A push-pull aluminum alloy window
By designing a flip-flopable inner frame and outer frame structure, combined with the coordination of the limit seat and the limit slot, the problem of troublesome cleaning of existing push-pull aluminum alloy windows is solved, and the convenience and safety of window cleaning are improved.
Patent Information
- Application Number
- CN202310601959.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-25
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2043-05-25
AI Technical Summary
When cleaning the existing push-pull aluminum alloy windows, cleaning personnel need to stick out from the indoors and use tools such as long-handled brushes, which is more troublesome to operate.
A push-pull aluminum alloy window is designed, adopting a matching structure between the inner frame and the outer frame. The inner frame can be flipped relative to the outer frame, so that the window glass can be rotated into the room for cleaning. Through the coordination between the limit seat and the limit slot, the limit and stability of the inner frame are achieved.
It improves the convenience and safety of window cleaning, reduces the risk of cleaning personnel operating outdoors, and makes the operation more intuitive and efficient.
Smart Images

Figure CN116658043B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of windows, and particularly to a sliding aluminum alloy window. Background Art
[0002] An aluminum alloy window is a window formed by processing aluminum profiles and glass, and is widely used in the construction field due to its high strength, strong decoration and other characteristics.
[0003] Aluminum alloy windows have forms such as sliding type, outward opening type, inward opening type, etc. For a sliding aluminum alloy window, when it is necessary to clean the side of the window facing the outside, the cleaner needs to lean out of the room and cooperate with cleaning tools such as a long-handled brush, which is rather troublesome. Summary of the Invention
[0004] In order to improve the convenience of window cleaning, this application provides a sliding aluminum alloy window.
[0005] This application provides a sliding aluminum alloy window, adopting the following technical solutions:
[0006] A sliding aluminum alloy window includes a window body and an assembly frame. The assembly frame has a track cooperating with the window body for the window body to slide within the assembly frame. The window body includes,
[0007] An outer frame, sliding on the track;
[0008] An inner frame, rotating within the outer frame so that the inner frame can be turned up and down relative to the outer frame;
[0009] Window glass, embedded within the inner frame;
[0010] Two limit seats, respectively moving at both ends of the inner frame and capable of moving to protrude from the ends of the inner frame;
[0011] Wherein, limit slots for inserting the limit seats are provided on the inner walls at the upper and lower ends of the outer frame, and an adjusting component for driving the limit seats to move is provided between the inner frame and the outer frame; when the limit seats are inserted into the limit slots, the inner frame, the limit seats and the window glass close the outer frame.
[0012] By adopting the above technical solutions, the inner frame is turned relative to the outer frame so that the window glass located outside can be turned to the inside for cleaning, and the inner frame is limited by the cooperation of the limit seats and the limit slots, thereby improving the convenience and safety of window cleaning.
[0013] Optionally, the adjusting component corresponds to the limit seats, and the adjusting component includes,
[0014] The rotating seat has an elliptical cross-section and rotates within the inner frame;
[0015] The abutting seat moves horizontally within the inner frame and abuts against the outer wall of the rotating seat, having an inclined surface facing the limiting seat;
[0016] The first resetting member is arranged on the abutting seat and is used to drive the abutting seat to move towards the rotating seat;
[0017] The rotating handle is connected to the rotating seat to drive the rotation of the rotating seat, located within the outer frame and outside the inner frame;
[0018] The moving seat is arranged on the limiting seat and abuts against the inclined surface;
[0019] The second resetting member is arranged on the moving seat and gives the moving seat a tendency to abut against the inclined surface.
[0020] By adopting the above technical solution, the rotating seat is rotated by rotating the rotating handle, so that the abutting seat moves horizontally, and then the limiting seat is driven to move through the cooperation between the moving seat and the inclined surface.
[0021] Optionally, there are two abutting seats in each adjusting assembly, and the two abutting seats symmetrically abut against the opposite sides of the rotating seat respectively.
[0022] By adopting the above technical solution, the cooperation between the two abutting seats and the rotating seat can improve the stability of the adjusting assembly.
