High-efficiency cutting device with cleaning function
By introducing protective, purification, and cleaning functions into the cutting device, the problems of worker injury and air pollution have been solved, achieving a safe and efficient cutting process.
Patent Information
- Application Number
- CN202310441278.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-23
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-04-23
AI Technical Summary
Existing cutting equipment poses risks of worker injury and air pollution during use, especially due to cutting accidents caused by the protective plate not being closed and the health impact of floating small paper scraps.
A cutting device with protective, purification and cleaning functions was designed, including a protective part, a purification part and a cleaning part. Personnel protection is achieved by a baffle on the sliding seat, and gas purification and liquid filtration are achieved by a telescopic bottle and filter screen system.
It effectively protects workers, prevents cutting accidents, and removes airborne debris through a purification system, ensuring a safe and healthy working environment.
Smart Images

Figure CN116653033B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cutting device technology, and in particular to a high-efficiency cutting device with a cleaning function. Background Technology
[0002] Balancing paper is mainly used for surface decoration of artificial wood boards. It can not only improve the physical and mechanical properties of the wood boards and improve their appearance quality, but also requires the paper to be cut during the production process.
[0003] Although protective plates are currently installed on the paper cutting equipment, some workers, influenced by a sense of complacency, do not close the protective plates before cutting, which can easily lead to worker injuries. At present, small pieces of paper tend to float in the air during the cutting process, and if they are not cleaned up in time, they can affect the health of the workers. Summary of the Invention
[0004] In view of this, the present invention provides a high-efficiency cutting device with a cleaning function, which has a protective part. Through the setting of the protective part, a baffle is slidably connected to the sliding seat. The baffle is located in front of the cutter, and personnel protection can be achieved through the baffle during use. An auxiliary block is welded to the rear end face of the baffle. The auxiliary block is a rectangular block structure. When the baffle is open, the auxiliary block is located below the cutter seat. At this time, the cutting action cannot be achieved, thus achieving personnel protection.
[0005] It also has a purification section, which automatically purifies the gas during the cutting process.
[0006] The purpose and effectiveness of the high-efficiency cutting device with cleaning function of the present invention are achieved by the following specific technical means:
[0007] This invention provides a high-efficiency cutting device with a cleaning function, specifically comprising: a base, a pushing part, a cutting part, a purification part, an auxiliary part, and a protective part; the base is fixed on a workbench; the pushing part consists of a connecting plate, a first sliding rod, a pushing plate, and a first hydraulic telescopic rod, with the connecting plate welded to the top surface of the base; the cutting part consists of a seat, a second sliding rod, a cutter seat, a second hydraulic telescopic rod, a cutter, an L-shaped plate, and a protrusion, with the seat fixed to the base; the purification part consists of a mounting base, a telescopic bottle, a water storage box, an air intake pipe, an exhaust pipe, a filter screen, and a force-bearing rod, with the mounting base fixed to the seat; a telescopic bottle is mounted on the mounting base. The telescopic bottle is equipped with a helical spring for its own elastic extension, and a water storage box is installed on the L-shaped plate. An air intake pipe and an exhaust pipe are connected to the telescopic bottle; the exhaust pipe is connected to the water storage box, and the air intake pipe is fixed to the cutter seat. Both the air intake and exhaust pipes are equipped with one-way valves. When the telescopic bottle retracts, the one-way valve in the air intake pipe is closed, and the one-way valve in the exhaust pipe is open. When the telescopic bottle elastically returns to its original position, the one-way valve in the air intake pipe is open, and the one-way valve in the exhaust pipe is closed. The auxiliary part consists of a mounting arm and a mixing plate, with the mounting arm welded to the top surface of the base. The protective part consists of a sliding seat, a baffle, and an auxiliary block, with the sliding seat fixed to the top surface of the base.
[0008] Furthermore, two first sliding rods are slidably connected to the connecting plate, and the right end face of both first sliding rods is welded to the left end face of the push plate, and the right end face of the push plate is in contact with the paper to be cut.
