Mute type magnetic sliding aluminum alloy door and window
By incorporating a limit plate, baffle, and dust collection box, the design solves the problems of time-consuming and laborious glass replacement, accidental contact, and inconvenient cleaning associated with silent magnetic sliding aluminum alloy doors and windows, achieving convenient installation, prevention of accidental contact, and easy cleaning.
Patent Information
- Application Number
- CN202511678968.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-18
- Publication Date
- 2025-12-26
AI Technical Summary
Existing silent magnetic sliding aluminum alloy doors and windows are time-consuming and laborious to replace glass, and the external operating levers are prone to accidental contact and inconvenient to clean.
The design incorporates components such as mounting brackets, aluminum alloy frames, rotating columns, and electromagnets. Through the cooperation of limit plates, baffles, and dust collection boxes, it enables convenient glass installation, prevents accidental collisions, and facilitates dust cleaning.
It enables convenient glass installation, prevents accidental contact, and facilitates cleaning, thereby improving the user experience and the long-term effectiveness of doors and windows.
Smart Images

Figure CN121205480A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of aluminum alloy door and window technology, specifically to a silent magnetic sliding aluminum alloy door and window. Background Technology
[0002] Aluminum alloy doors and windows refer to doors and windows made with aluminum alloy extruded profiles as frames, mullions, and sashes. They are also known as aluminum doors and windows. Aluminum alloy doors and windows include those using aluminum alloy as the load-bearing member (the member that bears and transmits its own weight and load) and those made of wood or plastic composites, referred to as aluminum-wood composite doors and windows or aluminum-plastic composite doors and windows. Currently, the most commonly used aluminum alloy doors and windows are sliding windows. Sliding windows have the advantages of not taking up interior space, a beautiful appearance, economical price, and good sealing performance. Using sliding tracks, they open smoothly with a gentle push. Combined with large panes of glass, they increase indoor lighting and improve the overall appearance of the building.
[0003] Publication No. CN110847736B discloses a silent magnetic sliding aluminum alloy door and window, belonging to the field of building doors and windows. This silent magnetic sliding aluminum alloy door and window includes a sliding track for installing the aluminum alloy door and window. The sliding track includes an upper sliding track and a lower sliding track, with a sliding track connecting plate connecting the upper and lower sliding tracks. A controller is connected to one end of the lower sliding track, and a control button is installed on the controller. Brushes are fixed at both ends of the sliding track connecting plate. The sliding track includes sliding track sidewalls and a sliding track bottom plate. Both ends of the sliding track bottom plate are connected to the sliding track sidewalls. Electromagnetic guide rails are fixed in the sliding tracks on both sides of the sliding track connecting plate. An aluminum alloy frame is installed between the electromagnetic guide rails of the upper and lower sliding tracks, and a glass plate is inlaid in the aluminum alloy frame. Although this door and window can achieve… While this type of aluminum alloy door and window offers relatively effortless sliding and reduces noise during operation, it effectively maintains its position after the force has dissipated. However, if the glass is damaged, the entire door and window needs to be disassembled and a new aluminum alloy frame and glass installed. This process not only wastes the aluminum alloy frame but is also time-consuming and labor-intensive. Furthermore, after prolonged use, a large amount of dust accumulates inside the aluminum alloy frame, affecting the door and window's performance. Additionally, most existing doors and windows that facilitate easy glass removal and installation place the operating lever on the outside, which can lead to accidental contact and glass breakage. Therefore, we propose a silent magnetic sliding aluminum alloy door and window. Summary of the Invention
[0004] (a) Technical problems to be solved
[0005] To address the shortcomings of existing technologies, this invention provides a silent magnetic sliding aluminum alloy door and window, which has the advantages of easy installation, prevention of accidental collision, and easy cleaning, and solves the problems of inconvenient glass installation, easy for people to bump into the operating lever, and inconvenience in cleaning dust.
