Fireproof aluminum alloy door and window with sealing structure
By setting up components such as windows, windows, sealing components and extrusion locking devices, the problem of insufficiency of existing aluminum alloy doors and windows is solved, and effective tightening and sealing effect of windows and doors when closed is achieved.
Patent Information
- Application Number
- CN202422395707.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-30
AI Technical Summary
When the existing aluminum alloy doors and windows are closed, the tightening force cannot be effectively applied by simply turning and closing, resulting in the fire-proof sealing gasket not being fully squeezed and tightened, and the sealing effect is not good.
By setting up the cooperation of the form, window door, sealing assembly, extrusion locking device, mobile extrusion assembly and control assembly, the pressure spring and clamping member are used to apply tension to the window door when closed, so that the fire-proof sealing gasket is squeezed and attached to the pressing frame, enhancing the sealing effect.
It realizes effective tightening of windows and doors when closed, ensures that the fire-proof seal is fully squeezed and tightened, and improves the tightness and effect of the seal.
Smart Images

Figure CN223119792U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fireproof aluminum alloy doors and windows, and particularly relates to a fireproof aluminum alloy door and window with a sealing structure. Background Art
[0002] Fireproof aluminum alloy doors and windows are modern building materials that combine aesthetics, durability, and excellent fireproof performance. They use high-strength aluminum alloy as the main frame material, paired with special fireproof glass and an efficient sealing system. Not only can they effectively isolate flames and smoke in case of a fire, extend the fire resistance time, and ensure the safety of personnel, but their diverse colors and customization services enable fireproof aluminum alloy doors and windows to perfectly blend into various architectural styles, meeting both building safety standards and enhancing the overall aesthetic appeal. As an important safety barrier in modern buildings, fireproof aluminum alloy doors and windows are gradually becoming the new favorite in the market.
[0003] The problem with the existing technology is that when the existing aluminum alloy doors and windows are closed and sealed, they are usually fixed and sealed by simply rotating and closing the window doors. In this way, the closed window doors do not receive an effective tightening force, so that the fireproof sealing gasket cannot be fully squeezed and tightened for sealing, resulting in a problem of poor sealing due to loose sealing. Summary of the Utility Model
[0004] In view of the problems existing in the prior art, the utility model provides a fireproof aluminum alloy door and window with a sealing structure, which has the advantage of being able to tighten the window door while closing the window door, and to a certain extent strengthens the sealing performance, and solves the problem that when the existing aluminum alloy doors and windows are closed and sealed, they are usually fixed and sealed by simply rotating and closing the window doors. In this way, the closed window doors do not receive an effective tightening force, so that the fireproof sealing gasket cannot be fully squeezed and tightened for sealing, resulting in a problem of poor sealing due to loose sealing.
[0005] The utility model is realized as follows: A fireproof aluminum alloy door and window with a sealing structure includes a window frame and a window door. The window door is arranged on the front side of the window frame and is rotatably connected to the window frame. A sealing component is arranged on the rear surface of the window door. An opposing pressure frame is arranged inside the window frame and is fixedly connected to the window frame. A first fireproof sealing gasket is fixedly connected to the front surface of the opposing pressure frame. An extrusion locking device is arranged in the middle of the front side of the window door. A docking release component is arranged on the left side of the rear interior of the window frame.
[0006] As a preferred embodiment of the present utility model, the sealing assembly includes a movable groove, a pressing plate, a second fireproof sealing gasket, and a pressure spring. The movable groove is formed on the rear surface of the window door. The pressing plate is disposed in the movable groove and is movably connected to the movable groove. The rear end of the pressing plate extends out of the movable groove. The second fireproof sealing gasket is fixedly connected to the rear surface of the pressing plate. The number of the pressure springs is several and they are uniformly arranged around the front surface of the pressing plate. The front and rear ends of the pressure spring are respectively fixedly connected to the front surface of the pressing plate and the inner surface of the movable groove. The first fireproof sealing gasket corresponds to and mates with the second fireproof sealing gasket. By providing the sealing assembly, it is used to play a role in extrusion sealing. When the window door is locked and closed, the pressure applied by the cooperation of the extrusion locking device and the docking release assembly is used to make the second fireproof sealing gasket on the surface of the pressing plate and the first sealing end on the surface of the counter-pressure frame keep pressing against each other to ensure sealing.
