Panel-in fixed oblique joint drawer cabinet
Patent Information
- Application Number
- CN202522056458.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-24
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-09-24
AI Technical Summary
[0005]为了克服现有斜拼抽屉柜多为独立式结构,缺乏适配墙体嵌入的专用设计,安装时容易与墙体产生缝隙或偏差,影响整体美观和稳固性,难以实现理想的内嵌一体化效果的问题
1、通过设置固定组件,在将斜拼柜推进墙体内部后,限位板用于限定柜体嵌入深度的位置,此时,拨动拨轮,使拨轮在固定块内转动,带动底仓内的双向丝杆同步旋转,双向丝杆的旋转促使移动块向两侧滑动,推动防滑块沿活动槽推出,使防滑块贴合并压紧墙体,实现对斜拼柜的稳固支撑与固定,从而达到可靠的内嵌安装效果,避免因结构不适配而导致的缝隙、松动等问题,提升整体的安装稳定性与视觉美观性,以解决现有斜拼抽屉柜多为独立式结构,缺乏适配墙体嵌入的专用设计,安装时容易与墙体产生缝隙或偏差,影响整体美观和稳固性,难以实现理想的内嵌一体化效果的问题。
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Figure CN224820059U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of slanted drawer cabinet technology, and in particular to a slanted drawer cabinet with a fixed inset panel. Background Technology
[0002] A slanted drawer cabinet is a storage cabinet structure in which the front panel of the drawer is spliced and installed with the cabinet body at an angle. Unlike the traditional flat splicing method, the slanted drawer cabinet has a slanted cut on the front of the drawer panel or the front of the cabinet body, so that it is embedded into the cabinet body at a certain angle or transitions to the cabinet body surface at an angle when closed, thus achieving multiple advantages in terms of function and appearance.
[0003] Existing slanted drawer cabinet structures are usually designed as independent units and do not have the structural adaptability specifically for wall embedding. In actual installation, gaps or misalignments are likely to occur between the cabinet and the wall, which not only affects the overall aesthetics but also makes it difficult to fix firmly, thus failing to achieve the ideal embedded integrated effect.
[0004] Therefore, given that most existing slanted drawer cabinets are independent structures and lack a dedicated design for wall embedding, which can easily cause gaps or deviations with the wall during installation, affecting the overall aesthetics and stability and making it difficult to achieve the ideal integrated embedded effect, there is an urgent need to design a new type of slanted drawer cabinet with a fixed embedded panel. Utility Model Content
[0005] To overcome the problem that most existing diagonally assembled drawer cabinets are freestanding structures and lack a special design to be adapted for wall embedding, which easily creates gaps or deviations with the wall during installation, affecting the overall aesthetics and stability, and making it difficult to achieve the ideal embedded integrated effect.
[0006] The technical solution of this utility model is as follows: a panel-embedded and fixed slanted drawer cabinet, including a slanted cabinet; it also includes a fixing component. The fixing component is provided at the bottom of the slanted cabinet. The fixing component includes a bottom compartment, a fixing block, a dial wheel, a two-way lead screw, a moving block, an anti-slip block, a movable groove, and a limiting plate. The bottom compartment is connected to the bottom of the slanted cabinet. The fixing block is connected to the rear side of the bottom compartment. The dial wheel is rotatably connected to the front side of the fixing block. The dial wheel is connected to the interior of the dial wheel. The two-way lead screw is connected to the bottom compartment. The outer ends of the two-way lead screw are threaded to the left and right sides. The moving blocks are L-shaped. Two moving blocks are symmetrically arranged along the vertical center line of the two-way lead screw. The moving blocks are slidably connected to the bottom compartment. The end of the moving block away from the dial wheel is connected to an anti-slip block. Movable grooves are opened at the left and right ends of the bottom compartment corresponding to the positions of the anti-slip blocks. The left and right ends of the slanted cabinet are connected to the limiting plate.