[0006] (II) Technical Solution
[0007] To achieve the aforementioned objectives of easy installation, prevention of accidental contact, and ease of cleaning, this invention provides the following technical solution: A silent magnetic sliding aluminum alloy door and window, comprising: a mounting frame, an aluminum alloy frame, and rotating columns. The mounting frame has two T-slots inside, each containing several electromagnets. T-strips are slidably connected inside each T-slot, with magnetic strips fixedly connected to the bottom of the T-strips. An aluminum alloy frame is fixedly connected to the top of the T-strips. A through groove is provided on one side of the aluminum alloy frame, with glass installed inside the through groove. A first sliding groove is provided inside the aluminum alloy frame, with a movable plate slidably connected inside the first sliding groove. A second toothed plate is fixedly connected to the bottom of the movable plate. Rotating columns are rotatably connected to the four corners inside the aluminum alloy frame. A second gear and a drive sprocket are fixedly connected to the surface of each rotating column. A chain is provided on the surface of the drive sprocket. The second gear meshes with the second toothed plate.
[0008] Furthermore, the surface of the aluminum alloy frame is provided with a groove, and plate grooves are provided on both sides of the groove. Several limiting holes are provided on the inner surface of the groove, and the limiting holes are arranged in a ring on the inner surface of the groove. The groove serves to accommodate the limiting plate, the plate groove serves to place the first toothed plate, and the limiting holes serve to place the limiting rod.
[0009] Furthermore, a storage slot is provided at the bottom of the slot, and a baffle is slidably connected inside the storage slot. The storage slot serves to hold the baffle, and the baffle serves to prevent accidental contact.
[0010] Furthermore, a rotating rod is rotatably connected inside the baffle, a first gear is fixedly connected to the surface of the rotating rod, a first toothed plate is slidably connected inside the baffle, the first toothed plate meshes with the first gear, a handle is fixedly connected to the surface of the rotating rod, and openings are provided on both sides of the baffle. The shape of the first toothed plate is adapted to the shape of the openings and the plate groove. The handle has the function of driving the rotating rod to rotate, the rotating rod has the function of driving the first gear to rotate, and the first gear has the function of driving the first toothed plate to move.
[0011] Furthermore, limit grooves are provided on both sides of the interior of the rotating column, and limit blocks are slidably connected inside the limit grooves. A limit post is fixedly connected between the two limit blocks. The limit grooves facilitate the movement of the limit blocks, the limit blocks drive the rotating column to rotate, and the limit post drives the limit blocks to rotate and move.
[0012] Furthermore, a limiting disk is fixedly connected to the surface of the limiting post, and a plurality of limiting rods are fixedly connected to the surface of the limiting disk near the limiting post. The shape of the plurality of limiting rods is adapted to the shape of the plurality of limiting holes. The limiting disk has the function of driving the limiting post to rotate, and the limiting rods have the function of preventing the rotating disk from rotating.
[0013] Furthermore, the inner bottom walls of both T-slots are provided with several dust collection holes, a dust collection box is slidably connected inside the mounting frame, a handle is fixedly connected to the surface of the dust collection box, and a push handle is fixedly connected to the surface of the aluminum alloy frame. The dust collection holes have the function of discharging dust into the dust collection box, the dust collection box has the function of collecting dust, the handle has the function of moving the dust collection box, and the push handle has the function of moving the aluminum alloy frame.
[0014] Furthermore, a storage plate is fixedly connected to the bottom of the magnetic strip. A second sliding groove is provided on both sides of the inside of the storage plate. A telescopic rod is fixedly connected inside the second sliding groove. An elastic element is provided on the surface of the telescopic rod. A slider is slidably connected inside the second sliding groove. A telescopic rod is fixedly connected to the top of the slider. The storage plate has the function of storing the extension plate. The second sliding groove has the function of facilitating the movement of the slider and the retraction of the telescopic rod. The elastic element has the function of driving the telescopic rod to reset.
[0015] Furthermore, an extension plate is fixedly connected between the two sliders, and several bristles are fixedly connected to the bottom of the extension plate. The extension plate has the function of driving the bristles to move, and the bristles have the function of cleaning dust.
