A cutting device for wood door production and a method of use thereof

CN121132823BActive Publication Date: 2026-09-15ZHEJIANG ZHONGHONG SMART HOME CO LTD
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Patent Information

Application Number
CN202511493046.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-15
Estimated Expiration
2045-10-20

AI Technical Summary

Technical Problem

[0004]本发明的目的在于提供一种木门生产用便于收集碎屑的切割装置及使用方法,以解决上述背景技术中提出的木屑四处分散,不仅打扫比较麻烦、木门原料切口端面经常产生毛刺,还需使用者再次对毛刺进行打磨问题

Benefits of technology

[0019]In this invention, after the raw wood door material moves on the top surface of the workbench, it comes into contact with the sides of two inclined plates, causing the inclined plates to deflect. At the same time, the two deflection plates deflect the raw wood door material to contact both sides, ensuring that the raw wood door material moves stably to the longitudinal central axis of the top surface of the workbench. The cutting machine runs clockwise to cut the raw wood door material. Then, the bidirectional motor drives the threaded rod to rotate, causing the nut to drive the frame to slide inside the two rectangular plates. The frame, the arc-shaped storage plate and the pressure plate form a cavity to block the debris generated when the cutting machine cuts the raw wood door material and prevent the debris from splashing.

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Abstract

The application relates to the field of cutting devices, and discloses a cutting device convenient for collecting chippings for wood door production and a use method. The application aims to solve the problem that wood chippings are scattered everywhere, it is troublesome to clean, burrs often occur on the cut end surface of wood door raw materials, and the burrs need to be polished again by the user. The application is composed of a cutting dust removal mechanism, a translation mechanism and a clamping mechanism. When the dust collector cooperates with the hose to inhale, the airflow flows from the outer side of the arc-shaped storage plate to the inner side, and then enters the dust collector, the kinetic energy of the airflow flowing into the inner side of the arc-shaped storage plate is increased when the cutting machine cuts the wood door raw materials to shake out chippings and the chippings generated when the inclined polishing block polishes the burrs, and the residual chippings on the surface of the wood door raw materials are reduced.
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Description

Technical Field

[0001] This invention relates to the field of cutting devices, specifically to a cutting device and method for collecting debris in wooden door production. Background Technology

[0002] Wooden doors, made of wood, can be categorized into many types based on their material, craftsmanship, and purpose. They are widely used in residential and commercial buildings, and come in various styles, including European retro, minimalist modern, American, Mediterranean, Chinese, French romantic, and Italian. Currently, wooden doors require cutting to the appropriate size according to processing needs during manufacturing. This necessitates the use of cutting equipment.

[0003] Before manufacturing various products, wooden doors need to be cut to the appropriate size according to processing requirements. In existing equipment, traditional cutting devices such as electric saws are usually used to cut the boards. Since the cutting process is carried out outdoors without protective measures, the wood chips generated during the cutting process are scattered everywhere. Not only is it troublesome to clean up, but the smaller wood chips can also cause physical discomfort if inhaled by workers, affecting their physical and mental health. In addition, after the equipment cuts the wooden door raw materials, burrs are often generated on the cut surface, which requires the user to grind the burrs again. The debris generated during grinding also needs to be cleaned up, making it inconvenient to use. Summary of the Invention

[0004] The purpose of this invention is to provide a cutting device and method for collecting wood chips in wooden door production, thereby solving the problems mentioned in the background art, such as wood chips being scattered everywhere, making cleaning troublesome, and the wood door raw material cutting edges often producing burrs, requiring users to polish the burrs again. To achieve the above objective, this invention provides the following technical solution: a cutting device for collecting wood chips in wooden door production, comprising a workbench, a cutting groove formed on the top surface of the workbench, a bracket fixedly connected to the top surface of the workbench, a cylinder fixedly connected to the front of the bracket, and a cutting dust removal mechanism fixedly connected to the bottom surface of the cylinder;

[0005] The cutting and dust removal mechanism is provided with a translation mechanism on its side, and a clamping mechanism is provided on the front side of the top surface of the workbench.

