CN113370325A - Multi-station slotting device for processing bamboo artware and slotting method thereof - Google Patents

Multi-station slotting device for processing bamboo artware and slotting method thereof Download PDF

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Publication number
CN113370325A
CN113370325A CN202110644616.2A CN202110644616A CN113370325A CN 113370325 A CN113370325 A CN 113370325A CN 202110644616 A CN202110644616 A CN 202110644616A CN 113370325 A CN113370325 A CN 113370325A
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China
Prior art keywords
slotting
module
bamboo
processing
station
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CN202110644616.2A
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Chinese (zh)
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王光武
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Anhui Shucheng Huazhu Industry Co ltd
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Anhui Shucheng Huazhu Industry Co ltd
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Priority to CN202110644616.2A priority Critical patent/CN113370325A/en
Publication of CN113370325A publication Critical patent/CN113370325A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C5/00Machines designed for producing special profiles or shaped work, e.g. by rotary cutters; Equipment therefor
    • B27C5/02Machines with table
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C5/00Machines designed for producing special profiles or shaped work, e.g. by rotary cutters; Equipment therefor
    • B27C5/02Machines with table
    • B27C5/06Arrangements for clamping or feeding work
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27JMECHANICAL WORKING OF CANE, CORK, OR SIMILAR MATERIALS
    • B27J1/00Mechanical working of cane or the like

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Forests & Forestry (AREA)
  • Wood Science & Technology (AREA)
  • Milling, Drilling, And Turning Of Wood (AREA)

Abstract

The invention discloses a multi-station slotting device for processing bamboo artware and a slotting method thereof, relates to the technical field of processing of bamboo artware, and aims to solve the problems that when the existing slotting device in the prior art is used for slotting a bamboo product, only one side of the bamboo product can be processed, certain flaws exist in processing fineness, and manual correction is needed, so that the whole production efficiency is limited. The grooving mechanism module comprises a working table plate and a power supply control cabinet, the power supply control cabinet is arranged at two ends of the grooving mechanism module, the inner side of the power supply control cabinet is provided with a control module, the control module is electrically connected with the power supply control cabinet, metal rail rods are arranged between the power supply control cabinets, the metal rail rods are four, the two ends of each metal rail rod are provided with a track module, the track modules are fixedly connected with the metal rail rods, the outer sides of the track modules are provided with grooving clamps, and the outer surfaces of the metal rail rods are provided with rotary cutting tool control shafts.

