Automatic wood board cutting equipment

By designing the conveying, shaking, and auxiliary cutting units of the automatic wood board cutting equipment, the problems of debris cleaning and surface warping deformation during the cutting process of wood fireproof boards were solved, achieving high-quality and high-precision cutting results.

CN121625263AInactive Publication Date: 2026-03-10JIANGSU QIUSHI WOOD IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-03-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the customized cutting process of existing wood fireproof boards, cutting debris is difficult to clean, resulting in surface scratches. Furthermore, warping and deformation may occur during the cutting process, affecting cutting accuracy.

Method used

An automatic wood board cutting device was designed, comprising a conveying unit, a shaking unit, and an auxiliary cutting unit. The conveying unit continuously conveys the wood fireproof board, the shaking unit shakes it up and down to remove debris, and the auxiliary cutting unit flattens the board surface to ensure cutting quality and accuracy.

Benefits of technology

It effectively removes cutting debris, prevents surface scratches, ensures cutting quality, and improves cutting accuracy through the flattening function, solving the problems of warping and deformation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of wood board cutting, in particular to wood board automatic cutting equipment which comprises a base, a cutting machine is distributed on the right side above the base, a conveying unit is installed in the middle of the upper end of the base, a shaking unit is further installed at the upper end of the base, and an auxiliary cutting unit is installed on the right side of the upper end of the base. The cutting machine is mounted on the auxiliary cutting unit; according to the continuous cutting device for the wood fireproof plate, the wood fireproof plate can be continuously conveyed to the corresponding position of the cutting machine, incomplete cutting-off type customized cutting machining is conducted on the wood fireproof plate, continuous cutting of the wood fireproof plate is achieved, chippings generated after cutting of the wood fireproof plate can be shaken off, and the cutting efficiency of the wood fireproof plate is improved. And meanwhile, the cutting area of the wood fireproof plate can be leveled, and the cutting precision of the wood fireproof plate is ensured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of wood board cutting, in particular to an automatic wood board cutting equipment. BACKGROUND

[0002] The wood fireproof board is also called high-pressure decorative fireproof board, which is a kind of laminated decorative board made by special process and is widely used in indoor decoration field. In the actual production process, the wood fireproof board usually needs to be customized and cut according to the specific application requirements. In the prior art, the wood fireproof board is usually fixed first, and then the continuous customized cutting of the wood fireproof board is carried out by controlling the cutting machine.

[0003] The prior art has the following problems in the customized cutting of the wood fireproof board: 1. During the continuous customized cutting of the wood fireproof board, the cutting debris cannot be cleaned, and a large amount of debris is accumulated in the cutting area of the wood fireproof board, which may scratch the surface of the wood fireproof board during cutting, thereby reducing the cutting quality of the wood fireproof board; 2. The wood fireproof board may be warped or deformed during cutting, which may result in uneven surface of the wood fireproof board, thereby reducing the cutting precision of the wood fireproof board. SUMMARY

[0004] In order to solve the above technical problems, the present application adopts the following technical scheme, a kind of wooden board automatic cutting equipment, including base, cutting machine is distributed on the right side of base upper side, conveying unit is installed in the middle of base upper end, base upper end is also installed with shaking unit, auxiliary cutting unit is installed on the right side of base upper end, and the cutting machine is installed on auxiliary cutting unit;The conveying unit includes conveying plate that is slidably installed in the middle of base upper end, and driving element is connected between conveying plate and base, two clamping elements that are symmetrically arranged are installed on the upper end of conveying plate, and elastic element is installed on the left side of auxiliary cutting unit corresponding to the position of conveying plate on the upper end of base;The shaking unit includes two front and rear symmetrically arranged synchronous plates that are slidably installed on the left side of base upper end, and synchronous element is jointly installed between two synchronous plates and base, and transmission plate is slidably installed on the opposite side of two synchronous plates by a plurality of top extension springs extending along the left-right direction and uniformly arranged, and shaking plate is installed on the opposite side of two transmission plates by a plurality of elastic extension structure's matching rods extending along the left-right direction and uniformly arranged, and the left side of the front and rear ends of conveying plate and synchronous plate are jointly installed with cooperation element for driving transmission plate to shake up and down;The auxiliary cutting unit includes U-shaped plate fixedly installed on the right side of base upper end, square plate is installed on the lower end of the horizontal section of U-shaped plate by electric push rod, square plate lower end is connected with cutting machine, locking plate of elastic extension structure is installed on the right side of square plate lower end, and flattening element is installed on the left side of square plate lower end.

