CN112518939A - Timber silk machine and core - Google Patents

Timber silk machine and core Download PDF

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Publication number
CN112518939A
CN112518939A CN202011430574.4A CN202011430574A CN112518939A CN 112518939 A CN112518939 A CN 112518939A CN 202011430574 A CN202011430574 A CN 202011430574A CN 112518939 A CN112518939 A CN 112518939A
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CN
China
Prior art keywords
wood
driving
shredding
mounting plate
planing
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Pending
Application number
CN202011430574.4A
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Chinese (zh)
Inventor
王慢慢
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Individual
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Individual
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Publication date
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Priority to CN202011430574.4A priority Critical patent/CN112518939A/en
Publication of CN112518939A publication Critical patent/CN112518939A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27LREMOVING BARK OR VESTIGES OF BRANCHES; SPLITTING WOOD; MANUFACTURE OF VENEER, WOODEN STICKS, WOOD SHAVINGS, WOOD FIBRES OR WOOD POWDER
    • B27L11/00Manufacture of wood shavings, chips, powder, or the like; Tools therefor
    • B27L11/02Manufacture of wood shavings, chips, powder, or the like; Tools therefor of wood shavings or the like
    • B27L11/04Manufacture of wood shavings, chips, powder, or the like; Tools therefor of wood shavings or the like of wood wool

Abstract

The invention discloses a wood filament making machine, which comprises a rack, a clamping mechanism, a filament planing mechanism and a driving mechanism, wherein the clamping mechanism is arranged on the rack; the clamping mechanism comprises a pair of compression rollers which are parallel to each other, can rotate around the axial lead direction of the clamping mechanism, are arranged on the rack and are respectively used for tightly abutting against two ends of the wood, and a driving component for driving the pair of compression rollers to rotate relatively; the wire planing mechanism comprises a mounting frame which is arranged on the rack in a sliding manner, a first mounting plate and a second mounting plate which are arranged at intervals and arranged in the mounting frame, a wire planing knife board which is fixedly arranged on the first mounting plate, and a leveling knife board which is fixedly arranged on the second mounting plate; the shredding knife plate and the strickling knife plate are gradually inclined towards the wood along the mutually approaching direction and can respectively move along the self-inclined direction; the driving assembly is used for driving the wood to move intermittently; the driving mechanism is used for driving the shredding mechanism to do reciprocating motion for at least once when the wood stops moving. The wood shredding machine disclosed by the invention has the advantages of high automation degree, high shredding efficiency and low processing cost.