[0009] A first hydraulic telescopic rod is installed on the connecting plate, and one right end of the first hydraulic telescopic rod is fixed to the push plate.
[0010] Furthermore, two second sliding rods are slidably connected to the base, the top surfaces of the two second sliding rods are welded to the L-shaped plate, and the lower ends of the two second sliding rods are fixed to the top surface of the cutter seat, on which a cutter is installed.
[0011] A second hydraulic telescopic rod is installed on the bottom surface of the base, and one end of the second hydraulic telescopic rod is fixed to the cutter seat.
[0012] Furthermore, a filter screen is installed inside the water storage box, and the filter screen is located above the lower end of the exhaust pipe.
[0013] Furthermore, the right end face of the inner wall of the L-shaped plate is welded with protrusions in a linear array, and the protrusions are semi-cylindrical structures;
[0014] A force-bearing rod is installed on the left end of the telescopic bottle. The left end of the force-bearing rod is polished, and after polishing, the left end of the force-bearing rod has an arc-shaped structure. The left end of the force-bearing rod is in elastic contact with the protrusion. When the second hydraulic telescopic rod extends or retracts, the force-bearing rod and the protrusion are in continuous elastic contact. At this time, the telescopic bottle is in a continuous extension or retraction state.
[0015] Furthermore, a mixing plate is welded onto the mounting arm. The mixing plate is located inside the water storage box. When the second hydraulic telescopic rod extends or retracts, the water storage box moves up and down. At this time, the mixing plate can be used to mix the liquid in the water storage box.
[0016] Furthermore, the mixing plate has a rectangular plate structure and does not contact the inner wall of the water storage box.
[0017] Furthermore, a baffle is slidably connected to the sliding seat, and the baffle is located in front of the cutter.
[0018] Furthermore, an auxiliary block is welded to the rear end face of the baffle. The auxiliary block is a rectangular block structure, and when the baffle is opened, the auxiliary block is located below the cutter seat.
[0019] Beneficial effects
[0020] This application utilizes a protective feature where a baffle is slidably connected to the sliding seat. The baffle is located in front of the cutter, providing personnel protection during use. An auxiliary block, which is a rectangular block structure, is welded to the rear end of the baffle. When the baffle is open, the auxiliary block is located below the cutter seat, preventing the cutting action and thus protecting personnel.
[0021] Furthermore, through the design of the purification section, a telescopic bottle is installed on the mounting base, containing a helical spring for its own elastic extension. A water storage box is installed on the L-shaped plate. An air intake pipe and an exhaust pipe are connected to the telescopic bottle, with the exhaust pipe connected to the water storage box. The air intake pipe is fixed to the cutter seat. Both the air intake and exhaust pipes are equipped with one-way valves. When the telescopic bottle retracts, the one-way valve in the air intake pipe is closed, and the one-way valve in the exhaust pipe is open. When the telescopic bottle elastically returns to its original position, the one-way valve in the air intake pipe is open, and the one-way valve in the exhaust pipe is closed. Therefore, during use, air can be absorbed when the telescopic bottle extends and retracts, and then injected into the water storage box for purification. A filter screen is installed inside the water tank, located above the lower end of the exhaust pipe. During use, the gas emitted from the exhaust pipe can be separated by the filter screen, thus improving the filtration effect between the gas and the water in the water tank. Furthermore, the right end of the inner wall of the L-shaped plate has a linear array of protrusions, which are semi-cylindrical in structure. A force-bearing rod is installed on the left end of the telescopic bottle. One end of the force-bearing rod is polished, resulting in an arc-shaped structure. This left end of the force-bearing rod elastically contacts the protrusion. When the second hydraulic telescopic rod extends or retracts, the force-bearing rod and the protrusion are in continuous elastic contact, causing the telescopic bottle to continuously extend and retract, thus completing gas purification.