[0006] Preferably, the cutting and dust removal mechanism includes a frame, which is fixedly connected to the bottom of the cylinder. An arc-shaped storage plate is hinged to the left side of the frame, and a tension spring is fixedly connected to the side of the arc-shaped storage plate and the lower side of the frame. Multiple barrier screens are fixedly connected to the inner side of the arc-shaped storage plate at an incline, and the aperture of the multiple barrier screens decreases sequentially from back to front, so as to perform multi-stage screening of debris.

[0007] A flexible hose is provided on the front side of the inner wall of the arc-shaped storage plate. One end of the flexible hose extends to the outside of the frame and is fixedly connected to a vacuum cleaner. The vacuum cleaner is fixedly connected to the top surface of the frame. A cutting machine is provided on the side of the frame.

[0008] Preferably, a pressure plate is hinged to the right side of the bottom surface of the frame, and two pressure blocks are hinged to the bottom surface of the pressure plate. The two pressure blocks are respectively distributed on the front and rear sides of the cutting machine. Rollers are provided on the bottom surface of the pressure blocks. A return spring is fixedly connected to the side of the pressure block and the inner side of the pressure plate. A spring telescopic rod is hinged to the side of the pressure plate and the bottom surface of the frame.

[0009] Preferably, a micro motor is fixedly connected to the side of the arc-shaped storage plate, a grinding block is fixedly sleeved on the side of the rotating shaft of the micro motor, annular cut surfaces are opened on both the front and rear sides of the grinding block, an arc-shaped air guide plate is fixedly connected to the annular cut surface, and an inclined grinding block is fixedly connected to the side of the rotating shaft of the micro motor.

[0010] Preferably, the translation mechanism includes a bidirectional motor, which is fixedly connected to two rectangular plates. The two rectangular plates are slidably connected to the front and rear sides of the frame, respectively. The top surfaces of the two rectangular plates are fixedly connected to the bottom end of the cylinder. One end of the rotating shaft of the bidirectional motor is fixedly connected to a threaded rod, and a nut is threadedly connected to the side of the threaded rod, and the nut is fixedly connected to the top surface of the frame.

[0011] Preferably, the clamping mechanism includes a deflection plate hinged to the top surface of the worktable, an inclined plate fixedly connected to the side of the deflection plate, a helical spring fixedly connected to the side of the inclined plate, and the end of the helical spring away from the inclined plate fixedly connected to the top surface of the worktable.

[0012] Preferably, the deflection plate and the inclined plate are fixedly connected in a Y-shape, and the edges of both the deflection plate and the inclined plate are rounded.

[0013] Preferably, the method of using the cutting device for easy collection of debris in wooden door production includes the following steps:

[0014] S1: When producing wooden doors, the user places the raw wooden door material on the top surface of the workbench. After the raw material moves on the top surface of the workbench, it comes into contact with the sides of the two inclined plates. This causes the inclined plates to deflect, and at the same time, the two deflection plates deflect the raw material on both sides, ensuring that the raw material moves stably to the longitudinal central axis of the top surface of the workbench. Then, the cylinder extends and moves the rectangular plate down, fixing the raw material against the top surface of the workbench. The cutting machine runs clockwise to cut the raw material. Then, the bidirectional motor drives the threaded rod to rotate, causing the nut to drive the frame to slide inside the two rectangular plates. The frame, the arc-shaped storage plate and the pressure plate form a cavity to block the debris generated when the cutting machine cuts the raw material.

[0015] S2: As the cutting machine rotates clockwise to cut the wooden door material, the debris generated during the horizontal cutting process splashes to the left and hits the inside of the arc-shaped storage plate. The debris is then separated by multiple barrier screens. Since the aperture of the barrier screens decreases from back to front, the debris is separated according to its size. Then, a vacuum cleaner and a hose are used to suck up the air, blocking some larger debris from the barrier screens and reducing the possibility of hose blockage.