[0005] Preferably, the clamping element includes two left and right connecting plates, the left connecting plate is fixedly connected with the conveying plate, and the right connecting plate is slidably connected with the conveying plate by a return spring, the opposite sides of the two connecting plates are slidably installed with L-shaped clamping plates, the horizontal section of the clamping plate is threadedly connected with an adjusting screw, and the adjusting screw is rotatably connected with the connecting plate.

[0006] Preferably, the cooperation element includes a synchronous rod of extension structure fixedly installed on the left side of the front and rear ends of the conveying plate, the end of the synchronous rod away from the conveying plate is slidably penetrated through the base and slidably connected with the corresponding synchronous plate, the upper end of the synchronous plate away from the conveying plate is fixedly installed with a cooperation block, and the upper right side of the cooperation block is provided as an inclined surface.

[0007] Preferably, the lower end of the transmission plate near the middle of the base is fixedly installed with a plurality of left and right uniformly arranged L-shaped cooperation rods, the horizontal section of the cooperation rod is used to cooperate with the inclined surface of the cooperation block to drive the transmission plate to move upward, the end of the horizontal section of the cooperation rod near the middle of the base is provided as an elastic extension structure, and the right side of the end of the horizontal section of the cooperation rod near the middle of the base is provided as an inclined surface.

[0008] Preferably, two said synchronization plates are fixedly installed with two left-right symmetrical fixing rods on opposite sides, the ends of the fixing rods away from the synchronization plates are fixedly installed with separation plates, the lower ends of the separation plates are vertically arranged, the upper ends of the separation plates are arranged in an inclined structure inclined towards the middle part of the base, and the left-right arranged two fixing rods are installed on the opposite sides of the vertical structures of the two corresponding separation plates.

[0009] Preferably, the middle parts of the left and right ends of the shaking plate are fixedly installed with cylindrical blocks, when the shaking plate moves from top to bottom, the cylindrical blocks are used to drive the two shaking plates to move away from each other in cooperation with the inclined structures of the separation plates.

[0010] Preferably, the conveying plate is provided with two front-rear symmetrical square holes, the front-rear inner walls of the square holes are fixedly installed with a plurality of left-right uniformly arranged pressing blocks, the lower right sides of the pressing blocks are arranged as inclined surfaces, and the upper right sides of the base are provided with a plurality of uniformly arranged chip removal holes corresponding to the positions of the conveying plate.

[0011] Preferably, the elastic member comprises two front-rear symmetrical elastic rods slidingly installed on the upper end of the base, the elastic rods are arranged in the square holes of the corresponding conveying plates, the lower ends of the elastic rods are connected with the base through connecting springs, the upper ends of the elastic rods are fixedly installed with cooperation spring rods on the front-rear two sides, the cooperation spring rods are used to drive the elastic rods to move downward in cooperation with the inclined surfaces of the pressing blocks, and the right ends of the two cooperation spring rods on the opposite sides are arranged as inclined surfaces.

[0012] Preferably, the flattening member comprises two front-rear symmetrical inclined rods hingedly arranged on the lower left side of the square plate, the lower ends of the inclined rods are arranged in an inclined manner to the left, and the lower ends of the two inclined rods are hingedly connected with a flattening plate.

[0013] Preferably, the upper end of the flattening plate is installed with a plurality of front-rear uniformly arranged pressing spring rods, the upper ends of the pressing spring rods are slidingly connected with the square plate through guide springs.

[0014] The beneficial effects of the present application are as follows: 1. The wood fireproof plate is continuously conveyed to the corresponding position of the cutting machine through the conveying unit, and the wood fireproof plate is shaken up and down through the shaking unit, so that the debris generated after the wood fireproof plate is cut once can be shaken off, thereby preventing the debris from scratching the surface of the wood fireproof plate and ensuring the cutting quality of the scratched wood fireproof plate.

[0015] 2. The lower pressing blocks and the cooperation spring rods are arranged to drive the elastic rods to move upward to the left side of the cutting area of the wood fireproof plate after cutting, so that the debris generated after the wood fireproof plate is cut once can be shaken off completely, and the cutting quality of the subsequent cutting of the wood fireproof plate is further ensured.

[0016] 3、When cutting the wood fireproof plate, the right side of the wood fireproof plate cutting area is fixed by the locking plate, and the left side of the wood fireproof plate cutting area is pulled flat to the left by the flattening piece, so that the curved and uneven surface of the wood fireproof plate cutting area can be removed, and the precision of continuous customized cutting of the wood fireproof plate can be ensured.

[0017] 4、When the wood fireproof plate cutting area is flattened, the pressure of the flattening plate on the wood fireproof plate is gradually increased by the pressure spring rod, so that the flattening plate can completely flatten the wood fireproof plate, and the precision of continuous customized cutting of the wood fireproof plate can be ensured. BRIEF DESCRIPTION OF DRAWINGS

[0018] The application will be further described below in combination with the drawings and examples.

