Cabinet plate cutting equipment

By designing a cabinet panel cutting device that coordinates linear drive components and a drive mechanism, the rapid and repetitive movement of multiple sets of saw blades is achieved, solving the problem of low cabinet panel cutting efficiency in existing technologies. This enables efficient batch cutting and shaping, as well as size adjustment, facilitating cabinet assembly.

CN223820696UActive Publication Date: 2026-01-23HENAN DAESHIN OVERALL KITCHEN TECH TRADE +1
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Patent Information

Application Number
CN202423182436.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-01-23
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing woodworking saws can only cut one cabinet panel at a time, resulting in low cutting efficiency and reliance on manual measurement and marking, making it impossible to achieve batch cutting and shaping.

Method used

A cabinet panel cutting device was designed, which uses a linear drive component and a drive mechanism to drive the lifting frame and the cutting mechanism to move up and down and back and forth, so as to realize rapid and repeated cutting by multiple sets of saw blades. The cutting size can be adjusted by adjusting the position of the saw blades.

Benefits of technology

It improves the efficiency of cabinet panel cutting, enabling multiple panels of different sizes to be cut at once, facilitating cabinet assembly, and providing a simple and convenient structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of cutting equipment, and particularly relates to cabinet plate cutting equipment. Comprising a machine frame body, the machine frame body comprises a bottom frame, supporting frames and a top frame, the bottom frame is horizontally placed on the ground, the bottom frame is square, the four supporting frames are vertically connected to the four corners of the bottom frame, the top ends of the four supporting frames are fixedly connected with the four corners of the top frame, and the bottom frame is composed of two transverse frames, two vertical frames and a reinforcing frame; the transverse frames and the vertical frames are perpendicularly connected to form a direction frame, the two ends of the reinforcing frame are fixedly connected with the middles of the two vertical frames, sliding assemblies are arranged at the two ends of the two transverse frames correspondingly, a sliding assembly and a linear driving assembly are arranged at the two ends of the reinforcing frame correspondingly, and lifting frames are connected to the sliding assemblies. And a cutting mechanism is arranged in the lifting frame. According to the cabinet plate cutting equipment, a whole plate can be cut into plates of multiple sizes at a time, and the cutting efficiency is greatly improved.
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Description

Technical Field

[0001] This utility model belongs to the field of cutting equipment technology, specifically relating to a cabinet panel cutting device. Background Technology

[0002] Cabinet panels are the basic components of a cabinet. Multiple horizontally and vertically connected panels and connectors can be assembled into a cabinet with storage space. Solid wood panels, in particular, offer good stability and are less prone to warping. Compared to other types of boards, they are more environmentally friendly and safer. These panels are typically cut from whole solid wood planks. Current woodworking saws can only cut one panel at a time, and each cut requires measuring and marking the board beforehand, resulting in low cutting efficiency and reliance on manual operation. Therefore, a machine capable of batch cutting is needed. Utility Model Content

[0003] The purpose of this utility model is to solve the problems existing in the background art mentioned above, and to provide a cabinet panel cutting device that can cut a whole panel into multiple sizes of panels in one go, which greatly improves the cutting efficiency.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: a cabinet panel cutting device, comprising a frame body, the frame body including a bottom frame, a support frame and a top frame, the bottom frame being horizontally placed on the ground, the bottom frame being square with four support frames vertically connected at its four corners, the tops of the four support frames being fixedly connected to the four corners of the top frame, the bottom frame being composed of two horizontal frames, two vertical frames and a reinforcing frame, the horizontal frames and vertical frames being vertically connected to form a directional frame, the two ends of the reinforcing frame being fixedly connected to the middle of the two vertical frames, each end of the two horizontal frames being provided with a sliding component, and each end of the reinforcing frame being provided with a sliding component and a linear drive component, the sliding component being connected to a lifting frame, the lifting frame being provided with a cutting mechanism, the lifting frame being provided with a drive mechanism connected to the cutting component, the linear drive component driving the lifting frame to move up and down, and the drive mechanism driving the cutting mechanism to move back and forth repeatedly.

[0005] Furthermore, the sliding assembly includes two mounting seats, a sliding column, a sliding ring, and a connecting seat. The two mounting seats are fixed between the bottom frame and the top frame. The two ends of the sliding column are connected between the mounting seats. The sliding ring is slidably connected to the sliding column. The connecting seat is fixed on the sliding ring and is fixedly connected to the lifting frame.

