Slicer for cutting standard-sized consolidation plate slice

The slicer addresses inefficiencies in cutting fixed-length compacted board slices by integrating a cutter, holder, guide, and conveying mechanism with an elastic stopper, ensuring precise and efficient cutting with minimal waste.

JP2025146562AActive Publication Date: 2025-10-03GUANGPING KAIWANG DENSIFICATION TECH CO LTD
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Patent Information

Application Number
JP2024090454
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-03-20
Filing Date
2024-06-04
Publication Date
2025-10-03
Estimated Expiration
2044-06-04

AI Technical Summary

Technical Problem

Existing wood cutting technologies face issues such as high waste generation, high cost, low efficiency, and inconsistent cutting quality, particularly when producing fixed-length compacted board slices, due to the limitations of current slicing devices and methods.

Method used

A slicer comprising a cutter module, cutter holder module, guide module, conveying mechanism, and elastic stopper module, which work together to ensure precise, continuous cutting of standard-length logs into standard-length compacted board slices, minimizing waste and improving efficiency.

Benefits of technology

The slicer achieves rapid, stable, and high-quality cutting of standard-length compacted board slices, reducing wood loss and production costs while adapting to different cutting requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a slicer for cutting a standard-sized consolidation plate slice.SOLUTION: A slicer comprises a machine base 41 and a support plate 42, and a bottom part of the support plate 42 and the machine base 41 form a first opening 43 allowing a standard-sized raw wood 5 to freely pass therethrough, and an elastic stopper module is positioned on a supply side of the support plate 42, and a cutter mechanism further includes a frame mechanism 4 positioned on a discharge side of the support plate 42. The first opening 43 in the machine base 41 is provided for a standard-sized consolidation plate slice, and the elastic stopper module and the cutter mechanism 1 are separated by the support plate 42, and effective slice protection is formed, such that the safety property of the frame mechanism 4 is improved.SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] The present invention relates to the field of wood cutting and processing equipment technology, in particular to a slicer for cutting compacted board slices to length. [Background technology]

[0002] In the traditional wood cutting process, wood is usually cut with a saw (saw blade, circular saw, band saw), including artificial saws, electric saws, artificial saw blades, electric circular saws, band saws, etc. When cutting wood with a saw, the notch is large, resulting in wood waste, especially for wood with a large diameter, the notch is larger, and the saw is easily deformed during cutting, making it difficult to ensure a straight line during the cutting process, resulting in inconsistent thicknesses on both ends of the cut wood board, which requires further processing to flatten it, resulting in greater waste.

[0003] Unlike the conventional sawing method, in the production of known sized compressed board slices, for example, Patent Document 1 (Chinese patent with publication number CN116214645A) discloses a high-frequency-based sized compressed board manufacturing process, which can use a slicing method or a steaming slicing method to cut the wood, i.e., soften the wood before slicing it, thereby reducing the loss of base material. However, the above-mentioned prior art does not disclose a slicing device, and the slicing device for cutting sized logs into sized compressed board slices is insufficient.

[0004] In the current prior art, for example, Patent Document 2 (Chinese Patent Publication No. CN102189584B) discloses a specialized wood cutting equipment that uses high-temperature alloy thread to scorch and cut the wood. However, the above technical solution has at least the following defects: scorching the wood itself will cause wood loss, and in serious cases, it will cause a large area of ​​wood to be scorched, affecting its use; the alloy thread material is expensive, increasing the cost of cutting; if the alloy thread breaks, it cannot be used, and the maintenance cost is high; cutting the alloy thread also involves temperature and cooling control, making the operation control complicated.

[0005] For example, Patent Document 3 (Chinese patent with publication number CN107571341B) discloses a wood cutting machine and a wood cutting method, which uses a composite blade head for rotary cutting. However, the above technical solution has at least the following defects: the composite blade head has a complicated structure, and when one of the blade heads is damaged, it needs to be replaced immediately, resulting in a high failure rate, high cutting maintenance costs, and rotary cutting is not easily adapted to rapid and large-volume wood cutting, resulting in low production efficiency.

[0006] For example, Patent Document 4 (Chinese patent with publication number CN219634013U) discloses a cutting machine for wood processing, which cuts wood using a lifting and lowering cutting method. However, the above technical solution still has at least the following defects: a large amount of wood waste is still generated during the cutting process, which results in a large amount of wood being wasted, a high wood loss rate, increased processing costs, low cutting efficiency, and is difficult to apply to mass processing production.