[0019] Figure 1 is a perspective view of the application.

[0020] Figure 2 is a perspective view of the application after cutting the base and the U-shaped plate.

[0021] Figure 3 is a perspective view of the conveying unit and the shaking unit after cutting the base.

[0022] Figure 4 is a perspective view of the spring rod after cutting the elastic rod.

[0023] Figure 5 is a left view of the conveying unit and the shaking unit after cutting the left side of the base.

[0024] Figure 6 is a perspective view of the shaking unit and the corresponding matching part of the application.

[0025] Figure 7 is a perspective view of the auxiliary cutting unit part structure and the cutting machine after cutting the square plate.

[0026] Figure 8 is a structure diagram of the wood fireproof plate processing of the application.

[0027] Figure 9 is a structure diagram of the wood fireproof plate after cutting.

[0028] Mark No. : 1, base; 11, elastic element; 111, elastic rod; 112, connecting spring; 113, matching spring rod; 2, conveying unit; 21, conveying plate; 211, lower pressing block; 22, driving element; 23, clamping element; 231, connecting plate; 232, reset spring; 233, clamping plate; 234, adjusting screw; 24, matching element; 241, synchronous rod; 242, matching block; 3, shaking unit; 31, synchronous plate; 311, fixed rod; 312, separation plate; 32, synchronous element; 33, top extension spring; 34, transmission plate; 341, matching rod; 35, abutting rod; 36, shaking plate; 361, cylindrical block; 4, auxiliary cutting unit; 41, U-shaped plate; 42, electric push rod; 43, square plate; 44, locking plate; 45, flattening element; 451, inclined rod; 452, flattening plate; 453, pressurizing spring rod; 454, guide spring; 5, cutting machine. DETAILED DESCRIPTION

[0029] The examples described below are illustrative only and are not intended to limit the present application, and the specific techniques or conditions not mentioned in the examples are performed according to the techniques or conditions described in the literature in the art or according to the product instructions.

[0030] Referring to Figure 1 , Figure 2 , Figure 7 , Figure 8 and Figure 9 , an automatic wood board cutting device comprises a base 1, a cutting machine 5 is distributed on the right side above the base 1, a conveying unit 2 is installed at the middle of the upper end of the base 1, a shaking unit 3 is also installed at the upper end of the base 1, an auxiliary cutting unit 4 is installed at the right side of the upper end of the base 1, and the cutting machine 5 is installed on the auxiliary cutting unit 4.

[0031] The present application is used for continuously cutting wood fireproof boards in an incomplete cutting mode, and the present application can shake off the debris generated after cutting the wood fireproof board, prevent the residual debris from affecting the cutting quality of the wood fireproof board in subsequent cutting, and also can flatten the cutting area of the wood fireproof board, so as to ensure the cutting precision of the wood fireproof board.

[0032] Specifically, first, the wood fireproof board to be cut is placed on the conveying unit 2, and the wood fireproof board is fixed through the conveying unit 2, then the wood fireproof board is intermittently conveyed to the right by starting the conveying unit 2, so that the conveying unit 2 intermittently conveys the corresponding cutting area on the wood fireproof board to the corresponding position of the cutting machine 5 in sequence, then the auxiliary cutting unit 4 is controlled to flatten the cutting area of the wood fireproof board, and then the cutting machine 5 is controlled to cut the corresponding cutting area on the wood fireproof board in an incomplete cutting mode from front to back.

[0033] When the wood fireproof plate is cut once, the auxiliary cutting unit 4 and the cutting machine 5 are controlled to return to the initial position, the conveying unit 2 is controlled to convey the wood fireproof plate to the right again, the conveying unit 2 moves the corresponding next adjacent cutting area on the wood fireproof plate to the corresponding position of the cutting machine 5, the shaking unit 3 shakes the wood fireproof plate up and down, thereby the debris remaining on the wood fireproof plate after cutting once can be shaken off, and the above steps are repeated, so that the cutting machine 5 continuously cuts the wood fireproof plate in the incomplete cutting mode, when the cutting of the wood fireproof plate is completed, the conveying unit 2 no longer fixes the cut wood fireproof plate, the cut wood fireproof plate is taken out, and the conveying unit 2 returns to the initial position, thereby realizing the continuous cutting of the wood fireproof plate in the incomplete cutting mode.

[0034] Referring to Figure 1 and Figure 2 The conveying unit 2 comprises a conveying plate 21 slidably arranged on the middle part of the upper end of the base 1, a driving part 22 connected between the conveying plate 21 and the base 1, and two clamping parts 23 symmetrically arranged on the upper end of the conveying plate 21.