[0023] Optionally, when the distance between the two abutting seats is the shortest, the limiting seat is received in the inner frame.
[0024] By adopting the above technical solution, when the distance between the two abutting seats is the shortest, the distance between the two abutting seats is not easily changed without external force, so that the limiting seat is not easily moved out of the inner frame during the rotation of the inner frame.
[0025] Optionally, a plug rod is threadedly moved at the end of the rotating handle far from the rotating seat, and there is a slot on the inner wall of the outer frame for the plug rod to insert. When the plug rod cooperates with the slot, the limiting seat is inserted into the limiting groove.
[0026] By adopting the above technical solution, the cooperation between the plug rod and the slot can limit the rotation of the rotating handle when the limiting seat is inserted into the limiting groove, and further relatively position the inner frame and the outer frame to improve the stability between the inner frame and the outer frame.
[0027] Optionally, the turning handles at both ends of the inner frame face the two opposite sides away from the window glass respectively. The turning handle facing the interior is located at the lower part of the inner frame, and a synchronizing member is provided between the turning seats at both ends of the inner frame. The synchronizing member is used to drive the turning seats to rotate synchronously.
[0028] By adopting the above technical solution, through the transmission of the synchronizing member, turning the turning handle in the interior can drive the turning handles at both ends of the inner frame to move together, thereby improving the convenience of releasing or locking the inner frame and the outer frame.
[0029] Optionally, the window body further includes a support. The support extends in the inner frame along the length direction of the inner frame. The interior of the support is hollow, and both ends of the support extend to the two turning seats respectively. The synchronizing member includes:
[0030] Sprockets, corresponding to the turning seats one by one and fixedly connected coaxially;
[0031] A chain, located inside the support and meshing with the sprockets at both ends of the inner frame simultaneously.
[0032] By adopting the above technical solution, when turning one turning handle, the chain drives the sprocket associated with the other turning handle to rotate, so as to drive the other turning handle to rotate simultaneously.
[0033] Optionally, the outer frame includes a fixing frame with an opening facing downwards, and a base that moves up and down on the fixing frame.
[0034] By adopting the above technical solution, when the base slides up and down at the fixing frame, when the inner frame rotates out of the outer frame, the base can be separated from the track upwards, so as to facilitate the cleaning of the track.
[0035] Optionally, a ball plunger is provided on the fixing frame, and a first groove for cooperating with the ball plunger is provided on the outer side wall of the inner frame. When the inner frame closes the outer frame, the ball head of the ball plunger can abut against the first groove, and a second groove for the ball head of the ball plunger to abut against is provided at the end of the base.
[0036] By adopting the above technical solution, the cooperation between the first groove and the ball plunger can indicate the position where the inner frame and the outer frame cooperate, and the cooperation between the second groove and the ball plunger can limit the upward movement of the base, so that the base is not easy to fall when cleaning the track.
[0037] In summary, the present application has the following beneficial effects:
[0038] By rotating the inner frame to turn it over, the side of the window glass facing the outside is exchanged to the inside, so as to facilitate the cleaning of the window glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 is a schematic structural diagram of an embodiment of the present application;
[0040] Figure 2 is an exploded structural diagram of an assembly frame and a window body in an embodiment of the present application;
[0041] Figure 3 is a schematic structural diagram of a window body in an embodiment of the present application;
[0042] Figure 4 is a cross-sectional view of an inner frame in an embodiment of the present application;
[0043] Figure 5 is Figure 1 an enlarged structural diagram of part A in;
[0044] Figure 6 is Figure 4 an enlarged structural diagram of part B in;
[0045] Figure 7 is a schematic structural diagram of a synchronizing member in an embodiment of the present application;
[0046] Figure 8 is Figure 7 an enlarged structural diagram of part C in;
[0047] Figure 9 is an exploded structural diagram of an outer frame in an embodiment of the present application;
[0048] Figure 10 is Figure 9 an enlarged structural diagram of part D in.