[0022] In addition, through the setting of the auxiliary part, because a mixing plate is welded on the mounting arm and the mixing plate is located inside the water storage box, when the second hydraulic telescopic rod extends and retracts, the water storage box is in a vertical displacement state. At this time, the mixing plate can realize the mixing of the liquid in the water storage box, thus improving the filtration effect of the liquid. Attached Figure Description
[0023] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0024] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0025] In the attached diagram:
[0026] Figure 1 This is an axial view of the efficient cutting device with cleaning function of the present invention.
[0027] Figure 2 This is a schematic diagram of the main structure of the high-efficiency cutting device with cleaning function of the present invention.
[0028] Figure 3 This is the present invention. Figure 2 A magnified structural diagram at point A.
[0029] Figure 4 This is a top view of the efficient cutting device with cleaning function of the present invention.
[0030] Figure 5 This is a schematic diagram of the left-side structure of the high-efficiency cutting device with cleaning function of the present invention.
[0031] Figure 6 This is a partial axial view of the high-efficiency cutting device with cleaning function of the present invention.
[0032] Figure 7 This is an axial view structural schematic diagram of the purification part of the present invention.
[0033] Figure 8 This is a schematic diagram of the axial view of the protective structure of the present invention.
[0034] List of image tags
[0035] 1. Base; 2. Pushing part; 201. Connecting plate; 202. First sliding rod; 203. Pushing plate; 204. First hydraulic telescopic rod; 3. Cutting part; 301. Seat; 302. Second sliding rod; 303. Cutter seat; 304. Second hydraulic telescopic rod; 305. Cutter; 306. L-shaped plate; 307. Protrusion; 4. Purification part; 401. Mounting seat; 402. Telescopic bottle; 403. Water storage box; 404. Suction pipe; 405. Exhaust pipe; 406. Filter screen; 407. Force rod; 5. Auxiliary part; 501. Mounting arm; 502. Mixing plate; 6. Protective part; 601. Sliding seat; 602. Baffle; 603. Auxiliary block. Detailed Implementation
[0036] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.
[0037] Example: Please refer to Figures 1 to 8 :
[0038] This invention proposes a high-efficiency cutting device with a cleaning function, comprising: a base 1, a pushing part 2, a cutting part 3, a cleaning part 4, an auxiliary part 5, and a protective part 6;
[0039] Base 1 is fixed on the workbench;
[0040] The pushing part 2 consists of a connecting plate 201, a first sliding rod 202, a pushing plate 203, and a first hydraulic telescopic rod 204. The connecting plate 201 is welded to the top surface of the base 1.
[0041] The cutting part 3 consists of a base 301, a second sliding rod 302, a cutter seat 303, a second hydraulic telescopic rod 304, a cutter 305, an L-shaped plate 306, and a protrusion 307. The base 301 is fixed on the base 1.
[0042] The purification section 4 consists of a mounting base 401, a telescopic bottle 402, a water storage box 403, an air intake pipe 404, an exhaust pipe 405, a filter screen 406, and a force-bearing rod 407. The mounting base 401 is fixed on the base body 301.
[0043] The auxiliary part 5 consists of a mounting arm 501 and a mixing plate 502. The mounting arm 501 is welded to the top surface of the base 301.
[0044] The protective part 6 consists of a sliding seat 601, a baffle 602 and an auxiliary block 603. The sliding seat 601 is fixed to the top surface of the base 1.
[0045] Among them, two first sliding rods 202 are slidably connected on the connecting plate 201. The right end face of the two first sliding rods 202 is welded to the left end face of the push plate 203. The right end face of the push plate 203 is in contact with the paper to be cut.
[0046] A first hydraulic telescopic rod 204 is installed on the connecting plate 201. One right end of the first hydraulic telescopic rod 204 is fixed on the push plate 203. During use, when the first hydraulic telescopic rod 204 extends, the paper can be pushed through the push plate 203.
[0047] Among them, two second sliding rods 302 are slidably connected on the base 301. The top surfaces of the two second sliding rods 302 are welded to the L-shaped plate 306. The lower ends of the two second sliding rods 302 are fixed to the top surface of the cutter seat 303. A cutter 305 is installed on the cutter seat 303.