[0007] As described above, currently, in the prior art, the slicing method can be adopted to produce fixed-length compacted plate slices, but the corresponding slicing equipment is insufficient, or, unlike conventional saw cutting devices, the slice production is not ideal, and there are problems such as high loss rate, high cost, and low efficiency. [Prior art documents] [Patent documents]

[0008] [Patent Document 1] Chinese patent 116214645A [Patent Document 2] China patent 102189584B [Patent Document 3] Chinese patent 107571341B [Patent Document 4] China patent 219634013U [Patent Document 5] China patent 219968293U Summary of the Invention

[0009] In order to solve the above-mentioned problems in the prior art, the present invention provides a slicer for cutting a compacted board into slices of a predetermined length, the slicer comprising: a cutter module, a cutter holder module, and a guide module, the cutter holder module being used to mount the cutter module, and the guide module being a cutter mechanism for restricting the movement of a guide portion of the cutter holder module only in a cutting direction; a conveying mechanism for conveying cut logs to the cutter mechanism and delivering cut compacted board slices from the cutter mechanism; The cutting machine includes an elastic stopper module, which includes a stopper mechanism for pressing the cut-length log and limiting relative displacement between the cut-length log and the conveying mechanism in the conveying direction and the cutting direction.

[0010] More preferably, the slicer comprises: The machine includes a machine base and a support plate, the bottom of the support plate and the machine base forming a first opening for the length logs to pass freely through, the elastic stopper module is located on the supply side of the support plate, and the cutter mechanism further includes a frame mechanism located on the discharge side of the support plate.

[0011] More preferably, the elastic stopper module comprises: a stopper base fixed to the supply side of the support plate for positioning the elastic stopper plate in the conveying mechanism; an elastic stopper plate attached at an angle to the underside of the stopper base, the elastic stopper plate having a tail portion and a second opening formed therein for pressing the standard length log against the machine base to pass through; and an adjustment pin for adjusting the mounting inclination angle of the elastic stopper plate relative to the stopper base.

[0012] More preferably, the cutter module comprises: a cutter body including a blade with several positioning grooves, the blade being positioned in the cutter holder module by the several positioning grooves; and a positioning seat for fixing the cutter body to the cutter holder module.

[0013] More preferably, the cutter holder module comprises: a framework having a third opening formed in its upper portion and on the machine base for allowing the cut-to-length compaction plate slices to pass freely; The cutter body further includes a positioning hole disposed on the upper cross beam of the framework for fixing the cutter body to the cross beam.

[0014] More preferably, two longitudinal beams of the frame are formed as the guide portions, respectively, and the guide portions are used to position the two longitudinal beams on the guide module.

[0015] More preferably, the guide module comprises: a guide rail fixed to a bent portion of the support plate for positioning the cutter holder module on the discharge side of the support plate; and a guide groove for allowing the guide portion to slide against the guide rail.

[0016] More preferably, the transport mechanism comprises: a supply drive module, the supply drive module including a supply passage for transporting the cut-length logs so that the cut-length logs pass through the second opening and the first opening in sequence; and a discharge passage for delivering the compacted plate slices to length through the third opening.

[0017] More preferably, the stopper mechanism further includes a rigid stopper module, which is used to contact and guide the cut logs and limit displacement of the cut logs in the conveying direction relative to the supply path and / or in the lateral direction of the supply path.

[0018] More preferably, the frame mechanism comprises: The cutting device further includes a slice driving module for moving the cutter holder module back and forth in the cutting direction. [Effects of the Invention]

[0019] The technical solution provided by the present invention has the following significant advantages over the prior art: the cooperation of the cutter mechanism, the conveying mechanism, and the stopper mechanism realizes rapid, stable, and continuous cutting of standard-length logs into standard-length compacted board slices, effectively avoiding the generation of sawdust when standard-length logs are cut, greatly reducing wood loss, effectively reducing the processing loss rate of wood in the cutting conversion process, and favorably reducing the production costs of standard-length compacted board slices; effectively improving the cutting efficiency and quality of standard-length compacted board slices; and better adapting to different cutting requirements. [Brief explanation of the drawings]