[0049] Explanation of reference numerals: 1. Assembly frame; 2. Track; 3. Outer frame; 31. Fixed frame; 32. Base; 4. Inner frame; 5. Window glass; 6. Limiting seat; 7. Limiting groove; 8. Adjusting assembly; 81. Rotating seat; 82. Abutting seat; 83. First reset member; 831. First guiding block; 832. First spring; 84. Rotating handle; 85. Moving seat; 86. Second reset member; 861. Second guiding block; 862. Second spring; 9. Plug rod; 10. Slot; 11. Synchronizing member; 111. Sprocket; 112. Chain; 12. Support; 13. Ball plunger; 14. First groove; 15. Second groove; 16. Groove; 17. Accommodating groove; 18. Central axis; 19. Stroke groove; 20. Stroke rod; 21. Stroke seat; 22. Inclined surface. Detailed implementation manners
[0050] The following further elaborates on the present application in conjunction with the attached Figures 1 - 10 drawings.
[0051] An embodiment of the present application discloses a push-pull type aluminum alloy window. Refer to Figure 1, The push-pull type aluminum alloy window includes a window body and an assembly frame 1.
[0052] Referring to Figure 1 and Figure 2 , the assembly frame 1 has a square frame structure. There are two window bodies. On the inner walls of the upper and lower sides of the assembly frame 1, there are tracks 2 corresponding to the window bodies one by one. The window bodies slide horizontally in the assembly frame 1 through the corresponding tracks 2, and the two tracks 2 are staggered so that the two window bodies are staggered when sliding.
[0053] Referring to Figure 2 and Figure 3 , among them, each window body includes an outer frame 3, an inner frame 4, a limit seat 6, a support 12 and window glass 5. The outer frame 3, the inner frame 4 and the support 12 are all made of aluminum alloy. The outer frame 3 is in a square frame shape. The track 2 corresponding to the window body is a convex strip protruding from the inner wall of the assembly frame 1. Both the upper and lower ends of the outer frame 3 have grooves 16 for the convex strip to abut against. The outer frame 3 slides in the assembly frame 1 through the cooperation with the convex strip.
[0054] Referring to Figure 3 , the inner frame 4 is in a square frame shape. The size of the inner frame 4 is smaller than that of the outer frame 3. The middle part of the inner frame 4 is rotatably connected to the middle part of the outer frame 3 through a rotating shaft, so that the inner frame 4 can be turned up and down in the outer frame 3. The axis of the rotating shaft extends in the horizontal direction, and there is a damping between the rotating shaft and the outer frame 3 so that the inner frame 4 is not easy to rotate when not pushed by an external force. In addition, the outer walls of the opposite sides of the inner frame 4 in the horizontal direction are respectively abutted against the inner walls of the opposite sides of the outer frame 3, and rubber layers are attached to the inner walls of the opposite sides of the outer frame 3 so that the inner frame 4 rubs against the rubber layer of the outer frame 3 when rotating.
[0055] The support 12 is in a long strip shape and is fixed to the middle part of the inner frame 4 in the vertical direction. The support 12 divides the inner cavity of the inner frame 4 into two installation cavities symmetrically arranged along the support 12. The window glass 5 corresponds to the installation cavity one by one and is fixedly embedded and installed in the fixed installation cavity. When the inner frame 4 rotates to make the window glass 5 in the vertical plane, there are rotation gaps between the upper and lower ends of the inner frame 4 and the inner wall of the outer frame 3, so that the inner frame 4 can perform a 360° flip.
[0056] In each window body, the number of the limit seats 6 is two. The two limit seats 6 move up and down at the upper and lower ends of the inner frame 4 respectively. And there are receiving grooves 17 at the upper and lower ends of the inner frame 4. The receiving grooves 17 are used to receive the limit seats 6 and allow the limit seats 6 to slide along the distribution direction of the two limit seats 6.
[0057] Referring to Figure 3 and Figure 4 , the limit seat 6 has a long strip structure. The length direction of the limit seat 6, the length direction of the track 2 and the width direction of the inner frame 4 are parallel to each other. And the extended length of the limit seat 6 is consistent with the extended length of the width of the inner frame 4. The two ends of the limit seat 6 far away from each other are flush with the outer walls of the opposite sides of the inner frame 4.