Description

Timber silk machine and core
Technical Field
The invention relates to a wood silk making machine and a core material.
Background
The existing wood silk making machine is generally operated manually by workers, and during wood processing, the machine is required to be stopped continuously to adjust the position of the wood so as to finish the processing of the whole wood; simultaneously, dig silk mechanism and be lower to ligneous dig silk efficiency, lead to timber system silk machine overall work efficiency lower. After the wood wool planing tool is worn, the wood wool planing tool can only be replaced, so that the overall processing cost of the wood wool planing machine is higher.
Disclosure of Invention
The invention aims to provide a wood shredding machine and a core material, which have the advantages of high automation degree, higher shredding efficiency and lower processing cost. Core materials made from wood wool can be used to make tatami core panels.
In order to achieve the purpose, the invention adopts the technical scheme that:
a wood filament making machine comprises a rack, a clamping mechanism, a filament planing mechanism and a driving mechanism, wherein the clamping mechanism is arranged on the rack and used for clamping and driving wood to move along the direction vertical to the length extension direction of the clamping mechanism, the filament planing mechanism can slide along the length extension direction of the wood and is arranged on the rack and used for planing filaments of the wood, and the driving mechanism is used for driving the filament planing mechanism to move;
the clamping mechanism comprises a pair of compression rollers which are parallel to each other, can rotate around the axial lead direction of the clamping mechanism, are arranged on the rack and are respectively used for tightly abutting against two ends of the wood, and a driving component for driving the pair of compression rollers to rotate relatively to drive the wood to move;
the wire planing mechanism comprises a mounting frame which is slidably arranged on the rack, a first mounting plate and a second mounting plate which are arranged at intervals and arranged in the mounting frame, a wire planing knife board fixedly arranged on the first mounting plate, and a strickling knife board fixedly arranged on the second mounting plate; the shredding knife plate and the leveling knife plate are arranged at intervals and gradually extend towards the wood in an inclined mode along the mutually approaching direction, and the shredding knife plate and the leveling knife plate are respectively movably arranged on the first mounting plate and the second mounting plate along the self-inclined direction;
the driving assembly is used for driving the wood to move intermittently; and the driving mechanism is used for driving the shredding mechanism to perform at least one reciprocating motion when the wood stops moving.
Preferably, the driving assembly comprises a pair of worm gears which are coaxially connected to the same ends of the pair of pressing rollers in a one-to-one correspondence manner, a worm which is arranged on the rack and can rotate around the axis direction of the worm gear, and is used for driving the pair of worm gears to synchronously and reversely rotate, and a first motor used for driving the worm to rotate.
Preferably, the compression roller comprises a rotating shaft and a fixed abutting sleeve sleeved on the rotating shaft, and a plurality of protrusions for abutting wood are arranged on the periphery of the outer side of the abutting sleeve.
Preferably, the first and second electrodes are formed of a metal,
the length extending direction of the shredding knife plate is perpendicular to the length extending direction of the wood, a first long hole perpendicular to the length extending direction of the shredding knife plate is formed in the shredding knife plate, and the shredding mechanism further comprises a first bolt used for fixing the shredding knife plate on the first mounting plate through the first long hole;
the length extending direction of the scraping knife board is perpendicular to the length extending direction of wood, a second long hole perpendicular to the length extending direction of the scraping knife board is formed in the scraping knife board, and the shredding mechanism further comprises a second bolt used for enabling the second long hole to fix the scraping knife board on the second mounting plate.
More preferably still, the first and second liquid crystal compositions are,
the wire planing mechanism further comprises a first nut fixedly arranged on the first mounting plate and a third bolt which is threaded in the first nut and used for tightly abutting one side, away from the wood, of the wire planing cutting board;
the wire planing mechanism further comprises a second nut fixedly arranged on the second mounting plate, and a fourth bolt which is arranged in the second nut in a penetrating mode through threads and used for tightly abutting against one side, away from the wood, of the scraping knife board.
It is still further preferred that the first and second substrates are,
the first mounting plate, the wire planing knife plate and the third bolt are parallel to each other, and an included angle between the wire planing knife plate and wood is 30-40 degrees;
the second mounting plate, the scraping knife board and the fourth bolt are parallel to each other, and an included angle between the scraping knife board and wood is 30-40 degrees.
Preferably, the driving mechanism comprises a turntable assembly which can rotate around the axis direction of the driving mechanism and is arranged on the rack, a second motor which is used for driving the turntable assembly to rotate, and a first connecting rod of which two ends are respectively connected to the mounting frame and the turntable assembly in a rotating manner.
Preferably, a pair of the compression rollers is used for clamping the wood to be parallel to the horizontal direction or the vertical direction, and the clamping mechanism and the shredding mechanism are arranged at intervals along the moving direction of the wood.
Preferably, the wood shredding machine comprises a plurality of clamping mechanisms arranged on the rack at intervals along the length extension direction of the wood, a plurality of shredding mechanisms arranged on one side of the clamping mechanisms in a one-to-one correspondence manner, and second connecting rods connected between the adjacent shredding mechanisms; and the driving mechanism is used for driving the multiple groups of shredding mechanisms to synchronously move.
The core material is formed by inserting wood wool manufactured by the wood wool manufacturing machine between two mutually parallel boards and sewing the wood wool, the wood wool and the board in a direction perpendicular to the boards.
