is opened, rainwater is easy to enter the indoor, so the push-pull type aluminum alloy window is usually kept closed in rainy weather, so that the air circulation between the indoor and outdoor is reduced.
[0004] In view of the above problem, there is an urgent need for an aluminum alloy window which can have ventilation effect under different weather conditions. SUMMARY
[0005] The present application provides an aluminum alloy window which can keep the air circulation between the indoor and outdoor under different weather conditions.
[0006] The present application provides an aluminum alloy window, which adopts the following technical scheme:
[0007] An aluminum alloy window, comprising a window frame, a first window body assembly and a second window body assembly, the window frame has an installation space in the interior for installing the first window body assembly and the second window body assembly, the first window body assembly is located at one end of the installation space close to the outdoor, and the second window body assembly is located at one end of the installation space close to the indoor;
[0008] The first window assembly comprises a first window, a first upper sliding member and a first lower sliding member, the first upper sliding member and the first lower sliding member are respectively located at upper and lower ends of the installation space and are connected with the window frame in a horizontal and mutually parallel direction, one end of the first window is connected with the first upper sliding member and can rotate relative to the first upper sliding member, and the first window is fixed after rotation, the other end of the first window is detachably connected with the first lower sliding member, and the rotation axis of the first window is parallel to the sliding direction of the first upper sliding member.
[0009] The second window assembly comprises a second window, a second upper sliding member and a second lower sliding member, the second upper sliding member and the second lower sliding member are respectively located at upper and lower ends of the installation space and are connected with the window frame in a horizontal and mutually parallel direction, one end of the second window is connected with the second upper sliding member and can rotate relative to the second upper sliding member, and the second window is fixed after rotation, the other end of the second window is detachably connected with the second lower sliding member, and the rotation axis of the second window is parallel to the sliding direction of the second upper sliding member.
[0010] By adopting the above technical scheme, the first window and the second window are respectively connected with the first lower sliding member and the second lower sliding member in the initial state, the user can control the first window assembly or the second window assembly to slide by controlling the corresponding sliding member to slide on the window frame, at this time, the first window assembly, the second window assembly and the window frame form a sliding type aluminum alloy window, and the ventilation effect can be adjusted by controlling the positions of the first window assembly and the second window assembly; when the first window assembly and the second window assembly respectively abut against both sides of the window frame, the first window and the second window are rotated towards the outdoor direction, at this time, the first window assembly, the second window assembly and the window frame form a rotating type aluminum alloy window, and the ventilation effect can be adjusted by controlling the rotation angle of the first window and the second window; thereby the user can select appropriate opening mode for the first window assembly and the second window assembly according to different weather conditions and different ventilation needs, and then the indoor and outdoor can keep air circulation, and the probability of rainwater entering the indoor is reduced.
[0011] Optionally, the second window assembly further comprises a connecting member, one end of the connecting member is rotationally connected with the second upper sliding member, and the other end of the connecting member is rotationally connected with one end of the second window away from the second lower sliding member; when the connecting member rotates relative to the second upper sliding member towards the outdoor direction to the limit position, at this time, the rotation axis of the second window coincides with the rotation axis of the first window.
[0012] By adopting the technical scheme, when the aluminum alloy window needs to be opened in a rotating manner, the first window body is first rotated to a required angle, then the connecting piece is controlled to rotate towards the direction close to the outdoor to the limit position and the position state at this time is kept under the premise that the second window body keeps in the vertical state, then the second window body is controlled to rotate relative to the connecting piece so that the plane where the second window body is located coincides with the plane where the first window body is located; the aesthetic degree of the aluminum alloy window after being opened in the rotating manner can be improved, meanwhile, the gap between the first window body and the second window body after the aluminum alloy window is opened in the rotating manner can be reduced, so that the probability of rainwater entering the indoor can be further reduced.
[0013] Optionally, the first magnetic attraction member is arranged on the window frame, and when the connecting piece rotates towards the direction close to the outdoor to the limit position relative to the second upper sliding member, the connecting piece abuts against the first magnetic attraction member and the relative position of the connecting piece and the first magnetic attraction member is fixed.
[0014] By adopting the technical scheme, when the second window body assembly is operated to be opened in the rotating manner, the connecting piece is controlled to rotate towards the direction close to the outdoor to the limit position, then the connecting piece is fixed in position on the window frame under the magnetic attraction force between the connecting piece and the first magnetic attraction member, and the connecting piece can be separated from the window frame by slightly applying force; the second window body can be conveniently opened in the rotating manner, meanwhile, the position stability of the connecting piece during the opening of the second window body in the rotating manner can be improved, so that the process of opening the second window body assembly in the rotating manner is more convenient and the use is more reliable.
