Multifunctional door-wall-cabinet all-in-one machine

By using the design of the clamping frame flipping and orientation components of the multi-functional door, wall and cabinet integrated machine, the problem of easy cracking during the board processing is solved, and high-quality and efficient board grooving processing is achieved.

CN223657237UActive Publication Date: 2025-12-12HUIZHOU FANKEN HOME TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423158650.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-12
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing door and wall cabinet processing equipment is difficult to achieve flexible flipping and effective support during the processing of sheet materials, which makes the surface of the sheet materials prone to cracking or breaking, affecting processing quality and efficiency.

Method used

A multifunctional door, wall and cabinet integrated machine was designed. It uses a clamping frame to clamp and flip the board. Combined with directional components and elastic support components, it ensures the stability of the board during processing. By flipping the clamping frame and limiting the angle of the directional components, stable grooving of the board is achieved.

Benefits of technology

It improves the quality and efficiency of grooving processing of boards, avoids cracks at the grooving location, and ensures the stability and accuracy of the processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional door, wall and cabinet all-in-one machine, which relates to the technical field of cabinet body processing and comprises a rack, an L-shaped frame I and an L-shaped frame II are vertically and slidably mounted in a guide vertical frame, an adjusting component used for driving the L-shaped frame I and the L-shaped frame II to slide reversely is mounted in the guide vertical frame, a drill rod opposite to a plate is coaxially fixed on an output shaft of a motor II, and the output shaft of the motor II is fixedly provided with an adjusting component used for driving the L-shaped frame I and the L-shaped frame II. An elastic supporting assembly located below the plate is fixed to the L-shaped frame II, and an orientation assembly used for limiting the angle of the rotating sleeve is installed on the rack. According to the plate grooving machine, plates can be clamped and fixed through the arranged clamping frame, the clamping frame can turn over by 180 degrees, angle limiting of the plates and stable grooving machining of the plates are achieved under the action of the orientation assembly, the plates are clamped from the two sides through the arranged supporting sleeve and the arranged pressing cylinder, and therefore the plate grooving machining efficiency is improved. And the stability of the structure near the plate is guaranteed, cracks are prevented from occurring in the grooving position of the plate, and the grooving machining quality of the plate is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of cabinet processing technology, specifically a multi-functional door and wall cabinet integrated machine. Background Technology

[0002] A door-wall cabinet is a home furnishing product that integrates doors, walls, and cabinets into a single design. It makes full use of space and creates a more cohesive and aesthetically pleasing home environment. For example, in the entryway, a door-wall cabinet can combine a shoe-changing bench, coat hanging area, storage cabinet, and wall decoration, meeting practical needs such as changing shoes and hanging coats upon entering while also beautifying the entryway space.

[0003] Current door and wall cabinets are assembled on-site after the panels are prefabricated in the factory. However, existing processing equipment cannot flexibly flip and effectively support the panels during processing, which easily causes cracking or breakage of the panels when drilling holes and grooves on the surface of the panels. This is not conducive to improving the processing quality and efficiency of the prefabricated panels for door and wall cabinets. In view of the above-mentioned technical defects of the existing technology, a multi-functional door and wall cabinet integrated machine is proposed to solve the above technical problems. Utility Model Content

[0004] The purpose of this utility model is to provide a multifunctional door, wall and cabinet integrated machine to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A multifunctional door / wall cabinet integrated machine includes a frame, on which a vertically arranged guide frame is fixed. A pair of clamping frames are slidably mounted on the frame, with a plate clamped between the two clamping frames. An L-shaped frame I and an L-shaped frame II are vertically slidably mounted inside the guide frame. An adjustment component for driving the L-shaped frames I and II to slide in opposite directions is installed inside the guide frame. A motor II is fixed on the L-shaped frame I. A drill rod opposite to the plate is coaxially fixed to the output shaft of the motor II. A telescopic protective component is sleeved on the drill rod. An elastic support component located below the plate is fixed on the L-shaped frame II. The elastic support component is vertically corresponding to the drill rod. A rotating sleeve is rotatably mounted on the frame. An orientation component for limiting the angle of the rotating sleeve is installed on the frame.

[0007] As an improvement of this utility model: a rotating shaft is slidably installed inside the rotating sleeve, one end of the rotating shaft is fixed to the clamping frame, a sliding plate is slidably installed on the frame, the rotating shaft is rotatably installed on the sliding plate, and an adjusting screw is threadedly connected to the sliding plate, the adjusting screw is rotatably installed on the frame.