[0007] As a preferred embodiment of the present utility model, the extrusion locking device includes a placement groove, a moving extrusion assembly, and a control assembly. The placement groove is formed on the front surface of the window door. The moving extrusion assembly is disposed on the left side inside the placement groove. The control assembly is disposed on the right side of the moving extrusion assembly. By providing the extrusion locking device, it is used to control the opening and closing of the window door. When closing, it cooperates with the stroke groove to play a role in closing and fixing the window door while applying a pulling force to the window door to cause the sealing assembly to be extruded to enhance sealing.
[0008] As a preferred embodiment of the present utility model, the moving extrusion assembly includes a positioning rod, a damping pad, a special-shaped rack, and a clamping member. The number of the positioning rods is two and they are respectively disposed on the front and rear sides on the left side inside the placement groove. The upper and lower ends of the two positioning rods are respectively fixedly connected to the upper and lower end surfaces inside the placement groove. The number of the damping pads is two and they are respectively sleeved on the surfaces of the two positioning rods and are movably connected to the two positioning rods. The special-shaped rack is sleeved on the surfaces of the two damping pads and is fixedly connected to the two damping pads. The special-shaped rack is movably connected to the two positioning rods through the damping pads. The left side of the special-shaped rack extends out of the placement groove and is movably connected to the placement groove. The clamping member is disposed on the left side of the special-shaped rack. By providing the moving extrusion assembly, the pressure is used to drive the clamping member, which has the function of driving the chuck to move in the stroke groove to apply a pulling force to the window door by extruding the inner wall of the stroke groove.
[0009] As a preferred embodiment of the present utility model, the clamping member includes a recovery groove, a fixing rod, a clamping head and a pushing spring. The recovery groove is formed on the left surface of the special-shaped rack. The fixing rod is arranged in the recovery groove, and the right end is fixedly connected to the right inner surface of the recovery groove. The clamping head is sleeved on the surface of the fixing rod and is slidably connected to the fixing rod. The left end of the clamping head extends out of the recovery groove and is movably connected to the recovery groove. The pushing spring is sleeved on the surface of the fixing rod, and the left and right ends are respectively fixedly connected to the right surface of the clamping head and the right inner surface of the recovery groove. The clamping head corresponds to the position of the docking and releasing assembly. By providing the clamping member, it is used to close and fix the window door, and cooperate with the travel groove to apply a pulling force to the window door, thereby squeezing the sealing assembly and strengthening the sealing effect.
[0010] As a preferred embodiment of the present utility model, the control assembly includes a rotating rod, a gear and a handle. The rotating rod is arranged on the right side of the special-shaped rack, and both the front and rear ends are rotatably connected to the front and rear ends of the placement groove. The front end of the rotating rod extends out of the placement groove and is rotatably connected to the window door. The gear is sleeved on the surface of the rotating rod and is fixedly connected to the rotating rod, and the left side is meshed with the special-shaped rack. The handle is fixedly connected to one end of the rotating rod extending out of the placement groove. By providing the control assembly, it is used to drive and control the extrusion and locking device, and has the function of driving the clamping member to move and extrude by controlling the moving extrusion assembly.
[0011] As a preferred embodiment of the present utility model, the docking and releasing assembly includes a travel groove, a push plate and a pull button. The travel groove is formed on the left inner surface of the window body and corresponds to and is adapted to the position of the clamping head. The push plate is arranged on the left side inside the travel groove and is movably connected to the travel groove. The pull button is fixedly connected to the front end of the left side of the push plate, and the front end extends out of the placement groove and is slidably connected to the placement groove. By providing the docking and releasing assembly, it is used to cooperate with the clamping head and to squeeze and recover the clamping head to release the fixation of the window door.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. The utility model solves the problem that when the existing aluminum alloy doors and windows are closed and sealed, they are usually fixed by simply rotating and closing the window doors for sealing. In this way, the window doors cannot obtain an effective tightening force, so that the fireproof sealing gasket cannot be fully squeezed and adhered to for sealing, resulting in poor sealing due to insufficient tightness, through the combined use of a window body, window doors, a sealing assembly, a movable groove, a pressing plate, a second fireproof sealing gasket, a pressure spring, an opposing pressing frame, a first fireproof sealing gasket, an extrusion locking device, a placement groove, a movable extrusion assembly, a positioning rod, a resistance pad, a special-shaped rack, a clamping member, a recovery groove, a fixing rod, a clamping head, a pushing spring, a control assembly, a rotating rod, a gear, a handle, a docking release assembly, a stroke groove, a pushing plate and a pulling button.