[0058] Both the upper and lower inner walls of the outer frame 3 are provided with limiting grooves 7 for cooperating with the limiting seats 6. When the inner frame 4 rotates until the window glass 5 is in the vertical state, the limiting grooves 7 are opposite to the accommodating grooves 17. One side of the limiting seat 6 close to the outer frame 3 can move out of the accommodating groove 17 and be inserted into the limiting groove 7 to fill the rotation gap, so that the inner frame 4 is positioned relative to the outer frame 3.
[0059] In addition, rubber layers are attached to the inner walls on both sides of the outer frame 3 opposite to the limiting grooves 7. The thicknesses of the two sides of the two limiting seats 6 away from each other gradually decrease in the direction away from each other. When the limiting seats 6 are inserted into the limiting grooves 7, the rubber layers on both sides of the limiting grooves 7 respectively abut against the opposite sides of the limiting seats 6, and the inner frame 4, the limiting seats 6 and the window glass 5 close the outer frame 3 to limit the liquid from entering the room from the outside through between the inner frame 4 and the outer frame 3.
[0060] Refer to Figure 4 and Figure 5 In order to drive the movement of the limiting seats 6, an adjusting assembly 8 is provided between the inner frame 4 and the outer frame 3. The adjusting assemblies 8 correspond to the limiting seats 6 one by one. Each adjusting assembly 8 includes a rotating seat 81, an abutting seat 82, a first restoring member 83, a rotating handle 84, a moving seat 85 and a second restoring member 86.
[0061] Among them, the rotating seat 81 has a disk-shaped structure with an elliptical cross-section. A central shaft 18 is coaxially and fixedly penetrated through the midpoint of the rotating seat 81. The rotating seat 81 is rotatably connected to the inner frame 4 through the central shaft 18, and the axis direction of the central shaft 18 is perpendicular to the length direction of the inner frame 4. The central shaft 18 passes through the outside of the inner frame 4 and is connected to the rotating handle 84, so that when the rotating handle 84 rotates, it drives the rotating seat 81 to rotate. When the plane of the window glass 5 is in the vertical state, the rotating handle 84 is located in the outer frame 3.
[0062] Each adjusting assembly 8 has two abutting seats 82. The two abutting seats 82 both move in the inner seat along the same horizontal straight line direction, and the opposite ends of the two abutting seats 82 respectively abut against the outer peripheral walls on the opposite sides of the rotating seat 81. The two abutting seats 82 are mirror-symmetrical with the rotating seat 81 as the center.
[0063] Refer to Figure 4 and Figure 6 The abutting seats 82 in the two adjusting assemblies 8 are respectively located in the upper and lower frame sides of the inner frame 4, and all the abutting seats 82 are located between the two limiting seats 6 of the two adjusting assemblies 8. An inclined surface 22 is provided on the side of the abutting seat 82 facing the opposite limiting seat 6. The distance between the inclined surface 22 and the opposite limiting seat 6 gradually increases in the direction away from the rotating seat 81.
[0064] The first reset member 83 corresponds to the abutting seat 82 one by one. Each first reset member 83 includes a first guiding block 831 and a first spring 832. The side of the abutting seat 82 facing away from the opposite limiting seat 6 is a flat surface. The first guiding block 831 is fixed on the flat surface opposite to the abutting seat 82, and a first guiding groove for the first guiding block 831 to slide along the width direction of the inner frame 4 is formed in the inner frame 4. The first spring 832 is located in the first guiding groove and is connected to the first guiding block 831. The elastic force of the first spring 832 gives the first guiding block 831 a tendency to move towards the rotating seat 81, so as to drive the abutting seat 82 to always tightly abut against the rotating seat 81. And one end of the abutting seat 82 abutting against the rotating seat 81 is arc-shaped. When the rotating seat 81 rotates, the abutting seat 82 abutting against the rotating seat 81 moves horizontally along with the rotation of the rotating seat 81, so that the distance between the two abutting seats 82 abutting against the rotating seat 81 changes.