[0007] Preferably, by setting a fixing component, after the angled cabinet is pushed into the wall, the limiting plate is used to limit the position of the cabinet's embedding depth. At this time, the dial wheel is turned, causing it to rotate within the fixing block, which drives the bidirectional screw in the bottom compartment to rotate synchronously. The rotation of the bidirectional screw causes the moving block to slide to both sides, pushing the anti-slip block out along the movable groove, so that the anti-slip block fits and presses against the wall, achieving stable support and fixation for the angled cabinet. This achieves a reliable embedded installation effect, avoiding problems such as gaps and loosening caused by structural incompatibility, improving the overall installation stability and visual aesthetics. This solves the problem that most existing angled drawer cabinets are independent structures, lacking a special design adapted for wall embedding, and are prone to gaps or deviations from the wall during installation, affecting the overall aesthetics and stability, and making it difficult to achieve the ideal embedded integrated effect.
[0008] Preferably, the bottom of the compartment has a groove, and the front and rear sides of the groove are connected to fixing rods.
[0009] Preferably, the outer end of the fixed rod is rotatably connected to a wheel, and the upper front side of the bottom compartment is connected to a rotating shaft.
[0010] Preferably, a baffle is connected to the outer end of the rotating shaft, and the baffle is movably connected to the bottom compartment.
[0011] Preferably, the upper interior of the base compartment is connected to a handle, and the interior of the slanted cabinet is connected to a storage drawer via a sliding mechanism.
[0012] Preferably, the upper interior of the slanted cabinet is connected to a rebound mechanism, which is movably connected to the storage drawer.
[0013] Preferably, there are two movable slots, which are slidably connected to the moving block.
[0014] The beneficial effects of this utility model are: 1. By setting a fixing component, after the angled cabinet is pushed into the wall, the limiting plate is used to limit the position of the cabinet's embedding depth. At this time, the dial wheel is turned, causing it to rotate in the fixing block, which drives the double-sided screw in the bottom compartment to rotate synchronously. The rotation of the double-sided screw causes the moving block to slide to both sides, pushing the anti-slip block out along the movable groove, so that the anti-slip block fits and presses against the wall, achieving stable support and fixation for the angled cabinet. This achieves a reliable embedded installation effect, avoiding problems such as gaps and loosening caused by structural incompatibility, improving the overall installation stability and visual aesthetics. This solves the problem that most existing angled drawer cabinets are independent structures, lacking a special design adapted to wall embedding, and are prone to gaps or deviations from the wall during installation, affecting the overall aesthetics and stability, and making it difficult to achieve the ideal embedded integrated effect. Attached Figure Description
[0015] Figure 1The diagram shown is a three-dimensional structural schematic of a slanted drawer cabinet with an embedded and fixed panel according to this utility model. Figure 2 The diagram shown is a three-dimensional bottom view of the obliquely assembled drawer cabinet with a panel embedded and fixed according to this utility model. Figure 3 The diagram shown is a three-dimensional top section of a slanted drawer cabinet with an embedded and fixed panel, according to this utility model. Figure 4 The diagram shown is a three-dimensional side section of a diagonally assembled drawer cabinet with an embedded and fixed panel, according to this utility model.