[0014] 2. The utility model is provided with an extrusion locking device to control the opening and closing of the window doors. It cooperates with the stroke groove when closing to not only close and fix the window doors, but also apply a pulling force to the window doors, so that the sealing assembly is squeezed to strengthen the sealing. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a first perspective three-dimensional structural schematic diagram of the aluminum alloy doors and windows provided by the embodiment of the utility model;
[0016] Figure 2 is a second perspective three-dimensional structural schematic diagram of the aluminum alloy doors and windows provided by the embodiment of the utility model;
[0017] Figure 3 is a three-dimensional structural schematic diagram of the sealing assembly in the aluminum alloy doors and windows provided by the embodiment of the utility model;
[0018] Figure 4 is a three-dimensional structural schematic diagram of the movable extrusion assembly and the control assembly in the aluminum alloy doors and windows provided by the embodiment of the utility model;
[0019] Figure 5 is a three-dimensional structural schematic diagram of the clamping member in the aluminum alloy doors and windows provided by the embodiment of the utility model;
[0020] Figure 6 is a three-dimensional structural schematic diagram of the docking release assembly in the aluminum alloy doors and windows provided by the embodiment of the utility model.
[0021] In the figure: 1, window frame; 2, window door; 3, sealing component; 31, movable groove; 32, pressing plate; 33, second fireproof sealing gasket; 34, pressure spring; 4, counter-pressure frame; 5, first fireproof sealing gasket; 6, extrusion locking device; 61, placing groove; 62, movable extrusion component; 621, positioning rod; 622, resistance pad; 623, special-shaped rack; 624, clamping component; 6241, recovery groove; 6242, fixing rod; 6243, clamping head; 6244, push spring; 63, control component; 631, rotating rod; 632, gear; 633, handle; 7, docking release component; 71, stroke groove; 72, push plate; 73, pull button. Detailed implementation mode
[0022] In order to further understand the invention content, features and effects of the present invention, the following embodiments are exemplified and described in detail with reference to the accompanying drawings.
[0023] The structure of the present invention will be described in detail below with reference to the accompanying drawings.
[0024] As Figures 1 to 6 shown, the fireproof aluminum alloy door and window with a sealing structure provided by the embodiment of the present invention includes a window frame 1 and a window door 2. The window door 2 is arranged on the front side of the window frame 1 and is rotatably connected to the window frame 1. A sealing component 3 is arranged on the rear surface of the window door 2. A counter-pressure frame 4 is arranged inside the window frame 1. The counter-pressure frame 4 is fixedly connected to the window frame 1. A first fireproof sealing gasket 5 is fixedly connected to the front surface of the counter-pressure frame 4. An extrusion locking device 6 is arranged in the middle of the front side of the window door 2. A docking release component 7 is arranged on the left side inside the rear of the window frame 1.
[0025] Referring to Figure 1 、 Figure 2 and Figure 3 , the sealing component 3 includes a movable groove 31, a pressing plate 32, a second fireproof sealing gasket 33 and a pressure spring 34. The movable groove 31 is opened on the rear surface of the window door 2. The pressing plate 32 is arranged in the movable groove 31 and is movably connected to the movable groove 31. The rear end of the pressing plate 32 extends out of the movable groove 31. The second fireproof sealing gasket 33 is fixedly connected to the rear surface of the pressing plate 32. The number of the pressure springs 34 is several and they are uniformly arranged around the front surface of the pressing plate 32. The front and rear ends of the pressure spring 34 are respectively fixedly connected to the front surface of the pressing plate 32 and the inner surface of the movable groove 31. The first fireproof sealing gasket 5 and the second fireproof sealing gasket 33 correspond to and match each other.
[0026] Adopting the above scheme: by arranging the sealing component 3, it is used to play a role in extrusion sealing. When the window door 2 is locked and closed, through the pressure applied by the cooperation of the extrusion locking device 6 and the docking release component 7, the second fireproof sealing gasket 33 on the surface of the pressing plate 32 and the first sealing end on the surface of the counter-pressure frame 4 are kept in mutual extrusion to ensure sealing.
[0027] Referring toFigure 1 , Figure 2 and Figure 4 , the extrusion locking device 6 includes a placement groove 61, a moving extrusion assembly 62 and a control assembly 63. The placement groove 61 is formed on the front surface of the window door 2. The moving extrusion assembly 62 is arranged on the left side inside the placement groove 61, and the control assembly 63 is arranged on the right side of the moving extrusion assembly 62.