[0048] A second hydraulic telescopic rod 304 is installed on the bottom surface of the base 301. One end of the second hydraulic telescopic rod 304 is fixed on the cutter seat 303. During use, when the second hydraulic telescopic rod 304 extends, the paper can be cut by the cutter 305.
[0049] Among them, a telescopic bottle 402 is installed on the mounting base 401, and a spiral spring for its own elastic extension is installed inside the telescopic bottle 402. A water storage box 403 is installed on the L-shaped plate 306.
[0050] The telescopic bottle 402 is connected to an air intake pipe 404 and an exhaust pipe 405. The exhaust pipe 405 is connected to a water storage box 403, and the air intake pipe 404 is fixed to the cutter seat 303. Both the air intake pipe 404 and the exhaust pipe 405 are equipped with one-way valves. When the telescopic bottle 402 retracts, the one-way valve in the air intake pipe 404 is closed, and the one-way valve in the exhaust pipe 405 is open. When the telescopic bottle 402 elastically returns to its original position, the one-way valve in the air intake pipe 404 is open, and the one-way valve in the exhaust pipe 405 is closed. Therefore, during use, when the telescopic bottle 402 retracts, air can be absorbed and then injected into the water storage box 403 for purification.
[0051] The water storage box 403 is equipped with a filter screen 406, which is located above the lower end of the exhaust pipe 405. During use, the gas discharged from the exhaust pipe 405 can be separated by the filter screen 406, which can improve the filtration effect between the gas and the water in the water storage box 403.
[0052] Among them, the right end face of the inner wall of the L-shaped plate 306 has protrusions 307 welded in a linear array, and the protrusions 307 are semi-cylindrical structures;
[0053] A force-bearing rod 407 is installed on the left end face of the telescopic bottle 402. The left end of the force-bearing rod 407 is polished, and after polishing, the left end of the force-bearing rod 407 has an arc-shaped structure. The left end of the force-bearing rod 407 is in elastic contact with the protrusion 307. When the second hydraulic telescopic rod 304 extends or retracts, the force-bearing rod 407 and the protrusion 307 are in continuous elastic contact. At this time, the telescopic bottle 402 is in a continuous extension and retraction state, and gas purification can be completed.
[0054] A mixing plate 502 is welded onto the mounting arm 501. The mixing plate 502 is located inside the water storage box 403. When the second hydraulic telescopic rod 304 extends or retracts, the water storage box 403 moves up and down. At this time, the mixing plate 502 can mix the liquid in the water storage box 403, thereby improving the filtration effect of the liquid.
[0055] The mixing plate 502 is a rectangular plate structure. The mixing plate 502 does not contact the inner wall of the water storage box 403, which ensures the mixing effect of the mixing plate 502.
[0056] Among them, a baffle 602 is slidably connected to the sliding seat 601. The baffle 602 is located in front of the cutter 305, and personnel protection can be achieved through the baffle 602 during use.
[0057] Among them, an auxiliary block 603 is welded to the rear end face of the baffle 602. The auxiliary block 603 is a rectangular block structure. When the baffle 602 is opened, the auxiliary block 603 is located below the cutter seat 303. At this time, the cutting action cannot be realized, thus achieving personnel protection.
[0058] The specific usage and function of this embodiment are as follows:
[0059] When in use, control the first hydraulic telescopic rod 204 to push the paper, and control the second hydraulic telescopic rod 304 to extend so that the cutter 305 can complete the cutting action.
