Magnetic type sliding door
By introducing installation components and hidden components into the magnetic sliding door, the problem of complex replacement of damping and magnetic blocks is solved, the effect of convenient replacement and hiding of handles is achieved, and the convenience and aesthetics of the magnetic sliding door are improved.
Patent Information
- Application Number
- CN202422736863.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-08
AI Technical Summary
In the existing magnetic sliding door design, the removal and replacement process of the damper and magnetic block is complicated, requiring professional tools and techniques, which is difficult for users to operate by themselves. Replacing parts may cause damage to other parts, increasing maintenance costs and difficulty. At the same time, the handle design is conspicuous, affecting the appearance and posing a safety hazard.
An installation component is designed, including an installation slot, an extrusion slot, a partition, a knob, a screw rod and an extrusion block. The screw rod is driven by the knob to rotate to achieve the positioning and replacement of the magnetic block. Combined with a hidden component, the handle can be hidden to avoid bumps.
The convenient replacement of the magnetic block and the damper is achieved, the aesthetics and safety are improved, and the safety hazards of component damage and exposed handles during the complicated disassembly process are avoided.
Smart Images

Figure CN223398574U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of furniture doors and windows, and in particular to a magnetic sliding door. Background Art
[0002] A magnetic sliding door is a door and window device that uses magnetic attraction to close and open the door leaf. Typically, a magnetic sliding door system includes magnets or magnetic devices installed on the door frame and door leaf. The magnetic material on the door leaf interacts with the magnet on the door frame, allowing the door leaf to automatically align and close tightly, while also being easy to open. This design can effectively improve the sealing and ease of use of doors and windows, and is widely used in various door and window devices in homes, offices, and commercial places.
[0003] In the existing magnetic sliding door design, the removal and replacement process of the damping and magnetic blocks is complicated, requiring professional tools and techniques, and is difficult for users to operate by themselves. When replacing parts, the entire door leaf or door frame may need to be disassembled, which is not only time-consuming and labor-intensive, but also easily causes damage to other parts of the sliding door, increasing maintenance costs and difficulty. At the same time, the existing magnetic sliding door handle design is too conspicuous and inconsistent with the aesthetics of the overall door leaf. The protruding handle not only affects the appearance of the sliding door, but is also easily bumped during use, posing a safety hazard. The lack of a semi-hidden handle design cannot meet the needs of modern minimalist home decoration, limiting the widespread application of magnetic sliding doors.
[0004] Therefore, in the above-mentioned existing magnetic sliding door design, the disassembly and replacement process of the damper and magnetic block is complicated, requiring professional tools and techniques, and it is difficult for users to operate by themselves. When replacing parts, the entire door leaf or door frame may need to be disassembled, which is not only time-consuming and labor-intensive, but also easily causes damage to other parts of the sliding door, increasing maintenance costs and difficulty. At the same time, the existing magnetic sliding door handle design is too conspicuous and inconsistent with the aesthetics of the overall door leaf. The protruding handle not only affects the appearance of the sliding door, but is also easily bumped during use, posing a safety hazard. The lack of a semi-hidden handle design cannot meet the needs of modern minimalist style home decoration, limiting the widespread application of magnetic sliding doors. A sliding door that is easy to install and disassemble the magnetic block can be designed. When the magnetic block needs to be replaced, the magnetic block and damping can be conveniently disassembled and replaced at the same time, and the design of the semi-hidden door handle can improve the aesthetics while avoiding the problem of bumping during use. Utility Model Content
[0005] In order to overcome the existing magnetic sliding door design, the removal and replacement process of the damper and magnetic block is complicated, requiring professional tools and techniques, which is difficult for users to operate by themselves. When replacing parts, it may be necessary to dismantle the entire door leaf or door frame, which is not only time-consuming and labor-intensive, but also easily causes damage to other parts of the sliding door, increasing maintenance costs and difficulty.