[0020] [Figure 1] FIG. 1 is a first schematic diagram of an incision in some embodiments of the present invention. [Figure 2] FIG. 10 is a second schematic diagram of a notch in some embodiments of the present invention. [Figure 3] 1 is a structural schematic diagram of a frame mechanism according to some embodiments of the present invention. [Figure 4] 1 is a structural schematic diagram of an elastic stopper module according to some embodiments of the present invention. [Figure 5] 1 is a structural schematic diagram of a cutter module according to some embodiments of the present invention. FIG. [Figure 6] 1 is a structural schematic diagram of a cutter holder module according to some embodiments of the present invention. FIG. [Figure 7] 1 is a structural schematic diagram of a guide module in some embodiments of the present invention. [Figure 8]1 is a structural schematic diagram of a transport mechanism, a rigid stopper module, and a slice drive module according to some embodiments of the present invention. FIG. [Figure 9] FIG. 1 is a front structural schematic diagram of a slicer according to some embodiments of the present invention. [Figure 10] FIG. 2 is a rear structural schematic diagram of a slicer according to some embodiments of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0021] In the currently known prior art of producing fixed-length compressed boards, for example, a Chinese patent with publication number CN219968293U discloses an automated production line for fixed-length compressed wood, realizing automated production, and the slicer for cutting fixed-length compressed board slices provided in the present invention realizes cutting fixed-length logs into fixed-length compressed board slices in an automated production line.

[0022] Specific embodiments of the present invention will be described in more detail below with reference to the drawings.

[0023] As shown in FIGS. 1 to 10, the present invention provides a slicer for cutting compacted board slices to length, the slicer comprising: The cutter mechanism 1 includes a cutter module 11, a cutter holder module 12, and a guide module 13, the cutter holder module 12 being used to mount the cutter module 11, and the guide module 13 being used to restrict the guide portion 121 of the cutter holder module 12 to move only in the cutting direction; a conveying mechanism 2 for conveying the standard length logs 5 to the cutter mechanism 1 and delivering standard length compacted board slices 6 cut by the cutter module 11 from the cutter mechanism 1; The elastic stopper module 31 includes a stopper mechanism 3 for pressing the cut-length log 5 and limiting the relative displacement between the cut-length log 5 and the conveying mechanism 2 in the conveying direction and the cutting direction.

[0024] In these embodiments, the cutter mechanism 1 uses a slitting method to cut the log 5 into a plurality of identically specified compacted board slices 6, including but not limited to size, thickness, width, volume, and flatness. The conveying mechanism 2 uses a constant-speed conveying method to continuously convey the log 5 and the compacted board slices 6 in a pipelined manner. Constant-speed conveying includes, but is not limited to, constant-speed intermittent conveying. The preferred constant-speed intermittent conveying method of the present invention allows for flexible selection of interval times according to the cutting requirements. Conveying methods that achieve constant-speed conveying include, but are not limited to, conveyor belt conveying, conveyor roller conveying, and drive push. The detailed mechanical structures and operating principles of the listed conveying methods are all conventional technologies, and those skilled in the art can clearly understand how these conveying methods achieve transport and conveyance. Therefore, the detailed mechanical structures and operating principles are not described herein. The stopper mechanism 3 uses a pressure guide to limit the relative movement of the fixed-length logs 5 during the transport process, and the limitations on the relative movement during the transport process include, but are not limited to, slippage during transport, shaking during transport, and warping during transport.

[0025] It should be understood that in the present invention, the cutting direction is the direction of the standard compaction plate slices 6 obtained by cutting the standard log 5 perpendicular to the standard log 5, i.e., the cutting direction includes, but is not limited to, the vertical direction.

[0026] In some further embodiments of the present invention, the cutting direction is vertical, and preferably, the conveying method for realizing the constant speed conveying employs conveying rollers.

[0027] In these embodiments, the cutting direction overlaps with the vertical direction, which is advantageous for improving slicing efficiency and quality under the influence of gravity, and the transport of the conveying rollers ensures that the transport and slicing of the fixed-length logs 5 work together stably, thereby realizing the cutting of high-efficiency, high-quality fixed-length compacted board slices 6.

[0028] In some embodiments of the present invention, the slicer includes a machine base 41 and a support plate 42, the bottom of the support plate 42 and the machine base 41 forming a first opening 43 for the length of logs 5 to pass freely through, the elastic stopper module 31 is located on the supply side of the support plate 42, and the cutter mechanism 1 further includes a frame mechanism 4 located on the discharge side of the support plate 42.