[0028] Adopting the above solution: By setting the extrusion locking device 6, which is used to control the opening and closing of the window door 2, it cooperates with the travel groove 71 when closing, so as to close and fix the window door 2 while applying a pulling force to the window door 2, causing the sealing assembly 3 to be squeezed to strengthen the seal.
[0029] Reference Figure 1 , Figure 2 and Figure 4 , the moving extrusion assembly 62 includes a positioning rod 621, a damping pad 622, a special-shaped rack 623 and a clamping member 624. The number of positioning rods 621 is two, and they are respectively arranged on the front and rear sides of the left side inside the placement groove 61. The upper and lower ends of the two positioning rods 621 are respectively fixedly connected to the upper and lower end surfaces inside the placement groove 61. The number of damping pads 622 is two, and they are respectively sleeved on the surfaces of the two positioning rods 621 and are movably connected to the two positioning rods 621. The special-shaped rack 623 is sleeved on the surfaces of the two damping pads 622 and is fixedly connected to the two damping pads 622. The special-shaped rack 623 is movably connected to the two positioning rods 621 through the damping pads 622. The left side of the special-shaped rack 623 extends out of the placement groove 61 and is movably connected to the placement groove 61. The clamping member 624 is arranged on the left side of the special-shaped rack 623.
[0030] Adopting the above solution: By setting the moving extrusion assembly 62, which has the function of driving the clamping member 624 by pressure, it drives the chuck 6243 to move in the travel groove 71, so as to apply a pulling force to the window door 2 by squeezing the inner wall of the travel groove 71.
[0031] Reference Figure 4 and Figure 5 , the clamping member 624 includes a recovery groove 6241, a fixed rod 6242, a chuck 6243 and a push spring 6244. The recovery groove 6241 is formed on the left surface of the special-shaped rack 623. The fixed rod 6242 is arranged in the recovery groove 6241, and the right end is fixedly connected to the right inner surface of the recovery groove 6241. The chuck 6243 is sleeved on the surface of the fixed rod 6242 and is slidably connected to the fixed rod 6242. The left end of the chuck 6243 extends out of the recovery groove 6241 and is movably connected to the recovery groove 6241. The push spring 6244 is sleeved on the surface of the fixed rod 6242, and the left and right ends are respectively fixedly connected to the right surface of the chuck 6243 and the right inner surface of the recovery groove 6241. The position of the chuck 6243 corresponds to that of the docking release assembly 7.
[0032] Adopt the above solution: By setting the clamping member 624, it is used to close and fix the window door 2, and cooperate with the travel groove 71 to apply a pulling force to the window door 2, thereby squeezing the sealing assembly 3 to enhance the sealing effect.
[0033] Reference Figure 1 、 Figure 2 And Figure 4 , the control assembly 63 includes a rotating rod 631, a gear 632 and a handle 633. The rotating rod 631 is arranged on the right side of the special-shaped rack 623, and both the front and rear ends are rotatably connected to the front and rear ends of the placement groove 61. The front end of the rotating rod 631 extends out of the placement groove 61 and is rotatably connected to the window door 2. The gear 632 is sleeved on the surface of the rotating rod 631 and is fixedly connected to the rotating rod 631, and the left side is meshed with the special-shaped rack 623. The handle 633 is fixedly connected to one end of the rotating rod 631 extending out of the placement groove 61.
[0034] Adopt the above solution: By setting the control assembly 63, it is used to drive and control the extrusion locking device 6, and has the function of driving the clamping member 624 to move and extrude by controlling the moving extrusion assembly 62.
[0035] Reference Figure 1 、 Figure 2 And Figure 6 , the docking release assembly 7 includes a travel groove 71, a push plate 72 and a pull button 73. The travel groove 71 is opened on the left inner surface of the window body 1 and corresponds to and is adapted to the position of the chuck 6243. The push plate 72 is arranged on the left side inside the travel groove 71 and is movably connected to the travel groove 71. The pull button 73 is fixedly connected to the front end of the left side of the push plate 72, and the front end extends out of the placement groove 61 and is slidably connected to the placement groove 61.
[0036] Adopt the above solution: By setting the docking release assembly 7, it is used to cooperate with the chuck 6243 and to squeeze and recover the chuck 6243 to release the fixation of the window door 2.
