Limiting cutting equipment for artificial board manufacturing
By designing automatic loading and limiting devices for artificial board manufacturing limit cutting equipment, the problem of low automatic loading and positioning efficiency of artificial boards in the prior art is solved, automatic loading and positioning is realized, and working efficiency is improved.
Patent Information
- Application Number
- CN202421687235.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-16
AI Technical Summary
The existing artificial board cutting device cannot realize the automatic loading and positioning of artificial boards, and requires manual positioning and loading, which is not efficient.
A limit cutting equipment for manufacturing artificial boards is designed, including loading components, cleaning components, limiting components and cutting components. By setting up an automatic loading device and limiting device, automatic loading and positioning of the artificial boards is realized.
It realizes automatic loading and positioning of artificial boards, improves work efficiency, reduces the demand for manual operation, and improves the level of production automation.
Smart Images

Figure CN222958830U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of artificial board manufacturing, in particular to a limit cutting device for artificial board manufacturing. Background Technique
[0002] An artificial board is a board or molded product made from wood or other non-wood plants as raw materials through a series of mechanical processing and gluing processes. Due to its excellent physical properties and processing performance, artificial boards are widely used in the fields of construction, furniture, decoration, etc. In the construction field, artificial boards can be used as interior walls, ceilings, partition walls, floors, etc.; currently, the utility model patent with the patent number CN217573274U discloses an artificial board cutting device. This device, through a debris collection mechanism, turns on the exhaust fan, and by opening a lot of collection holes on the cutting table, can suck the debris generated during cutting above the cutting table into the collection hopper along with the air, greatly reducing the splashing of debris everywhere and reducing the floating of debris in the air, which is beneficial to making the ground and air in the production workshop cleaner, can reduce the inhalation of debris by workers, and also protects the health of workers. Finally, the debris falls into the inner cavity of the cutting table through the discharge pipe; however, it cannot realize automatic feeding and positioning of the artificial board, and manual positioning and feeding of the artificial board are required, resulting in low efficiency. Content of the Utility Model
[0003] In order to overcome the problem that the current artificial board cutting device cannot realize automatic feeding and positioning of the artificial board, and manual positioning and feeding of the artificial board are required, resulting in low efficiency.
[0004] The technical solution of the utility model is: a limit cutting device for artificial board manufacturing, including a bottom plate, a feeding component, a cleaning component, a limiting component, and a cutting component. The feeding component is arranged above the bottom plate, the cleaning component is arranged above the bottom plate, the cleaning component is located on one side of the feeding component, the limiting component is arranged above the cleaning component, and the cutting component is arranged above the limiting component.
[0005] Preferably, the automatic feeding of the artificial board can be realized by setting the feeding component, the workpiece during processing is supported by setting the cleaning component, and the waste chips generated during cutting are collected and processed. The position of the workpiece is limited by setting the limiting component, so as to facilitate the cutting operation of the workpiece by setting the cutting component.
[0006] Preferably, the feeding assembly includes a vertical plate, a guide rail, a first telescopic rod, and a support plate. The vertical plate is fixedly installed above the bottom plate, and there are two groups of vertical plates. The guide rail is fixedly installed on one side of the vertical plate. The first telescopic rod is fixedly installed above the bottom plate, and there are multiple groups of first telescopic rods. The first telescopic rods are located between the two groups of vertical plates. The support plate is arranged between the two groups of vertical plates, and the support plate is slidably connected to the vertical plate through the guide rail. The support plate is fixedly installed above the first telescopic rod. By setting the vertical plate to install the guide rail, and by setting the first telescopic rod, the support plate can be pushed to lift through the guide rail, which is convenient for feeding the wood-based panel.
[0007] Preferably, the cleaning assembly includes a dust collection box, a porous panel, and an inclined plate. The dust collection box is fixedly installed above the base, and the dust collection box is located at one end of the vertical plate. The dust collection box is fixedly connected to the vertical plate. The porous panel is fixedly installed above the dust collection box. The inclined plate is fixedly installed inside the dust collection box. By setting the dust collection box to install the porous panel and collect the waste chips generated during the cutting work, by setting the porous panel to support and place the workpiece and make the waste chips generated during the cutting process enter the dust collection box, and by setting the inclined plate, it is convenient to centrally process the waste chips in the dust collection box.
