Sealing aluminum alloy window with good heat preservation performance
By designing sealing components and positioning components on the aluminum alloy window, the problems of poor insulation performance and poor stability caused by the gaps of the aluminum alloy window are solved, and better insulation performance and stability are achieved.
Patent Information
- Application Number
- CN202422212640.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The existing aluminum alloy windows have large gaps between the upper and lower sides and the window frames, which lead to indoor and outdoor air exchange, reducing the insulation performance of aluminum alloy windows.
An aluminum alloy window including a sealing assembly and a positioning assembly is designed. The sealing assembly is combined with a baffle, a guide rod, a collar and a spring. The adjustment mechanism can make the baffle close to the inner wall of the window frame and seal the gap; the positioning assembly provides binding force through a limiting block and a snap to enhance the stability of the window.
Through the design of the sealing component, the gap between the upper and lower sides of the aluminum alloy window and the window frame is effectively sealed, improving the insulation performance of the aluminum alloy window; through the design of the positioning component, the stability of the aluminum alloy window is enhanced when closing.
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Figure CN223018520U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum alloy windows, in particular to a sealed aluminum alloy window with good heat preservation performance. Background Art
[0002] Aluminum alloy doors and windows, referred to as aluminum doors and windows for short, refer to doors and windows made of aluminum alloy extrusion profiles as frames, sashes, and mullions. It not only includes doors and windows with aluminum alloy as the base material, but also includes doors and windows made of composite materials such as aluminum-wood composite doors and windows and aluminum-plastic composite doors and windows. Among them, doors and windows are divided into enclosing components or partitioning components according to their different positions, and are an important part of the building envelope structure system.
[0003] Generally, the upper and lower ends of the existing aluminum alloy windows are connected to the window frame through rollers or sliding rails to facilitate the pushing and pulling of the aluminum alloy windows. And for the convenience of disassembling the aluminum alloy windows, the aluminum alloy windows can often move up and down to a certain extent, which makes there often be a large gap between the aluminum alloy windows and the window frame, enabling the air inside and outside to exchange to a certain extent, thus reducing the heat preservation performance of the aluminum alloy windows. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a sealed aluminum alloy window with good heat preservation performance so as to solve the problems put forward in the above background art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A sealed aluminum alloy window with good heat preservation performance, including a device body, plugging components are arranged at both the upper and lower ends of the device body, and a positioning component is arranged on the left side of the device body;
[0006] The plugging component includes two baffles, the two baffles are oppositely arranged on the front side of the device body, and each baffle is in contact with the front side of the device body. The two ends of the baffle are coplanar with the left and right sides of the device body. A plurality of guide rods with a T-shaped front view are fixedly installed on the reverse sides of the two baffles, and the distance between adjacent two guide rods is equal. A collar is slidably sleeved on the outer peripheral side of the guide rod, and the collar is fixedly connected with the device body. A spring is wound around the outer peripheral side of the guide rod, and the two ends of the spring are respectively fixedly connected with the corresponding guide rod and the corresponding collar. An adjusting mechanism is arranged on the top side of the baffle.
[0007] Preferably, a plurality of soft rods are oppositely and fixedly installed on the reverse sides of the two baffles, and the distance between adjacent two soft rods is equal.
[0008] Preferably, the adjusting mechanism includes a plurality of magnetic blocks, the guide rod is a magnetic rod, rotating shafts are rotatably penetrated through the upper and lower ends of the device body at positions corresponding to the guide rods, and the front ends of the rotating shafts are fixedly connected with the corresponding magnetic blocks, and the magnetic blocks are in clearance fit with the corresponding guide rods.
[0009] Preferably, a gear is fixedly installed at the rear end of the rotating shaft, and two racks are oppositely arranged at the rear side of the device body, and each rack is meshed with the corresponding gear.
[0010] Preferably, a protective cover is sleeved on the outer peripheral sides of the rack and the corresponding gear, and the gear is in clearance fit with the inner wall of the corresponding protective cover. Both ends of the rack slide through the wall of the protective cover, and the protective cover is fixedly connected to the device body.