[0015] Optionally, a plurality of second magnetic attraction members are arranged, the plurality of second magnetic attraction members are respectively connected with the first window body and the second window body in a sliding manner, the sliding directions of the plurality of second magnetic attraction members are parallel to each other, the second magnetic attraction member on the first window body and the second magnetic attraction member on the second window body are magnetically attracted to each other, and when the plane where the first window body is located coincides with the plane where the second window body is located, the second magnetic attraction member on the first window body and the second magnetic attraction member on the second window body abut against each other after being slid out.
[0016] By adopting the technical scheme, when the first window body and the second window body are both opened in the rotating manner and the plane where the first window body is located coincides with the plane where the second window body is located, the plurality of second magnetic attraction members are controlled to slide outwards, so that the second magnetic attraction member on the first window body and the second magnetic attraction member on the second window body are kept abutting against each other under the magnetic attraction force; the alignment of the second magnetic attraction members can facilitate the user to control the second window body to rotate to the state that the plane where the second window body is located coincides with the plane where the first window body is located, and can improve the stability of the relative positional relationship between the first window body and the second window body after being opened in the rotating manner.
[0017] Optionally, a plurality of first elastic members are further included, the plurality of first elastic members are respectively arranged in the first window body and the second window body, when the plane where the first window body is located is not coincident with the plane where the second window body is located, the first elastic members drive the second magnetic members to slide and keep in the retracted state.
[0018] By adopting the above technical scheme, when the plane where the first window body is located is not coincident with the plane where the second window body is located, the first elastic members drive the second magnetic members to keep in the retracted state, so that the probability of collision with other structures in the process of window rotation caused by the extension of the second magnetic members can be reduced, and meanwhile, the corresponding magnetic members can be automatically retracted when the first window body and the second window body are separated in the process of rotation and retraction, so that the separation process of the first window body and the second window body is more relaxed; when the plane where the first window body is located is coincident with the plane where the second window body is located, the magnetic attraction force between the adjacent second magnetic members is greater than the force of the first elastic members, and the adjacent second magnetic members can be abutted and slide under the magnetic attraction force, so as to further facilitate the operation process of the user to control the coincidence of the plane where the first window body is located and the plane where the second window body is located.
[0019] Optionally, a plurality of third magnetic members, a plurality of fourth magnetic members and a plurality of second elastic members are further included, the plurality of third magnetic members are arranged on the window frame, the plurality of fourth magnetic members are respectively slidably connected to the first lower sliding member and the second lower sliding member, the second elastic members drive the fourth magnetic members to slide away from the window frame, and the first window body and the second window body are both provided with an insertion slot.
[0020] The third magnetic members and the fourth magnetic members are magnetically attracted to each other, when the first lower sliding member slides to the limit position, the fourth magnetic members on the first lower sliding member slide and abut against the adjacent third magnetic members, and the fourth magnetic members on the second lower sliding member are the same.
[0021] When the first window body abuts against the first lower sliding member, the second elastic members drive the fourth magnetic members to slide and insert into the insertion slot, when the fourth magnetic members abut against the corresponding third magnetic members, the fourth magnetic members are away from the corresponding insertion slot, and the second window body is the same when it abuts against the second lower sliding member.
[0022] By adopting the technical scheme, in the sliding process of the first window assembly or the second window assembly on the window frame, the second elastic member drives the fourth magnetic attraction member to keep plugging cooperation with the corresponding plug slot, so that the first window is kept connected with the first lower sliding member and the second window is kept connected with the second lower sliding member, thereby reducing the probability that the first window and the second window are mistakenly opened by rotation; when the window assembly slides to abut against one side of the window frame, the third magnetic attraction member is aligned with the fourth magnetic attraction member, the magnetic attraction force between the two is greater than the force of the second elastic member, the fourth magnetic attraction member keeps abutting against the third magnetic attraction member and leaving the plug slot, at this time, the window can be rotated, the user can be regulated to use the aluminum alloy window in a rotating manner, and the use of the aluminum alloy window is further facilitated.
[0023] Optionally, the barrier assembly is further provided on the window frame, the barrier assembly comprises a fixed member and a movable member, the fixed member is located between the first lower sliding member and the second lower sliding member, and a plane where the fixed member is located is parallel to a plane where the window frame is located; the movable member is rotationally connected with the window frame, a rotation axis of the movable member is vertical and parallel to the plane where the window frame is located, and the movable member is located between the first window and the second window.