[0008] Preferably, the cleaning assembly further includes a negative pressure fan and a cleaning door. The negative pressure fan is fixedly installed on one side of the dust collection box, and the cleaning door is arranged on one side of the dust collection box. The cleaning door is rotatably connected to the dust collection box. By setting the negative pressure fan, negative pressure can be generated inside the dust collection box, so as to absorb the waste chips generated during the cutting process through the porous panel. By setting the cleaning door, it is convenient to clean the collected waste chips.
[0009] Preferably, the limiting assembly includes a mounting plate, mounting columns, a slide rail, a first motor, and a first lead screw. The mounting plate is fixedly installed on one side of the porous panel. The mounting columns are fixedly installed at one end of the vertical plate, and there are two groups of mounting columns. The slide rail is arranged between the mounting plate and the mounting columns. The slide rail is fixedly connected to the porous panel and the vertical plate. The first motor is fixedly installed on one side of the mounting column. The first lead screw is arranged on one side of the mounting plate. One end of the first lead screw is rotatably connected to the mounting plate, and the other end of the first lead screw is fixedly connected to the output end of the first motor. By setting the mounting plate to install the first lead screw and limit one end of the slide rail, by setting the mounting columns to install the first motor and the first lead screw, and by setting the first motor to drive the first lead screw to rotate.
[0010] Preferably, the limiting component includes an internally threaded slider, a pushing plate, damping sliding bars, sliding rods, connecting blocks and limiting plates. The internally threaded slider is arranged above the slide rail and is slidably connected to the slide rail. The first lead screw passes through the internally threaded slider and is threadedly connected to the internally threaded slider. The pushing plate is fixedly installed between two groups of internally threaded sliders. The damping sliding bars are arranged above the slide rail. The sliding rods are fixedly installed above the damping sliding bars. The sliding rods pass through the connecting blocks and are slidably connected to the connecting blocks. There are two groups of connecting blocks. The limiting plates are fixedly installed on one side of the connecting blocks. By setting the first motor to drive the rotation of the first lead screw, the internally threaded slider can be driven to slide along the slide rail, so that the workpiece can be pushed to move on the porous panel by setting the pushing plate. By setting the damping sliding bars, the limiting plates can be driven to move, so as to adjust the positions of the limiting plates. By setting the sliding rods, the connecting blocks can slide along the sliding rods, so as to adjust the limiting plates to adapt to the sizes of different workpieces. By setting the limiting plates, the limiting work of the workpieces can be carried out.
[0011] Preferably, the cutting component includes fixing blocks, second telescopic rods, mounting brackets, second motors, second lead screws, internally threaded mounting blocks and cutting knives. Fixing blocks are fixedly installed on both sides of the dust collection box. The second telescopic rods are fixedly installed above the fixing blocks. There are two groups of second telescopic rods. The mounting brackets are fixedly installed above the second telescopic rods. The second motors are arranged on one side of the mounting brackets. One end of the second lead screw is fixedly connected to the output end of the second motor. The other end of the second lead screw is rotatably connected to the mounting bracket. The second lead screw passes through the internally threaded mounting blocks. The internally threaded mounting blocks are threadedly connected to the second lead screws. The internally threaded mounting blocks pass through the mounting brackets. The cutting knives are arranged on one side of the internally threaded mounting blocks. By setting the fixing blocks to support and install the second telescopic rods, by setting the second telescopic rods, the mounting brackets can be driven to lift. By setting the second motors to drive the rotation of the second lead screws, the internally threaded mounting blocks and the cutting knives mounted thereon can be driven to move. By setting the cutting knives, the cutting work of the workpieces can be carried out.