[0016] S3: When the bidirectional motor and the threaded rod work together to move the cutting machine to the right, the micro motor drives the grinding block and the tilting grinding block to rotate simultaneously. The tilting grinding block grinds the burrs on the cut end face of the wood door material. Because the tilting grinding block is tilted, it can convey the grinding debris to the annular cut end face when grinding the cut end face of the wood door material. Then, when the grinding block drives the air guide plate to rotate and exhaust it to its surroundings, it has the tendency to spirally draw in the gas on both sides and discharge it in an annular shape. Thus, the debris generated when the grinding block grinds the burrs on the end face of the wood door material is drawn into the air guide plate and thrown to the right into the airflow inside the arc-shaped storage plate of the wood door material cut by the cutting machine. It then enters the arc-shaped storage plate with the airflow of the debris thrown out by the cutting machine. After being filtered by the barrier screen, the debris is drawn into the vacuum cleaner. The user does not need to grind the burrs of the wood door again and deal with the debris generated when grinding the burrs.

[0017] S4. When the vacuum cleaner is used in conjunction with the hose for suction, the airflow flows evenly from the outside of the arc-shaped storage plate into its inside, and then into the vacuum cleaner. This increases the kinetic energy of the debris thrown out by the cutting machine when cutting the wood door material and the debris generated when the inclined sanding block polishes the burrs, which flows to the inside of the arc-shaped storage plate, reducing the residue of debris on the surface of the wood door material.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0019] In this invention, after the raw wood door material moves on the top surface of the workbench, it comes into contact with the sides of two inclined plates, causing the inclined plates to deflect. At the same time, the two deflection plates deflect the raw wood door material to contact both sides, ensuring that the raw wood door material moves stably to the longitudinal central axis of the top surface of the workbench. The cutting machine runs clockwise to cut the raw wood door material. Then, the bidirectional motor drives the threaded rod to rotate, causing the nut to drive the frame to slide inside the two rectangular plates. The frame, the arc-shaped storage plate and the pressure plate form a cavity to block the debris generated when the cutting machine cuts the raw wood door material and prevent the debris from splashing.

[0020] In this invention, because the cutting machine rotates clockwise to cut the wooden door material, the debris generated during the horizontal cutting motion of the cutting machine splashes to the left and hits the inner side of the arc-shaped storage plate. Then, multiple barrier screens separate the debris. Since the aperture of the multiple barrier screens decreases from back to front, the debris is separated according to its volume. Then, a vacuum cleaner and a hose work together to suck up air, blocking some larger debris with the barrier screens and reducing the possibility of hose blockage.

[0021] In this invention, when the bidirectional motor and threaded rod drive the cutting machine to move to the right, the micro motor drives the grinding block and the inclined grinding block to rotate simultaneously. The inclined grinding block grinds the burrs on the cut end face of the wooden door material. Because the inclined grinding block is set at an angle, it has the effect of conveying grinding debris to the annular cut end face when grinding the cut end face of the wooden door material. Then, when the grinding block drives the air guide plate to rotate and exhaust air around it, it has the tendency to spirally draw in the air on both sides and discharge it in an annular shape. Thus, the debris generated when the grinding block grinds the burrs on the end face of the wooden door material is drawn into the air guide plate and thrown to the right into the airflow inside the arc-shaped storage plate of the wooden door material thrown out by the cutting machine. It then enters the inner side of the arc-shaped storage plate with the airflow of debris thrown out by the cutting machine. After being filtered by the barrier screen, the debris is sucked into the vacuum cleaner. The user does not need to grind the wooden door burrs again and deal with the debris generated during the grinding process.

[0022] In this invention, when the vacuum cleaner and hose are used for suction, the airflow flows evenly from the outside of the arc-shaped storage plate to the inside, and then into the vacuum cleaner. This increases the kinetic energy of the debris generated when the cutting machine throws out the wood door material and the debris generated when the inclined grinding block polishes the burrs, so as to flow to the inside of the arc-shaped storage plate and reduce the residue of debris on the surface of the wood door material. Attached Figure Description

[0023] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0024] Figure 2 This is a schematic diagram of the first partial three-dimensional structure of the present invention;

[0025] Figure 3 This is a schematic diagram of the second partial three-dimensional structure of the present invention;

[0026] Figure 4 This is a three-dimensional structural diagram of the cutting and dust removal mechanism of the present invention;

[0027] Figure 5 This is a three-dimensional structural diagram of the arc-shaped storage plate of the present invention;

[0028] Figure 6 For the present invention Figure 5 Enlarged view of the structure at point A in the middle.