[0016] (III) Beneficial Effects
[0017] Compared with the prior art, the present invention provides a silent magnetic sliding aluminum alloy door and window, which has the following beneficial effects:
[0018] 1. This silent magnetic sliding aluminum alloy door and window uses the cooperation of a moving plate and a rotating column to insert new glass through the through groove. Then, the limiting plate is rotated, and the limiting plate drives the limiting block to rotate through the limiting column. The limiting block drives the rotating column to rotate through the limiting groove. The rotating column drives the second gear and the drive sprocket to rotate. The drive sprocket drives other drive sprockets to rotate through the chain, which in turn drives the second gear on other rotating columns to rotate. The second gear drives the moving plate to move through the second tooth plate, so that the moving plate covers the glass, thereby achieving the effect of easy installation.
[0019] 2. This silent magnetic sliding aluminum alloy door and window works by using a baffle and a limiting plate together. Pushing the limiting plate causes the limiting rod to enter the limiting hole. Then, pulling the handle causes the baffle to cover the slot. Turning the handle then drives the first gear to rotate via the rotating rod. The first gear drives the first toothed plate to move, causing the first toothed plate to move out of the opening and into the slot, thus preventing accidental contact.
[0020] 3. This silent magnetic sliding aluminum alloy door and window uses a dust collection box and a storage plate together. When the electromagnet is energized, it generates a repulsive force with the magnetic strip, which in turn supports the aluminum alloy frame. Due to the compression of the telescopic rod, the elastic element deforms. When the aluminum alloy frame is no longer pressing the storage plate, the elastic element returns to its original shape. The telescopic rod drives the slider to move, which in turn drives the extension plate to move, so that the bristles come into contact with the bottom of the T-slot. When the push handle is pushed, the push handle moves the bristles through the aluminum alloy frame, allowing dust to enter the dust collection box through the dust collection hole, thus achieving an easy cleaning effect. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0022] Figure 2 This is a schematic diagram of the aluminum alloy frame structure of the present invention;
[0023] Figure 3 For the present invention Figure 2 Enlarged schematic diagram of the structure at point A in the middle;
[0024] Figure 4 This is a schematic diagram of the aluminum alloy frame main planer structure of the present invention;
[0025] Figure 5 For the present invention Figure 4 Enlarged schematic diagram of the structure at point B;
[0026] Figure 6 This is a schematic diagram of the three-dimensional structure of the rotating column of the present invention;
[0027] Figure 7 This is a schematic diagram of the rotating column main planer structure of the present invention;
[0028] Figure 8 This is a schematic diagram of the baffle main planer structure of the present invention;
[0029] Figure 9 This is a schematic diagram of the mounting bracket and aluminum alloy frame side planer structure of the present invention;
[0030] Figure 10 This is a schematic diagram of the main planer structure of the storage board of the present invention.
[0031] In the diagram: 1. Mounting bracket; 11. T-slot; 111. Dust collection hole; 12. Dust collection box; 121. Handle; 13. Electromagnet; 2. Aluminum alloy frame; 21. Through slot; 211. Glass; 22. Slot; 221. Plate slot; 222. Storage slot; 23. Baffle; 231. Rotating rod; 232. First gear; 233. First toothed plate; 234. Rotary handle; 235. Opening; 24. First sliding groove; 241. Moving plate; 242. Second toothed plate; 25. T-shaped strip; 251. Magnetic strip; 26. Push handle; 3. Rotating column; 31. Second gear; 32. Drive sprocket; 321. Chain; 33. Limiting groove; 331. Limiting block; 332. Limiting post; 333. Limiting disc; 334. Limiting rod; 4. Storage plate; 41. Second sliding groove; 411. Telescopic rod; 412. Elastic element; 413. Slider; 42. Extension plate; 421. Brush bristles. Detailed Implementation