[0011] Preferably, the positioning assembly includes two L-shaped limit blocks fixedly installed at the right end of the baffle. On the reverse sides of the two limit blocks, there are buckles with a U-shaped front view, and bolts are relatively penetrated through the buckles.
[0012] Preferably, a roller is rotatably penetrated through the limit block, and the open end of the buckle is in a flared shape.
[0013] Preferably, the bolt is mainly composed of a screw and a threaded rod. The screw is rotatably installed at the rear end of the corresponding threaded rod, a hexagonal ring is fixedly sleeved at the front end of the screw, and the threaded rod is threadedly connected to the corresponding buckle.
[0014] The utility model has the following beneficial effects:
[0015] After the aluminum alloy window is closed, through the adjustment of the adjustment mechanism, a thrust can be applied to the baffle through the guide rod, so that the baffle is closely attached to the inner wall of the window frame respectively. Thus, through the fitting of the baffle with the device body and the inner wall of the window frame, the gaps between the upper and lower sides of the aluminum alloy window and the window frame are blocked, so as to enhance the heat preservation performance of the aluminum alloy window. And when the baffle moves towards the inner wall of the window frame, the positioning assembly can be synchronously driven to start, applying a binding force to the device body to enhance the stability when the aluminum alloy window is closed. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0017] Figure 1 It is a schematic diagram of the whole of the present utility model;
[0018] Figure 2 For the present utility model Figure 1 Schematic diagram of the overall structure on the reverse side;
[0019] Figure 3Schematic diagram of the overall structure of the baffle and guide rod of the present utility model;
[0020] Figure 4 Schematic diagram of the overall structure of part of the baffle and guide rod of the present utility model;
[0021] Figure 5 Schematic diagram of the overall structure of the limit block and buckle of the present utility model;
[0022] Figure 6 Schematic diagram of the internal structure of the bolt of the present utility model;
[0023] Figure 7 Schematic diagram of the overall structure of the protective cover and rotating shaft of the present utility model;
[0024] Figure 8 Schematic diagram of the overall structure of part of the protective cover and magnetic block of the present utility model.
[0025] In the figure: 1, device body; 2, plugging assembly; 21, baffle; 22, guide rod; 23, collar; 24, spring; 25, adjusting mechanism; 251, rotating shaft; 252, magnetic block; 253, gear; 254, rack; 255, protective cover; 26, soft rod; 3, positioning assembly; 31, limit block; 32, buckle; 33, bolt; 331, screw; 332, threaded rod; 333, hexagonal ring; 34, roller. Detailed implementation manners
[0026] In order to make the technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0027] The present utility model provides a technical solution: Refer to Figure 1 - Figure 8 , a sealed aluminum alloy window with good heat preservation performance disclosed by the present utility model includes a device body 1, plugging assemblies 2 are provided at both the upper and lower ends of the device body 1, and a positioning assembly 3 is provided on the left side of the device body 1;
[0028] The plugging assembly 2 includes two baffle plates 21. The two baffle plates 21 are oppositely arranged on the front side of the device body 1, and each baffle plate 21 is in contact with the front side of the device body 1. The two ends of the baffle plate 21 are coplanar with the left and right sides of the device body 1. A number of guide rods 22 with a T-shaped front view are fixedly installed on the reverse sides of the two baffle plates 21, and the distance between adjacent two guide rods 22 is equal. A collar 23 is slidably sleeved on the outer peripheral side of the guide rod 22, and the collar 23 is fixedly connected with the device body 1. A spring 24 is wound around the outer peripheral side of the guide rod 22, and the two ends of the spring 24 are respectively fixedly connected with the corresponding guide rod 22 and the corresponding collar 23. An adjusting mechanism 25 is arranged on the top side of the baffle plate 21.