[0029] In the diagram: 1. Workbench; 2. Cutting groove; 3. Cylinder; 4. Cutting dust removal mechanism; 41. Frame; 42. Arc-shaped storage plate; 421. Micro motor; 422. Grinding block; 423. Annular cut surface; 424. Arc-shaped air guide plate; 425. Inclined grinding block; 43. Barrier screen; 44. Hose; 45. Vacuum cleaner; 46. Cutting machine; 47. Tension spring; 48. Pressure block; 49. Roller; 410. Spring telescopic rod; 411. Pressure plate; 412. Return spring; 5. Bracket; 6. Translation mechanism; 61. Bidirectional motor; 62. Threaded rod; 63. Rectangular plate; 7. Clamping mechanism; 71. Deflection plate; 72. Inclined plate; 73. Helical spring. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0031] Please see Figures 1 to 6 The present invention provides a technical solution: a cutting device for easy collection of debris in wooden door production, including a workbench 1, a cutting groove 2 on the top surface of the workbench 1, a support 5 fixedly connected to the top surface of the workbench 1, a cylinder 3 fixedly connected to the front of the support 5, and a cutting dust removal mechanism 4 fixedly connected to the bottom surface of the cylinder 3.

[0032] The cutting and dust removal mechanism 4 is provided with a translation mechanism 6 on its side, and the workbench 1 is provided with a clamping mechanism 7 on its front side.

[0033] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6As shown, the cutting and dust removal mechanism 4 includes a frame 41, which is fixedly connected to the bottom of the cylinder 3. An arc-shaped storage plate 42 is hinged to the left side of the frame 41, and a tension spring 47 is fixedly connected to the side of the arc-shaped storage plate 42 and the lower side of the frame 41. Multiple barrier screens 43 are fixedly connected to the inner side of the arc-shaped storage plate 42 at an incline, and the aperture of the multiple barrier screens 43 decreases from back to front, so as to perform multi-stage screening of the debris. By pulling the arc-shaped storage plate 42, it is easy to take out the large pieces of debris stored on the inner side of the barrier screens 43 and the arc-shaped storage plate 4.

[0034] A flexible hose 44 is installed on the front side of the inner wall of the arc-shaped storage plate 42. One end of the flexible hose 44 extends to the outside of the frame 41 and is fixedly connected to a vacuum cleaner 45. The vacuum cleaner 45 is fixedly connected to the top surface of the frame 41, and a cutter 46 is installed on the side of the frame 41. As the cutter 46 rotates clockwise to cut the wooden door material, the debris generated by the cutter 46 during horizontal cutting splashes to the left and hits the inner side of the arc-shaped storage plate 42. The debris is then separated by multiple barrier screens 43. Since the aperture of the multiple barrier screens 43 decreases from back to front, the debris is separated according to its volume. Then, the vacuum cleaner 45 works in conjunction with the flexible hose 44 to suck up air, blocking some larger debris with the barrier screens 43 and reducing the possibility of the flexible hose 44 becoming clogged.

[0035] In this embodiment, as Figure 1 and Figure 2 As shown, a pressure plate 411 is hinged to the right side of the bottom surface of the frame 41. Two pressure blocks 48 are hinged to the bottom surface of the pressure plate 411, and the two pressure blocks 48 are respectively distributed on the front and rear sides of the cutting machine 46. Rollers 49 are provided on the bottom surface of the pressure blocks 48. A return spring 412 is fixedly connected to the side of the pressure block 48 and the inner side of the pressure plate 411. A spring telescopic rod 410 is hinged to the side of the pressure plate 411 and the bottom surface of the frame 41. The two pressure blocks 48 drive the rollers 49 to slide on both sides of the cutting machine 46, so that the wood fibers at the cut are compressed, avoiding the deflection and adhesion of the wood surface fibers to the cut of the wood door material when the cutting machine 46 cuts the wood door material, thus preventing burrs from being generated.