[0006] Furthermore, the linear drive assembly includes a fixed base, a hydraulic lifting rod, and a drive base. The fixed base is mounted on the reinforcement frame, the hydraulic lifting rod is mounted on the fixed base, and the drive base is mounted on the lifting frame, with the rod end of the hydraulic lifting rod fixedly connected to the drive base.

[0007] Furthermore, the cutting mechanism includes a fixed frame, a connecting frame, and a saw blade. The connecting frame has a set of equidistant through holes, and bolts are connected in the through holes. The saw blade is fixed between the two connecting frames by the bolts, and the fixed frame is fixedly connected to the connecting frame.

[0008] Furthermore, the drive mechanism includes a motor frame, a motor base, a drive motor, a rotating disk, a rocker arm, a hinge seat, a track plate, rollers, and a connecting plate. The motor frame is fixed on the lifting frame above the crossbar. The motor base is installed on the motor frame, and the drive motor is installed on the motor base. The rotating disk is connected to the drive motor. One end of the rocker arm is hinged to the outer contour of the rotating disk, and the other end is hinged to the hinge seat. The hinge seat is fixed on the cutting mechanism. The connecting plate is fixed to both ends of the outer side of the cutting mechanism. Rollers are rotatably connected to the connecting plate. The track plate is installed on the lifting frame and corresponds to the position of the connecting plate, so that the cutting mechanism moves repeatedly, and the rollers always move within the track plate.

[0009] Furthermore, the lifting frame is composed of two sets of square frames connected together.

[0010] The beneficial effects of this utility model are: 1) This utility model can drive the lifting frame up and down through the linear drive component, thereby driving the cutting mechanism to move up and down. Under the drive of the drive mechanism, multiple sets of saw blades in the cutting mechanism will move quickly and repeatedly. With the cooperation of the linear drive component and the drive mechanism, the cutting mechanism will cut the whole board located below the cutting mechanism into multiple strips, improving the cutting efficiency. Moreover, by adjusting the position of the saw blade on the cutting mechanism, the size of the cut strips can be adjusted, that is, multiple widths of cabinet panels can be processed at one time, which is convenient for cabinet assembly and has a simple structure and is easy to use. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0012] Figure 2 This is the front view of the present invention.

[0013] Figure 3 This is a side view of the present invention.

[0014] Figure 4 This is a top view of the present invention.

[0015] In the diagram: 1. Main frame; 1-1. Bottom frame; 1-2. Support frame; 1-3. Top frame; 1-11. Horizontal frame; 1-12. Vertical frame; 1-13. Reinforcing frame; 2. Sliding assembly; 3. Linear drive assembly; 4. Lifting frame; 5. Cutting mechanism; 6. Drive mechanism; 2-1. Mounting base; 2-2. Sliding column; 2-3. Sliding ring; 2-4. Connecting base; 3-1. Fixed base; 3-2. Hydraulic lifting rod; 3-3. Drive base; 5-1. Fixed frame; 5-2. Connecting frame; 5-3. Saw blade; 6-1. Motor frame; 6-2. Motor base; 6-3. Drive motor; 6-4. Rotary disk; 6-5. Rocker arm; 6-6. Hinge base; 6-7. Track plate; 6-8. Roller; 6-9. Connecting plate. Detailed Implementation

[0016] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments.

[0017] Example: As shown in the figure, the cabinet panel cutting equipment of this utility model includes a frame body 1. The frame body 1 includes a bottom frame 1-1, support frames 1-2, and a top frame 1-3. The bottom frame 1-1 is placed horizontally on the ground. The bottom frame 1-1 is square, with four support frames 1-2 vertically connected to its four corners. The tops of the four support frames 1-2 are fixedly connected to the four corners of the top frame 1-3. The bottom frame 1-1 consists of two horizontal frames 1-11, two vertical frames 1-12, and a reinforcing frame 1-13. The horizontal frames 1-11 are perpendicular to the vertical frames 1-12. The frame is formed by connecting the two ends of the reinforcing frame 1-13 to the middle of the two vertical frames 1-12. The two ends of the two horizontal frames 1-11 are provided with sliding components 2. The two ends of the reinforcing frame 1-13 are respectively provided with a sliding component 2 and a linear drive component 3. The sliding component 2 is connected to the lifting frame 4. The lifting frame 4 is provided with a cutting mechanism 5. The lifting frame 4 is also provided with a drive mechanism 6 connected to the cutting component. The linear drive component 3 drives the lifting frame 4 to move up and down. The drive mechanism 6 drives the cutting mechanism 5 to move back and forth repeatedly.