[0029] In these embodiments, a first opening 43 in the machine base 41 is provided for the fixed length compaction plate slice 6, and a support plate 42 separates the elastic stopper module 31 from the cutter mechanism 1, forming effective slice protection and improving the safety of the frame mechanism 4.

[0030] In some further embodiments of the present invention, the support plate 42 is fixed to the machine base 41, and a recess is formed at the bottom of the support plate 42 facing the machine base 41, and the recess and the machine base 41 surround each other to form a first opening 43, and the elastic stopper module 31 is fixed above the first opening 43 corresponding to the supply side of the support plate 42, and the number of elastic stopper modules 31 may be multiple, and the multiple elastic stopper modules 31 are evenly distributed on the support plate 42, and the cutter mechanism 1 is fixed to the first opening 43 corresponding to the discharge side of the support plate 42, and after the cutter mechanism 1 cuts the cutter mechanism 1 into cutter plate slices 6 quickly and easily after the cutter mechanism 1 cuts the cutter mechanism 1 into cutter plate slices 6.

[0031] In these embodiments, the cooperation of the support plate 42 and the first opening 43 not only ensures that the cutter mechanism 1 can cut the cutter plate slices 6 regularly with high efficiency and quality, and the cutting stability is greater.

[0032] In some embodiments of the present invention, the elastic stopper module 31 includes a stopper base 311 fixed to the supply side of the support plate 42 for positioning the elastic stopper plate 312 in the conveying mechanism 2, an elastic stopper plate 312 attached at an incline to the underside of the stopper base 311 and having a second opening 313 formed at its tail and between the machine base 41 and the elastic stopper plate 312 for pressing the lengthwise log 5 to pass through, and an adjustment pin 314 for adjusting the inclination angle of the elastic stopper plate 312 relative to the stopper base 311.

[0033] In these embodiments, the stopper base 311 fixes and positions the elastic stopper plate 312 on the conveying mechanism 2, forming a second opening 313 through which the machine base 41 and the cut length log 5 are pressed and passed, ensuring stable and reliable pressing of the cut length log 5 and restricting the relative displacement of the cut length log 5 and the conveying mechanism 2 in the conveying direction and the cutting direction. The elastic cooperation of the elastic stopper plate 312 allows the degree of pressing and restricting to be flexibly adjusted via the adjustment pin 314, achieving an even better synergistic effect when cutting.

[0034] In some further embodiments of the present invention, the stopper base 311 is fixed to the outer surface of the supply side of the support plate 42 with screws, the front end of the elastic stopper plate 312 is fixedly connected to the underside of the stopper base 311, and the rear end of the elastic stopper plate 312 is not higher than the front end, so that the elastic stopper plate 312 is installed at an incline below the stopper base 311 and surrounds the machine base 41 to form a second opening 313, and an adjustment pin 314 is screwed into the stopper base 311, and the bottom end of the adjustment pin 314 is engaged with the elastic stopper plate 312 and is used to adjust the inclination angle of the elastic stopper plate 312 relative to the stopper base 311.

[0035] In these embodiments, the stopper base 311, elastic stopper plate 312, and adjusting pin 314 work together to form the second opening 313 formed by the elastic stopper plate 312 and the machine base 41, ensuring the stable passage of the fixed-length log 5. By rotating the adjusting pin 314, the stopper base 311 can be raised or lowered, and the elastic stopper plate 312 can be moved and adjusted to different inclination angles, allowing the degree of pressure of the elastic stopper plate 312 to be flexibly adjusted according to actual usage requirements. This effectively prevents phenomena such as warping and shaking during the cutting process, making it more adaptable for use.

[0036] In some embodiments of the present invention, the cutter module 11 includes a blade 1112 with several positioning grooves 1111, and the blade 1112 includes a cutter body 111 that is positioned in the cutter holder module 12 by the several positioning grooves 1111, and a positioning seat 112 for fixing the cutter body 111 to the cutter holder module 12.

[0037] In these embodiments, the cooperation of the positioning sheet 112 and the positioning groove 1111 in the cutter body 111 ensures that the blade 1112 is accurately positioned and attached to the cutter holder module 12, ensuring stability and reliability during the cutting process of the cutter body 111. The guiding action of the positioning groove 1111 also allows the attachment position of the cutter body 111 to be flexibly adjusted according to actual usage requirements.