[0016] Explanation of reference numerals in the attached diagram: 1. Angled cabinet; 21. Base compartment; 22. Fixing block; 23. Dial wheel; 24. Two-way lead screw; 25. Moving block; 26. Anti-slip block; 27. Movable groove; 28. Limiting plate; 31. Groove; 32. Fixing rod; 33. Rotary wheel; 34. Rotating shaft; 35. Baffle; 36. Handle; 37. Storage drawer; 38. Rebound device. Detailed Implementation
[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0018] Please see Figures 1-4This utility model provides an embodiment: a panel-embedded and fixed slanted drawer cabinet, including a slanted cabinet 1; it also includes a fixing component. The fixing component is provided at the bottom of the slanted cabinet 1. The fixing component includes a bottom compartment 21, a fixing block 22, a dial wheel 23, a two-way lead screw 24, a moving block 25, an anti-slip block 26, a movable groove 27, and a limiting plate 28. The bottom compartment 21 is connected to the bottom of the slanted cabinet 1. The fixing block 22 is connected to the rear side of the bottom compartment 21. The dial wheel 23 is rotatably connected to the front side of the inside of the fixing block 22. The two-way lead screw 24 is connected inside the dial wheel 23. The two-way lead screw 24 is connected to the bottom compartment 21. The moving blocks 25 are threaded to the left and right sides of the outer end of the two-way lead screw 24. The moving blocks 25 are L-shaped. Two moving blocks 25 are symmetrically arranged along the vertical center line of the two-way lead screw 24. The moving blocks 25 are slidably connected to the bottom compartment 21. The moving blocks 25 are located away from the dial wheel 23. The end is connected to an anti-slip block 26. The left and right ends of the bottom compartment 21 are provided with movable grooves 27 corresponding to the positions of the anti-slip block 26. The left and right ends of the angled cabinet 1 are connected to limit plates 28. By setting a fixing component, after the angled cabinet 1 is pushed into the wall, the limit plates 28 are used to limit the position of the angled cabinet 1 after it is embedded in the wall. The dial wheel 23 is turned, and the dial wheel 23 rotates in the fixed block 22, thereby driving the bidirectional screw 24 to rotate in the bottom compartment 21. The rotation of the bidirectional screw 24 drives the moving block 25 to move, thereby pushing the anti-slip block 26 out through the movable groove 27, so that the anti-slip block 26 presses against the wall, thereby fixing the position of the angled cabinet 1 and realizing the effect of the cabinet being embedded. This solves the problem that most existing angled drawer cabinets are independent structures, lack a special design to adapt to wall embedding, and are prone to gaps or deviations with the wall during installation, affecting the overall aesthetics and stability, and making it difficult to achieve the ideal embedded integrated effect.
[0019] Please see Figures 1-4 In this embodiment, a groove 31 is provided at the bottom of the bottom compartment 21. Fixed rods 32 are connected to the front and rear sides of the inside of the groove 31. The fixed rods 32 are used to assist the device in moving. A rotating wheel 33 is rotatably connected to the outer end of the fixed rods 32. A rotating shaft 34 is connected to the upper front side of the bottom compartment 21. The rotating wheel 33 rotates on the rotating shaft 34, thereby assisting the device in moving. A baffle 35 is connected to the outer end of the rotating shaft 34. The baffle 35 is movably connected to the bottom compartment 21. The baffle 35 is used to straighten the bottom compartment 21 and improve the aesthetic effect.
[0020] Please see Figures 2-4In this embodiment, a handle 36 is connected to the upper inside of the bottom compartment 21, and a storage drawer 37 is slidably connected to the inside of the inclined cabinet 1. The handle 36 facilitates pulling out the device. A rebounder 38 is connected to the upper inside of the inclined cabinet 1. The rebounder 38 is movably connected to the storage drawer 37. Pushing the storage drawer 37 causes the storage drawer 37 to squeeze the rebounder 38, and the rebounder 38 is squeezed to push the storage drawer 37 out. Two movable slots 27 are provided. The movable slots 27 are slidably connected to the moving block 25. The movable slots 27 facilitate the movement of the anti-sliding block 26, thereby squeezing the wall and achieving a fixing effect.
[0021] During operation, the inclined cabinet 1 is pushed to rotate on the shaft 34 via the rotating wheel 33. After the inclined cabinet 1 is pushed into the wall, the limiting plate 28 is used to limit the depth of the cabinet embedment. At this time, the dial wheel 23 is turned, causing it to rotate within the fixed block 22, which drives the bidirectional screw 24 in the base compartment 21 to rotate synchronously. The rotation of the bidirectional screw 24 causes the moving block 25 to slide to both sides, pushing the anti-slip block 26 out along the movable groove 27, so that the anti-slip block 26 fits and presses against the wall, thus achieving stable support for the inclined cabinet 1. The device is supported and fixed to achieve a reliable embedded installation effect, avoiding gaps and loosening caused by structural incompatibility, and improving the overall installation stability and visual aesthetics. The storage drawer 37 is pushed, and the storage drawer 37 squeezes the rebound device 38. The rebound device 38 is squeezed and pushes the storage drawer 37 out. When it is necessary to pull out the device, the baffle 35 is lifted and rotated on the rotating shaft 34, thereby opening the bottom compartment 21, which makes it easy to release the restriction of the anti-slip block 26 on the device. Pull the handle 36 to pull the device out of the wall.