[0065] The moving seat 85 is fixed on the side of the limiting seat 6 facing the abutting seat 82. The moving seat 85 is in a strip structure with its length direction consistent with the length direction of the inner frame 4. And the number of moving seats 85 on each limiting seat 6 is two, and the two moving seats 85 correspond to the two abutting seats 82 opposite to the limiting seat 6 one by one.
[0066] The second reset member 86 corresponds to the moving seat 85 one by one. Each second reset member 86 includes a second guiding block 861 and a second spring 862. The second guiding block 861 is fixed on one side wall of the moving seat 85, and a second guiding groove for the second guiding block 861 to slide along the length direction of the inner frame 4 is formed in the inner frame 4. The second spring 862 is located in the second guiding groove and is connected to the second guiding block 861. And the elastic force of the second spring 862 always gives the second guiding block 861 a tendency to move towards the opposite abutting seat 82, so that the moving seat 85 always abuts against the inclined surface 22 when the abutting seat 82 moves. Thus, when the abutting seat 82 moves along the width direction of the inner frame 4, it drives the moving seat 85 to move along the length direction of the inner frame 4. And for the convenience of assembly, the inner frame 4 is formed by splicing in half.
[0067] When the window glass 5 rotates to the vertical state, rotate the rotating handle 84 so that the rotating handle 84 extends in the horizontal direction. At this time, the long axis of the rotating seat 81 is in the horizontal state, the accommodating groove 17 is communicated with the limiting groove 7, the distance between the two abutting seats 82 is the longest, and one side of the limiting seat 6 away from the rotating seat 81 extends out of the inner frame 4 and is inserted into the limiting groove 7, so as to position the inner frame 4 and the outer frame 3.
[0068] When it is necessary to rotate the inner frame 4, turn the turning handle 84 to the vertical state. At this time, the short axis of the rotating seat 81 is in the horizontal state. The two abutting seats 82 abutting against the rotating seat 81 move towards each other under the action of the first spring 832 until the distance between the two abutting seats 82 is the shortest, so that the limiting seat 6 moves towards the rotating seat 81 under the action of the second spring 862, so that the limiting seat 6 disengages from the limiting groove 7 and is received in the accommodating groove 17, so that the inner frame 4 can rotate.
[0069] In order to improve the convenience of moving the limiting seats 6 at both ends of the inner frame 4, the abutting seats 82 in the two adjusting assemblies 8 are arranged mirror-symmetrically along the horizontal center line of the inner frame 4. The turning handles 84 in the two adjusting assemblies 8 are respectively on the opposite sides of the window glass 5, and the extending directions of the turning handles 84 in the two adjusting assemblies 8 are opposite. When the window glass 5 is in the vertical state, the turning handle 84 located indoors is at the lower part of the inner frame 4, and the turning handle 84 located outdoors is at the upper part of the inner frame 4, and there is a synchronizing member 11 for driving the rotating seats 81 to rotate synchronously between the rotating seats 81 in the two adjusting assemblies 8.
[0070] Refer to Figure 7 and Figure 8 , specifically, the support 12 is hollow inside, and the support 12 is simultaneously communicated with the rotating seats 81 at both ends of the inner frame 4. The synchronizing member 11 includes a sprocket 111 and a chain 112. There are two sprockets 111, and the two sprockets 111 correspond to the rotating seats 81 one by one. The sprocket 111 is fixedly sleeved on the outer wall of the central shaft 18 so that the sprocket 111 is coaxially arranged with the corresponding rotating seat 81. The chain 112 is located inside the support 12, and the chain 112 extends to the two ends of the inner frame 4 away from each other and is simultaneously engaged on the two sprockets 111. When one sprocket 111 rotates, it drives the other sprocket 111 to rotate through the chain 112. Thus, turning the turning handle 84 located indoors can drive the limiting seats 6 at the upper and lower ends of the inner frame 4 to be inserted into or removed from the outer frame 3 simultaneously.
[0071] Refer to Figure 5 , in addition, a plug rod 9 is threadedly moved at the end of the turning handle 84 away from the rotating seat 81. Slots 10 are opened on the inner walls of the opposite sides of the lower part of the outer frame 3. When the window glass 5 is in the vertical state and the turning handle 84 is turned to the horizontal state, threadedly move the plug rod 9, and the plug rod 9 can be inserted into one of the slots 10 in the horizontal direction to limit the further rotation of the turning handle 84.