[0024] By adopting the technical scheme, when the aluminum alloy window is used in a sliding manner and the first window assembly and the second window assembly abut against two sides of the window frame respectively, at this time, the barrier assembly plays a barrier role between the first window assembly and the second window assembly, thereby reducing the probability that water, dust and other objects enter the room; when the aluminum alloy window is used in a rotating manner, the movable member can be rotated and opened together with the second window, and self-adaptation is realized; and the fixed member plays a waterproof role between the first lower sliding member and the second lower sliding member, thereby further reducing the probability that rainwater enters the room.
[0025] Optionally, the barrier assembly further comprises a plurality of third elastic members, the third elastic members drive the movable member to rotate to coincide with the plane where the fixed member is located.
[0026] By adopting the technical scheme, when the aluminum alloy window is used in a rotating manner and then closed, the third elastic members can drive the movable member to rotate and reset, so that the movable member automatically rotates and plays a barrier role between the first window assembly and the second window assembly, thereby further facilitating the use of the barrier assembly.
[0027] Optionally, the first window and the second window each comprise a frame and glass, a plurality of drainage holes are formed in the frame, one end of the drainage hole is communicated with a space on the side of the glass close to the outdoor, and the other end of the drainage hole is communicated with a space on the side of the frame in the horizontal direction.
[0028] By adopting the technical scheme, when the aluminum alloy window is opened in a rotating manner, after rain falls on the glass, the rain flows downward on the surface of the glass and then flows out through the drain hole, the drain hole has a converging effect on the rain, so that the rain forms a water flow and flows out on both sides of the frame body, so as to prevent the rain from flowing out from the end of the frame body close to the outdoor to form a water curtain, which is easy to be affected by air circulation and enter the indoor, thereby reducing the probability of the rain entering the indoor due to air circulation.
[0029] In summary, the present application includes at least one of the following beneficial effects:
[0030] 1. The user can select the appropriate opening mode of the first window assembly and the second window assembly according to different weather conditions and different ventilation needs, thereby maintaining air circulation between indoor and outdoor and reducing the probability of rain entering the indoor.
[0031] 2. The user can use the aluminum alloy window in a rotating manner, and improve the appearance of the aluminum alloy window after being opened in a rotating manner.
[0032] 3. The aluminum alloy window can block rain while guiding the flow of rain, thereby reducing the probability of rain entering the indoor due to air circulation. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 is a structural schematic view of an aluminum alloy window according to an embodiment of the present application when used in a sliding manner from the indoor;
[0034] Figure 2 is a structural schematic view of an aluminum alloy window according to an embodiment of the present application when used in a sliding manner from the outdoor;
[0035] Figure 3 is an internal view of a first window assembly of an aluminum alloy window according to an embodiment of the present application when used in a sliding manner;
[0036] Figure 4 is an internal view of a second window assembly of an aluminum alloy window according to an embodiment of the present application when used in a sliding manner;
[0037] Figure 5 is a structural schematic view of an aluminum alloy window according to an embodiment of the present application when used in a rotating manner;
[0038] Figure 6 is an internal view of a second window assembly of an aluminum alloy window according to an embodiment of the present application when used in a rotating manner;
[0039] Figure 7 is a schematic view of a first window assembly and a second window assembly of an aluminum alloy window according to an embodiment of the present application when used in a rotating manner.
[0040] Explanation of reference numerals: 1, window frame; 11, installation space; 2, first window assembly; 21, first window body; 22, first upper sliding member; 23, first lower sliding member; 3, second window assembly; 31, second window body; 32, second upper sliding member; 33, second lower sliding member; 34, connecting member; 341, sliding block; 4, shielding assembly; 41, fixed member; 42, movable member; 5, first magnetic attraction member; 6, second magnetic attraction member; 7, third magnetic attraction member; 8, fourth magnetic attraction member; 101, frame body; 102, glass; 103, drainage hole; 104, gripping groove; 105, insertion groove; 106, first elastic member; 107, second elastic member; 108, third elastic member; 109, fourth elastic member. DETAILED DESCRIPTION
[0041] The following description will be made in conjunction with the accompanying drawings. Figures 1-7 The present application is further described in detail.
[0042] The present application discloses an aluminum alloy window installed at a window position on a building communicating with the outside.