[0022] Through the above steps, by setting the fixing components, after the inclined cabinet 1 is pushed into the wall, the limiting plate 28 is used to limit the position of the cabinet embedding depth. At this time, the dial wheel 23 is turned so that the dial wheel 23 rotates in the fixing block 22, which drives the bidirectional screw 24 in the bottom compartment 21 to rotate synchronously. The rotation of the bidirectional screw 24 causes the moving block 25 to slide to both sides, pushing the anti-slip block 26 out along the movable groove 27, so that the anti-slip block 26 fits and presses against the wall, thereby achieving stable support and fixation for the inclined cabinet 1, thus achieving a reliable embedded installation effect, avoiding gaps and loosening caused by structural incompatibility, improving the overall installation stability and visual aesthetics, and solving the problem that most existing inclined drawer cabinets are independent structures, lack a special design adapted to wall embedding, and are prone to gaps or deviations with the wall during installation, affecting the overall aesthetics and stability, and making it difficult to achieve the ideal embedded integrated effect.
Claims
1. A panel-embedded and fixed diagonally assembled drawer cabinet, comprising a diagonally assembled cabinet (1); characterized in that: It also includes a fixing component. The bottom of the inclined cabinet (1) is provided with a fixing component, which includes a bottom compartment (21), a fixing block (22), a dial wheel (23), a two-way screw rod (24), a moving block (25), an anti-slip block (26), a movable groove (27), and a limit plate (28). The bottom of the inclined cabinet (1) is connected to the bottom compartment (21). The bottom compartment (21) is connected to the rear side of the bottom compartment (21). The fixing block (22) is rotatably connected to the front side of the inside of the fixing block (22). The dial wheel (23) is connected to the inside of the dial wheel (23). The two-way screw rod (24) is connected to the inside of the dial wheel (23). 24) The transmission connection with the bottom compartment (21) is provided. The outer ends of the double-acting screw (24) are threaded with moving blocks (25) on the left and right sides. The moving blocks (25) are L-shaped. There are two moving blocks (25) symmetrically arranged with the vertical center line of the double-acting screw (24). The moving blocks (25) are slidably connected to the bottom compartment (21). The end of the moving block (25) away from the dial wheel (23) is connected with an anti-sliding block (26). The left and right ends of the bottom compartment (21) are provided with movable grooves (27) corresponding to the positions of the anti-sliding blocks (26). The left and right ends of the inclined cabinet (1) are connected with limit plates (28).
2. A panel-embedded and fixed diagonally joined drawer cabinet according to claim 1, characterized in that: The bottom of the compartment (21) has a groove (31), and the front and rear sides of the groove (31) are connected to a fixing rod (32).
3. A panel-embedded and fixed diagonally joined drawer cabinet according to claim 2, characterized in that: The outer end of the fixed rod (32) is rotatably connected to a rotating wheel (33), and the upper front end of the bottom compartment (21) is connected to a rotating shaft (34).
4. A panel-embedded and fixed diagonally joined drawer cabinet according to claim 3, characterized in that: The outer end of the rotating shaft (34) is connected to a baffle (35), which is movably connected to the bottom compartment (21).
5. A panel-embedded and fixed diagonally joined drawer cabinet according to claim 4, characterized in that: The upper interior of the bottom compartment (21) is connected to a handle (36), and the interior of the slanted cabinet (1) is connected to a storage drawer (37).
6. A panel-embedded and fixed diagonally joined drawer cabinet according to claim 5, characterized in that: The upper interior of the slanted cabinet (1) is connected to a rebound device (38), which is movably connected to the storage drawer (37).
7. A panel-embedded and fixed diagonally joined drawer cabinet according to claim 1, characterized in that: Two movable slots (27) are provided, and the movable slots (27) are slidably connected to the movable block (25).