[0006] The technical solution of the utility model is: a magnetic sliding door, comprising a frame; also comprising a mounting assembly, a glass plate connected to the interior of the frame, a slide rail groove provided at the lower end of the frame, the slide rail groove being slidably connected to the external ground rail, a mounting assembly being provided on the left side of the frame, the mounting assembly comprising a mounting groove, a magnetic block, a large damper, an extrusion groove, a partition, a knob, a screw rod, an extrusion block, and an adapter groove; a mounting groove is provided on the upper side of the left side of the frame, a magnetic block is movably connected inside the mounting groove, the upper end of the magnetic block is connected to the large damper, an extrusion groove is provided on the upper side of the left side of the frame, and a hidden assembly is provided on the inner side of the frame.
[0007] Preferably, by setting up an installation component, cooperating with the extrusion block and the adapter slot, the upper and lower positions of the magnetic block can be positioned, so that the magnetic block can be made more movable instead of being fixed in the frame. This design can make the magnetic block easier to replace and increase the life of the sliding door. In conjunction with the hidden component, the handle can be semi-hidden, which improves the appearance while avoiding the problem of easy collision with other objects.
[0008] Preferably, a partition is connected to the inside of the extrusion groove, the upper end of the partition is rotatably connected to a knob, the middle thread of the knob is connected to a screw rod, the rotation of the knob drives the screw rod to rotate, and the screw rod moves vertically on the partition, thereby realizing the positioning of the magnetic block.
[0009] Preferably, the screw rod is movably connected to the partition, the lower end of the screw rod is connected to the extrusion block, and the lower end of the mounting groove is provided with an adapter groove, which is used to match the magnetic block and position the lower side of the magnetic block to prevent the lower side of the magnetic block from shaking.
[0010] Preferably, the adapting slot is movably connected to the magnetic block, the extrusion block is movably connected to the large damper, and the movement of the screw rod drives the extrusion block to move, thereby extruding and positioning the large damper and the magnetic block.
[0011] Preferably, the hidden component includes a hidden groove and a slide groove; a hidden groove is opened on the left side inside the frame, and slide grooves are opened on the upper and lower sides of the hidden groove. There are two slide grooves, which are used to help the hidden component achieve a hiding effect.
[0012] Preferably, the hidden component includes a small damper and a spring; two small dampers are connected at equal intervals on the left side of the hidden groove, and two springs are connected at equal intervals on the left side of the hidden groove, and the spring helps the hidden component to reset.
[0013] Preferably, the hidden component includes a handle and a slider; the handle is connected to the right side of the spring, and the sliders are connected to the upper and lower sides of the handle, the slider is slidably connected to the slide groove, the handle is slidably connected to the hidden groove, and the handle is movably connected to the small damper. The handle is reset by the spring, and at the same time it will hit the damper for buffering and avoiding damage to the handle.
[0014] Beneficial effects of the utility model:
[0015] 1. By setting the installation component and turning the knob, the knob rotates on the partition, thereby driving the screw to rotate. The screw moves vertically to drive the extrusion block to squeeze the large damper, and the large damper squeezes the magnetic block, thereby positioning the large damper and the magnetic block. This design facilitates the replacement of the large damper and the magnetic block, avoiding the problem of complex disassembly before replacing the magnetic block;
[0016] 2. Pull the handle, and the handle drives the slider to move on the slide groove. The handle stretches the spring, so that the handle can be unfolded, making it easier to move the sliding door. Release the handle, and the spring helps the handle to reset. The small damper helps the handle to buffer, so that the handle can be hidden in the hidden groove, which improves the appearance and avoids the problem of easy collision with other objects. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 Shown is a schematic diagram of the three-dimensional structure of a magnetic sliding door of the present invention;
[0018] Figure 2 Shown is a schematic diagram of a three-dimensional side view of the structure of a magnetic sliding door of the present invention;
[0019] Figure 3 Shown is a schematic diagram of a three-dimensional front cross-section structure of a magnetic sliding door of the present invention;
[0020] Figure 4 Shown is a schematic diagram of a three-dimensional side section structure of a magnetic sliding door of the present invention;
[0021] Figure 5 The utility model is a magnetic sliding door Figure 3 A in the middle is an enlarged schematic diagram of the structure;
[0022] Figure 6 The utility model is a magnetic sliding door Figure 4 Enlarged structural diagram at point B in the middle.