[0035] It should be noted that the driving part 22 in the application comprises a threaded rod and a first motor, wherein the threaded rod is threadedly connected with the conveying plate 21, the threaded rod is rotationally connected with the base 1, the left end of the threaded rod is fixedly connected with the output shaft of the first motor, and the first motor is fixedly arranged in the base 1, so that the threaded rod is intermittently rotated by controlling the first motor, thereby driving the conveying plate 21 to move intermittently.

[0036] The conveying unit 2 is used for intermittently conveying the wood fireproof plate, specifically, the wood fireproof plate is placed on the conveying plate 21, the clamping parts 23 are controlled to clamp and fix the left and right ends of the wood fireproof plate, and then the driving part 22 drives the wood fireproof plate to move to the right intermittently through the conveying plate 21 and the clamping parts 23, so that the corresponding cutting area on the wood fireproof plate is sequentially and intermittently conveyed to the corresponding position of the cutting machine 5.

[0037] When the wood fireproof plate is cut once, the elastic part 11 can pop up and down the cutting part of the wood fireproof plate, thereby the debris generated in the cutting area of the wood fireproof plate can be popped off, when the wood fireproof plate is cut in the incomplete cutting mode, the clamping parts 23 are controlled not to clamp and fix the wood fireproof plate, thereby the cut wood fireproof plate can be taken out, and the driving part 22 drives the conveying plate 21 to return to the left to the initial position.

[0038] Referring to Figure 2 and Figure 3The clamping component 23 includes two connecting plates 231, one on the left and one on the right. The connecting plate 231 on the left is fixedly connected to the conveying plate 21, and the connecting plate 231 on the right is slidably connected to the conveying plate 21 via a return spring 232. Both connecting plates 231 are equipped with L-shaped clamping plates 233 that slide up and down on opposite sides. The horizontal section of the clamping plate 233 is threaded with an adjusting screw 234, and the adjusting screw 234 is rotatably connected to the connecting plate 231.

[0039] The clamping component 23 is used to clamp and fix the wooden fireproof board. Specifically, after the wooden fireproof board is placed on the conveyor plate 21, the left end of the wooden fireproof board is positioned between the vertical section of the left clamping plate 233 and the conveyor plate 21, and the right end of the wooden fireproof board is positioned between the vertical section of the right clamping plate 233 and the conveyor plate 21. Then, the adjusting screw 234 is turned to move the clamping plate 233 downward, so that the left clamping plate 233 fixes the left end of the wooden fireproof board, and the right clamping plate 233 fixes the right end of the wooden fireproof board, thereby achieving the clamping and fixing of the wooden fireproof board. After the wooden fireproof board is cut, the adjusting screw 234 is turned to move the clamping plate 233 back to the initial position, so that the cut wooden fireproof board can be taken out.

[0040] See Figures 1-3 and Figure 5 The shaking unit 3 includes two symmetrically arranged synchronous plates 31 that are slidably mounted on the upper left side of the base 1. A synchronous component 32 is installed between the two synchronous plates 31 and the base 1. A transmission plate 34 is slidably mounted on the opposite sides of the two synchronous plates 31 through multiple extension springs 33 that extend in the left and right directions and are evenly arranged. A shaking plate 36 is mounted on the opposite sides of the two transmission plates 34 through multiple elastic telescopic fitting rods 35 that extend in the left and right directions and are evenly arranged. A mating component 24 for driving the transmission plate 34 to shake up and down is installed on the left side of the front and rear ends of the conveyor plate 21 and between the synchronous plates 31.

[0041] It should be noted that the synchronizing component 32 in this invention includes a double-ended screw and a second motor. The double-ended screw has two threaded sections arranged in opposite directions. The two synchronizing plates 31 are connected to the corresponding threaded sections on the double-ended screw by threaded connection. The double-ended screw is rotatably connected to the base 1. The rear end of the double-ended screw is fixedly connected to the output shaft of the second motor. The second motor is fixedly installed in the base 1. By starting the second motor, the double-ended screw is driven to rotate, so that the double-ended screw drives the two synchronizing plates 31 to move synchronously.

[0042] The shaking unit 3 is used to shake the wooden fireproof board up and down. Specifically, when the wooden fireproof board is placed on the conveyor plate 21, the control synchronization component 32 drives the two synchronization plates 31 to move towards each other. The synchronization plates 31 drive the two shaking plates 36 to move towards each other through the transmission plate 34 and the bonding rod 35. The two shaking plates 36 are then attached to the front and rear ends of the wooden fireproof board and slightly compress the bonding rod 35, so that the shaking plates 36 are tightly attached to the front and rear ends of the wooden fireproof board.