[0038] In some further embodiments of the present invention, the positioning grooves 1111 are uniformly distributed on the top of the blade 1112, the positioning sheet 112 is fixed to the positioning grooves 1111, the cutter body 111 further includes a blade located at the bottom end of the blade 1112, the side of the blade closer to the slit log 5 is a flat area, and the side of the blade closer to the slit compaction board slice 6 is an arc-shaped area, the positioning sheet 112 is attached to the positioning grooves 1111 of the blade 1112, mounting holes corresponding to the positioning grooves 1111 are opened in the positioning sheet 112, and screws are removably attached in the mounting holes.

[0039] In these embodiments, through the cooperation of the positioning sheet 112, the blade 1112 and the mounting hole, the blade 1112 is first positioned at the appropriate position on the cutter holder module 12 by the positioning groove 1111, and then the positioning sheet 112 is attached to the positioning groove 1111, and the cutter body 111 is fixed to the cutter holder module 12 using a screw fixing method. This not only makes it easy to remove and install and is convenient for inspection and maintenance, but also allows the mounting position to be flexibly adjusted, improving flexibility of use. The cooperation of the blade flat area and the arc surface area allows the blade 1112 to cut smoothly, thereby ensuring the quality of cutting during continuous cutting.

[0040] It should be understood that the specific structure of the blade may vary, and arcuate and flat regions may be combined in any manner in the blade, including, but not limited to, situations where both sides of the blade are arcuate regions or both are flat regions.

[0041] In some embodiments of the present invention, the cutter holder module 12 includes a framework 122 having a third opening 123 formed in its upper portion and in the machine base 41 for the free passage of the metered compaction plate slices 6, and a positioning hole 124 arranged in a cross beam 1221 at the upper portion of the framework 122 for fixing the cutter body 111 to the cross beam 1221.

[0042] In these embodiments, the framework 122 and the machine base 41 surround and form a third opening 123, and the cutter body 111 is fixed to the cross beam 1221 at the top of the frame 122 through a positioning hole 124. The cutter body 111 continuously cuts into the third opening 123, and the multiple fixed-length compacted plate slices 6 obtained through the cutting can pass through the third opening 123 in a timely manner, thereby ensuring the synchronous linkage of cutting and discharge and achieving highly efficient cutting.

[0043] In some further embodiments of the present invention, the framework 122 includes two horizontal beams 1221 and two vertical beams 1222, the machine base 41 is located within the framework 122, the positioning holes 124 correspond to the mounting holes in the positioning sheet 112, and the cutter body 111 is fixed to the horizontal beams 1221 at the top of the framework 122 by the positioning holes 124.

[0044] In these embodiments, cooperation between the framework 22, the machine base 41 and the cutter body enables the cutter body to cut from top to bottom in the cutting direction, and more stably cuts in accordance with the gravitational force of the cutter body 111.

[0045] It should be understood that the framework 122 and the cutter body 111 themselves have a certain weight, which improves the stability of continuous cutting and the flatness of the fixed-length compaction board slices 6, and efficiently maintains a stable cutting posture during the cutting process of slicing the fixed-length log 5.

[0046] In some embodiments of the present invention, the two longitudinal beams 1222 of the framework 122 are each formed as a guide portion 121 , and the guide portion 121 is used to position the two longitudinal beams 1222 on the guide module 13 .

[0047] In these embodiments, the guide portion 121 connects the framework 122 and the guide module 13, and further restricts the cutter holder module 12 to move only in the cutting direction, ensuring that the cutter body 111 is supported by the framework 122 and cuts continuously.

[0048] In some further embodiments of the present invention, the guide portion 121 includes first inclined surfaces, which are formed on the opposing back surfaces of the two longitudinal beams 1222, respectively, and the number of first inclined surfaces may be multiple.

[0049] In these embodiments, the guide stopper action of the first inclined surface ensures stable movement of the framework 122 in the guide module 13.

[0050] It should be understood that the first inclined surface can be formed on a single longitudinal beam 1222, or multiple longitudinal beams 1222, so that the framework 122 can better counterweight.