[0008] As an improvement of this utility model: the adjustment component includes a central gear rotatably mounted on the guide frame, with a rack I and a rack II meshing on both sides of the central gear respectively, the rack I and rack II being fixed on L-shaped frame I and L-shaped frame II respectively, and a motor I being fixed on the top of the guide frame, with a threaded post coaxially fixed to the output shaft of the motor I and threadedly connected to the L-shaped frame I.

[0009] As an improvement of this utility model: the telescopic protective assembly includes a sliding tube fixed to the bottom of the L-shaped frame I, the sliding tube is sleeved on the drill rod, a fixed ring plate is fixedly sleeved on the sliding tube, a pressure cylinder is slidably sleeved on the sliding tube, and a spring ring is fixed between the pressure cylinder and the fixed ring plate.

[0010] As an improvement of this utility model: the elastic support assembly includes a support column fixed on an L-shaped frame II, a limit plate fixed on the support column, a support sleeve slidably sleeved on the support column, and a support spring fixed between the support sleeve and the limit plate.

[0011] As an improvement of this utility model: the orientation component includes an orientation disk fixedly sleeved on the rotating sleeve, the orientation disk having two centrally symmetrical V-grooves, the frame having an insert block adapted to the V-grooves, and the inner wall of the orientation disk having a locking block slidably embedded on the rotating shaft.

[0012] As an improvement of this utility model: the orientation component further includes a fixing plate fixed on the frame, a push spring fixed between the fixing plate and the insert block, and two symmetrically arranged wedge surfaces are opened at the end of the insert block away from the fixing plate, the wedge surfaces being adapted to the V-groove.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] This utility model not only clamps and fixes the sheet metal by setting a clamping frame, but the clamping frame can also be rotated 180 degrees. Under the action of the orientation component, the angle of the sheet metal is limited, and the grooving process of the sheet metal is stable. The set support sleeve and pressure cylinder clamp the sheet metal from both sides, ensuring the structural stability near the sheet metal and avoiding cracks at the grooving position of the sheet metal, which greatly improves the grooving quality of the sheet metal. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram showing the connection between the L-shaped frame, the central gear, the L-shaped frame II, and the spur rack I in this utility model;

[0017] Figure 3 For the present utility model Figure 2 A structural diagram from a certain perspective;

[0018] Figure 4 This is a partial structural schematic diagram of the present invention;

[0019] Figure 5 This is a schematic diagram showing the connection of components such as the clamping frame, the directional plate, the rotating sleeve, and the rotating shaft in this utility model;

[0020] Figure 6 For the present utility model Figure 5 A structural diagram from a certain perspective.

[0021] In the diagram: 1-Frame, 2-Guide stand, 3-Motor I, 4-Motor II, 5-Threaded column, 6-L-shaped frame I, 7-Pressure cylinder, 8-L-shaped frame II, 9-Support column, 10-Clamping frame, 11-Plate, 12-Rack I, 13-Center gear, 14-Rack II, 15-Sliding tube, 16-Drill rod, 17-Fixed ring plate, 18-Spring ring, 19-Sliding plate, 20-Adjusting screw, 21-Directional disc, 22-Insertion block, 23-V-groove, 24-Push spring, 25-Fixed plate, 26-Rotating shaft, 27-Wedge surface, 28-Clamping block, 29-Rotating sleeve, 30-Limiting disc, 31-Support sleeve, 32-Support spring. Detailed Implementation

[0022] The technical solution of this utility model will be further described in detail below with reference to specific embodiments:

[0023] First Embodiment

[0024] Please see Figure 1-6 A multifunctional door and wall cabinet integrated machine includes a frame 1, a vertically arranged guide frame 2 fixed on the frame 1, a pair of clamping frames 10 slidably installed on the frame 1, a plate 11 clamped between the two clamping frames 10, an L-shaped frame I6 and an L-shaped frame II8 vertically slidably installed inside the guide frame 2, an adjustment component for driving the L-shaped frame I6 and L-shaped frame II8 to slide in opposite directions installed inside the guide frame 2, a motor II4 fixed on the L-shaped frame I6, a drill rod 16 opposite to the plate 11 coaxially fixed on the output shaft of the motor II4, a telescopic protective component sleeved on the drill rod 16, an elastic support component located below the plate 11 fixed on the L-shaped frame II8, the elastic support component vertically corresponding to the drill rod 16, a rotating sleeve 29 rotatably installed on the frame 1, and an orientation component for limiting the angle of the rotating sleeve 29 installed on the frame 1.