[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0033] For a specific implementation example, please refer to Implementation Example 1. Figure 1-7A silent magnetic sliding aluminum alloy door and window includes: a mounting frame 1, an aluminum alloy frame 2, and a rotating column 3. The mounting frame 1 has two T-shaped grooves 11 inside, and each T-shaped groove 11 has several dust collection holes 111 on its inner bottom wall. A dust collection box 12 is slidably connected inside the mounting frame 1, and a handle 121 is fixedly connected to the surface of the dust collection box 12. A push handle 26 is fixedly connected to the surface of the aluminum alloy frame 2. Several electromagnets 13 are fixedly connected inside each T-shaped groove 11. T-shaped strips 25 are slidably connected inside each T-shaped groove 11, and magnetic strips 251 are fixedly connected to the bottom of each T-shaped strip 25. A storage plate 4 is fixedly connected to the bottom of each magnetic strip 251. Second sliding grooves 41 are formed on both sides of the storage plate 4. A telescopic rod 411 is fixedly connected inside the second slide groove 41. An elastic element 412 is provided on the surface of the telescopic rod 411. A slider 413 is slidably connected inside the second slide groove 41. The top of the slider 413 is fixedly connected to the telescopic rod 411. An extension plate 42 is fixedly connected between the two sliders 413. Several bristles 421 are fixedly connected to the bottom of the extension plate 42. An aluminum alloy frame 2 is fixedly connected to the top of the T-shaped strip 25. A slot 22 is formed on the surface of the aluminum alloy frame 2. Plate grooves 221 are formed on both sides of the slot 22. Several limiting holes are formed on the inner surface of the slot 22 in a ring. A storage groove 222 is formed at the bottom of the inner surface of the slot 22. The aluminum alloy frame 2 has a sliding baffle 23 inside, a rotating rod 231 inside the baffle 23, a first gear 232 fixedly connected to the surface of the rotating rod 231, a first toothed plate 233 inside the baffle 23, the first toothed plate 233 meshing with the first gear 232, a handle 234 fixedly connected to the surface of the rotating rod 231, openings 235 on both sides of the baffle 23, the shape of the first toothed plate 233 matching the shape of the openings 235 and the plate groove 221, a through groove 21 on one side of the aluminum alloy frame 2, a glass 211 inside the through groove 21, a first sliding groove 24 inside the aluminum alloy frame 2, a movable plate 241 slidably connected inside the first sliding groove 24, and the bottom of the movable plate 241... The aluminum alloy frame 2 is fixedly connected to a second toothed plate 242. Rotating columns 3 are rotatably connected to the four corners inside the frame 2. Limiting grooves 33 are opened on both sides inside the rotating columns 3. Limiting blocks 331 are slidably connected inside the limiting grooves 33. A limiting column 332 is fixedly connected between two limiting blocks 331. A limiting disk 333 is fixedly connected to the surface of the limiting column 332. Several limiting rods 334 are fixedly connected to the surface of the limiting disk 333 near the limiting column 332. The shape of the several limiting rods 334 is adapted to the shape of several limiting holes. A second gear 31 and a drive sprocket 32 are fixedly connected to the surface of the rotating column 3. A chain 321 is provided on the surface of the drive sprocket 32. The second gear 31 meshes with the second toothed plate 242.
[0034] It should be noted that by rotating the limiting disk 333, the limiting disk 333 drives the limiting block 331 to rotate via the limiting post 332. The limiting block 331 drives the rotating post 3 to rotate via the limiting groove 33. The rotating post 3 drives the second gear 31 and the driving sprocket 32 to rotate. The driving sprocket 32 drives other driving sprockets 32 to rotate via the chain 321, which in turn drives the second gear 31 on other rotating posts 3 to rotate. The second gear 31 drives the moving plate 241 to move via the second toothed plate 242, so that the moving plate 241 moves the glass. The glass 211 can be covered by a telescopic column fixedly connected inside the first slide groove 24. A spring is provided on the surface of the telescopic column. One end of the telescopic column is fixedly connected to a moving plate 241. A first inclined block is fixedly connected to one side of the moving plate 241. A second inclined block is fixedly connected to the surface of the chain 321. The slope surfaces of the first inclined block and the second inclined block are in contact. When the chain 321 drives the second inclined block to move, the first inclined block comes into contact with the second inclined block and drives the first inclined block to move, thereby covering the glass 211 with the moving plate 241.