[0036] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown, a micro motor 421 is fixedly connected to the side of the arc-shaped storage plate 42, and a grinding block 422 is fixedly sleeved on the side of the rotating shaft of the micro motor 421. Both the front and rear sides of the grinding block 422 are provided with annular cut surfaces 423, and an arc-shaped air guide plate 424 is fixedly connected to the annular cut surfaces 423. An inclined grinding block 425 is fixedly connected to the side of the rotating shaft of the micro motor 421.

[0037] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown, the translation mechanism 6 includes a bidirectional motor 61, which is fixedly connected to two rectangular plates 63. The two rectangular plates 63 are slidably connected to the front and rear sides of the frame 41, respectively. The top surfaces of the two rectangular plates 63 are fixedly connected to the bottom end of the cylinder 3. One end of the rotating shaft of the bidirectional motor 61 is fixedly connected to a threaded rod 62. The side of the threaded rod 62 is threaded with a nut, and the nut is fixedly connected to the top surface of the frame 41.

[0038] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown, the clamping mechanism 7 includes a deflection plate 71, which is hinged to the top surface of the worktable 1. An inclined plate 72 is fixedly connected to the side of the deflection plate 71, and a coil spring 73 is fixedly connected to the side of the inclined plate 72. The end of the coil spring 73 away from the inclined plate 72 is fixedly connected to the top surface of the worktable 1.

[0039] In this embodiment, as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown, the deflection plate 71 and the inclined plate 72 are fixedly connected in a Y-shape, and the edges of both the deflection plate 71 and the inclined plate 72 are rounded. After the wooden door material moves on the top surface of the workbench 1, it comes into contact with the sides of the two inclined plates 72, causing the inclined plates 72 to deflect. At the same time, the two deflection plates 71 deflect the wooden door material and bring it into contact with both sides, ensuring that the wooden door material moves stably to the longitudinal central axis of the top surface of the workbench 1.

[0040] The method of use and advantages of the present invention: The method of using the cutting device for easy collection of debris in wooden door production is as follows:

[0041] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 As shown:

[0042] S1: When the user is producing wooden doors, the wooden door raw material is placed on the top surface of the workbench 1. After the wooden door raw material moves on the top surface of the workbench 1, it comes into contact with the sides of the two inclined plates 72. The inclined plates 72 are deflected, and the two deflection plates 71 deflect the sides of the wooden door raw material to ensure that the wooden door raw material moves stably to the longitudinal central axis of the top surface of the workbench 1. Then, the cylinder 3 extends and drives the rectangular plate 63 to move down, fixing the wooden door raw material to the top surface of the workbench 1. The cutting machine 46 runs clockwise to cut the wooden door raw material. Then, the bidirectional motor 61 drives the threaded rod 62 to rotate, so that the nut drives the frame 41 to slide inside the two rectangular plates 63. The frame 41, the arc-shaped storage plate 42 and the pressure plate 411 form a cavity to block the debris generated when the cutting machine 46 cuts the wooden door raw material.

[0043] S2: As the cutting machine 46 rotates clockwise to cut the wooden door material, the debris generated by the cutting machine 46 during horizontal cutting splashes to the left and hits the inner side of the arc-shaped storage plate 42. Then, multiple barrier screens 43 separate the debris. Since the aperture of the multiple barrier screens 43 decreases from back to front, the debris is separated according to its volume. Then, the vacuum cleaner 45 and the hose 44 work together to suck up air, blocking some larger debris with the barrier screens 43 and reducing the possibility of the hose 44 getting clogged.