[0025] Specifically, a rotating shaft 26 is slidably installed inside the rotating sleeve 29 of this device. One end of the rotating shaft 26 is fixed to the clamping frame 10. A sliding plate 19 is slidably installed on the frame 1. The rotating shaft 26 is rotatably installed on the sliding plate 19. An adjusting screw 20 is threadedly connected to the sliding plate 19. The adjusting screw 20 is rotatably installed on the frame 1.

[0026] Rotating the adjusting screw 20 can drive the sliding plate 19 to move. At this time, the sliding plate 19 drives the rotating shaft 26 to move relative to the frame 1, thereby adjusting the position of the two clamping frames 10 and finally clamping and fixing the plate 11, ensuring the stability of the plate 11 processing process and improving the processing quality.

[0027] The adjustment assembly of this device includes a central gear 13 rotatably mounted on the guide frame 2. Spur racks I12 and II14 are respectively meshed on both sides of the central gear 13. Spur racks I12 and II14 are respectively fixed on L-shaped frame I6 and L-shaped frame II8. A motor I3 is fixed on the top of the guide frame 2. The output shaft of the motor I3 is coaxially fixed with a threaded post 5 that is threadedly connected to the L-shaped frame I6.

[0028] With the above configuration, motor I3 can drive threaded column 5 to rotate, threaded column 5 drives L-shaped frame I6 to move vertically, L-shaped frame I6 drives rack I12 to move, rack I12 drives central gear 13 to rotate, central gear 13 drives rack II14 meshing with it to rotate, rack II14 drives L-shaped frame II8 to move, so that the telescopic protective component and elastic support component move towards each other and vertically clamp the plate 11, ensuring the stability of the plate 11 processing process.

[0029] Specifically, the telescopic protective assembly includes a sliding tube 15 fixed to the bottom of the L-shaped frame I6, the sliding tube 15 being sleeved on the drill rod 16, a fixing ring plate 17 fixedly sleeved on the sliding tube 15, a pressure cylinder 7 slidably sleeved on the sliding tube 15, and a spring ring 18 fixed between the pressure cylinder 7 and the fixing ring plate 17. The elastic support assembly includes a support column 9 fixed to the L-shaped frame II8, a limit plate 30 fixedly sleeved on the support column 9, a support sleeve 31 slidably sleeved on the support column 9, and a support spring 32 fixed between the support sleeve 31 and the limit plate 30.

[0030] After the pressure cylinder 7 moves down and comes into contact with the plate 11, the sliding tube 15 slides relative to the pressure cylinder 7, causing the drill rod 16 to move down and extend out of the pressure cylinder 7 to open a slot in the plate 11. At the same time, the support sleeve 31 supports the plate 11 from the bottom. The support sleeve 31 moves vertically down relative to the support column 9. Under the elastic support of the support spring 32, the plate 11 is stably clamped and then slotted, greatly improving the processing stability of the plate 11.

[0031] Second Embodiment

[0032] Please see Figure 1-6 In addition to the first embodiment, the orientation component of this device includes an orientation disk 21 fixedly sleeved on the rotating sleeve 29. The orientation disk 21 has two centrally symmetrical V-grooves 23. An insert block 22 adapted to the V-grooves 23 is installed on the frame 1. A locking block 28 slidably embedded on the rotating shaft 26 is fixed to the inner wall of the orientation disk 21.

[0033] In addition, the orientation assembly also includes a fixing plate 25 fixed on the frame 1. A push spring 24 is fixed between the fixing plate 25 and the insert block 22. Two symmetrically arranged wedge surfaces 27 are opened at the end of the insert block 22 away from the fixing plate 25. The wedge surfaces 27 are adapted to the V groove 23.

[0034] Rotating the clamping frame 10 can drive the plate 11 to rotate, allowing the plate 11 to be flipped 180 degrees. During this process, under the elastic pushing action of the push spring 24, the insert block 22 is inserted into the V groove 23, thereby limiting the angle of the plate 11 after flipping, which facilitates the processing operation on the other side of the plate 11, greatly improving the processing efficiency and processing quality of the plate 11.