[0043] After the cutting machine 5 completes one cut of the wood fireproof board, the control actuator 22 drives the wood fireproof board to move to the right a certain distance via the conveyor plate 21 and the clamping component 23. At this time, the mating component 24 drives the transmission plate 34 to vibrate up and down under the action of the top extension spring 33. The transmission plate 34 drives the vibrating plate 36 to vibrate up and down via the contact rod 35, thereby causing the two vibrating plates 36 to vibrate the wood fireproof board up and down. This can shake off the debris generated after the first cut of the wood fireproof board, preventing residual debris from affecting the cutting quality of subsequent cuts of the wood fireproof board. After the wood fireproof board is cut, the control actuator 22... Stepper 32 drives the two synchronous plates 31 back to their initial positions, causing the synchronous plates 31 to drive the two vibrating plates 36 to move to their initial positions on opposite sides via the transmission plate 34 and the bonding rod 35. Since the bonding rod 35 has a telescopic function, the vibrating plates 36 on both sides can press against the wooden fireproof board with a certain strength range. As the wooden fireproof board moves to the right, the part of the vibrating plates 36 that are clamped to the wooden fireproof board gradually decreases. At this time, the deformation of the modified polytetrafluoroethylene board will decrease, and gradually the vibrating plates 36 on both sides will detach from the side wall of the clamped wooden fireproof board, thereby preventing the board from breaking.

[0044] See Figure 5 and Figure 6 The mating component 24 includes a telescopic synchronous rod 241 fixedly installed on the left side of the front and rear ends of the conveyor plate 21. The end of the synchronous rod 241 away from the conveyor plate 21 slides left and right through the base 1 and is slidably connected to the corresponding synchronous plate 31. The upper end of the synchronous plate 31 away from the conveyor plate 21 is fixedly installed with a mating block 242, and the upper right side of the mating block 242 is set as an inclined surface.

[0045] See Figure 5 and Figure 6 A plurality of L-shaped mating rods 341 are fixedly installed on the lower end of the transmission plate 34 near the middle of the base 1. The horizontal section of the mating rod 341 is used to engage with the inclined surface of the mating block 242 to drive the transmission plate 34 to move upward. The end of the horizontal section of the mating rod 341 near the middle of the base 1 is set as an elastic telescopic structure, and the right side of the end of the horizontal section of the mating rod 341 near the middle of the base 1 is set as an inclined surface.

[0046] The mating component 24 is used to drive the transmission plate 34 to vibrate up and down. Specifically, when the conveying plate 21 drives the wooden fireproof board to move to the right by a certain distance, the conveying plate 21 drives the mating block 242 to move to the right through the synchronous rod 241. This causes the inclined surface of the mating block 242 and the horizontal section of the mating rod 341 to engage and drive the mating rod 341 to move upward. In turn, the mating rod 341 drives the transmission plate 34 to move upward. When the mating block 242 and the mating rod 341 separate, the transmission plate 34 returns to its initial position under the action of the top extension spring 33. Since there are multiple mating rods 341, the transmission plate 34 drives the vibrating plate 36 to vibrate up and down through the sticking rod 35. In turn, the two vibrating plates 36 vibrate the wooden fireproof board up and down.

[0047] Since the right connecting plate 231 is slidably connected to the conveyor plate 21 via the return spring 232, when the shaking plate 36 moves the wooden fireproof board upward, the wooden fireproof board bends slightly, allowing the right end of the wooden fireproof board to cooperate with the right clamping plate 233 to stretch the right connecting plate 231 to the left and compress the return spring 232. When the shaking plate 36 moves the wooden fireproof board downward to the initial position, the right connecting plate 231, under the action of the return spring 232, stretches the right end of the wooden fireproof board to the right via the right clamping plate 233, allowing the wooden fireproof board to return to a flat state. Thus, when the shaking plate 36 shakes the wooden fireproof board up and down, it ensures that the wooden fireproof board remains flat after shaking. When the control active member 22 moves the conveyor plate 21 to the left to return to the initial position, the mating block 242 can cooperate with the inclined surface of the mating rod 341 to compress the telescopic end of the mating rod 341, thus preventing interference with the movement of the conveyor plate 21.

[0048] See Figure 6 Two symmetrically arranged fixing rods 311 are fixedly installed on opposite sides of the two synchronization plates 31. A separation plate 312 is fixedly installed on the end of the fixing rod 311 away from the synchronization plate 31. The lower end of the separation plate 312 is set as a vertical structure, and the upper end of the separation plate 312 is set as an inclined structure that tilts towards the middle of the base 1. The two fixing rods 311 arranged on the left and right are installed on the opposite side of the vertical structure of their corresponding two separation plates 312.