[0043] Reference will be made to Figure 1 and Figure 2 The aluminum alloy window comprises a window frame 1, a first window assembly 2, a second window assembly 3, and a shielding assembly 4. The window frame 1 has an installation space 11 at a middle position for installing the first window assembly 2, the second window assembly 3, and the shielding assembly 4. The first window assembly 2 and the second window assembly 3 can slide in the installation space 11 and can be rotated to open towards the outside. The shielding assembly 4 is used to shield the gap between the first window assembly 2 and the second window assembly 3, so as to reduce the passage of water, dust, and other objects. The user can control the sliding or rotation of the first window assembly 2 and the second window assembly 3 according to the weather condition, so as to meet different ventilation requirements.
[0044] During the sliding of the first window assembly 2, the activity range thereof is located at a position close to the outside in the installation space 11. During the sliding of the second window assembly 3, the activity range thereof is located at a position close to the inside in the installation space 11.
[0045] Reference will be made to Figure 1 and Figure 3The first window assembly 2 comprises a first window 21, a first upper sliding member 22 and a first lower sliding member 23. The first upper sliding member 22 and the first lower sliding member 23 are both located in the installation space 11, and the first upper sliding member 22 and the first lower sliding member 23 are respectively slidably connected to the upper and lower edges of the window frame 1 along the length direction of the edges. The first window 21 comprises a frame 101 and a glass 102, and the glass 102 is fixedly installed in the space at the middle position of the frame 101. One end of the frame 101 is rotatably connected to the first upper sliding member 22, and the rotation axis of the frame 101 is parallel to the sliding direction of the first upper sliding member 22. The other end of the frame 101 is detachably connected to the first lower sliding member 23.
[0046] The frame 101 is limited in rotation on the first window 21. When the frame 101 is rotated to the limit position towards the indoor side, the end of the frame 101 away from the first upper sliding member 22 is abutted against and connected to the first lower sliding member 23, and the first lower sliding member 23 limits the frame 101. At this time, the plane of the frame 101 is parallel to the plane of the window frame 1. When the frame 101 is rotated to the limit position towards the outdoor side, the frame 101 is in an inclined state, and the end of the frame 101 away from the first upper sliding member 22 is the inclined lower end and is located outside the installation space 11. When the frame 101 is rotated from the state of being abutted against and connected to the first lower sliding member 23 towards the outdoor side, the connection between the frame 101 and the first lower sliding member 23 is released, and the frame 101 can be fixed in position relative to the window frame 1 after the frame 101 stops rotating. In this embodiment, the acute angle between the frame 101 and the window frame 1 is preferably 45° when the frame 101 is rotated to the limit position towards the outdoor side. Since the fixed position after rotation is a common prior art, it is not described here.
[0047] Referring to Figure 1 and Figure 4The second window assembly 3 comprises a second window 31, a second upper sliding member 32, a second lower sliding member 33 and a connecting member 34. The second upper sliding member 32 and the second lower sliding member 33 are located in the installation space 11 and are respectively connected with the upper and lower edges of the window frame 1 along the length direction of the edges. The second window 31 has the same structure and size as the first window 21 and comprises a frame 101 and a glass 102. One end of the connecting member 34 is rotatably connected with the second upper sliding member 32, and the rotation axis of the connecting member 34 is parallel to the sliding direction of the second upper sliding member 32. The other end of the connecting member 34 is rotatably connected with one end of the frame 101, and the frame 101 is also parallel to the sliding direction of the second upper sliding member 32 relative to the rotation axis of the connecting member 34. After the frame 101 rotates relative to the connecting member 34, the frame 101 can also be fixed relative to the connecting member 34. The other end of the frame 101 away from the connecting member 34 is detachably connected with the second lower sliding member 33.
[0048] The aluminum alloy window further comprises a first magnetic member 5 installed on the top of the window frame 1 and located close to the installation space 11. A sliding block 341 is slidably connected with the connecting member 34, the sliding block 341 has magnetism and is magnetically attracted to the first magnetic member 5. A fourth elastic member is fixedly installed in the connecting member 34, and the two ends of the fourth elastic member are fixedly connected with the connecting member 34 and the sliding block 341 respectively, and the fourth elastic member drives the sliding block 341 to slide and retract into the connecting member 34. In this embodiment, the fourth elastic member is preferably a tension spring.
[0049] The rotation of the connecting member 34 is limited. When the connecting member 34 rotates to the limit position towards the indoor direction, the connecting member 34 is in a vertical state. At this time, when the frame 101 on the second window 31 rotates to the limit position towards the indoor direction, the other end of the frame 101 away from the connecting member 34 abuts against the second lower sliding member 33 and forms a connection.