[0051] In some embodiments of the present invention, the guide module 13 is fixed to the bent portion 421 of the support plate 42 and includes a guide rail 131 for positioning the cutter holder module 12 on the discharge side of the support plate 42, and a guide groove 133 for sliding the guide portion 121 against the guide rail 131.

[0052] In some embodiments of the present invention, the guide rail 131 includes two guide rods 1311 respectively fixed to the bent portions 421 on both sides of the support plate 42, and guide surfaces 132 formed on the opposing surfaces of the two guide rods 1311, which together with the support plate 42 form a guide groove 133 for slidingly mounting the guide portion 121.

[0053] In these embodiments, the cooperation of the two guide rods 1311 of the guide rail 131 and the bending portion 421 of the support plate 42 enables the framework 122 of the cutter holder module 12 to be stably and reliably positioned on the discharge side of the support plate 42, and the cooperation of the guide surface 132 and the surface of the support plate 42 enables the sliding attachment of the guide portion 121, restricting the guide portion 121 to move only in the cutting direction, thereby ensuring accuracy in the high-speed and continuous cutting process and ensuring uniform cutting quality of the fixed-length compacted plate slices 6.

[0054] In some further embodiments of the present invention, the bending portion 421 is bent toward the discharge side at both side edges of the support plate 42, the two guide rods 1311 of the guide rail 131 are fixed to the bending portion 421, the guide surfaces 132 are second inclined surfaces formed on the opposing surfaces of the two guide rods 1311, the second inclined surfaces correspond to the surface of the support plate 42 and surround it to form a guide groove 133, the number of second inclined surfaces may be multiple, the second inclined surfaces are in smooth contact with the first inclined surfaces, and the two longitudinal beams 1222 of the framework 122 are in smooth contact with the surface of the support plate 42.

[0055] In these embodiments, the cooperation of the first inclined surface, the second inclined surface, and the support plate 42 allows the two vertical beams 1222 of the framework 122 to move stably up and down along the guide grooves 133, thereby achieving stable, continuous cutting.

[0056] In some embodiments of the present invention, the conveying mechanism 2 includes a feed drive module 211 which includes a feed passage 21 for transporting the cut logs 5 sequentially through the second opening 313 and the first opening 43, and a discharge passage 22 for sending the cut compacted board slices 6 out of the third opening 123.

[0057] In these embodiments, the supply drive module 211 moves the cut-length logs 5 stably along the supply passage 21, passing sequentially through the second opening 313 and the first opening 43, ensuring a stable supply of the cut-length logs 5 when they are being cut. The cut-length compacted board slices 6 are then sent out through the discharge passage 22 via the third opening 123, facilitating continuous cutting and avoiding clogging of the cut-length compacted board slices 6. The cooperation of the second opening 313, the first opening 43 and the third opening 123 enables continuous operation of the cutting process, i.e., the material is continuously supplied and cut while the cut cut-length compacted board slices 6 are sent out.

[0058] In some further embodiments of the present invention, the supply drive module 211 includes drive rollers, which are located on both sides of the supply passage 21 and which respectively abut on both sides of the cut log 5; the supply passage 21 and the discharge passage 22 are both fixed to the upper surface of the machine base 41; the supply passage 21 is connected to the discharge passage 22; the supply passage 21 is located on the supply side of the support plate 42; the discharge passage 22 is located on the discharge side of the support plate 42; and the discharge passage 22 can be installed at an angle.

[0059] In these embodiments, the rotation of the drive roller causes frictional force to move the fixed-length logs 5 and transport them along the supply passage 21, passing sequentially through the second opening 313 and the first opening 43, while limiting the shaking of the fixed-length logs 5 and ensuring stable continuous supply. The inclined discharge passage 22 allows the cut fixed-length compacted plate slices 6 to be automatically sent along the discharge passage 22 by the promotion of the subsequent fixed-length compacted plate slices 6, thereby avoiding the accumulation and clogging of the fixed-length compacted plate slices 6 and maintaining uniformity.

[0060] It should be understood that in the prior art, the drive roller is usually driven by a drive motor, and its mechanical structure and operating principle are both conventional and will not be described here. The device for driving the movement of the cut logs 5 can be diverse, and the present invention only illustrates some excellent options and does not represent all possible embodiments.