[0049] See Figure 6 A columnar block 361 is fixedly installed at the middle of both ends of the shaking plate 36. When the shaking plate 36 moves from top to bottom, the columnar block 361 is used to cooperate with the inclined structure of the separation plate 312 to drive the two shaking plates 36 to move away from each other.

[0050] When the vibrating plate 36 moves upward, it drives the cylindrical block 361 to move to the corresponding position of the inclined structure of the separation plate 312. This causes the cylindrical block 361 and the inclined structure of the separation plate 312 to work together to first move the vibrating plate 36 towards the middle of the base 1 and then to the top of the inclined structure of the separation plate 312. When the vibrating plate 36 moves downward, the cylindrical block 361 and the inclined structure of the separation plate 312 work together to move the vibrating plate 36 away from the base 1, causing the vibrating plate 36 to separate from the wooden fireproof board. At this time, the right connecting plate 231, under the action of the return spring 232, stretches the wooden fireproof board to the right through the right clamping plate 233, so that the wooden fireproof board returns to a flat state.

[0051] The shaking plate 36 can move downward along the side of the vertical structure of the separating plate 312 away from the middle of the base 1, so that the shaking plate 36 is always separated from the wooden fireproof board. When the shaking plate 36 returns to the initial position, the column block 361 and the vertical structure of the separating plate 312 are separated, so that the two shaking plates 36 move towards each other under the action of the sticking rod 35 and are tightly stuck to the front and rear ends of the wooden fireproof board again, thereby ensuring that the shaking plate 36 can continuously shake the wooden fireproof board up and down.

[0052] See Figure 2 and Figure 3 The conveyor plate 21 has two square holes arranged symmetrically in front and behind. Multiple pressing blocks 211 are fixedly installed on the inner walls of the front and rear of the square holes and are evenly arranged in the left and right. The lower right side of the pressing block 211 is set as an inclined surface. Multiple chip removal holes are evenly arranged on the upper right side of the base 1 corresponding to the position of the conveyor plate 21.

[0053] See Figure 3 and Figure 4 The spring element 11 includes two spring rods 111 that are symmetrically arranged front and back and slidably mounted on the upper end of the base 1. Each spring rod 111 is set in a square hole in its corresponding conveyor plate 21. The lower end of the spring rod 111 is connected to the base 1 through a connecting spring 112. Both the front and back sides of the upper end of the spring rod 111 are fixedly installed with a cooperating spring rod 113. The cooperating spring rod 113 is used to cooperate with the inclined surface of the lower pressure block 211 to drive the spring rod 111 to move downward. The right ends of the two cooperating spring rods 113 on opposite sides are both set as inclined surfaces.

[0054] The spring element 11 is used to move the left side of the cutting area after the first cut of the wooden fireproof board. Specifically, when the wooden fireproof board is placed on the conveyor plate 21, the upper end of the spring rod 111 is attached to the lower end of the wooden fireproof board. When the first cut of the wooden fireproof board is completed and the conveyor plate 21 is controlled to move the wooden fireproof board to the right by a distance, the conveyor plate 21 drives the lower pressure block 211 to move to the right. This causes the inclined surface of the lower pressure block 211 and the cooperating spring rod 113 to cooperate to drive the spring rod 111 to move downward and compress the connecting spring 112.

[0055] When the lower pressure block 211 and the cooperating spring rod 113 separate, the spring rod 111 pops upward under the action of the connecting spring 112, and the upper end of the spring rod 111 can continue to pop upward a distance under the action of inertia. Multiple lower pressure blocks 211 are provided, so that the upper end of the spring rod 111 can continuously bounce upward on the left side of the cut area after the wood fireproof board is cut, ensuring that the debris generated after the first cut of the wood fireproof board can be completely shaken off, further ensuring the cutting quality of subsequent cuts of the wood fireproof board. The shaken debris can fall into the square hole and then along the square hole into the chip removal hole before being removed from the base 1 (attached). Figure 1 , Figure 2 , Figure 3 The image only shows one style of chip removal hole. In practice, chip removal holes can be opened more densely. The size of the chip removal holes can be adjusted to ensure that the waste chips fall off with a shake. This prevents the chips from accumulating on the base 1. When the conveyor plate 21 returns to the initial position to the left, the pressure block 211 can cooperate with the inclined surface of the cooperating spring rod 113 to compress the cooperating spring rod 113, thus not interfering with the movement of the conveyor plate 21.