[0029] In this embodiment, after the aluminum alloy window is closed, through the adjustment of the adjusting mechanism 25, a thrust can be applied to the baffle plate 21 through the guide rod 22, so that the baffle plate 21 is closely attached to the inner wall of the window frame respectively. Thus, through the fitting of the baffle plate 21 with the device body 1 and the inner wall of the window frame, the gaps between the upper and lower sides of the aluminum alloy window and the window frame are plugged, so as to enhance the heat preservation performance of the aluminum alloy window. And when the baffle plate 21 moves towards the inner wall of the window frame, the positioning assembly 3 can be synchronously driven to start, and a binding force is applied to the device body 1 to enhance the stability when the aluminum alloy window is closed;
[0030] When the aluminum alloy window is opened, the operator can apply a suction force to the baffle plate 21 through the guide rod 22 by adjusting the adjusting mechanism 25, so that the baffle plate 21 is separated from the window frame, and the binding force received by the device body 1 is synchronously released. At this time, the operator can normally push and pull the aluminum alloy window, and the device is easy to operate.
[0031] In a further preferred embodiment of the present utility model, as Figure 4 shown, a number of soft rods 26 are relatively fixedly installed on the reverse sides of the two baffle plates 21, and the distance between adjacent two soft rods 26 is equal;
[0032] In this embodiment, during the process of the baffle plate 21 fitting with the inner wall of the window frame, due to the pressing of the baffle plate 21 on the soft rod 26, the soft rod 26 contracts and deforms, and a plurality of sealing barrier lines are formed between the baffle plate 21 and the inner wall of the window frame to prevent rainwater from invading through the gap between the baffle plate 21 and the window frame.
[0033] In a further preferred embodiment of the present utility model, as Figure 1 、 Figure 2 、 Figure 7 and Figure 8 shown, the adjusting mechanism 25 includes a number of magnetic blocks 252. The guide rod 22 is a magnetic rod. The upper and lower ends of the device body 1 are respectively rotatably penetrated and installed with rotating shafts 251 at positions corresponding to the guide rod 22, and the front ends of the rotating shafts 251 are fixedly connected with the corresponding magnetic blocks 252. The magnetic blocks 252 are in clearance fit with the corresponding guide rods 22;
[0034] In this embodiment, when adjusting the position of the baffle 21, the operator adjusts the orientation of the magnetic block 252 by rotating the rotating shaft 251, so as to form a repulsive force or an attractive force with the guide rod 22, and drive the baffle 21 to move up or down.
[0035] In a further preferred embodiment of the present utility model, as Figure 2 , Figure 7 and Figure 8 shown, a gear 253 is fixedly installed at the rear end of the rotating shaft 251, and two racks 254 are oppositely arranged at the rear side of the device body 1, and each rack 254 is meshed and connected with the corresponding gear 253;
[0036] In this embodiment, when adjusting the position of the baffle 21, the operator can synchronously drive the top gear 253 or the bottom gear 253 by pushing the rack 254, and then synchronously drive the top rotating shaft 251 or the bottom rotating shaft 251 to rotate forward or backward by 180 degrees, which facilitates the pushing or pulling of the baffle 21 by the magnetic block 252.
[0037] In a further preferred embodiment of the present utility model, as Figure 7 shown, a protective cover 255 is sleeved on the outer peripheral sides of the rack 254 and the corresponding gear 253, and the gear 253 is in clearance fit with the inner wall of the corresponding protective cover 255. Both ends of the rack 254 slide through the wall of the protective cover 255, and the protective cover 255 is fixedly connected with the device body 1;
[0038] In this embodiment, the setting of the protective cover 255 can prevent foreign objects from falling on the gear 253 and the rack 254, affecting the use of the device, and can exert a binding force on the rack 254, so that the rack 254 can only move left or right by a specific distance.
[0039] In a further preferred embodiment of the present utility model, as Figure 4 and Figure 5 shown, the positioning component 3 includes two limiting blocks 31 arranged in an L shape. The limiting blocks 31 are fixedly installed at the right end of the baffle 21. A buckle 32 with a U-shaped front view is arranged on the reverse side of each of the two limiting blocks 31, and bolts 33 are relatively penetrated through the buckle 32;
[0040] In this embodiment, during the process of the baffle 21 moving towards the inner wall of the window frame, the limiting block 31 can be driven to move synchronously towards the buckle 32, and then a binding force is exerted on the device body 1 through the mutual contact between the limiting block 31 and the inner wall of the buckle 32, making the closed state of the metal door and window more stable.