[0044] S3: When the bidirectional motor 61 and the threaded rod 62 work together to move the cutting machine 46 to the right, the micro motor 421 drives the grinding block 422 and the inclined grinding block 425 to rotate simultaneously. The inclined grinding block 425 grinds the burrs on the cut end face of the wood door material. Because the inclined grinding block 425 is inclined, it has the effect of conveying grinding debris to the end face of the annular cut surface 423 when grinding the cut end face of the wood door material. Then, when the grinding block 422 drives the air guide plate 424 to rotate and exhaust air around it, its own... The device has a tendency to spirally draw in the air from both sides and discharge it in a ring shape around it. This allows the debris generated when the sanding block 422 sands the burrs on the end face of the wooden door material to be drawn into the air guide plate 424 and thrown to the right into the airflow inside the arc-shaped storage plate 42 as the cutting machine 46 cuts the wooden door material. The debris is then carried into the arc-shaped storage plate 42 by the airflow of the cutting machine 46. After being filtered by the barrier screen 43, the debris is drawn into the vacuum cleaner 45. This eliminates the need for the user to sand the wooden door burrs again and deal with the debris generated during sanding.

[0045] S4. When the vacuum cleaner 45 and the hose 44 work together to suck up air, the airflow flows evenly from the outside of the arc-shaped storage plate 42 into its inside, and then into the vacuum cleaner 45. This increases the kinetic energy of the debris thrown out by the cutter 46 when cutting the wood door material and the debris generated by the inclined sanding block 425 when sanding burrs, which flows to the inside of the arc-shaped storage plate 42, thus reducing the residue of debris on the surface of the wood door material.

[0046] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cutting device for easy collection of debris in wooden door production, comprising a workbench (1), characterized in that: The top surface of the workbench (1) is provided with a cutting groove (2), the top surface of the workbench (1) is fixedly connected with a bracket (5), and the front side of the bracket (5) is fixedly connected with a cylinder (3), and the bottom surface of the cylinder (3) is fixedly connected with a cutting dust removal mechanism (4). The cutting and dust removal mechanism (4) is provided with a translation mechanism (6) on its side, and the workbench (1) is provided with a clamping mechanism (7) on its front side. The cutting and dust removal mechanism (4) includes a frame (41), which is fixedly connected to the bottom end of the cylinder (3). An arc-shaped storage plate (42) is hinged to the left side of the frame (41), and a tension spring (47) is fixedly connected to the side of the arc-shaped storage plate (42) and the lower side of the frame (41). Multiple barrier screens (43) are fixedly connected to the inner side of the arc-shaped storage plate (42) at an incline. The aperture of the multiple barrier screens (43) decreases from back to front, so as to perform multi-stage screening of the debris. A flexible hose (44) is provided on the front side of the inner wall of the arc-shaped storage plate (42). One end of the flexible hose (44) extends to the outside of the frame (41) and is fixedly connected to a vacuum cleaner (45). The vacuum cleaner (45) is fixedly connected to the top surface of the frame (41). A cutting machine (46) is provided on the side of the frame (41). A micro motor (421) is fixedly connected to the side of the arc-shaped storage plate (42). A grinding block (422) is fixedly sleeved on the side of the rotating shaft of the micro motor (421). Annular cut surfaces (423) are opened on both the front and rear sides of the grinding block (422). An arc-shaped air guide plate (424) is fixedly connected to the annular cut surface (423). An inclined grinding block (425) is fixedly connected to the side of the rotating shaft of the micro motor (421).

2. The cutting device for easy collection of debris in wooden door production according to claim 1, characterized in that: A pressure plate (411) is hinged to the right side of the bottom surface of the frame (41). Two pressure blocks (48) are hinged to the bottom surface of the pressure plate (411), and the two pressure blocks (48) are respectively distributed on the front and rear sides of the cutting machine (46). Rollers (49) are provided on the bottom surface of the pressure blocks (48). A return spring (412) is fixedly connected to the side of the pressure block (48) and the inner side of the pressure plate (411). A spring telescopic rod (410) is hinged to the side of the pressure plate (411) and the bottom surface of the frame (41).

3. The cutting device for easy collection of debris in wooden door production according to claim 2, characterized in that: The translation mechanism (6) includes a bidirectional motor (61), which is fixedly connected to two rectangular plates (63). The two rectangular plates (63) are slidably connected to the front and rear sides of the frame (41). The top surfaces of the two rectangular plates (63) are fixedly connected to the bottom end of the cylinder (3). One end of the rotating shaft of the bidirectional motor (61) is fixedly connected to a threaded rod (62). The side of the threaded rod (62) is threaded with a nut, and the nut is fixedly connected to the top surface of the frame (41).