[0018] The sliding assembly 2 includes two mounting seats 2-1, a sliding column 2-2, a sliding ring 2-3, and a connecting seat 2-4. The two mounting seats 2-1 are fixed between the bottom frame 1-1 and the top frame 1-3. The two ends of the sliding column 2-2 are connected between the mounting seats 2-1. The sliding ring 2-3 is slidably connected to the sliding column 2-2. The connecting seat 2-4 is fixed on the sliding ring 2-3 and is fixedly connected to the lifting frame 4.

[0019] The linear drive assembly 3 includes a fixed base 3-1, a hydraulic lifting rod 3-2, and a drive base 3-3. The fixed base 3-1 is mounted on the reinforcing frame 1-13, the hydraulic lifting rod 3-2 is mounted on the fixed base 3-1, and the drive base 3-3 is mounted on the lifting frame 4. The rod end of the hydraulic lifting rod 3-2 is fixedly connected to the drive base 3-3.

[0020] The cutting mechanism 5 includes a fixed frame 5-1, a connecting frame 5-2, and a saw blade 5-3. The connecting frame 5-2 has a set of equidistant through holes, and bolt fasteners are connected in the through holes. The saw blade 5-3 is fixed between the two connecting frames 5-2 by the bolt fasteners. The fixed frame 5-1 is fixedly connected to the connecting frame 5-2.

[0021] The drive mechanism 6 includes a motor frame 6-1, a motor base 6-2, a drive motor 6-3, a rotating disk 6-4, a rocker arm 6-5, a hinge seat 6-6, a track plate 6-7, rollers 6-8, and a connecting plate 6-9. The motor frame 6-1 is fixed on the lifting frame 4 above the crossbeam 1-11. The motor base 6-2 is mounted on the motor frame 6-1, and the drive motor 6-3 is mounted on the motor base 6-2. The rotating disk 6-4 is connected to the drive motor 6-3. One end of the rocker arm 6-5 is hinged to the outer contour of the rotating disk 6-4, and the other end is hinged to the hinge seat 6-6. The hinge seat 6-6 is fixed on the cutting mechanism 5. The connecting plate 6-9 is fixed to both ends of the outer side of the cutting mechanism 5. The rollers 6-8 are rotatably connected to the connecting plate 6-9. The track plate 6-7 is mounted on the lifting frame 4 and corresponds to the position of the connecting plate 6-9, so that the cutting mechanism 5 moves repeatedly, and the rollers 6-8 always move within the track plate 6-7.

[0022] The lifting frame 4 is composed of two sets of square frames connected together.

[0023] For specific usage, please refer to... Figure 1 The lifting frame 4 is fixed to the sliding ring 2-3 by the connecting seat 2-4. That is, the five sliding columns 2-2 will limit the lifting frame 4, so that it can only slide up and down along the sliding columns 2-2. The linear drive assembly 3 installed at the other end of the lifting frame 4 will drive the lifting frame 4 to move up and down. Specifically, when the hydraulic lifting rod 3-2 is working, it will drive the rod end to extend or retract. The drive seat 3-3, which is fixedly connected to the rod end, is installed on the lifting frame 4. Therefore, when the hydraulic lifting rod 3-2 is working, it will drive the lifting frame 4 to move up and down accordingly.

[0024] The cutting action is driven by the drive mechanism 6, which moves the cutting mechanism 5 repeatedly, causing the saw blade 5-3 to repeatedly form a wire saw pattern at high frequency. Under the drive of the linear drive assembly 3, the saw blade gradually approaches the entire board below and cuts it into strips. The saw blade 5-3 is installed through equidistant through holes on the connecting frame 5-2. Multiple saw blades 5-3 can be installed on the connecting frame 5-2 at equal or non-equidistant intervals as needed. The size of the cut strips is the same as the spacing between the saw blades 5-3. When the drive motor 6-3 is working, it drives the rotating disk 6-4 to rotate. The saw blade is hinged to the rotating disk 6-4. The rocker arm 6-5 on the outer contour of the 4 will swing and rotate accordingly. The other end is hinged to the cutting mechanism 5 to form a crank rocker mechanism. When the drive motor 6-3 rotates, it will drive the cutting mechanism 5 to move back and forth repeatedly. When the cutting mechanism 5 moves back and forth, it will move relative to the lifting frame 4 through the roller 6-8 and the track plate 6-7. During the movement, the cutting mechanism 5 always moves along the track plate 6-7, which plays a role in limiting and stabilizing. At this time, it will drive multiple saw blades 5-3 to move back and forth repeatedly together, cutting and separating the plate material in contact with the saw blades 5-3.