[0012] The beneficial effects of the present utility model:
[0013] 1. Compared with the current artificial board cutting device that cannot realize automatic feeding and positioning of artificial boards and requires manual positioning and feeding of artificial boards, the efficiency is not high. This device can be adjusted according to the size of the artificial board by setting an adjustable limiting device, so as to limit the artificial board. By setting an automatic feeding device, the artificial boards are fed one by one, so as to realize the automatic feeding of artificial boards and push the artificial boards to the limiting device for limiting, which is convenient for cutting work and improves work efficiency;
[0014] 2. The first telescopic rod can push the support plate to rise and fall along the guide rail, so as to push the workpieces to expose the surface of the porous panel one by one. The inner-thread slider drives the pushing plate to move, so as to push the exposed workpiece to the limiting plate for limiting, which is convenient for cutting work;
[0015] 3. Slide the damping slide bar to a suitable position through the slide rail, and adjust the positions of the two groups of limiting plates through the connecting block, so as to adapt to different sizes of artificial boards, limit different sizes of artificial boards, and improve applicability. Brief Description of the Drawings
[0016] Figure 1 Shown is the first three-dimensional structure schematic diagram of the artificial board manufacturing limiting and cutting equipment of the present utility model;
[0017] Figure 2 Shown is the second three-dimensional structure schematic diagram of the artificial board manufacturing limiting and cutting equipment of the present utility model;
[0018] Figure 3 Shown is the sectional three-dimensional structure schematic diagram of the artificial board manufacturing limiting and cutting equipment of the present utility model;
[0019] Figure 4 Shown is the third three-dimensional structure schematic diagram of the artificial board manufacturing limiting and cutting equipment of the present utility model;
[0020] Figure 5 Shown is the artificial board manufacturing limiting and cutting equipment of the present utility model Figure 4 The enlarged three-dimensional structure schematic diagram at the circled part;
[0021] Description of the reference numerals: 1. Bottom plate; 2. Loading component; 3. Cleaning component; 4. Limiting component; 5. Cutting component; 201. Vertical plate; 202. Guide rail; 203. First telescopic rod; 204. Support plate; 301. Dust collection box; 302. Porous panel; 303. Inclined plate; 304. Negative pressure fan; 305. Cleaning door; 401. Mounting plate; 402. Mounting column; 403. Slide rail; 404. First motor; 405. First lead screw; 406. Inner-thread slider; 407. Pushing plate; 408. Damping slide bar; 409. Slide bar; 410. Connecting block; 411. Limiting plate; 501. Fixed block; 502. Second telescopic rod; 503. Mounting bracket; 504. Second motor; 505. Second lead screw; 506. Inner-thread mounting block; 507. Cutting knife. Detailed Description of the Embodiment
[0022] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0023] Please refer to Figure 1, the present utility model provides an embodiment: a limiting cutting device for wood-based panel manufacturing, including a bottom plate 1, a feeding assembly 2, a cleaning assembly 3, a limiting assembly 4 and a cutting assembly 5. The feeding assembly 2 is arranged above the bottom plate 1, the cleaning assembly 3 is arranged above the bottom plate 1, the cleaning assembly 3 is located on one side of the feeding assembly 2, the limiting assembly 4 is arranged above the cleaning assembly 3, and the root cutting assembly is arranged above the limiting assembly 4.