[0050] Reference Figure 5 and Figure 6 When the connecting member 34 rotates to the limit position away from the indoor direction, the connecting member 34 is in a horizontal state. At this time, the sliding block 341 on the connecting member 34 is aligned with the first magnetic member 5 in the vertical direction, and the magnetic attraction force between the sliding block 341 and the first magnetic member 5 will drive the sliding block 341 to slide outward against the force of the fourth elastic member. Finally, the sliding block 341 abuts against the first magnetic member 5 and keeps a relative position fixed, and at this time, the user can control the sliding block 341 to separate from the first magnetic member 5 by applying a little force to the connecting member 34.
[0051] When the connecting piece 34 rotates to the limit position in the direction away from the indoor, the rotation axis of the frame 101 on the second window body 31 relative to the connecting piece 34 coincides with the rotation axis of the frame 101 on the first window body 21 relative to the first upper sliding piece 22.
[0052] In the embodiment, the rotation of the frame 101 on the second window body 31 relative to the connecting piece 34 is not limited. After the first window body 21 rotates to the position close to the outdoor and is fixed, the connecting piece 34 is controlled to rotate to the horizontal state under the premise that the frame 101 on the second window body 31 keeps the vertical state, and then the frame 101 on the second window body 31 is controlled to rotate relative to the connecting piece 34, so that the plane of the second window body 31 coincides with the plane of the first window body 21.
[0053] In other embodiments, when the user uses the aluminum alloy window in the push-pull manner, in order to make the second window assembly 3 have higher sealing performance when the aluminum alloy window is in the closed state, a sealing sheet can be additionally arranged on the side of the second upper sliding piece 32 close to the indoor, which is used for sealing the gap between the connecting piece 34 and the second upper sliding piece 32 and the gap between the connecting piece 34 and the corresponding frame 101. In the embodiment, the sealing sheet is not shown in the drawings.
[0054] Referring to Figure 2 and Figure 5 , a plurality of drain holes 103 are arranged on both sides of the frame 101, and the drain holes 103 are located at the end of the frame 101 away from the rotation axis thereof. One end of the drain hole 103 communicates with the space on the side of the glass 102 close to the outdoor, and the other end of the drain hole 103 communicates with the space on the side of the frame 101. After the frame 101 rotates to the position close to the outdoor, the rainwater falling on the glass 102 will flow out through the drain hole 103. The drain hole 103 is arranged obliquely on the frame 101, and when the frame 101 is in the vertical state, the end of the drain hole 103 close to the glass 102 is the obliquely upper end. In the embodiment, preferably, two drain holes 103 are arranged on each frame 101.
[0055] Referring to Figure 1 , in order to facilitate the user to slide and rotate the first window assembly 2 and the second window assembly 3, a holding groove 104 is arranged on each frame 101, which is used for controlling the sliding and rotation of the first window assembly 2 and the second window assembly 3. In the embodiment, preferably, two holding grooves 104 are arranged on each frame 101, and the two holding grooves 104 are respectively located at the two ends of the frame 101 and are located on the end face of the frame 101 on the side of the glass 102 away from the drain hole 103.
[0056] Referring to Figure 4 and Figure 6The aluminum alloy window further comprises a plurality of third magnetic attraction members 7, a plurality of fourth magnetic attraction members 8 and a plurality of second elastic members 107. The plurality of third magnetic attraction members 7 are fixedly installed on the bottom of the window frame 1 and located close to the installation space 11. The plurality of fourth magnetic attraction members 8 are respectively installed on the first lower sliding member 23 and the second lower sliding member 33 and are respectively in sliding connection with the first lower sliding member 23 and the second lower sliding member 33. The sliding direction of the fourth magnetic attraction member 8 is perpendicular to the rotation axis of the frame body 101 and parallel to the plane on which the frame body 101 is located. The sliding of the fourth magnetic attraction member 8 is limited. When the fourth magnetic attraction member 8 slides to the limit position in the direction close to the window frame 1, the fourth magnetic attraction member 8 abuts against the window frame 1 and is completely located inside the first lower sliding member 23 or the second lower sliding member 33. When the fourth magnetic attraction member 8 slides to the limit position in the direction away from the window frame 1, the fourth magnetic attraction member 8 partially slides out of the first lower sliding member 23 or the second lower sliding member 33. The plurality of second elastic members 107 are respectively installed inside the first lower sliding member 23 and the second lower sliding member 33. One end of the second elastic member 107 is fixedly connected with the first lower sliding member 23 or the second lower sliding member 33, and the other end of the second elastic member 107 is fixedly connected with the corresponding fourth magnetic attraction member 8. The second elastic member 107 drives the fourth magnetic attraction member 8 to slide in the direction away from the window frame 1 and keep at the limit position. In the embodiment, the second elastic member 107 is preferably a compression spring. It is preferred that one fourth magnetic attraction member 8 is in sliding connection with the first lower sliding member 23 and the second lower sliding member 33 and one second elastic member 107 is correspondingly installed. It is preferred that four third magnetic attraction members 7 are installed on the bottom of the window frame 1.