[0061] In some embodiments of the present invention, the stopper mechanism 3 further includes a rigid stopper module 32, which is used to abut against and guide the cut logs 5 and limit displacement of the cut logs 5 in the conveying direction relative to the supply passage 21 and / or in the lateral direction of the supply passage 21.

[0062] In these embodiments, rigid stopper modules 32 limit the transport of cut logs 5 in the feed passage 21 and provide further security to ensure stability of the cut.

[0063] In some further embodiments of the present invention, the rigid stopper module 32 includes a rigid stopper plate, which is fixed to the machine base 41, and which is located on both sides of the supply passage 21 and can abut against the standard length log 5.

[0064] In these embodiments, the rigid stopper plates on both sides of the supply passage 21 effectively stop and guide the standard length logs 5, limiting displacement of the standard length logs 5 in the conveying direction relative to the supply passage 21 and / or in the lateral direction of the supply passage 21, which is advantageous in improving stability during the conveying process of the standard length logs 5.

[0065] In some embodiments of the present invention, the frame mechanism 4 further includes a slice drive module 44 for moving the cutter holder module 12 back and forth in the cutting direction.

[0066] In these embodiments, the slice drive module 44 drives the cutter holder module 12 to move back and forth, thereby driving the cutter module 11 to make a cut in the cutting direction, achieving continuous and stable cutting drive.

[0067] In some further embodiments of the present invention, the slice drive module 44 includes a motor 7, a cam 8, and a link 9, wherein the motor 7 is fixed to the machine base 41, the cam 8 is fixed to the output end of the motor 7, one end of the link 9 is pivotally connected to the cam 8, and the other end of the link 9 is pivotally connected to the cross beam 1221 at the bottom of the framework 122.

[0068] In these embodiments, the motor 7 drives the cam 8 to rotate, and then the link 9 drives the framework 122 to move back and forth along the guide module 13, so that the cutter body 111 moves back and forth in the cutting direction to achieve continuous cutting, which is advantageous in ensuring efficient and stable cutting and improving the quality of cutting.

[0069] Some more specific embodiments of the present invention will be described with reference to the operating process and principles of the present invention.

[0070] First, the length of the log 5 to be cut is placed in the supply passage 21. The supply drive module 211 drives the length of the log 5 along the supply passage 21, passing through the second opening 313 and the first opening 43 at the end closest to the support plate 42. As the log passes through the second opening 313, the elastic stopper plate 312 presses against it, effectively restricting the relative displacement of the length of the log 5 and the conveying mechanism 2 in the conveying and cutting directions. This, in conjunction with the supply drive module 211, ensures that the length of the log 5 is conveyed smoothly beneath the cutter body 111 for cutting. As the log passes through the first opening 43, the abutting and guiding action of the rigid stopper module 32 further improves the stability of continuous conveyance, ensuring that the length of the log 5 maintains a smooth posture throughout the cutting process.

[0071] Next, when the fixed-length log 5 is transported below the cutter body 111, it is driven by the motor 7 to move the framework 122 back and forth along the two guide rods 1311 of the guide rail 131, and then the cutter body 111 is moved to cut the fixed-length log 5 from top to bottom to obtain fixed-length compacted plate slices 6. The cooperation of the support plate 42 and the guide rail 131 ensures stable movement of the framework 122 and further ensures continuous cutting by the cutter body 111, so that the fixed-length log 5 is transported stably and simultaneously cut into multiple fixed-length compacted plate slices 6.

[0072] The cut-out compacted plate slice 6 is then extruded and pushed out of the cutter body 111 through the discharge passage 22.

[0073] By coordinating the conveying speed of the fixed-length log 5 with the cutting speed of the cutter body 111, not only can the fixed-length compacted board slices 6 be cut stably and at high quality at high speed, but the specified size of the fixed-length compacted board slices 6 can also be flexibly adjusted, making it more flexible to use, more adaptable, and more practical.