[0024] Please refer to Figures 2-3 , in this embodiment, the feeding assembly 2 includes a vertical plate 201, a guide rail 202, a first telescopic rod 203 and a support plate 204. The vertical plate 201 is fixedly installed above the bottom plate 1, and there are two groups of vertical plates 201. The guide rail 202 is fixedly installed on one side of the vertical plate 201. The first telescopic rod 203 is fixedly installed above the bottom plate 1, and there are multiple groups of first telescopic rods 203. The first telescopic rods 203 are located between the two groups of vertical plates 201. The support plate 204 is arranged between the two groups of vertical plates 201, and the support plate 204 is slidably connected to the vertical plate 201 through the guide rail 202. The support plate 204 is fixedly installed above the first telescopic rod 203; by setting the vertical plate 201 to install the guide rail 202, and by setting the first telescopic rod 203, the support plate 204 can be pushed to lift through the guide rail 202; the cleaning assembly 3 includes a dust collection box 301, a porous panel 302 and an inclined plate 303. The dust collection box 301 is fixedly installed above the base, the dust collection box 301 is located at one end of the vertical plate 201, and the dust collection box 301 is fixedly connected to the vertical plate 201. The porous panel 302 is fixedly installed above the dust collection box 301, and the inclined plate 303 is fixedly installed inside the dust collection box 301; by setting the dust collection box 301 to install the porous panel 302 and collect the waste chips generated during the cutting work, by setting the porous panel 302 to support and place the workpiece and make the waste chips generated during the cutting process enter the dust collection box 301, and by setting the inclined plate 303 to facilitate the centralized treatment of the waste chips in the dust collection box 301; the cleaning assembly 3 further includes a negative pressure fan 304 and a cleaning door 305. The negative pressure fan 304 is fixedly installed on one side of the dust collection box 301, and the cleaning door 305 is arranged on one side of the dust collection box 301. The cleaning door 305 is rotatably connected to the dust collection box 301; by setting the negative pressure fan 304, negative pressure can be generated inside the dust collection box 301, so as to absorb the waste chips generated during the cutting process through the porous panel 302, and by setting the cleaning door 305, it is convenient to clean the collected waste chips.
[0025] Please refer to Figures 4-5, in this embodiment, the limiting component 4 includes a mounting plate 401, a mounting column 402, a slide rail 403, a first motor 404 and a first lead screw 405. The mounting plate 401 is fixedly installed on one side of the porous panel 302, and the mounting column 402 is fixedly installed at one end of the vertical plate 201. There are two groups of mounting columns 402. The slide rail 403 is arranged between the mounting plate 401 and the mounting column 402. The slide rail 403 is fixedly connected to the porous panel 302 and the vertical plate 201. The first motor 404 is fixedly installed on one side of the mounting column 402. The first lead screw 405 is arranged on one side of the mounting plate 401. One end of the first lead screw 405 is rotatably connected to the mounting plate 401, and the other end of the first lead screw 405 is fixedly connected to the output end of the first motor 404; by setting the mounting plate 401 to install the first lead screw 405 and limit one end of the slide rail 403, by setting the mounting column 402 to install the first motor 404 and the first lead screw 405, and by setting the first motor 404 to drive the first lead screw 405 to rotate; the limiting component 4 includes an internally threaded slider 406, a pushing plate 407, a damping slide bar 408, a slide rod 409, a connecting block 410 and a limiting plate 411. The internally threaded slider 406 is arranged above the slide rail 403. The internally threaded slider 406 is slidably connected to the slide rail 403. The first lead screw 405 passes through the internally threaded slider 406, and the first lead screw 405 is threadedly connected to the internally threaded slider 406. The pushing plate 407 is fixedly installed between the two groups of internally threaded sliders 406. The damping slide bar 408 is arranged above the slide rail 403. The slide rod 409 is fixedly installed above the damping slide bar 408. The slide rod 409 passes through the connecting block 410, and the slide rod 409 is slidably connected to the connecting block 410. There are two groups of connecting blocks 410. The limiting plate 411 is fixedly installed on one side of the connecting block 410; by setting the first motor 404 to drive the first lead screw 405 to rotate, the internally threaded slider 406 can be driven to slide along the slide rail 403, so that the workpiece can be pushed to move on the porous panel 302 by setting the pushing plate 407. By setting the damping slide bar 408, the limiting plate 411 can be driven to move, so as to adjust the position of the limiting plate 411. By setting the slide rod 409, the connecting block 410 can slide along the slide rod 409, so as to adjust the limiting plate 411 to adapt to the sizes of different workpieces. By setting the limiting plate 411, the workpiece can be limited;The cutting