[0035] Insert the new glass 211 into the through slot 21, and then rotate the limiting disk 333. The limiting disk 333 drives the limiting block 331 to rotate through the limiting post 332. The limiting block 331 drives the rotating post 3 to rotate through the limiting groove 33. The rotating post 3 drives the second gear 31 and the drive sprocket 32 to rotate. The drive sprocket 32 drives other drive sprockets 32 to rotate through the chain 321, which in turn drives the second gear 31 on other rotating posts 3 to rotate. The second gear 31 drives the moving plate 241 to move through the second toothed plate 242, so that the moving plate 241 covers the glass 211, thereby achieving the effect of easy installation.
[0036] For a specific embodiment two, please refer to Figure 1-8A silent magnetic sliding aluminum alloy door and window includes: a mounting frame 1, an aluminum alloy frame 2, and a rotating column 3. The mounting frame 1 has two T-shaped grooves 11 inside, and each T-shaped groove 11 has several dust collection holes 111 on its inner bottom wall. A dust collection box 12 is slidably connected inside the mounting frame 1, and a handle 121 is fixedly connected to the surface of the dust collection box 12. A push handle 26 is fixedly connected to the surface of the aluminum alloy frame 2. Several electromagnets 13 are fixedly connected inside each T-shaped groove 11. T-shaped strips 25 are slidably connected inside each T-shaped groove 11, and magnetic strips 251 are fixedly connected to the bottom of each T-shaped strip 25. A storage plate 4 is fixedly connected to the bottom of each magnetic strip 251. Second sliding grooves 41 are formed on both sides of the storage plate 4. A telescopic rod 411 is fixedly connected inside the second slide groove 41. An elastic element 412 is provided on the surface of the telescopic rod 411. A slider 413 is slidably connected inside the second slide groove 41. The top of the slider 413 is fixedly connected to the telescopic rod 411. An extension plate 42 is fixedly connected between the two sliders 413. Several bristles 421 are fixedly connected to the bottom of the extension plate 42. An aluminum alloy frame 2 is fixedly connected to the top of the T-shaped strip 25. A slot 22 is formed on the surface of the aluminum alloy frame 2. Plate grooves 221 are formed on both sides of the slot 22. Several limiting holes are formed on the inner surface of the slot 22 in a ring. A storage groove 222 is formed at the bottom of the inner surface of the slot 22. The aluminum alloy frame 2 has a sliding baffle 23 inside, a rotating rod 231 inside the baffle 23, a first gear 232 fixedly connected to the surface of the rotating rod 231, a first toothed plate 233 inside the baffle 23, the first toothed plate 233 meshing with the first gear 232, a handle 234 fixedly connected to the surface of the rotating rod 231, openings 235 on both sides of the baffle 23, the shape of the first toothed plate 233 matching the shape of the openings 235 and the plate groove 221, a through groove 21 on one side of the aluminum alloy frame 2, a glass 211 inside the through groove 21, a first sliding groove 24 inside the aluminum alloy frame 2, a movable plate 241 slidably connected inside the first sliding groove 24, and the bottom of the movable plate 241... The aluminum alloy frame 2 is fixedly connected to a second toothed plate 242. Rotating columns 3 are rotatably connected to the four corners inside the frame 2. Limiting grooves 33 are opened on both sides inside the rotating columns 3. Limiting blocks 331 are slidably connected inside the limiting grooves 33. A limiting column 332 is fixedly connected between two limiting blocks 331. A limiting disk 333 is fixedly connected to the surface of the limiting column 332. Several limiting rods 334 are fixedly connected to the surface of the limiting disk 333 near the limiting column 332. The shape of the several limiting rods 334 is adapted to the shape of several limiting holes. A second gear 31 and a drive sprocket 32 are fixedly connected to the surface of the rotating column 3. A chain 321 is provided on the surface of the drive sprocket 32. The second gear 31 meshes with the second toothed plate 242.
[0037] Push the limiting plate 333 so that the limiting rod 334 enters the limiting hole. Then pull the handle 234 so that the baffle 23 covers the slot 22. Then rotate the handle 234. The handle 234 drives the first gear 232 to rotate through the rotating rod 231. The first gear 232 drives the first toothed plate 233 to move, so that the first toothed plate 233 moves out of the opening 235 and into the plate groove 221, thereby achieving the effect of preventing accidental collision.