[0072] Refer to Figure 9, Further, a ball plunger 13 is installed on the inner side wall of the lower part of the outer frame 3. There is a through hole on the rubber layer of the outer frame 3 for the ball plunger 13 to give way. The base of the ball plunger 13 is embedded in the outer frame 3, and the ball head of the ball plunger 13 protrudes from the rubber layer on the inner wall of the outer frame 3. A first groove 14 corresponding to the ball plunger 13 is formed on the outer wall of the inner frame 4, and the first groove 14 is in an arc structure.
[0073] Referring to Figure 9 and Figure 6 , when the window glass 5 is in a vertical state, the ball head of the ball plunger 13 is pressed into the first groove 14 under the action of the spring in the base to pre-position the position of the inner frame 4. When the inner frame 4 needs to rotate relative to the outer frame 3, the inner frame 4 is pushed so that the ball head of the ball plunger 13 is compressed and pressed into the base, so that the inner frame 4 is disengaged from the ball plunger 13.
[0074] Referring to Figure 3 and Figure 9 , the outer frame 3 includes a fixing frame 31 and a base 32. The fixing frame 31 is in an inverted U-shaped structure with an opening facing downwards. The base 32 is in a long strip shape and slides up and down on the fixing frame 31 to close the bottom of the fixing frame 31. The ball plunger 13 is located on the fixing frame 31. The limiting groove 7 located below is on the base 32. The groove 16 corresponding to the lower track 2 of the installation frame is located on the lower surface of the base 32 and the lower surface of the fixing frame 31 at the same time.
[0075] Referring to Figure 9 and Figure 10 , wherein, lower parts of the opposite inner walls of the fixing frame 31 are provided with travel grooves 19, and the travel grooves 19 extend to be close to the ball plunger 13. A travel rod 20 extending in the vertical direction is fixed in the fixing frame 31 in the travel grooves 19. The opposite ends of the base 32 respectively abut against the opposite inner walls of the fixing frame 31, and a travel seat 21 extending into the travel grooves 19 is fixed at the end of the base 32. The travel seat 21 is slidably sleeved on the outer wall of the travel rod 20 up and down. When the inner frame 4 is rotated out of the outer frame 3, the travel seat 21 can move up and down relative to the travel rod 20 to drive the base 32 to move up and down, so as to facilitate cleaning the track 2 below the base 32.
[0076] A second groove 15 matching the ball plunger 13 is formed on the end face of the base 32, and the second groove 15 is in an arc structure. When the base 32 moves upwards until the travel seat 21 abuts against the inner top surface of the travel groove 19, the ball head of the ball plunger 13 is pressed into the second groove 15, so that the ball plunger 13 limits the base 32, so that the base 32 is not easy to fall when cleaning the track 2.
[0077] In addition, when the base 32 moves downward until the travel seat 21 abuts against the inner bottom wall of the travel groove 19, the base 32 cooperates with the track 2 to rotate the inner frame 4 to face the base 32 and insert the limit seat 6 into the base 32, so that the base 32 is limited between the limit seat 6 and the track 2 and is not easily moved up and down.
[0078] The implementation principle of a push-pull aluminum alloy window according to an embodiment of the present application is as follows: Rotate the indoor rotating handle 84 upward from the indoor, so that the indoor rotating handle 84 extends upward in the vertical direction, and through the action of the synchronizing member 11, the outdoor rotating handle 84 extends downward in the vertical direction. And through the action of the adjusting components 8 at the upper and lower ends of the inner frame 4, the limit seats 6 at the upper and lower ends of the inner frame 4 move closer to each other and respectively disengage from the limit grooves 7 at the upper and lower ends of the outer frame 3. Then push the inner frame 4, and the inner frame 4 can be flipped relative to the outer frame 3, so that the side of the window glass 5 facing the outdoor is rotated to the indoor for cleaning.