Due to the application of the technical scheme, compared with the prior art, the invention has the following advantages: the wood silk making machine and the core material are used for clamping a clamping mechanism of wood, can drive the wood to make intermittent motion along the direction vertical to the length direction of the wood, and have high automation degree; the shredding mechanism comprises a shredding knife plate and a leveling knife plate, and the mounting frame reciprocates once to shred the wood twice, so that the shredding efficiency is high; after the grater knife plate and the strickling knife plate are worn, the distance between the grater knife plate and the strickling knife plate relative to wood can be adjusted, and the processing cost is reduced. The core material prepared from the wood wool can be used for preparing the tatami core plate with higher hardness and without chemical additive components, and is relatively environment-friendly.
Drawings
FIG. 1 is a schematic diagram of the structure of the apparatus of the present invention;
FIG. 2 is a schematic structural view of the clamping mechanism;
fig. 3 is a schematic structural diagram of the shredding mechanism.
Wherein: 1. a frame; 2. a compression roller; 21. a rotating shaft; 22. abutting the sleeve; 23. a protrusion; 3. installing a frame; 4. a first mounting plate; 5. a second mounting plate; 6. a shredding knife plate; 61. a first long hole; 7. scraping the knife plate; 71. a second long hole; 8. a worm gear; 9. a worm; 10. a first bolt; 11. a second bolt; 12. a first nut; 13. a third bolt; 14. a second nut; 15. a fourth bolt; 16. a turntable assembly; 17. a second motor; 18. a first link; 19. a gap; 20. a guide rail.
Detailed Description
The technical scheme of the invention is further explained by combining the attached drawings.
Referring to fig. 1-3, the wood shredding machine includes a frame, a clamping mechanism disposed on the frame and used for clamping and driving wood to move along a direction perpendicular to a length extending direction of the clamping mechanism, a shredding mechanism slidably disposed on the frame along the length extending direction of the wood and used for shredding the wood, and a driving mechanism used for driving the shredding mechanism to move.
After the wood is clamped by the clamping mechanism, the length extending direction of the wood is parallel to the horizontal direction or the vertical direction. In this embodiment, the wood is clamped in the horizontal direction; the clamping mechanisms and the shredding mechanisms are arranged at intervals along the moving direction of the wood (i.e., the up-down direction in fig. 1). The shredding mechanism is arranged on the machine frame in a reciprocating sliding mode along the left-right direction (namely the left-right direction in the figure 1), and the clamping mechanism is used for clamping the wood and driving the wood to descend intermittently.
The clamping mechanism comprises a pair of compression rollers which are parallel to each other and can rotate around the axial lead direction of the compression rollers and are arranged on the rack, and a driving component for driving the pair of compression rollers to rotate relatively so as to drive the wood to descend intermittently. The pair of compression rollers are respectively used for tightly abutting against two ends of the wood, and the compression rollers are perpendicular to the wood. Referring to fig. 1, when the wood silk making machine works, the left compression roller rotates clockwise, and the right compression roller rotates anticlockwise synchronously.
In this embodiment, the drive assembly is adapted to drive the intermittent lowering of the timber; the driving mechanism is used for driving the shredding mechanism to carry out at least one reciprocating motion when the wood stops descending so as to shred the side part of the bottom of the wood through the shredding mechanism.
In this embodiment, the driving assembly includes a pair of worm gears coaxially connected to the same ends of the pair of pressing rollers, a worm rotatably disposed on the frame around the axis thereof and used for driving the pair of worm gears to rotate synchronously and reversely, and a first motor (not shown in the figure) for driving the worm to rotate. Referring to fig. 2, a pair of worm gears are coaxially and fixedly connected to the front ends of a pair of compression rollers in a one-to-one correspondence manner, the axial line direction of the compression rollers is perpendicular to the axial line direction of the worms, and the axial line direction of the worms is parallel to the length extension direction of wood. The worm is provided with threads meshed with the worm wheel, and the worm wheels on the left side and the right side are driven to synchronously and reversely rotate through the rotation of the worm.
In this embodiment, the pressing roller includes a rotating shaft, and a pressing sleeve fixedly sleeved on the rotating shaft, and a plurality of protrusions for pressing against wood are disposed on an outer circumference of the pressing sleeve. Through setting up the arch, increased the frictional force between compression roller and the timber tip, improved wood working efficiency and security.
The shredding mechanism comprises a mounting frame, a first mounting plate, a second mounting plate, a shredding knife plate and a leveling knife plate, wherein the mounting frame can slide along the left and right direction (namely the left and right direction in figure 1) and is arranged on the rack, the first mounting plate and the second mounting plate are arranged at intervals along the left and right direction and are arranged in the mounting frame, the shredding knife plate is fixedly arranged on the first mounting plate, and the leveling knife plate is fixedly arranged on the second mounting plate.
Referring to fig. 3, in the present embodiment, gaps are provided between the left side of the first mounting plate and the left side of the mounting frame, between the right side of the first mounting plate and the left side of the second mounting plate, and between the right side of the second mounting plate and the right side of the mounting frame, so that the manufactured wood wool falls through the gaps, and the influence of accumulation on processing is prevented.
Referring to fig. 3, in this embodiment, two parallel guide rails are disposed on the frame, the guide rails are parallel to the length extension direction of the wood and located below the mounting frame, and two sliding grooves (not shown in the figure) for sliding in cooperation with the guide rails are disposed on the mounting frame.