[0060] During the cutting process, a telescopic bottle 402 is installed on the mounting base 401, and a spiral spring for its own elastic extension is installed inside the telescopic bottle 402. A water storage box 403 is installed on the L-shaped plate 306. An air intake pipe 404 and an exhaust pipe 405 are connected to the telescopic bottle 402. The exhaust pipe 405 is connected to the water storage box 403, and the air intake pipe 404 is fixed on the cutter seat 303. Both the air intake pipe 404 and the exhaust pipe 405 are equipped with one-way valves. When the telescopic bottle 402 retracts, the one-way valve in the air intake pipe 404 is closed, and the one-way valve in the exhaust pipe 405 is open. When the telescopic bottle 402 elastically returns to its original position, the one-way valve in the air intake pipe 404 is open, and the one-way valve in the exhaust pipe 405 is closed. Therefore, during use, air can be absorbed when the telescopic bottle 402 extends and retracts, and then injected into the water storage box 403 for purification. A filter screen 406 is installed inside the box 403. The filter screen 406 is located above the lower end of the exhaust pipe 405. During use, the gas discharged from the exhaust pipe 405 can be separated by the filter screen 406, which can improve the filtration effect between the gas and the water in the water storage box 403. Furthermore, the right end face of the inner wall of the L-shaped plate 306 has protrusions 307 welded in a linear array. The protrusions 307 have a semi-cylindrical structure. A force-bearing rod 407 is installed on the left end face of the telescopic bottle 402. The left end of the force-bearing rod 407 is polished, and after polishing, the left end of the force-bearing rod 407 has an arc structure. The left end of the force-bearing rod 407 is in elastic contact with the protrusion 307. When the second hydraulic telescopic rod 304 extends or retracts, the force-bearing rod 407 and the protrusion 307 are in continuous elastic contact. At this time, the telescopic bottle 402 is in a continuous extension or retraction state, which can complete the gas purification.
[0061] Meanwhile, because a mixing plate 502 is welded on the mounting arm 501 and the mixing plate 502 is located inside the water storage box 403, when the second hydraulic telescopic rod 304 extends and retracts, the water storage box 403 is in a vertical displacement state. At this time, the mixing plate 502 can achieve the mixing of the liquid in the water storage box 403, which improves the filtration effect of the liquid.
[0062] During maintenance, the baffle 602 needs to be pulled open to the left. At this time, because the baffle 602 is slidably connected to the sliding seat 601, and the baffle 602 is located in front of the cutter 305, personnel protection can be achieved through the baffle 602 during use. An auxiliary block 603 is welded to the rear end face of the baffle 602. The auxiliary block 603 is a rectangular block structure. When the baffle 602 is open, the auxiliary block 603 is located below the cutter seat 303. At this time, the cutting action cannot be achieved, thus achieving personnel protection.
[0063] During use, two first sliding rods 202 are slidably connected to the connecting plate 201. The right end faces of both first sliding rods 202 are welded to the left end face of the push plate 203, and the right end face of the push plate 203 contacts the paper to be cut. A first hydraulic telescopic rod 204 is installed on the connecting plate 201, and one right end of the first hydraulic telescopic rod 204 is fixed to the push plate 203. During use, when the first hydraulic telescopic rod 204 extends, the paper can be pushed through the push plate 203. Also, because the base 301... Two second sliding rods 302 are slidably connected. The top surfaces of both second sliding rods 302 are welded to the L-shaped plate 306. The lower ends of both second sliding rods 302 are fixed to the top surface of the cutter holder 303. A cutter 305 is installed on the cutter holder 303. A second hydraulic telescopic rod 304 is installed on the bottom surface of the base 301. The lower end of the second hydraulic telescopic rod 304 is fixed to the cutter holder 303. During use, when the second hydraulic telescopic rod 304 extends, the paper can be cut by the cutter 305.