[0041] In a further preferred embodiment of the present utility model, as Figure 5As shown, a roller 34 is rotatably penetrated through the limiting block 31, and the opening end of the buckle 32 is provided with a flared shape;
[0042] In this embodiment, when the limiting block 31 is inserted into the buckle 32, the rotation of the roller 34 offsets the resistance received when the limiting block 31 is inserted into the buckle 32, preventing the limiting block 31 from contacting the inner wall of the buckle 32 and affecting the movement of the baffle 21.
[0043] In a further preferred embodiment of the present utility model, as Figure 5 and Figure 6 shown, the bolt 33 is mainly composed of a screw 331 and a threaded rod 332. The screw 331 is rotatably installed at the rear end of the corresponding threaded rod 332, and a hexagonal ring 333 is fixedly sleeved at the front end of the screw 331. The threaded rod 332 is threadedly connected to the corresponding buckle 32;
[0044] In this embodiment, when installing the aluminum alloy window, the operator first installs the aluminum alloy window on the window frame according to the above-mentioned existing installation method of the aluminum alloy window, and makes the baffle 21 face outwards. Then, the operator drills holes at the corresponding positions on the window frame according to the position of the clamping block, and then inserts the screw 331 into the hole, and clamps the wrench on the hexagonal ring 333 and rotates the screw 331 to screw the screw 331 into the hole, so as to fix the buckle 32 on the window frame through the threaded rod 332. Subsequently, by synchronously rotating the two threaded rods 332 through the sleeve, the buckle 32 can be pushed towards the window frame or in the opposite direction away from the window frame, and then the buckle 32 is adjusted to directly below the limiting block 31, and the installation of the device is completed. The installation operation of the device is simple, and it can avoid the deviation of the thickness dimension of the window frame affecting the use of the device.
[0045] Working principle: When installing the aluminum alloy window, the operator first installs the aluminum alloy window on the window frame according to the above-mentioned existing installation method of the aluminum alloy window, and makes the baffle 21 face outwards. Then, the operator drills holes at the corresponding positions on the window frame according to the position of the clamping block, and then inserts the screw 331 into the hole, and clamps the wrench on the hexagonal ring 333 and rotates the screw 331 to screw the screw 331 into the hole, so as to fix the buckle 32 on the window frame through the threaded rod 332. Subsequently, by synchronously rotating the two threaded rods 332 through the sleeve, the buckle 32 can be pushed towards the window frame or in the opposite direction away from the window frame, and then the buckle 32 is adjusted to directly below the limiting block 31, and the installation of the device is completed;
[0046] When using the aluminum alloy window, after the operator closes the aluminum alloy window, the operator pushes one end of the rack 254, so that the other end of the rack 254 extends out of the protective shell until the rack 254 abuts against the protective shell. The moving rack 254 drives the rotating shaft 251 to rotate 180 degrees through the gear 253, and synchronously drives the magnetic block 252 to rotate 180 degrees. At this time, the magnetic block 252 repels the guide rod 22, and cooperates with the spring 24 to push the guide rod 22, and the baffle 21 quickly moves downward. And at this time, due to the pressing of the baffle 21 on the soft rod 26, the soft rod 26 is damaged and deformed to fit tightly with the window frame, thereby blocking the gaps between the upper and lower sides of the aluminum alloy window and the window frame;
[0047] During the downward movement of the baffle 21, the limit block 31 is synchronously driven to insert into the buckle 32. And during the process of the limit block 31 inserting into the buckle 32, the roller 34 rolls along the buckle 32. And at this time, due to the mutual abutment of the roller 34 and the inner wall of the buckle 32, a binding force can be applied to the device body 1 to enhance the stability when the aluminum alloy window is closed;
[0048] When opening the aluminum alloy window, according to the above, the operator pushes the other end of the rack 254, so that the magnetic block 252 rotates 180 degrees in the reverse direction, and the magnetic block 252 resets. At this time, due to the attraction between the magnetic block 252 and the magnetic rod, the baffle 21 is pulled upward through the guide rod 22, so that the baffle 21 is separated from the window frame. At the same time, the limit block 31 is pulled out of the buckle 32, and the constrained limit state of the device body 1 is released. At this time, the operator can normally push and pull the aluminum alloy window;
[0049] During the up and down movement of the baffle 21, due to the mutual abutment of the guide rod 22 and the inner wall of the collar 23, the baffle 21 moves along a linear trajectory, thereby preventing the baffle 21 from shifting in position and affecting the sealing strength between the device plate body and the window frame gap.