4. The cutting device for easy collection of debris in wooden door production according to claim 3, characterized in that: The clamping mechanism (7) includes a deflection plate (71) hinged to the top surface of the workbench (1). An inclined plate (72) is fixedly connected to the side of the deflection plate (71). A helical spring (73) is fixedly connected to the side of the inclined plate (72). The end of the helical spring (73) away from the inclined plate (72) is fixedly connected to the top surface of the workbench (1).

5. The cutting device for easy collection of debris in wooden door production according to claim 4, characterized in that: The deflection plate (71) and the inclined plate (72) are fixedly connected in a Y-shape, and the edges of the deflection plate (71) and the inclined plate (72) are both rounded.

6. The method of using the cutting device for easy collection of debris in wooden door production according to claim 5 includes the following steps: S1: When the user is producing wooden doors, he places the raw material of the wooden door on the top surface of the workbench (1). After the raw material of the wooden door moves on the top surface of the workbench (1), it comes into contact with the sides of the two inclined plates (72). At the same time, the inclined plates (72) are deflected and the two deflection plates (71) deflect to make contact with the sides of the raw material of the wooden door, so that the raw material of the wooden door moves stably to the longitudinal central axis of the top surface of the workbench (1). Then, the cylinder (3) extends and drives the rectangular plate (63) to move down, and fixes the raw material of the wooden door to the top surface of the workbench (1). The cutting machine (46) runs clockwise to cut the raw material of the wooden door. Then, the bidirectional motor (61) drives the threaded rod (62) to rotate, so that the nut drives the frame (41) to slide inside the two rectangular plates (63). The frame (41), the arc storage plate (42) and the pressure plate (411) form a cavity to block the debris generated when the cutting machine (46) cuts the raw material of the wooden door. S2: As the cutting machine (46) rotates clockwise to cut the wooden door material, the debris generated by the cutting machine (46) during horizontal cutting splashes to the left and hits the inner side of the arc-shaped storage plate (42). Then, the debris is separated by multiple barrier screens (43). Since the aperture of the multiple barrier screens (43) decreases from back to front, the debris is separated according to its volume. Then, the vacuum cleaner (45) and the hose (44) work together to suck up air, blocking some larger debris with the barrier screens (43) and reducing the possibility of the hose (44) getting clogged. S3: When the bidirectional motor (61) and the threaded rod (62) work together to drive the cutting machine (46) to move to the right, the micro motor (421) drives the grinding block (422) and the inclined grinding block (425) to rotate simultaneously. The inclined grinding block (425) grinds the burrs on the cut end face of the wood door material after cutting. Since the inclined grinding block (425) is set at an angle, it has the effect of conveying the grinding debris to the end face of the annular cut surface (423) when grinding the cut end face of the wood door material. Then, the grinding block (422) drives the air guide plate (424) to rotate and exhaust air around it. It has the tendency to spirally draw in the gas on both sides and discharge it in a ring shape around it. Then, it draws the debris generated when the grinding block (422) grinds the burrs on the end face of the wooden door material into the air guide plate (424) and throws it to the right into the airflow inside the arc storage plate (42) of the cutting machine (46) cutting the wooden door material. It also follows the airflow of the debris thrown out by the cutting machine (46) into the inside of the arc storage plate (42). Then, after the debris is filtered by the barrier screen (43), it is drawn into the vacuum cleaner (45). The user does not need to grind the wooden door burrs again and deal with the debris generated when grinding the burrs. S4. When the vacuum cleaner (45) and hose (44) work together to suck up air, the airflow flows evenly from the outside of the arc-shaped storage plate (42) into its inside, and then into the vacuum cleaner (45). This increases the kinetic energy of the debris thrown out by the cutter (46) when cutting the wood door material and the debris generated by the inclined sanding block (425) when sanding burrs, flowing to the inside of the arc-shaped storage plate (42), and reducing the residue of debris on the surface of the wood door material.

Citation Information

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