[0025] This utility model uses a linear drive assembly to move the lifting frame up and down, thereby moving the cutting mechanism up and down. Under the drive of the drive mechanism, multiple sets of saw blades in the cutting mechanism will move rapidly and repeatedly. With the cooperation of the linear drive assembly and the drive mechanism, the cutting mechanism will cut the whole board located below the cutting mechanism into multiple strips, improving cutting efficiency. Furthermore, by adjusting the position of the saw blades on the cutting mechanism, the size of the cut strips can be adjusted, meaning that multiple widths of cabinet panels can be processed at once, facilitating cabinet assembly and providing a simple and convenient structure.

[0026] The above description is only used to illustrate the technical solution of this utility model and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.

Claims

1. A cabinet panel cutting device, characterized in that: The machine includes a frame body, which comprises a base frame, a support frame, and a top frame. The base frame is horizontally placed on the ground and is square in shape, with four support frames vertically connected to its four corners. The tops of the four support frames are fixedly connected to the four corners of the top frame. The base frame consists of two horizontal frames, two vertical frames, and a reinforcing frame. The horizontal frames and vertical frames are vertically connected to form a directional frame. The two ends of the reinforcing frame are fixedly connected to the middle of the two vertical frames. Each end of the two horizontal frames is provided with a sliding component. Each end of the reinforcing frame is provided with a sliding component and a linear drive component. A lifting frame is connected to the sliding component. A cutting mechanism is provided inside the lifting frame. A drive mechanism connected to the cutting component is also provided on the lifting frame. The linear drive component drives the lifting frame to move up and down, and the drive mechanism drives the cutting mechanism to move back and forth repeatedly.

2. The cabinet panel cutting equipment according to claim 1, characterized in that: The sliding assembly includes two mounting seats, a sliding column, a sliding ring, and a connecting seat. The two mounting seats are fixed between the bottom frame and the top frame. The two ends of the sliding column are connected between the mounting seats. The sliding ring is slidably connected to the sliding column. The connecting seat is fixed on the sliding ring and is fixedly connected to the lifting frame.

3. The cabinet panel cutting equipment according to claim 1, characterized in that: The linear drive assembly includes a fixed base, a hydraulic lifting rod, and a drive base. The fixed base is mounted on a reinforcement frame, the hydraulic lifting rod is mounted on the fixed base, and the drive base is mounted on a lifting frame, with the end of the hydraulic lifting rod fixedly connected to the drive base.

4. The cabinet panel cutting equipment according to claim 1, characterized in that: The cutting mechanism includes a fixed frame, a connecting frame, and a saw blade. The connecting frame has a set of equidistant through holes, and bolts are connected in the through holes. The saw blade is fixed between the two connecting frames by the bolts. The fixed frame is fixedly connected to the connecting frame.

5. The cabinet panel cutting equipment according to claim 1, characterized in that: The drive mechanism includes a motor frame, a motor base, a drive motor, a rotating disk, a rocker arm, a hinge seat, a track plate, rollers, and a connecting plate. The motor frame is fixed on the lifting frame above the crossbar. The motor base is installed on the motor frame, and the drive motor is installed on the motor base. The rotating disk is connected to the drive motor. One end of the rocker arm is hinged to the outer contour of the rotating disk, and the other end is hinged to the hinge seat. The hinge seat is fixed on the cutting mechanism. The connecting plate is fixed to both ends of the outer side of the cutting mechanism. Rollers are rotatably connected to the connecting plate. The track plate is installed on the lifting frame and corresponds to the position of the connecting plate, so that the cutting mechanism moves repeatedly, and the rollers always move within the track plate.

6. The cabinet panel cutting equipment according to claim 1, characterized in that: The lifting frame is composed of two sets of square frames connected together.