[0038] For a specific embodiment three, please refer to Figure 1-10A silent magnetic sliding aluminum alloy door and window includes: a mounting frame 1, an aluminum alloy frame 2, and a rotating column 3. The mounting frame 1 has two T-shaped grooves 11 inside, and each T-shaped groove 11 has several dust collection holes 111 on its inner bottom wall. A dust collection box 12 is slidably connected inside the mounting frame 1, and a handle 121 is fixedly connected to the surface of the dust collection box 12. A push handle 26 is fixedly connected to the surface of the aluminum alloy frame 2. Several electromagnets 13 are fixedly connected inside each T-shaped groove 11. T-shaped strips 25 are slidably connected inside each T-shaped groove 11, and magnetic strips 251 are fixedly connected to the bottom of each T-shaped strip 25. A storage plate 4 is fixedly connected to the bottom of each magnetic strip 251. Second sliding grooves 41 are formed on both sides of the storage plate 4. A telescopic rod 411 is fixedly connected inside the second slide groove 41. An elastic element 412 is provided on the surface of the telescopic rod 411. A slider 413 is slidably connected inside the second slide groove 41. The top of the slider 413 is fixedly connected to the telescopic rod 411. An extension plate 42 is fixedly connected between the two sliders 413. Several bristles 421 are fixedly connected to the bottom of the extension plate 42. An aluminum alloy frame 2 is fixedly connected to the top of the T-shaped strip 25. A slot 22 is formed on the surface of the aluminum alloy frame 2. Plate grooves 221 are formed on both sides of the slot 22. Several limiting holes are formed on the inner surface of the slot 22 in a ring. A storage groove 222 is formed at the bottom of the inner surface of the slot 22. The aluminum alloy frame 2 has a sliding baffle 23 inside, a rotating rod 231 inside the baffle 23, a first gear 232 fixedly connected to the surface of the rotating rod 231, a first toothed plate 233 inside the baffle 23, the first toothed plate 233 meshing with the first gear 232, a handle 234 fixedly connected to the surface of the rotating rod 231, openings 235 on both sides of the baffle 23, the shape of the first toothed plate 233 matching the shape of the openings 235 and the plate groove 221, a through groove 21 on one side of the aluminum alloy frame 2, a glass 211 inside the through groove 21, a first sliding groove 24 inside the aluminum alloy frame 2, a movable plate 241 slidably connected inside the first sliding groove 24, and the bottom of the movable plate 241... The aluminum alloy frame 2 is fixedly connected to a second toothed plate 242. Rotating columns 3 are rotatably connected to the four corners inside the frame 2. Limiting grooves 33 are opened on both sides inside the rotating columns 3. Limiting blocks 331 are slidably connected inside the limiting grooves 33. A limiting column 332 is fixedly connected between two limiting blocks 331. A limiting disk 333 is fixedly connected to the surface of the limiting column 332. Several limiting rods 334 are fixedly connected to the surface of the limiting disk 333 near the limiting column 332. The shape of the several limiting rods 334 is adapted to the shape of several limiting holes. A second gear 31 and a drive sprocket 32 are fixedly connected to the surface of the rotating column 3. A chain 321 is provided on the surface of the drive sprocket 32. The second gear 31 meshes with the second toothed plate 242.
[0039] When the electromagnet 13 is energized, it generates a repulsive force with the magnetic strip 251, thereby supporting the aluminum alloy frame 2. Due to the compression of the telescopic rod 411, the elastic element 412 deforms. When the aluminum alloy frame 2 no longer compresses the storage plate 4, the elastic element 412 returns to its original shape. The telescopic rod 411 drives the slider 413 to move, which in turn drives the extension plate 42 to move, thereby making the bristles 421 contact the bottom of the T-slot 11. When the push handle 26 is pushed, the push handle 26 drives the bristles 421 to move through the aluminum alloy frame 2, allowing dust to enter the dust collection box 12 through the dust collection hole 111, thus achieving the effect of easy cleaning.