[0050] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection required by the present invention is defined by the appended claims and their equivalents.
Claims
1. A sealed aluminum alloy window with good thermal insulation performance, comprising a device body (1), characterized in that: The upper and lower ends of the device body (1) are both provided with blocking components (2), and the left side of the device body (1) is provided with a positioning component (3); The blocking assembly (2) comprises two baffles (21), the two baffles (21) are arranged oppositely on the front side of the device body (1), and each baffle (21) is in contact with the front side of the device body (1), the two ends of the baffle (21) are coplanar with the left and right sides of the device body (1), the reverse sides of the two baffles (21) are fixedly provided with a plurality of guide rods (22) arranged in a T-shape in front view, and the spacing between two adjacent guide rods (22) is equal, the outer peripheral side of the guide rod (22) is slidably sleeved with a collar (23), and the collar (23) is fixedly connected to the device body (1), the outer peripheral side of the guide rod (22) is wound with a spring (24), and the two ends of the spring (24) are respectively fixedly connected to the corresponding guide rod (22) and the corresponding collar (23), and the top side of the baffle (21) is provided with an adjustment mechanism (25).
2. A sealed aluminum alloy window with good thermal insulation performance according to claim 1, characterized in that: A plurality of soft rods (26) are relatively fixedly mounted on the opposite sides of the two baffles (21), and the spacing between two adjacent soft rods (26) is equal.
3. A sealed aluminum alloy window with good thermal insulation performance according to claim 2, characterized in that: The adjusting mechanism (25) comprises a plurality of magnetic blocks (252), the guide rod (22) is a magnetic rod, and a rotating shaft (251) is rotatably installed at the upper and lower ends of the device body (1) at positions corresponding to the guide rod (22), and the front end of the rotating shaft (251) is fixedly connected to the corresponding magnetic block (252), and the magnetic block (252) and the corresponding guide rod (22) are clearance-matched.
4. A sealed aluminum alloy window with good thermal insulation performance according to claim 3, characterized in that: A gear (253) is fixedly mounted on the rear end of the rotating shaft (251), and two racks (254) are oppositely arranged on the rear side of the device body (1), and each rack (254) is meshedly connected with a corresponding gear (253).
5. A sealed aluminum alloy window with good thermal insulation performance according to claim 4, characterized in that: The outer peripheral sides of the rack (254) and the corresponding gear (253) are sleeved with a protective cover (255), and the gear (253) and the inner wall of the corresponding protective cover (255) are clearance-matched, and both ends of the rack (254) slide through the cover wall of the protective cover (255), and the protective cover (255) is fixedly connected to the device body (1).
6. A sealed aluminum alloy window with good thermal insulation performance according to claim 5, characterized in that: The positioning assembly (3) comprises two limit blocks (31) arranged in an L-shape, wherein the limit blocks (31) are fixedly mounted on the right end of the baffle (21), and opposite sides of the two limit blocks (31) are provided with buckles (32) arranged in a U-shape in front view, and bolts (33) are relatively penetrated and mounted on the buckles (32).
7. A sealed aluminum alloy window with good thermal insulation performance according to claim 6, characterized in that: A roller (34) is rotatably mounted on the limit block (31), and the opening end of the buckle (32) is arranged in a flared shape.
8. The sealed aluminum alloy window with good thermal insulation performance according to claim 7, characterized in that: The bolt (33) is mainly composed of two parts: a screw (331) and a threaded rod (332). The screw (331) is rotatably mounted on the rear end of the corresponding threaded rod (332). The front end of the screw (331) is fixedly sleeved with a hexagonal ring (333). The threaded rod (332) is threadedly connected to the corresponding buckle (32).