Claims
1. A high-efficiency cutting device with cleaning function, characterized in that, The utility model relates to a cutting device for cutting the plastic film, including: Base (1), push part (2), cutting part (3), purification part (4), auxiliary part (5) and protection part (6), the base (1) is fixed on the workbench, push part (2) is by connecting plate (201), first sliding rod (202), push plate (203) and first hydraulic telescopic link (204) are composed, and connecting plate (201) is welded in the base (1) top end surface, cutting part (3) is by seat body (301), second sliding rod (302), cutter seat (303), second hydraulic telescopic link (304), cutter (305), L-shaped plate (306) and protruding (307) are composed, and seat body (301) is fixed on the base (1), purification part (4) is by mounting seat (401), telescopic bottle (402), water storage box (403), suction pipe (404), exhaust pipe (405), filter screen (406) and stress bar (407) are composed, and mounting seat (401) is fixed on seat body (301), mounting seat (401) is installed with telescopic bottle (402), and telescopic bottle (402) is installed with spiral spring for the elastic extension of itself in, and L-shaped plate (306) is installed with water storage box (403), and telescopic bottle (402) is connected with suction pipe (404) and exhaust pipe (405), and exhaust pipe (405) is connected with water storage box (403), and suction pipe (404) is fixed on cutter seat (303), suction pipe (404) and exhaust pipe (405) are all installed with one-way valve, when telescopic bottle (402) contracts, the one-way valve in suction pipe (404) is closed, and the one-way valve in exhaust pipe (405) is opened, when telescopic bottle (402) is elastically reset, the one-way valve in suction pipe (404) is opened, and the one-way valve in exhaust pipe (405) is closed, auxiliary part (5) is by mounting arm (501) and mixing plate (502) are composed, and mounting arm (501) is welded in seat body (301) top end surface, protection part (6) is by sliding seat (601), baffle (602) and auxiliary block (603) are composed, and sliding seat (601) is fixed in the base (1) top end surface, Mounting arm (501) is welded with a mixing plate (502), and the mixing plate (502) is located in the water storage box (403), when the second hydraulic telescopic link (304) telescopes, the water storage box (403) is in the up and down displacement state, at this time, the mixing of the liquid in the water storage box (403) can be realized through the mixing plate (502), The mixing plate (502) is rectangular plate structure, and the mixing plate (502) does not contact with the inner wall of the water storage box (403), The seat body (301) is slidably connected with two second sliding rods (302), the top end surfaces of the two second sliding rods (302) are all welded with the L-shaped plate (306), and the lower ends of the two second sliding rods (302) are all fixed with the top end surface of the cutter seat (303), and the cutter seat (303) is installed with the cutter (305), The bottom end face of the seat body (301) is provided with a second hydraulic telescopic rod (304), and the lower end of the second hydraulic telescopic rod (304) is fixed on the cutter seat (303); The right end face of the inner wall of the L-shaped plate (306) is linearly arrayed with a convex (307) welded thereon, and the convex (307) is a semi-cylindrical structure; The left end face of the telescopic bottle (402) is provided with a force bar (407), and the left end of the force bar (407) is polished, and the left end of the force bar (407) is an arc structure after polishing, and the left end of the force bar (407) is in elastic contact with the convex (307), and the force bar (407) is in continuous elastic contact with the convex (307) when the second hydraulic telescopic rod (304) is telescoped, and the telescopic bottle (402) is in continuous telescopic state.
2. The high efficient cutting device with cleaning function according to claim 1, characterized in that: The connecting plate (201) is provided with two first sliding rods (202) slidingly connected thereto, and the right end faces of the two first sliding rods (202) are welded to the left end face of the pushing plate (203), and the right end face of the pushing plate (203) is in contact with the paper to be cut; The connecting plate (201) is provided with a first hydraulic telescopic rod (204), and the right end of the first hydraulic telescopic rod (204) is fixed on the pushing plate (203).
3. The high efficient cutting device with cleaning function according to claim 1, characterized in that: The water storage box (403) is provided with a filter screen (406) installed therein, and the filter screen (406) is located above the lower end of the exhaust pipe (405).
4. The high efficient cutting device with cleaning function according to claim 1, characterized in that: The sliding seat (601) is provided with a baffle (602) slidingly connected thereto, and the baffle (602) is located in front of the cutter (305).
5. The high efficient cutting device with cleaning function according to claim 1, characterized in that: The rear end face of the baffle (602) is welded with an auxiliary block (603), and the auxiliary block (603) is a rectangular block structure, and when the baffle (602) is opened, the auxiliary block (603) is located below the cutter seat (303).
Citation Information
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