assembly 5 includes a fixed block 501, a second telescopic rod 502, a mounting bracket 503, a second motor 504, a second lead screw 505, an internally threaded mounting block 506, and a cutting tool 507. Fixed blocks 501 are fixedly installed on both sides of the dust collection box 301. The second telescopic rod 502 is fixedly installed above the fixed block 501. There are two groups of the second telescopic rods 502. The mounting bracket 503 is fixedly installed above the second telescopic rod 502. The second motor 504 is arranged on one side of the mounting bracket 503. One end of the second lead screw 505 is fixedly connected to the output end of the second motor 504, and the other end of the second lead screw 505 is rotatably connected to the mounting bracket 503. The second lead screw 505 passes through the internally threaded mounting block 506, and the internally threaded mounting block 506 is threadedly connected to the second lead screw 505. The internally threaded mounting block 506 passes through the mounting bracket 503, and the cutting tool 507 is arranged on one side of the internally threaded mounting block 506; by setting the fixed block 501 to support and install the second telescopic rod 502, by setting the second telescopic rod 502, the mounting bracket 503 can be driven to lift, by setting the second motor 504 to drive the second lead screw 505 to rotate, thereby driving the internally threaded mounting block 506 and the cutting tool 507 mounted thereon to move, and by setting the cutting tool 507 to perform cutting work on the workpiece.;
[0026] When working, stack the wood-based panels neatly above the support plate 204. According to the size of the wood-based panels, use the slide rail 403 to slide the damping slide bar 408 to a suitable position, and use the connecting block 410 to adjust the positions of the two limiting plates 411 to limit the position of the wood-based panels;
[0027] Use the first motor 404 to drive the first lead screw 405 to rotate, thereby driving the internally threaded slider 406 to slide to this end of the mounting column 402, and use the first telescopic rod 203 to push the support plate 204 upward, thereby pushing the workpieces to be exposed on the surface of the porous panel 302 one by one;
[0028] Use the internally threaded slider 406 to drive the pushing plate 407 to move, thereby pushing the exposed workpiece to the limiting plate 411 for limiting. Use the second telescopic rod 502 to drive the cutting tool 507 to contact the workpiece downward, and use the second motor 504 to drive the second lead screw 505 to rotate, thereby driving the cutting tool 507 to move and perform cutting work on the workpiece. After cutting one workpiece, take out the cut workpiece, and repeat the above steps to continue cutting another workpiece to achieve automatic feeding;
[0029] Use the negative pressure fan 304 to generate negative pressure in the dust collection box 301, and absorb the waste chips generated by cutting into the dust collection box 301 through the porous panel 302 for collection. The waste chips inside the dust collection box 301 will accumulate at the cleaning door 305 due to the inclination of the inclined plate 303 under the action of gravity, which is convenient for cleaning.
[0030] Through the above steps, by setting the feeding component 2, automatic feeding of the artificial board can be achieved. By setting the cleaning component 3, the workpiece being processed is supported, and the waste chips generated during the cutting process are collected and processed. By setting the limiting component 4, the position of the workpiece is limited, so as to facilitate the cutting operation of the workpiece by setting the cutting component 5.
[0031] The above has described in detail the embodiments of the present invention in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present invention.
Claims
1. A limited cutting device for manufacturing artificial boards, comprising a bottom plate (1); characterized in that: The utility model also comprises a feeding component (2), a cleaning component (3), a limiting component (4) and a cutting component (5); the feeding component (2) is arranged above the bottom plate (1); the cleaning component (3) is arranged above the bottom plate (1); the cleaning component (3) is located on one side of the feeding component (2); the limiting component (4) is arranged above the cleaning component (3); and the root cutting component is arranged above the limiting component (4).
2. The limiting cutting device for manufacturing artificial board according to claim 1 is characterized in that: The loading assembly (2) comprises a vertical plate (201), a guide rail (202), a first telescopic rod (203) and a support plate (204); the vertical plate (201) is fixedly mounted above the bottom plate (1); two groups of vertical plates (201) are provided; the guide rail (202) is fixedly mounted on one side of the vertical plate (201); the first telescopic rod (203) is fixedly mounted above the bottom plate (1); multiple groups of first telescopic rods (203) are provided; the first telescopic rod (203) is located between the two groups of vertical plates (201); the support plate (204) is arranged between the two groups of vertical plates (201); the support plate (204) is slidably connected to the vertical plate (201) through the guide rail (202); and the support plate (204) is fixedly mounted above the first telescopic rod (203).