[0037] The working principle of the present utility model:
[0038] When fixing and sealing the window door 2, the handle 633 is used to push the door frame to rotate, so that the door frame rotates into the window body 1. While rotating and closing the window door 2, the chuck 6243 will be squeezed by the inner wall of the window body 1, causing the chuck 6243 to move towards the recovery groove 6241 on the surface of the fixed rod 6242, and at the same time squeezing and recovering the push spring 6244. When the window door 2 is rotated until the chuck 6243 corresponds to the stroke groove 71, the push spring 6244 will rebound and push the chuck 6243 to the left on the surface of the fixed rod 6242, so that the chuck 6243 moves into the stroke groove 71, thereby closing and fixing the window door 2. At the same time, the second fireproof sealing pad 33 will contact the first fireproof sealing pad 5 on the rear surface of the counter-pressure frame 4. When strengthening the seal, by rotating the handle 633 downward, the rotating rod 631 rotates while the handle 633 rotates, and the rotating rod 631 rotates to drive the gear 632 to rotate. While the gear 632 rotates, it drives the special-shaped rack 623 engaged with it to move upward on the surface of the positioning rod 621. At the same time, the damping pad 622 has the effect of increasing the friction on the surface of the positioning rod 621 to increase the resistance, so that the special-shaped rack 623 will not move randomly due to its own gravity on the surface of the positioning rod 621. While the special-shaped rack 623 moves upward, it drives the chuck 6243 to move upward in the stroke groove 71. The upward movement of the chuck 6243 squeezes the inner wall of the stroke groove 71 through the trajectory of the stroke groove 71, so that the window door 2 is subjected to a tensile force, and further squeezed and rotated into the window body 1. At the same time, it drives the pressing plate 32 to be squeezed with the counter-pressure frame 4, so that the pressing plate 32 is squeezed to compress the pressure spring 34. At the same time, the first fireproof sealing pad 5 and the second fireproof sealing pad 33 are squeezed and pressed tightly. The pressure spring 34 will also give the pressing plate 32 a continuous backward thrust, so that the first fireproof sealing pad 5 and the second fireproof sealing pad 33 continuously ensure the squeezing and closeness, thereby completing the closing and sealing. When releasing the seal of the window door 2, by pulling the pull button 73 to the right, the push plate 72 is driven to move to the right in the stroke groove 71 to squeeze the chuck 6243, and the chuck 6243 is squeezed and pushed into the recovery groove 6241, thereby releasing the sealing and fixing of the window door 2, and then the window door 2 can be rotated and opened.
[0039] In summary, for the fireproof aluminum alloy door and window with a sealing structure, by using the cooperation of the window body 1, the window door 2, the sealing component 3, the movable groove 31, the pressing plate 32, the second fireproof sealing gasket 33, the pressure spring 34, the counter-pressure frame 4, the first fireproof sealing gasket 5, the extrusion locking device 6, the placement groove 61, the moving extrusion component 62, the positioning rod 621, the resistance pad 622, the special-shaped rack 623, the clamping component 624, the recovery groove 6241, the fixed rod 6242, the clamping head 6243, the push spring 6244, the control component 63, the rotating rod 631, the gear 632, the handle 633, the docking release component 7, the travel groove 71, the push plate 72 and the pull button 73, it solves the problem that when the existing aluminum alloy door and window is closed and sealed, it usually only relies on simple rotation to close and fix the window door for sealing. In this way, the window door cannot obtain an effective tension force, so that the fireproof sealing gasket cannot be fully squeezed and adhered tightly for sealing, resulting in poor sealing due to insufficient tightness.
[0040] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0041] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. Fireproof aluminum alloy doors and windows with a sealing structure, including a window frame (1) and a window door (2), the window door (2) is arranged on the front side of the window frame (1) and is rotatably connected to the window frame (1), and is characterized in that: A sealing component (3) is arranged on the rear surface of the window door (2), a pressing frame (4) is arranged inside the window body (1), the pressing frame (4) is fixedly connected with the window body (1), a first fireproof sealing gasket (5) is fixedly connected to the front surface of the pressing frame (4), an extrusion locking device (6) is arranged in the middle of the front side of the window door (2), and a docking release component (7) is arranged on the left side of the rear inner part of the window body (1).