[0035] In summary, this utility model can clamp and fix the plate 11 by setting the clamping frame 10, and the clamping frame 10 can be rotated 180 degrees. Under the action of the orientation component, the angle of the plate 11 is limited, and the grooving processing of the plate 11 is stable. The supporting sleeve 31 and the pressure cylinder 7 clamp the plate 11 from both sides, ensuring the structural stability near the plate 11, avoiding cracks at the grooving position of the plate 11, and greatly improving the grooving processing quality of the plate 11.

Claims

1. A multifunctional door-wall cabinet integrated machine, comprising a frame (1), wherein a vertically arranged guide frame (2) is fixed on the frame (1), and a pair of clamping frames (10) are slidably mounted on the frame (1), wherein a plate (11) is clamped between the two clamping frames (10), characterized in that, L-shaped frame I (6) and L-shaped frame II (8) are vertically slidably installed inside the guide frame (2). An adjustment component for driving L-shaped frame I (6) and L-shaped frame II (8) to slide in opposite directions is installed inside the guide frame (2). Motor II (4) is fixed on L-shaped frame I (6). A drill rod (16) opposite to the plate (11) is coaxially fixed on the output shaft of motor II (4). A telescopic protective component is sleeved on the drill rod (16). An elastic support component located below the plate (11) is fixed on L-shaped frame II (8). The elastic support component is vertically corresponding to the drill rod (16). A rotating sleeve (29) is rotatably installed on the frame (1). An orientation component for limiting the angle of the rotating sleeve (29) is installed on the frame (1).

2. The multifunctional door-wall cabinet integrated machine according to claim 1, characterized in that, A rotating shaft (26) is slidably installed inside the rotating sleeve (29). One end of the rotating shaft (26) is fixed to the clamping frame (10). A sliding plate (19) is slidably installed on the frame (1). The rotating shaft (26) is rotatably installed on the sliding plate (19). An adjusting screw (20) is threadedly connected to the sliding plate (19). The adjusting screw (20) is rotatably installed on the frame (1).

3. The multifunctional door-wall cabinet integrated machine according to claim 1, characterized in that, The adjustment assembly includes a central gear (13) rotatably mounted on the guide frame (2). The two sides of the central gear (13) are respectively meshed with rack I (12) and rack II (14). Rack I (12) and rack II (14) are respectively fixed on L-shaped frame I (6) and L-shaped frame II (8). A motor I (3) is fixed on the top of the guide frame (2). The output shaft of the motor I (3) is coaxially fixed with a threaded column (5) that is threadedly connected to L-shaped frame I (6).

4. The multifunctional door-wall cabinet integrated machine according to claim 3, characterized in that, The telescopic protective assembly includes a sliding tube (15) fixed to the bottom of the L-shaped frame I (6), the sliding tube (15) is sleeved on the drill rod (16), a fixed ring plate (17) is fixedly sleeved on the sliding tube (15), a pressure cylinder (7) is slidably sleeved on the sliding tube (15), and a spring ring (18) is fixed between the pressure cylinder (7) and the fixed ring plate (17).

5. The multifunctional door-wall cabinet integrated machine according to claim 1, characterized in that, The elastic support assembly includes a support column (9) fixed on an L-shaped frame II (8), a limiting plate (30) fixed on the support column (9), a support sleeve (31) slidably sleeved on the support column (9), and a support spring (32) fixed between the support sleeve (31) and the limiting plate (30).

6. A multi-functional door-wall cabinet integrated machine according to claim 2, characterized in that, The orientation assembly includes an orientation disk (21) fixedly sleeved on the rotating sleeve (29). The orientation disk (21) has two centrally symmetrical V-grooves (23). The frame (1) is equipped with a plug (22) adapted to the V-grooves (23). The inner wall of the orientation disk (21) is fixed with a locking block (28) slidably embedded on the rotating shaft (26).

7. A multi-functional door-wall cabinet integrated machine according to claim 6, characterized in that, The orientation component also includes a fixing plate (25) fixed on the frame (1), and a push spring (24) is fixed between the fixing plate (25) and the insert (22). The insert (22) has two symmetrically arranged wedge surfaces (27) at one end away from the fixing plate (25), and the wedge surfaces (27) are adapted to the V groove (23).