Referring to fig. 3, the right side of the grater blade is a serrated edge for grating wood; and the left side of the scraping knife board is a horizontal edge for scraping the wood. The right side of planing silk cutting board and the left side of strickleing off cutting board are equal in height, and through this setting, the once reciprocating motion of installing frame can realize planing silk to ligneous twice, and it is higher to plane silk efficiency. The reciprocating motion means that the wood planing blade and the strickling blade can respectively and integrally process the bottom side part of the wood along the length extension direction of the wood. When the mounting frame moves rightwards, wood is processed through the shredding knife plate; when the mounting frame moves leftwards, wood is processed through the strickle.
The shredding knife board and the scraping knife board are arranged at intervals and extend towards the wood gradually in an inclined mode along the mutually approaching direction. Referring to fig. 1, the left shaving board is gradually inclined upward from left to right to approach the wood, and the right shaving board is gradually inclined upward from right to left to approach the wood. The included angle between the grater knife plate and the wood is 30-40 degrees; the angle between the strike-off blade and the wood is also between 30-40 deg..
In this embodiment, the angles between the wood and the planing knife board and the strickling knife board are the same, and are both 35 °, and the right side of the planing knife board is as high as the left side of the strickling knife board, that is, the blades of the two knife boards are as high as each other.
The shredding knife board and the scraping knife board can be respectively arranged on the first mounting board and the second mounting board in a movable mode along the self inclination direction. Through the arrangement, after the grater knife plate and the strickling knife plate are worn, the distance between the grater knife plate and the strickling knife plate relative to wood can be adjusted, and the processing cost is reduced.
In this embodiment, the length extension direction (i.e. the up-down direction in fig. 3) of the wire cutting board is perpendicular to the length extension direction of the wood, and the wire cutting board is provided with a first long hole perpendicular to the length extension direction. The shredding mechanism further comprises a first bolt for fixing the shredding knife plate on the first mounting plate through the first long hole; the first mounting plate, the grater knife plate and the first long hole are parallel to each other;
the length extension direction (i.e. the up-down direction in fig. 3) of the strickle is perpendicular to the length extension direction of the wood, and the strickle is provided with a second long hole perpendicular to the length extension direction. The wire planing mechanism also comprises a second bolt for fixing the strickle plate on the second mounting plate through the second long hole; the second mounting plate, the strickle and the second long hole are parallel to each other.
As shown in fig. 3, the left side of the first long hole extends to the left edge of the wire cutting board, so that the wire cutting board can be taken down to the right; the right side of the second long hole extends to the right side edge of the strickle plate so as to be able to remove the strickle plate to the left.
In this embodiment, the shredding mechanism further includes a first nut fixedly disposed on the first mounting plate, and a third bolt disposed in the first nut in a threaded manner and used for tightly abutting against the left side of the shredding knife plate; the third bolt is parallel to the grater knife plate and used for preventing the grater knife plate from loosening in the machining process, so that the machining safety is improved;
the wire planing mechanism further comprises a second nut fixedly arranged on the second mounting plate, and a fourth bolt which is threaded in the second nut and used for abutting against the right side of the scraping and leveling knife board; the fourth bolt is parallel to the strickle and is used for preventing the strickle from loosening in the machining process and improving the machining safety.
The driving mechanism comprises a turntable assembly which can rotate around the axis direction of the driving mechanism and is arranged on the rack, a second motor used for driving the turntable assembly to rotate, and a first connecting rod with two ends respectively rotatably connected to the mounting frame and the turntable assembly.
Referring to fig. 1, in the present embodiment, the axis line direction of the turntable assembly is perpendicular to the length extension direction of the wood, and also extends in the horizontal direction. When the turntable assembly rotates, the right end of the first connecting rod displaces in the left-right direction so as to drive the mounting frame at the left end of the first connecting rod to reciprocate in the left-right direction.
In this embodiment, the rack is provided with a first sensor for detecting the height of the wood, and the machine is stopped when the wood falls to a set height.
In this embodiment, the rack is provided with a second sensor for detecting the mounting frame, and the worm drives the wood to descend once when sensing the mounting frame.
In other embodiments, the wood filament making machine includes a plurality of (two or more) clamping mechanisms arranged on the frame at intervals along the length extension direction of the wood, a plurality of filament planning mechanisms arranged on one side of the clamping mechanisms in a one-to-one correspondence manner, and a second connecting rod (not shown in the figure) connected between the adjacent filament planning mechanisms. The driving mechanism is used for driving the multiple groups of shredding mechanisms to synchronously shred the wood on the multiple clamping mechanisms, so that the processing efficiency is greatly improved.
After the wood wool manufactured by the wood wool manufacturing machine is stuffed between two wood boards which are parallel to each other, the core board manufactured by sewing the wood wool manufactured by the wood wool manufacturing machine, the wood wool manufacturing machine and the core board manufactured by sewing the wood wool manufactured by the wood wool manufacturing machine in the direction perpendicular to the wood boards can be used for manufacturing tatami core boards which are high in hardness and free of chemical additive components, and the environment is protected.
The above-mentioned embodiments are merely illustrative of the technical idea and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the scope of the present invention, and all equivalent changes or modifications made according to the spirit of the present invention should be covered in the scope of the present invention.