[0040] Working principle: When glass 211 needs to be replaced, the new glass 211 is inserted into the through slot 21. Then, the limiting disc 333 is rotated. The limiting disc 333 drives the limiting block 331 to rotate through the limiting post 332. The limiting block 331 drives the rotating post 3 to rotate through the limiting groove 33. The rotating post 3 drives the second gear 31 and the drive sprocket 32 to rotate. The drive sprocket 32 drives other drive sprockets 32 to rotate through the chain 321, which in turn drives the second gear 31 on other rotating posts 3 to rotate. The second gear 31 drives the second gear plate 242 to rotate. The movable plate 241 moves to both sides of the surface of the glass 211, thereby blocking both sides of the surface of the glass 211. Then, the limiting plate 333 is pushed so that the limiting rod 334 enters the limiting hole. Then, the handle 234 is pulled so that the baffle 23 covers the slot 22. Then, the handle 234 is rotated, and the handle 234 drives the first gear 232 to rotate through the rotating rod 231. The first gear 232 drives the first toothed plate 233 to move, so that the first toothed plate 233 moves out of the opening 235 and into the plate groove 221.
[0041] When cleaning is required, since the electromagnet 13 is not energized, the magnetic strip 251 will attract the electromagnet 13. The aluminum alloy frame 2, through the T-shaped strip 25 and the magnetic strip 251, squeezes the storage plate 4, thereby storing the extension plate 42 inside the storage plate 4. The extension plate 42 drives the slider 413 to slide inside the second slide groove 41, causing the telescopic rod 411 to retract, thereby deforming the elastic element 412. Then, the electromagnet 13 is energized, causing the electromagnet 13 and the magnetic strip 251 to repel each other, thereby pushing the aluminum alloy frame 2... When the aluminum alloy frame 2 is not pressing the storage plate 4, the elastic element 412 returns to its original shape, and the slider 413 moves through the telescopic rod 411, causing the slider 413 to move the extension plate 42, so that the bristles 421 come into contact with the bottom of the T-slot 11. When the push handle 26 is pushed, the push handle 26 moves the bristles 421 through the aluminum alloy frame 2, so that the dust enters the dust collection box 12 through the dust collection hole 111. Then, the handle 121 is pulled to pull out the dust collection box 12, and the dust inside the dust collection box 12 is poured out.
[0042] In summary, this silent magnetic sliding aluminum alloy door and window, through the cooperation of the moving plate 241 and the rotating column 3, inserts the new glass 211 through the through groove 21, and then rotates the limiting plate 333. The limiting plate 333 drives the limiting block 331 to rotate through the limiting column 332. The limiting block 331 drives the rotating column 3 to rotate through the limiting groove 33. The rotating column 3 drives the second gear 31 and the driving sprocket 32 to rotate. The driving sprocket 32 drives other driving sprockets 32 to rotate through the chain 321. The movement of the second gear 31 on the other rotating columns 3 causes the second gear 31 to rotate. The second gear 31 drives the moving plate 241 to move through the second toothed plate 242, so that the moving plate 241 covers the glass 211, thus facilitating installation. Through the cooperation of the baffle 23 and the limiting plate 333, the limiting plate 333 is pushed, so that the limiting rod 334 enters the limiting hole. Then, the handle 234 is pulled, so that the baffle 23 covers the slot 22. Then, the handle 234 is rotated, and the handle 234 drives the first gear 232 to rotate through the rotating rod 231. The first gear 232 drives the first toothed plate 233 to move, so that the first toothed plate 233 moves out of the opening 235 and into the plate groove 221, thus preventing accidental collision. Through the cooperation of the dust collection box 12 and the storage plate 4, the electromagnet 13 is energized, so that the electromagnet 13 and the magnetic strip 251 generate a repulsive force, thus supporting the aluminum alloy frame 2. Due to the compression of the telescopic rod 411, the electromagnet 13 is powered on. The elastic element 412 deforms, and when the aluminum alloy frame 2 does not press the storage plate 4, the elastic element 412 returns to its original shape. The telescopic rod 411 drives the slider 413 to move, which in turn drives the extension plate 42 to move, so that the bristles 421 come into contact with the bottom of the T-slot 11. When the push handle 26 is pushed, the push handle 26 drives the bristles 421 to move through the aluminum alloy frame 2, so that the dust enters the dust collection box 12 through the dust collection hole 111, thereby achieving the effect of easy cleaning.