[0056] See Figure 1 and Figure 2 The auxiliary cutting unit 4 includes a U-shaped plate 41 fixedly installed on the upper right side of the base 1. A square plate 43 is installed at the lower middle of the horizontal section of the U-shaped plate 41 via an electric push rod 42. The lower middle of the square plate 43 is connected to the cutting machine 5. A locking plate 44 with an elastic telescopic structure is installed on the lower right side of the square plate 43. A flattening member 45 is installed on the lower left side of the square plate 43.

[0057] The auxiliary cutting unit 4 is used to assist in cutting the fireproof wooden board, ensuring that the surface of the fireproof wooden board is flat. Specifically, when the fireproof wooden board needs to be cut, the electric push rod 42 is controlled to drive the cutting machine 5 downward through the square plate 43. The square plate 43 first drives the locking plate 44 downward, and the lower end of the locking plate 44 presses against the upper right side of the cutting area of ​​the fireproof wooden board, so that the locking plate 44 can fix the right side of the cutting area of ​​the fireproof wooden board. The lower end of the locking plate 44 is set as a telescopic structure. When the square plate 43 continues to move downward, the telescopic end of the locking plate 44 can be compressed, increasing the pressure of the locking plate 44 on the right side of the cutting area of ​​the fireproof wooden board, ensuring the fixing effect of the locking plate 44 on the right side of the cutting area of ​​the fireproof wooden board. Then, the square plate 43 drives the flattening component 45 to pull the left side of the cutting area of ​​the fireproof wooden board to the left, thereby flattening the cutting area of ​​the fireproof wooden board. Then, the cutting machine 5 is controlled to perform customized cutting of the fireproof wooden board, thereby ensuring that the surface of the fireproof wooden board is flat when cutting and increasing the cutting accuracy of the fireproof wooden board.

[0058] After the wood fireproof board is cut, the electric push rod 42 is controlled to drive the cutting machine 5 upward to the initial position through the square plate 43. The square plate 43 drives the locking plate 44 and the flattening member 45 upward to the initial position. Then, the active member 22 is controlled to drive the wood fireproof board to move to the right by one distance through the conveying plate 21 and the clamping member 23. The above steps are repeated so that the cutting machine 5 can continuously perform incomplete cuts on the wood fireproof board.

[0059] See Figure 7 The flattening component 45 includes two symmetrically arranged diagonal bars 451 hinged to the lower left side of the square plate 43. The lower ends of the diagonal bars 451 are inclined to the left, and the lower ends of the two diagonal bars 451 are hinged to a flattening plate 452.

[0060] See Figure 7 The upper end of the flat plate 452 is equipped with multiple pressure spring rods 453 evenly arranged front and back. The upper ends of the pressure spring rods 453 are slidably connected to the square plate 43 by guide springs 454.

[0061] The flattening component 45 is used to flatten the cut area of ​​the fireproof wooden board. Specifically, when the square plate 43 moves downward, it first drives the locking plate 44 downward. The lower end of the locking plate 44 presses against the upper right side of the cut area of ​​the fireproof wooden board, so that the locking plate 44 can fix the right side of the cut area of ​​the fireproof wooden board. The lower end of the locking plate 44 is set as a telescopic structure. When the square plate 43 continues to move downward, the telescopic end of the locking plate 44 can be compressed, increasing the pressure of the locking plate 44 on the right side of the cut area of ​​the fireproof wooden board, ensuring the fixing effect of the locking plate 44 on the right side of the cut area of ​​the fireproof wooden board. Then, the square plate 43 drives the flattening plate 452 to adhere to the upper right side of the cut area of ​​the fireproof wooden board through the diagonal rod 451. When the square plate 43 continues to move downward, the flattening plate 452 moves to the left under the action of the diagonal rod 451. Since the locking plate 44 locks the right side of the cut area of ​​the fireproof wooden board, the flattening plate 452 flattens the cut area of ​​the fireproof wooden board to the left.

[0062] Furthermore, the distance between the lower end of the square plate 43 and the upper end of the pull plate 452 gradually decreases, thereby gradually increasing the compression of the pressure spring rod 453, which in turn gradually increases the pressure of the pull plate 452 on the wooden fireproof board, ensuring that the pull plate 452 can completely flatten the wooden fireproof board. When the square plate 43 is controlled to return to the initial position, the pull plate 452 returns to the initial position under the hinge action of the diagonal rod 451. At the same time, the pressure spring rod 453, under the action of the guide spring 454, can further ensure that the pull plate 452 can return to the initial position.