Claims (10)

1. A wood silk making machine is characterized in that: the wood planing machine comprises a rack, a clamping mechanism, a planing mechanism and a driving mechanism, wherein the clamping mechanism is arranged on the rack and used for clamping and driving wood to move along the direction vertical to the length extension direction of the clamping mechanism, the planing mechanism can slide along the length extension direction of the wood and is arranged on the rack and used for planing wood, and the driving mechanism is used for driving the planing mechanism to move;
the clamping mechanism comprises a pair of compression rollers which are parallel to each other, can rotate around the axial lead direction of the clamping mechanism, are arranged on the rack and are respectively used for tightly abutting against two ends of the wood, and a driving component for driving the pair of compression rollers to rotate relatively to drive the wood to move;
the wire planing mechanism comprises a mounting frame which is slidably arranged on the rack, a first mounting plate and a second mounting plate which are arranged at intervals and arranged in the mounting frame, a wire planing knife board fixedly arranged on the first mounting plate, and a strickling knife board fixedly arranged on the second mounting plate; the shredding knife plate and the leveling knife plate are arranged at intervals and gradually extend towards the wood in an inclined mode along the mutually approaching direction, and the shredding knife plate and the leveling knife plate are respectively movably arranged on the first mounting plate and the second mounting plate along the self-inclined direction;
the driving assembly is used for driving the wood to move intermittently; and the driving mechanism is used for driving the shredding mechanism to perform at least one reciprocating motion when the wood stops moving.
2. The wood-threading machine of claim 1, wherein: the driving assembly comprises a pair of worm gears which are coaxially connected with the same ends of the pair of compression rollers in a one-to-one correspondence manner, a worm which can rotate around the axis direction of the worm gears, is arranged on the rack and is used for driving the pair of worm gears to synchronously and reversely rotate, and a first motor used for driving the worm to rotate.
3. The wood-threading machine of claim 1, wherein: the compression roller comprises a rotating shaft and a fixed abutting sleeve sleeved on the rotating shaft, and a plurality of bulges used for abutting wood are arranged on the periphery of the outer side of the abutting sleeve.
4. The wood-threading machine of claim 1, wherein:
the length extending direction of the shredding knife plate is perpendicular to the length extending direction of the wood, a first long hole perpendicular to the length extending direction of the shredding knife plate is formed in the shredding knife plate, and the shredding mechanism further comprises a first bolt used for fixing the shredding knife plate on the first mounting plate through the first long hole;
the length extending direction of the scraping knife board is perpendicular to the length extending direction of wood, a second long hole perpendicular to the length extending direction of the scraping knife board is formed in the scraping knife board, and the shredding mechanism further comprises a second bolt used for enabling the second long hole to fix the scraping knife board on the second mounting plate.
5. A wood-wool making machine according to claim 4 wherein:
the wire planing mechanism further comprises a first nut fixedly arranged on the first mounting plate and a third bolt which is threaded in the first nut and used for tightly abutting one side, away from the wood, of the wire planing cutting board;
the wire planing mechanism further comprises a second nut fixedly arranged on the second mounting plate, and a fourth bolt which is arranged in the second nut in a penetrating mode through threads and used for tightly abutting against one side, away from the wood, of the scraping knife board.
6. A wood-wool making machine according to claim 5 wherein:
the first mounting plate, the wire planing knife plate and the third bolt are parallel to each other, and an included angle between the wire planing knife plate and wood is 30-40 degrees;
the second mounting plate, the scraping knife board and the fourth bolt are parallel to each other, and an included angle between the scraping knife board and wood is 30-40 degrees.
7. The wood-threading machine of claim 1, wherein: the driving mechanism comprises a turntable assembly which can rotate around the direction of the axis of the driving mechanism and is arranged on the rack, a second motor which is used for driving the turntable assembly to rotate, and a first connecting rod which is connected with the mounting frame and the turntable assembly in a rotating mode at two ends of the first connecting rod respectively.
8. The wood-threading machine of claim 1, wherein: the pair of compression rollers is used for clamping the wood to enable the wood to be parallel to the horizontal direction or the vertical direction, and the clamping mechanism and the shredding mechanism are arranged at intervals along the moving direction of the wood.
9. The wood-threading machine of claim 1, wherein: the wood filament making machine comprises a plurality of clamping mechanisms which are arranged on the rack at intervals along the length extension direction of wood, a plurality of filament planing mechanisms which are arranged on one side of the clamping mechanisms in a one-to-one correspondence manner, and second connecting rods connected between the adjacent filament planing mechanisms; and the driving mechanism is used for driving the multiple groups of shredding mechanisms to synchronously move.
10. A core material obtained by inserting a wood wool produced by the wood wool making machine according to any one of claims 1 to 9 between two wood boards parallel to each other and sewing the three in a direction perpendicular to the wood boards.
CN202011430574.4A 2020-12-09 2020-12-09 Timber silk machine and core Pending CN112518939A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011430574.4A CN112518939A (en) 2020-12-09 2020-12-09 Timber silk machine and core