[0074] Although the present invention has been described in detail above using general descriptions and specific embodiments, it is obvious to those skilled in the art that some modifications or improvements can be made thereto based on the present invention. Therefore, any modifications or improvements made without departing from the spirit of the present invention are included in the scope of the claims for protection of the present invention. [Explanation of symbols]

[0075] 1—cutter mechanism, 11—cutter module, 111—cutter body, 1111—positioning groove, 1112—blade, 112—positioning sheet, 12—cutter holder module, 121—guide part, 122—framework, 1221—horizontal beam, 1222—longitudinal beam, 123—third opening, 124—positioning hole, 13—guide module, 131—guide rail, 1311—guide rod, 132—guide surface, 133—guide groove, 2—conveying mechanism, 2 1 - supply passage, 211 - supply drive module, 22 - discharge passage, 3 - stopper mechanism, 31 - elastic stopper module, 311 - stopper base, 312 - elastic stopper plate, 313 - second opening, 314 - adjustment pin, 32 - rigid stopper module, 4 - frame mechanism, 41 - machine base, 42 - support plate, 421 - bending portion, 43 - first opening, 44 - slice drive module, 5 - standard length log, 6 - standard length compaction plate slice, 7 - motor, 8 - cam, 9 - link

Claims

1. The slicer includes: a cutter module, a cutter holder module, and a guide module, the cutter holder module being used to mount the cutter module, and the guide module being a cutter mechanism for restricting the movement of a guide portion of the cutter holder module only in a cutting direction; a conveying mechanism for conveying cut logs to the cutter mechanism and delivering cut compacted board slices from the cutter mechanism; an elastic stopper module, the elastic stopper module including a stopper mechanism for pressing the cut-length log and limiting relative displacement between the cut-length log and the conveying mechanism in the conveying direction and the cutting direction; A slicer for cutting fixed-length compacted plate slices.

2. The slicer includes: The machine includes a base and a support plate, the bottom of the support plate and the base forming a first opening through which the cutter logs can pass freely, the elastic stopper module being located on the supply side of the support plate, and the cutter mechanism further including a frame mechanism being located on the discharge side of the support plate. A slicer for cutting the compacted board slices of claim 1.

3. The elastic stopper module comprises: a stopper base fixed to the supply side of the support plate for positioning the elastic stopper plate in the conveying mechanism; an elastic stopper plate attached to the lower side of the stopper base at an angle, the elastic stopper plate having a tail portion and a second opening formed therein for pressing the standard length log against the machine base to pass through; and an adjustment pin for adjusting the mounting inclination angle of the elastic stopper plate relative to the stopper base. A slicer for cutting the compacted board slices to a fixed length according to claim 2.

4. The cutter module includes: a cutter body including a blade with several positioning grooves, the blade being positioned in the cutter holder module by the several positioning grooves; a positioning seat for fixing the cutter body to the cutter holder module. A slicer for cutting the compacted board slices to a fixed length according to claim 3.

5. The cutter holder module includes: a framework having a third opening formed in its upper portion and in the machine base for allowing the cut-to-length compaction plate slices to pass freely; a positioning hole disposed on the upper cross beam of the framework for fixing the cutter body to the cross beam; A slicer for cutting the compacted board slices to a fixed length according to claim 4.

6. Two longitudinal beams of the frame are respectively formed as the guide portions, and the guide portions are used to position the two longitudinal beams on the guide module. A slicer for cutting the compacted board slices to a fixed length according to claim 5.

7. The guide module includes: a guide rail fixed to a bent portion of the support plate for positioning the cutter holder module on the discharge side of the support plate; a guide groove for allowing the guide portion to slide against the guide rail. A slicer for cutting the compacted board slices to length according to claim 6.

8. The transport mechanism includes: a feed drive module, the feed drive module including a feed passage for transporting the cut-length logs so that the cut-length logs pass through the second opening and the first opening in sequence; a discharge passage for delivering the compacted plate slices through the third opening. A slicer for cutting the compacted board slices to a fixed length according to claim 5.

9. The stopper mechanism further includes a rigid stopper module, which is used to contact and guide the cut-length logs and limit displacement of the cut-length logs in the conveying direction relative to the supply path and / or in the lateral direction of the supply path. A slicer for cutting the compacted board slices to length according to claim 8.

10. The frame mechanism includes: The cutting device further includes a slice driving module for moving the cutter holder module back and forth in the cutting direction. A slicer for cutting the compacted board slices to a fixed length according to claim 2.

Citation Information

Patent Citations

  • Wood cutting and processing method and special equipment using the method

    CN102189584B

  • A wood cutting machine and a wood cutting method

    CN107571341B

  • Preparation process of fixed-length compaction plate based on high frequency

    CN116214645A

  • Slicing machine for wood processing

    CN219634013U

  • Fixed-length compaction wood automatic production line

    CN219968293U