[0063] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A wooden board automatic cutting device, comprising a base, a cutting machine is distributed on the right side above the base, characterized in that, The upper end of the base is provided with a conveying unit, a shaking unit and an auxiliary cutting unit, and the cutting machine is installed on the auxiliary cutting unit; The conveying unit comprises a conveying plate slidably installed on the upper end of the base, a driving member connected between the conveying plate and the base, two clamping members symmetrically arranged on the upper end of the conveying plate, and an elastic member installed on the upper end of the base corresponding to the position of the conveying plate and located on the left side of the auxiliary cutting unit; The shaking unit comprises two front and back synchronizing plates symmetrically arranged on the left side of the upper end of the base, a synchronizing member installed between the two synchronizing plates and the base, a transmission plate slidably installed on the left side of each synchronizing plate through a plurality of top extension springs extending in the left and right directions and uniformly arranged, a shaking plate installed on the left and right sides of the two transmission plates through a plurality of elastic extension structures, and a matching member installed between the left side of the conveying plate and the synchronizing plate for driving the transmission plate to shake up and down. The auxiliary cutting unit comprises a U-shaped plate fixedly installed on the right side of the upper end of the base, a square plate installed on the lower end of the horizontal section of the U-shaped plate through an electric push rod, a locking plate of an elastic extension structure installed on the right side of the lower end of the square plate, and a flattening member installed on the left side of the lower end of the square plate.

2. The wood board automatic cutting apparatus according to claim 1, wherein The clamping member comprises two connecting plates, a left connecting plate fixedly connected with the conveying plate, and a right connecting plate slidably connected with the conveying plate through a return spring, two clamping plates of L-shaped structure slidably installed on the opposite sides of the two connecting plates, and an adjusting screw threadedly connected with the horizontal section of each clamping plate and rotatably connected with the connecting plate.

3. The wood board automatic cutting device according to claim 1, wherein, The matching member comprises synchronizing rods of an extension structure fixedly installed on the left side of the front and back ends of the conveying plate, the left and right sides of the end of each synchronizing rod away from the conveying plate slidably penetrating through the base and slidably connected with the corresponding synchronizing plate, a matching block fixedly installed on the end of the upper end of each synchronizing plate away from the conveying plate, and the upper right side of the matching block being inclined.

4. The wood board automatic cutting apparatus according to claim 3, wherein The lower end of each transmission plate is fixedly provided with a plurality of matching rods of L-shaped structure uniformly arranged on the left and right sides, the horizontal section of each matching rod is used for cooperating with the inclined surface of the matching block to drive the transmission plate to move upward, the end of the horizontal section of each matching rod close to the middle of the base is provided with an elastic extension structure, and the right side of the end of the horizontal section of each matching rod close to the middle of the base is provided with an inclined surface.

5. The wood board automatic cutting apparatus according to claim 1, wherein The opposite sides of each synchronizing plate are fixedly provided with two fixed rods symmetrically arranged on the left and right sides, the end of each fixed rod away from the synchronizing plate is fixedly provided with a separation plate, the lower end of each separation plate is provided with a vertical structure, the upper end of each separation plate is provided with an inclined structure inclined toward the middle of the base, and the two fixed rods symmetrically arranged on the left and right sides are installed on the opposite sides of the vertical structures of the two corresponding separation plates.

6. The wood board automatic cutting apparatus according to claim 5, wherein The middle part of the left and right ends of each shaking plate is fixedly provided with a cylindrical block, and when the shaking plate moves from top to bottom, the cylindrical block is used for cooperating with the inclined structure of the separation plate to drive the two shaking plates to move away from each other.

7. The wood board automatic cutting apparatus according to claim 1, wherein Two symmetrical square holes are arranged on the conveying plate, and a plurality of left-right uniformly arranged pressing blocks are fixedly installed on the inner walls of the square holes.

8. The wood board automatic cutting apparatus according to claim 7, wherein The elastic member comprises two symmetrical elastic rods which are slidably installed on the upper end of the base, and the elastic rods are arranged in the square holes of the conveying plates. The lower end of the elastic rod is connected to the base through a connecting spring. The upper end of the elastic rod is fixedly installed with a matching spring rod on the front and back sides. The matching spring rod is used to cooperate with the inclined surface of the pressing block to drive the elastic rod to move downward. The right end of the two matching spring rods is arranged as an inclined surface.

9. The wood board automatic cutting apparatus according to claim 1, wherein The flattening member comprises two symmetrical inclined rods which are hingedly arranged on the left side of the lower end of the square plate. The lower end of the inclined rod is arranged to be inclined to the left. The lower end of the two inclined rods is hingedly connected with a flattening plate.

10. The wood board automatic cutting apparatus according to claim 9, wherein A plurality of front-rear uniformly arranged pressing spring rods are installed on the upper end of the flattening plate. The upper end of the pressing spring rod is slidably connected to the square plate through a guide spring.