2. The fireproof aluminum alloy doors and windows with a sealing structure according to claim 1, characterized in that: The sealing component (3) includes a movable groove (31), a pressing plate (32), a second fireproof sealing gasket (33), and a compression spring (34). The movable groove (31) is opened on the rear surface of the window door (2), the pressing plate (32) is arranged in the movable groove (31) and is movably connected with the movable groove (31), the rear end of the pressing plate (32) extends out of the movable groove (31), the second fireproof sealing gasket (33) is fixedly connected to the rear surface of the pressing plate (32), the number of the compression springs (34) is several and they are uniformly arranged around the front surface of the pressing plate (32), the front and rear ends of the compression spring (34) are respectively fixedly connected with the front surface of the pressing plate (32) and the inner surface of the movable groove (31), and the first fireproof sealing gasket (5) corresponds to and is adapted to the second fireproof sealing gasket (33).
3. The fireproof aluminum alloy doors and windows with a sealing structure as described in claim 1 are characterized in that: The extrusion locking device (6) includes a placement groove (61), a moving extrusion component (62), and a control component (63). The placement groove (61) is opened on the front surface of the window door (2), the moving extrusion component (62) is arranged on the left side inside the placement groove (61), and the control component (63) is arranged on the right side of the moving extrusion component (62).
4. The fireproof aluminum alloy doors and windows with a sealing structure according to claim 3, characterized in that: The moving extrusion component (62) includes positioning rods (621), damping pads (622), a special-shaped rack (623), and a clamping component (624). The number of the positioning rods (621) is two and they are respectively arranged on the front and rear sides of the left side inside the placement groove (61). The upper and lower ends of the two positioning rods (621) are respectively fixedly connected with the upper and lower inner surfaces of the placement groove (61). The number of the damping pads (622) is two and they are respectively sleeved on the surfaces of the two positioning rods (621) and are movably connected with the two positioning rods (621). The special-shaped rack (623) is sleeved on the surfaces of the two damping pads (622) and is fixedly connected with the two damping pads (622). The special-shaped rack (623) is movably connected with the two positioning rods (621) through the damping pads (622). The left side of the special-shaped rack (623) extends out of the placement groove (61) and is movably connected with the placement groove (61), and the clamping component (624) is arranged on the left side of the special-shaped rack (623).
5. The fireproof aluminum alloy doors and windows with a sealing structure according to claim 4, characterized in that: The clamping part (624) includes a recovery groove (6241), a fixing rod (6242), a clamping head (6243) and a push spring (6244). The recovery groove (6241) is formed in the left surface of the special-shaped rack (623). The fixing rod (6242) is arranged in the recovery groove (6241), and the right end thereof is fixedly connected with the inner right surface of the recovery groove (6241). The clamping head (6243) is sleeved on the surface of the fixing rod (6242) and is slidably connected with the fixing rod (6242). The left end of the clamping head (6243) extends out of the recovery groove (6241) and is movably connected with the recovery groove (6241). The push spring (6244) is sleeved on the surface of the fixing rod (6242), and the left and right ends thereof are respectively fixedly connected with the right surface of the clamping head (6243) and the inner right surface of the recovery groove (6241). The clamping head (6243) corresponds to the position of the docking release assembly (7).
6. The fireproof aluminum alloy doors and windows with a sealing structure according to claim 4, characterized in that: The control assembly (63) includes a rotating rod (631), a gear (632) and a handle (633). The rotating rod (631) is arranged on the right side of the special-shaped rack (623), and the front and rear ends thereof are rotatably connected with the front and rear ends of the placing groove (61). The front end of the rotating rod (631) extends out of the placing groove (61) and is rotatably connected with the window door (2). The gear (632) is sleeved on the surface of the rotating rod (631) and is fixedly connected with the rotating rod (631), and the left side thereof is meshed with the special-shaped rack (623). The handle (633) is fixedly connected to one end of the rotating rod (631) extending out of the placing groove (61).
7. The fireproof aluminum alloy doors and windows with a sealing structure according to claim 5, characterized in that: The docking release assembly (7) includes a travel groove (71), a push plate (72) and a pull knob (73). The travel groove (71) is formed in the inner left surface of the window body (1) and corresponds to and is adapted to the position of the clamping head (6243). The push plate (72) is arranged on the left side inside the travel groove (71) and is movably connected with the travel groove (71). The pull knob (73) is fixedly connected to the left front end of the push plate (72), and the front end thereof extends out of the placing groove (61) and is slidably connected with the placing groove (61).