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011430574.4A CN112518939A (en) 2020-12-09 2020-12-09 Timber silk machine and core

Publications (1)

Publication Number Publication Date
CN112518939A true CN112518939A (en) 2021-03-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202011430574.4A Pending CN112518939A (en) 2020-12-09 2020-12-09 Timber silk machine and core

Country Status (1)

Country Link
CN (1) CN112518939A (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2704460Y (en) * 2004-04-28 2005-06-15 蔡松山 Wood filement maker
CN2719531Y (en) * 2004-04-16 2005-08-24 郭伟洪 Woodwool automatic wood-shaving machine
JP2006346969A (en) * 2005-06-15 2006-12-28 Tadashige Kondo Plane blade for cutting wood wool, apparatus for producing wood wool, and wood wool
CN101913173A (en) * 2010-07-20 2010-12-15 李启山 Method for manufacturing resin-modified synthetic board
CN208017249U (en) * 2018-03-15 2018-10-30 李喜梅 A kind of environmental protection tatami plate
CN110877385A (en) * 2019-11-28 2020-03-13 新田县永顺木器制品有限责任公司 Multifunctional plane cutter for processing wooden products

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2719531Y (en) * 2004-04-16 2005-08-24 郭伟洪 Woodwool automatic wood-shaving machine
CN2704460Y (en) * 2004-04-28 2005-06-15 蔡松山 Wood filement maker
JP2006346969A (en) * 2005-06-15 2006-12-28 Tadashige Kondo Plane blade for cutting wood wool, apparatus for producing wood wool, and wood wool
CN101913173A (en) * 2010-07-20 2010-12-15 李启山 Method for manufacturing resin-modified synthetic board
CN208017249U (en) * 2018-03-15 2018-10-30 李喜梅 A kind of environmental protection tatami plate
CN110877385A (en) * 2019-11-28 2020-03-13 新田县永顺木器制品有限责任公司 Multifunctional plane cutter for processing wooden products

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Application publication date: 20210319