[0023] Explanation of the accompanying drawings: 1. Frame; 2. Glass plate; 3. Slide rail groove; 41. Mounting groove; 42. Magnetic block; 43. Large damper; 44. Extrusion groove; 45. Partition; 46. Knob; 47. Screw rod; 48. Extrusion block; 49. Adapter groove; 51. Hidden groove; 52. Slide groove; 53. Small damper; 54. Spring; 55. Handle; 56. Slider. DETAILED DESCRIPTION
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] See also Figures 1-6The utility model provides an embodiment: a magnetic sliding door, comprising a frame 1; also comprising a mounting assembly, a glass plate 2 is connected to the inside of the frame 1, a sliding rail groove 3 is opened at the lower end of the frame 1, the sliding rail groove 3 is slidably connected to the external ground rail, and a mounting assembly is provided on the left side of the frame 1, the mounting assembly includes a mounting groove 41, a magnetic block 42, a large damper 43, an extrusion groove 44, a partition 45, a knob 46, a screw rod 47, an extrusion block 48, and an adaptation groove 49; a mounting groove 41 is opened on the upper side of the left side of the frame 1, a magnetic block 42 is movably connected inside the mounting groove 41, and a large damper 43 is connected to the upper end of the magnetic block 42, an extrusion groove 44 is opened on the upper side of the left side of the frame 1, and a hidden assembly is provided on the inner side of the frame 1.
[0026] See also Figures 1-6 In this embodiment, by setting the mounting assembly, cooperating with the extrusion block 48 and the adapter groove 49, the upper and lower positions of the magnetic block 42 can be positioned, so that the magnetic block 42 can be made more movable, instead of being fixed in the frame 1. This design can make the magnetic block 42 easier to replace, increase the life of the sliding door, and cooperate with the hidden assembly to achieve a semi-hidden effect of the handle 55, while improving the appearance and avoiding the problem of easy collision with other objects. The interior of the extrusion groove 44 is connected to the partition 45, and the upper end of the partition 45 is rotatably connected to the knob 46. The middle thread of the knob 46 is connected to the screw rod 47. The knob 4 6 rotates to drive the screw rod 47 to rotate, and the screw rod 47 moves vertically on the partition 45, thereby realizing the positioning of the magnetic block 42. The screw rod 47 is movably connected to the partition 45. The lower end of the screw rod 47 is connected to the extrusion block 48. The lower end of the mounting groove 41 is provided with an adapting groove 49. The adapting groove 49 is used to match with the magnetic block 42, position the lower side of the magnetic block 42, and prevent the lower side of the magnetic block 42 from shaking. The adapting groove 49 is movably connected to the magnetic block 42, and the extrusion block 48 is movably connected to the large damper 43. The movement of the screw rod 47 drives the extrusion block 48 to move, thereby extruding and positioning the large damper 43 and the magnetic block 42.
[0027] See also Figure 2-Figure 6In this embodiment, the hidden component includes a hidden groove 51 and a slide groove 52; a hidden groove 51 is provided on the left side of the interior of the frame 1, and slide grooves 52 are provided on the upper and lower sides of the hidden groove 51. There are two slide grooves 52, and the slide grooves 52 are used to help the hidden component achieve a hiding effect. The hidden component includes a small damper 53 and a spring 54; two small dampers 53 are connected at equal intervals on the left side of the interior of the hidden groove 51, and two springs 54 are connected at equal intervals on the left side of the interior of the hidden groove 51. The spring 54 helps the hidden component to reset, and the hidden component includes a handle 55 and a slider 56; a handle 55 is connected to the right side of the spring 54, and sliders 56 are connected to the upper and lower sides of the handle 55. The slider 56 is slidably connected to the slide groove 52, the handle 55 is slidably connected to the hidden groove 51, and the handle 55 is movably connected to the small damper 53. The handle 55 is reset by the spring 54, and will impact the damping while resetting to perform buffering and prevent damage to the handle 55.