[0079] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A push-pull type aluminum alloy window, characterized in that: It includes a window body and an assembly frame (1). There is a track (2) at the assembly frame (1) that cooperates with the window body for the window body to slide within the assembly frame (1). The window body includes, an outer frame (3) that slides on the track (2); an inner frame (4) that rotates within the outer frame (3) so that the inner frame (4) can flip relative to the outer frame (3); a window glass (5) that is embedded within the inner frame (4); two limit seats (6) that respectively move at the upper and lower ends of the inner frame (4) and can move to protrude from the ends of the inner frame (4); wherein, there are limit slots (7) for the limit seats (6) to insert on the inner walls at the upper and lower ends of the outer frame (3), and there is an adjustment component (8) between the inner frame (4) and the outer frame (3) for driving the movement of the limit seats (6); when the limit seats (6) are inserted into the limit slots (7), the inner frame (4), the limit seats (6), and the window glass (5) close the outer frame (3); the adjustment component (8) corresponds to the limit seats (6), and the adjustment component (8) includes, a rotating seat (81) with an elliptical cross-section that rotates within the inner frame (4); a contact seat (82) that moves horizontally within the inner frame (4) and abuts against the outer wall of the rotating seat (81), and has an inclined surface (22) facing the limit seat (6); a first resetting member (83) that is arranged on the contact seat (82) for driving the contact seat (82) to move towards the direction close to the rotating seat (81); a rotating handle (84) that is connected to the rotating seat (81) to drive the rotation of the rotating seat (81), and is located within the outer frame (3) and outside the inner frame (4); a moving seat (85) that is arranged on the limit seat (6) and abuts against the inclined surface (22); a second resetting member (86) that is arranged on the moving seat (85) to give the moving seat (85) a tendency to abut against the inclined surface (22).
2. The push-pull type aluminum alloy window according to claim 1, characterized in that: There are two contact seats (82) in each adjustment component (8), and the two contact seats (82) respectively symmetrically abut against the opposite sides of the rotating seat (81).
3. A push-pull type aluminum alloy window according to claim 2, characterized in that: When the distance between the two contact seats (82) is the shortest, the limit seats (6) are received within the inner frame (4).
4. A push-pull aluminum alloy window according to claim 1, characterized in that: One end of the rotating handle (84) away from the rotating seat (81) is threadedly moved with an insertion rod (9). There is a slot (10) on the inner wall of the outer frame (3) for the insertion rod (9) to insert. When the insertion rod (9) cooperates with the slot (10), the limit seats (6) are inserted into the limit slots (7).
5. A push-pull type aluminum alloy window according to claim 1, characterized in that: The rotating handles (84) at both ends of the inner frame (4) are respectively opposite to the opposite sides of the window glass (5). The rotating handle (84) facing the interior is located at the lower part of the inner frame (4), and there is a synchronizing member (11) between the rotating seats (81) at both ends of the inner frame (4) for driving the synchronous rotation of the rotating seats (81).
6. The push-pull type aluminum alloy window according to claim 5, wherein: The window body further includes a support (12), the support (12) extends in the inner frame (4) along the length direction of the inner frame (4), the inside of the support (12) is hollow, and both ends of the support (12) extend to two rotating seats (81) respectively. The synchronizing member (11) includes, sprocket wheels (111), corresponding to the rotating seats (81) one by one and fixedly connected coaxially; a chain (112), located inside the support (12) and meshing with the sprocket wheels (111) at both ends of the inner frame (4) simultaneously.
7. A push-pull type aluminum alloy window according to claim 1, characterized in that: The outer frame (3) includes a fixing frame (31) with an opening facing downwards, and a base (32) that moves up and down on the fixing frame (31).
8. A push-pull aluminum alloy window according to claim 7, characterized in that: A ball plunger (13) is arranged on the fixing frame (31), and a first groove (14) that cooperates with the ball plunger (13) is formed on the outer side wall of the inner frame (4). When the inner frame (4) closes the outer frame (3), the ball head of the ball plunger (13) can abut against the first groove (14), and a second groove (15) for the ball head of the ball plunger (13) to abut against is formed at the end of the base (32).
Citation Information
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