[0043] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A silent magnetic sliding aluminum alloy door and window, comprising: The mounting bracket (1), aluminum alloy frame (2), and rotating column (3) are characterized in that: the mounting bracket (1) has two T-slots (11) inside, and several electromagnets (13) are fixedly connected inside each of the two T-slots (11). T-strips (25) are slidably connected inside each of the two T-slots (11). A magnetic strip (251) is fixedly connected to the bottom of each T-strip (25). An aluminum alloy frame (2) is fixedly connected to the top of each T-strip (25). A through groove (21) is provided on one side of the aluminum alloy frame (2). A rotating column (3) is provided inside the through groove (21). Glass (211), the aluminum alloy frame (2) has a first sliding groove (24) inside, a movable plate (241) is slidably connected inside the first sliding groove (24), a second toothed plate (242) is fixedly connected to the bottom of the movable plate (241), a rotating column (3) is rotatably connected to each of the four corners inside the aluminum alloy frame (2), a second gear (31) and a drive sprocket (32) are fixedly connected to the surface of the rotating column (3), a chain (321) is provided on the surface of the drive sprocket (32), and the second gear (31) meshes with the second toothed plate (242); The magnetic strip (251) is fixedly connected to a storage plate (4) at its bottom. The storage plate (4) has a second groove (41) on both sides inside. A telescopic rod (411) is fixedly connected inside the second groove (41). An elastic element (412) is provided on the surface of the telescopic rod (411). A slider (413) is slidably connected inside the second groove (41). The top of the slider (413) is fixedly connected to the telescopic rod (411). An extension plate (42) is fixedly connected between the two sliders (413). Several bristles (421) are fixedly connected to the bottom of the extension plate (42). The surface of the aluminum alloy frame (2) is provided with a slot (22), and plate grooves (221) are provided on both sides of the slot (22). A number of limiting holes are provided on the inner surface of the slot (22), and the number of limiting holes are arranged in a ring on the inner surface of the slot (22).
2. The silent magnetic sliding aluminum alloy door and window according to claim 1, characterized in that: The slot (22) has a storage groove (222) at its bottom, and a baffle (23) is slidably connected inside the storage groove (222).
3. A silent magnetic sliding aluminum alloy door and window according to claim 2, characterized in that: The baffle (23) is rotatably connected to a rotating rod (231), and a first gear (232) is fixedly connected to the surface of the rotating rod (231). The baffle (23) is slidably connected to a first toothed plate (233), which meshes with the first gear (232). A throttle (234) is fixedly connected to the surface of the rotating rod (231). Openings (235) are provided on both sides of the baffle (23), and the shape of the first toothed plate (233) is adapted to the shape of the opening (235) and the plate groove (221).
4. A silent magnetic sliding aluminum alloy door and window according to claim 1, characterized in that: The rotating column (3) has a limit groove (33) on both sides inside. The limit groove (33) is slidably connected to a limit block (331). The two limit blocks (331) are fixedly connected to a limit column (332).
5. A silent magnetic sliding aluminum alloy door and window according to claim 4, characterized in that: The surface of the limiting post (332) is fixedly connected to the limiting disk (333), and the surface of the limiting disk (333) near the limiting post (332) is fixedly connected to a plurality of limiting rods (334), the shape of the plurality of limiting rods (334) being adapted to the shape of the plurality of limiting holes.
6. A silent magnetic sliding aluminum alloy door and window according to claim 1, characterized in that: The inner bottom walls of the two T-slots (11) are provided with several dust collection holes (111). The dust collection box (12) is slidably connected inside the mounting frame (1). The surface of the dust collection box (12) is fixedly connected with a handle (121). The surface of the aluminum alloy frame (2) is fixedly connected with a push handle (26).
Citation Information
Patent Citations
A silent magnetic sliding aluminum alloy door and window
CN110847736B