[0057] The bottom of each frame body 101 is correspondingly provided with a plug-in groove 105 for the fourth magnetic attraction member 8 to be inserted into. When the bottom of the frame body 101 abuts against the corresponding first lower sliding member 23 or the second lower sliding member 33, the second elastic member 107 makes the fourth magnetic attraction member 8 have a tendency to slide and insert into the plug-in groove 105.
[0058] When neither the first lower sliding member 23 nor the second lower sliding member 33 abuts against any side of the window frame 1, the fourth magnetic attraction member 8 will be kept in plug-in cooperation with the plug-in groove 105 under the action of the second elastic member 107. At this time, the rotation of the frame body 101 is limited and its position relative to the first lower sliding member 23 or the second lower sliding member 33 is fixed.
[0059] The third magnetic attraction member 7 and the fourth magnetic attraction member 8 are magnetically attracted to each other. When the first lower sliding member 23 or the second lower sliding member 33 slides to abut against one side of the window frame 1, the fourth magnetic attraction member 8 on the first lower sliding member 23 aligns with a corresponding third magnetic attraction member 7 in the vertical direction. At this time, the magnetic attraction force between the third magnetic attraction member 7 and the fourth magnetic attraction member 8 is greater than the force of the second elastic member 107, and the fourth magnetic attraction member 8 will overcome the force of the second elastic member 107 and slide towards the window frame 1 and abut against the third magnetic attraction member 7. At this time, the first lower sliding member 23 or the second lower sliding member 33 is fixed relative to the position of the window frame 1. At this time, the fourth magnetic attraction member 8 is away from the insertion slot 105, and the frame body 101 can be rotated towards the outdoor direction.
[0060] Referring to Figure 5 and Figure 7 , the aluminum alloy window further comprises a plurality of second magnetic attraction members 6 and a plurality of first elastic members 106, and the plurality of second magnetic attraction members 6 and the plurality of first elastic members 106 are mounted on the frame body 101. In this embodiment, preferably, two second magnetic attraction members 6 and two first elastic members 106 are mounted on each frame body 101, and one second magnetic attraction member 6 and one first elastic member 106 form a group, and two groups are respectively mounted on two sides of the frame body 101.
[0061] The second magnetic attraction member 6 is slidingly connected with the frame body 101, the sliding direction of the second magnetic attraction member 6 is parallel to the rotation axis of the frame body 101, and when the planes of the two frame bodies 101 coincide, the sliding paths of the second magnetic attraction members 6 on different frame bodies 101 coincide. The second magnetic attraction member 6 has two states of extension and retraction during sliding, the second magnetic attraction members 6 between different frame bodies 101 are magnetically attracted to each other, and the magnetic attraction force of the second magnetic attraction member 6 to another second magnetic attraction member 6 is greater than the force of the first elastic member 106 to itself. In this embodiment, preferably, the first elastic member 106 is a tension spring.
[0062] The first elastic member 106 is fixedly mounted inside the frame body 101, one end of the first elastic member 106 is fixedly connected with the frame body 101 and the other end is fixedly connected with the corresponding second magnetic attraction member 6, and the first elastic member 106 drives the second magnetic attraction member 6 to slide towards the frame body 101 and keep the retracted state. When the planes of the two frame bodies 101 coincide, the two adjacent second magnetic attraction members 6 on different frame bodies 101 will slide towards each other until abutting and forming a connection, and at this time, the user can easily remove the connection between the two second magnetic attraction members 6 by applying a little force.
[0063] Referring to Figure 1 and Figure 3The blocking and protecting assembly 4 comprises a fixed part 41 and a movable part 42, both of which are plate-shaped structures. The fixed part 41 is fixedly installed at the bottom of the window frame 1, the plane where the fixed part 41 is located is parallel to the plane where the window frame 1 is located, the end face of the fixed part 41 close to the outdoor abuts against the end face of the first lower sliding part 23, and the end face of the fixed part 41 close to the indoor abuts against the end face of the second lower sliding part 33; the top of the movable part 42 is rotationally connected with the window frame 1, the bottom of the movable part 42 is rotationally connected with the fixed part 41, and the rotation axis of the movable part 42 is parallel to the plane where the window frame 1 is located and coincides with the center line of the fixed part 41 and the center line of the window frame 1.