[0028] When working, first align the slide rail groove 3 on the frame 1 with the external ground rail, and assemble the frame 1 with the external sliding door frame, then put the magnetic block 42 and the damper into the installation groove 41, and align the bottom of the magnetic block 42 with the adapter groove 49, thereby completing the installation of the magnetic block 42. After the installation is completed, turn the knob 46, the knob 46 rotates on the partition 45, thereby driving the screw rod 47 to rotate, and the screw rod 47 moves vertically to drive the extrusion block 48 to squeeze the large damper 43, and the large damper 4 3. The magnetic block 42 is squeezed to position the large damper 43 and the magnetic block 42. The large damper 43 provides buffering. The magnetic block 42 is magnetically connected to the external magnetic block. The handle 55 is pulled. The handle 55 drives the slider 56 to move on the slide groove 52. The handle 55 stretches the spring 54, thereby expanding the handle 55 to facilitate moving the sliding door. The handle 55 is released. The spring 54 helps the handle 55 to return to its original position. The small damper 53 helps the handle 55 to provide buffering, thereby hiding the handle 55 in the hidden groove 51.
[0029] Through the above steps, by setting the installation assembly, turning the knob 46, the knob 46 rotates on the partition 45, thereby driving the screw rod 47 to rotate, the screw rod 47 moves vertically to drive the extrusion block 48 to squeeze the large damper 43, and the large damper 43 squeezes the magnetic block 42, thereby positioning the large damper 43 and the magnetic block 42. This design facilitates the replacement of the large damper 43 and the magnetic block 42, and avoids the problem of requiring complicated disassembly before replacing the magnetic block 42.
Claims
1. A magnetic sliding door, comprising a frame (1); characterized in that: The invention also includes a mounting assembly, wherein the interior of the frame (1) is connected to a glass plate (2), a slide rail groove (3) is provided at the lower end of the frame (1), and the slide rail groove (3) is slidably connected to the external ground rail. A mounting assembly is provided on the left side of the frame (1), and the mounting assembly includes a mounting groove (41), a magnetic block (42), a large damper (43), an extrusion groove (44), a partition (45), a knob (46), a screw rod (47), an extrusion block (48), and an adaption groove (49); a mounting groove (41) is provided on the upper side of the left side of the frame (1), a magnetic block (42) is movably connected inside the mounting groove (41), and the upper end of the magnetic block (42) is connected to the large damper (43); an extrusion groove (44) is provided on the upper side of the left side of the frame (1), and a hidden assembly is provided on the inner side of the frame (1).
2. The magnetic sliding door according to claim 1, characterized in that: The interior of the extrusion groove (44) is connected with a partition (45), the upper end of the partition (45) is rotatably connected with a knob (46), and the middle of the knob (46) is threadedly connected with a screw rod (47).
3. The magnetic sliding door according to claim 2, characterized in that: The screw rod (47) is movably connected to the partition plate (45), the lower end of the screw rod (47) is connected to the extrusion block (48), and the lower end of the installation groove (41) is provided with an adaption groove (49).
4. The magnetic sliding door according to claim 3, characterized in that: The adapting groove (49) is movably connected to the magnetic block (42), and the extrusion block (48) is movably connected to the large damper (43).
5. The magnetic sliding door according to claim 1, characterized in that: The hidden component comprises a hidden groove (51) and a slide groove (52); the left side of the interior of the frame (1) is provided with the hidden groove (51), and the upper and lower sides of the hidden groove (51) are provided with slide grooves (52), and there are two slide grooves (52).
6. The magnetic sliding door according to claim 5, characterized in that: The hidden component includes a small damper (53) and a spring (54); two small dampers (53) are connected at equal intervals on the left side of the hidden groove (51), and two springs (54) are connected at equal intervals on the left side of the hidden groove (51).
7. The magnetic sliding door according to claim 6, characterized in that: The hidden component comprises a handle (55) and a slider (56); the right side of the spring (54) is connected to the handle (55), the upper and lower sides of the handle (55) are connected to the sliders (56), the slider (56) is slidably connected to the slide groove (52), the handle (55) is slidably connected to the hidden groove (51), and the handle (55) is movably connected to the small damper (53).