3. The limiting cutting device for manufacturing artificial board according to claim 2 is characterized in that: The cleaning assembly (3) comprises a dust box (301), a porous panel (302) and an inclined plate (303); the dust box (301) is fixedly mounted above the base; the dust box (301) is located at one end of the vertical plate (201); the dust box (301) is fixedly connected to the vertical plate (201); the porous panel (302) is fixedly mounted above the dust box (301); and the inclined plate (303) is fixedly mounted inside the dust box (301).
4. The limiting cutting device for manufacturing artificial board according to claim 3 is characterized in that: The cleaning assembly (3) further comprises a negative pressure fan (304) and a cleaning door (305); the negative pressure fan (304) is fixedly mounted on one side of the dust collecting box (301); the cleaning door (305) is arranged on one side of the dust collecting box (301); and the cleaning door (305) is rotatably connected to the dust collecting box (301).
5. The limiting cutting device for manufacturing artificial board according to claim 4 is characterized in that: The limiting assembly (4) comprises a mounting plate (401), a mounting column (402), a slide rail (403), a first motor (404) and a first lead screw (405); the mounting plate (401) is fixedly mounted on one side of the porous panel (302); the mounting column (402) is fixedly mounted on one end of the vertical plate (201); the mounting column (402) is provided with two groups; the slide rail (403) is provided on the mounting plate (401) and the mounting column (402). The frame comprises a slide rail (403) and a porous panel (302), the slide rail (403) and a vertical plate (201), a first motor (404) is fixedly mounted on one side of the mounting column (402), a first lead screw (405) is arranged on one side of the mounting plate (401), one end of the first lead screw (405) is rotatably connected to the mounting plate (401), and the other end of the first lead screw (405) is fixedly connected to the output end of the first motor (404).
6. The limiting cutting device for manufacturing artificial board according to claim 5 is characterized in that: The limiting assembly (4) includes an internal thread slider (406), a push plate (407), a damping slide bar (408), a slide rod (409), a connecting block (410) and a limiting plate (411), wherein the internal thread slider (406) is arranged above the slide rail (403), the internal thread slider (406) is slidably connected to the slide rail (403), the first lead screw (405) passes through the internal thread slider (406), and the first lead screw (405) is threadedly connected to the internal thread slider (406). Then, the push plate (407) is fixedly installed between the two groups of internal thread sliders (406), the damping slide bar (408) is arranged above the slide rail (403), the slide bar (409) is fixedly installed above the damping slide bar (408), the slide bar (409) passes through the connecting block (410), the slide bar (409) is slidably connected to the connecting block (410), the connecting block (410) is provided with two groups, and the limit plate (411) is fixedly installed on one side of the connecting block (410).
7. The limiting cutting device for manufacturing artificial board according to claim 4 is characterized in that: The cutting assembly (5) comprises a fixed block (501), a second telescopic rod (502), a mounting bracket (503), a second motor (504), a second lead screw (505), an internal thread mounting block (506) and a cutting knife (507). The fixed blocks (501) are fixedly mounted on both sides of the dust collecting box (301). The second telescopic rod (502) is fixedly mounted above the fixed block (501). The second telescopic rod (502) is provided with two groups. The mounting bracket (503) is fixedly mounted above the second telescopic rod (502). The second motor (504) is arranged on one side of the mounting bracket (503), one end of the second lead screw (505) is fixedly connected to the output end of the second motor (504), the other end of the second lead screw (505) is rotatably connected to the mounting bracket (503), the second lead screw (505) passes through the internal thread mounting block (506), the internal thread mounting block (506) is threadedly connected to the second lead screw (505), the internal thread mounting block (506) passes through the mounting bracket (503), and the cutting knife (507) is arranged on one side of the internal thread mounting block (506).
Citation Information
Patent Citations
Artificial board cutting device
CN217573274U