[0064] When the user uses the aluminum alloy window in a push-pull manner, the end face of the movable part 42 close to the outdoor abuts against the end face of the frame 101 of the first window body 21 and the end face of the first upper sliding part 22 at the same time, and the end face of the movable part 42 close to the indoor abuts against the end face of the frame 101 of the second window body 31 and the end face of the second upper sliding part 32 at the same time; when the user uses the aluminum alloy window in a rotating manner, the rotation of the control connecting part 34 and the rotation of the frame 101 on the second window body 31 will drive the movable part 42 to rotate, and finally make the movable part 42 rotate to a state that the plane where the movable part 42 is located is vertical and perpendicular to the plane where the window frame 1 is located, at this time, one side end face of the movable part 42 abuts against the side face of the frame 101 of the first window body 21 and the side face of the first upper sliding part 22, and the other side end face of the movable part 42 abuts against the side face of the frame 101 of the second window body 31 and the side face of the second upper sliding part 32.
[0065] The blocking and protecting assembly 4 further comprises a plurality of third elastic parts 108, in the embodiment, preferably two third elastic parts 108. One third elastic part 108 is fixedly installed at the rotation connection position between the movable part 42 and the window frame 1, and the other third elastic part 108 is fixedly installed at the rotation connection position between the movable part 42 and the fixed part 41, the third elastic part 108 drives the movable part 42 to rotate to a state that the plane where the movable part 42 is located is parallel to the plane where the fixed part 41 is located and keeps. In the embodiment, preferably, the third elastic part 108 is a torsion spring, since the torsion spring is a common prior art, therefore, the third elastic part 108 is only briefly shown in the drawings.
[0066] In the embodiment, preferably, the first magnetic attraction part 5, the second magnetic attraction part 6, the third magnetic attraction part 7 and the fourth magnetic attraction part 8 are all magnets.
[0067] The implementation principle of the aluminum alloy window in the embodiment of the application is as follows:
[0068] When the weather condition is good, the user preferably uses the aluminum alloy window in a sliding manner, can control the first window body assembly 2 to slide by controlling the first upper sliding piece 22 and the first lower sliding piece 23 to slide, can control the second window body assembly 3 to slide by controlling the second upper sliding piece 32 and the second lower sliding piece 33 to slide, thereby can adjust the air flow effect and the air flow position of the aluminum alloy window according to the requirement;
[0069] When the weather condition is good, the user preferably uses the aluminum alloy window in a sliding manner, can control the first window body assembly 2 to slide by controlling the first upper sliding piece 22 and the first lower sliding piece 23 to slide, can control the second window body assembly 3 to slide by controlling the second upper sliding piece 32 and the second lower sliding piece 33 to slide, thereby can adjust the air flow effect and the air flow position of the aluminum alloy window according to the requirement;
[0070] The above are the preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: all equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. An aluminum alloy window characterized by, The application relates to a window frame (1), a first window assembly (2) and a second window assembly (3), wherein the window frame (1) has an installation space (11) for installing the first window assembly (2) and the second window assembly (3), the first window assembly (2) is located at one end of the installation space (11) close to the outdoor side, and the second window assembly (3) is located at one end of the installation space (11) close to the indoor side. The first window assembly (2) comprises a first window (21), a first upper sliding piece (22) and a first lower sliding piece (23), the first upper sliding piece (22) and the first lower sliding piece (23) are respectively located at the upper and lower ends of the installation space (11) and are slidably connected with the window frame (1) in a horizontal and mutually parallel direction, one end of the first window (21) is connected with the first upper sliding piece (22) and can rotate relative to the first upper sliding piece (22), and the first window (21) is fixed after rotating, and the other end of the first window (21) is detachably connected with the first lower sliding piece (23), and the rotating axis of the first window (21) is parallel to the sliding direction of the first upper sliding piece (22). The second window assembly (3) comprises a second window (31), a second upper sliding piece (32) and a second lower sliding piece (33), the second upper sliding piece (32) and the second lower sliding piece (33) are respectively located at the upper and lower ends of the installation space (11) and are slidably connected with the window frame (1) in a horizontal and mutually parallel direction, one end of the second window (31) is connected with the second upper sliding piece (32) and can rotate relative to the second upper sliding piece (32), and the second window (31) is fixed after rotating, and the other end of the second window (31) is detachably connected with the second lower sliding piece (33), and the rotating axis of the second window (31) is parallel to the sliding direction of the second upper sliding piece (32). The application further relates to a shielding assembly (4), which is arranged on the window frame (1) and comprises a fixed piece (41) and a movable piece (42), the fixed piece (41) is located between the first lower sliding piece (23) and the second lower sliding piece (33), and the plane of the fixed piece (41) is parallel to the plane of the window frame (1); the movable piece (42) is rotationally connected with the window frame (1), the rotating axis of the movable piece (42) is vertical and parallel to the plane of the window frame (1), and the movable piece (42) is located between the first window (21) and the second window (31). The shielding assembly (4) further comprises a plurality of third elastic pieces (108), which drive the movable piece (42) to rotate to coincide with the plane of the fixed piece (41).
2. The aluminum alloy window according to claim 1, wherein The second window assembly (3) further comprises a connecting piece (34), one end of the connecting piece (34) is rotationally connected with the second upper sliding piece (32), and the other end of the connecting piece (34) is rotationally connected with the second window (31) away from one end of the second lower sliding piece (33); when the connecting piece (34) rotates to the limit position relative to the second upper sliding piece (32) in the direction close to the outdoor, the rotation axis of the second window (31) coincides with the rotation axis of the first window (21).
3. The aluminum alloy window according to claim 2, wherein The first magnetic attraction piece (5) is arranged on the window frame (1), and when the connecting piece (34) rotates to the limit position relative to the second upper sliding piece (32) in the direction close to the outdoor, the connecting piece (34) abuts against the first magnetic attraction piece (5) and the relative position of the connecting piece (34) and the first magnetic attraction piece (5) is fixed.
4. The aluminum alloy window according to claim 3, wherein A plurality of second magnetic attraction pieces (6) are respectively slidably connected with the first window (21) and the second window (31), and the sliding directions of the plurality of second magnetic attraction pieces (6) are parallel to each other; the second magnetic attraction pieces (6) on the first window (21) and the second magnetic attraction pieces (6) on the second window (31) are magnetically attracted to each other, and when the plane where the first window (21) is located coincides with the plane where the second window (31) is located, the second magnetic attraction pieces (6) on the first window (21) and the second magnetic attraction pieces (6) on the second window (31) abut against each other after sliding out.
5. The aluminum alloy window according to claim 4, wherein A plurality of first elastic pieces (106) are respectively arranged in the first window (21) and the second window (31), and when the plane where the first window (21) is located does not coincide with the plane where the second window (31) is located, the first elastic pieces (106) drive the second magnetic attraction pieces (6) to slide and keep in the retracted state.
6. The aluminum alloy window according to claim 1, wherein A plurality of third magnetic attraction pieces (7), a plurality of fourth magnetic attraction pieces (8), and a plurality of second elastic pieces (107) are arranged, the plurality of third magnetic attraction pieces (7) are arranged on the window frame (1), the plurality of fourth magnetic attraction pieces (8) are respectively slidably connected on the first lower sliding piece (23) and the second lower sliding piece (33), the second elastic pieces (107) drive the fourth magnetic attraction pieces (8) to slide away from the window frame (1), and the first window (21) and the second window (31) are both provided with plug-in grooves (105); The third magnetic attraction pieces (7) and the fourth magnetic attraction pieces (8) are magnetically attracted to each other, and when the first lower sliding piece (23) slides to the limit position, the fourth magnetic attraction pieces (8) on the first lower sliding piece (23) slide to abut against the adjacent third magnetic attraction pieces (7), and the fourth magnetic attraction pieces (8) on the second lower sliding piece (33) are the same. When the first window (21) abuts against the first lower sliding member (23), the second elastic member (107) drives the fourth magnetic attraction member (8) to slide into the insertion slot (105), and when the fourth magnetic attraction member (8) abuts against the corresponding third magnetic attraction member (7), the fourth magnetic attraction member (8) leaves the corresponding insertion slot (105), and the second window (31) abuts against the second lower sliding member (33) in the same way.
7. The aluminum alloy window according to claim 1, wherein The first window (21) and the second window (31) each comprise a frame (101) and glass (102), a plurality of drainage holes (103) are formed in the frame (101), one end of the drainage hole (103) communicates with the space on the side close to the outdoor side of the glass (102), and the other end of the drainage hole (103) communicates with the space on the horizontal side of the frame (101).
Citation Information
Patent Citations
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