Description

Multi-station slotting device for processing bamboo artware and slotting method thereof
Technical Field
The invention relates to the technical field of bamboo artware processing, in particular to a multi-station slotting device and a slotting method for bamboo artware processing.
Background
The bamboo handicraft is made up by using bamboo as raw material and making carving and painting, and its bamboo handicraft is different from general wood handicraft, and after the bamboo handicraft is cooked and dried, its service life is far longer than that of wooden product, and because the bamboo is not drawn out, it has been advocated by the Chinese people's elegant ancient times, so that the bamboo handicraft is more popular than wood handicraft, and more popular with people.
However, when the conventional grooving device is used for grooving a bamboo product, only one surface of the bamboo product can be machined, certain defects exist in machining fineness, and manual correction is needed, so that the whole production efficiency is limited; therefore, the existing requirements are not met, and the multi-station slotting device and the slotting method for processing the bamboo artware are provided.
Disclosure of Invention
The invention aims to provide a multi-station slotting device for processing bamboo artware and a slotting method thereof, and aims to solve the problems that the traditional slotting device provided in the background technology can only process one surface of a bamboo product when slotting the bamboo product, certain flaws exist in the processing fineness, and the processing fineness needs to be corrected by matching with the manual work, so that the whole production efficiency is limited.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a multistation fluting device is used in processing of bamboo system handicraft, includes fluting mechanism module, fluting mechanism module includes work platen and power control machine case, and the power control machine case sets up the both ends at fluting mechanism module, the inboard of power control machine case is provided with control module, and control module and power control machine case electric connection, be provided with the metal rail pole between the power control machine case, and the metal rail pole has four, the both ends of metal rail pole all are provided with the track module, and track module and metal rail pole fixed connection, the outside of track module is provided with the fluting anchor clamps, and the surface of metal rail pole is provided with rotary-cut cutter accuse axle.
Preferably, the power control cabinet is internally provided with a switching receiving groove, the track module is connected with the power control cabinet through the switching receiving groove, the top of the working table plate is provided with a limiting sliding groove, and the bottom of the working table plate is provided with a damping foot rest.
Preferably, one side of the slotting fixture is provided with a clamping sleeve, the clamping sleeve rotates with the slotting fixture, the other side of the slotting fixture is provided with a motor module, and the motor module is electrically connected with the slotting fixture.
Preferably, the inside of centre gripping sheathed tube is provided with pipe arc splint, and pipe arc splint and centre gripping sleeve pipe sliding connection, be provided with the anchor clamps sliding sleeve around the fluting anchor clamps, and the anchor clamps sliding sleeve passes through the screw connection with the fluting anchor clamps.
Preferably, the rotary cutting tool control shaft comprises a driving square shaft, fixing clamp groups are arranged around the driving square shaft and are connected with the driving square shaft through screws, a cutting die clamp group is arranged above the fixing clamp groups, and a contact combination groove is formed in the outer surface of each fixing clamp group.
Preferably, the cutting die clamping group is connected with the fixing clamping group through a contact combination groove, a cutting die plate is arranged at the top of the cutting die clamping group and is connected with the cutting die clamping group through a screw, a spring knife groove is formed in the outer surface of the cutting die plate, and a blade module is arranged in the spring knife groove.
Preferably, the blade module comprises a coupling end and a slotting blade, the coupling end is connected with the slotting blade through a screw, and the coupling end is rotatably connected with the spring knife slot.
A slotting method of a multi-station slotting device for processing bamboo artware comprises the following steps:
the method comprises the following steps: placing the bamboo product after primary processing between slotting fixtures, and adjusting the slotting fixtures to proper positions according to the length to fix the bamboo product;
step two: after the fixing is finished, the terminal system is connected to a control module at one end of the equipment, so that various working data of the equipment are obtained, and then grooving programming is carried out according to the processing requirements and the actual size of the bamboo products;
step three: each metal rail rod is provided with a group of rotary cutting tool control shafts, and the rotary cutting tool control shafts are positioned between the two groups of clamps and can be matched with programming to independently or synchronously operate;
step four: after programming is completed, cutters are selected according to the machining size of the groove body, four groups of cutter structures can be installed on each group of rotary cutting cutter control shafts, the rotation of a square shaft can be realized through an internal central rotary drum during machining, cutter changing action is completed, and meanwhile the central rotary drum can horizontally move along a rail rod;
step five: in the grooving process, the blade module is turned outwards and unfolded and is in contact with the surface of the bamboo product, the turning angle is 0-60 degrees, then the blade module clamping set drives the cutter head to rapidly move left and right along the contact combined groove on the fixed clamping set, and the unfolding angle of the blade module is continuously increased along with the increase of the depth of the groove body;
step six: when the cutter is changed, the cutter blade module is retracted into the cutter template and then driven by the square shaft to rotate clockwise or anticlockwise.
Compared with the prior art, the invention has the beneficial effects that:
1. the metal rail rods are distributed on four end corners of the slotting fixture, the slotting fixture can horizontally move through the metal rail rods, each metal rail rod is provided with a group of rotary-cut tool control shafts, the rotary-cut tool control shafts are positioned between the two groups of fixtures, so that the working range of the rotary-cut tool control shafts can be limited through the slotting fixture, and the rotary-cut tool control shafts can be matched with programming to independently or synchronously run, so that the slotting working efficiency can be improved;
2. the cutter die clamping set on the rotary-cut cutter control shaft can rapidly move left and right along the contact combined groove on the fixed clamping set, so that a cutter head can rapidly open the groove on the surface of a bamboo product, each rotary-cut cutter control shaft can be provided with four groups of cutter structures, and a driving square shaft serving as a carrier can rotate by taking an internal central rotary drum as the center during processing to finish the cutter changing action;
3. the outer surface of the knife template is provided with the spring knife groove, the blade module is arranged in the spring knife groove and consists of a coupling end and a grooving blade, the grooving blade is arranged on the coupling end when the knife template is used, then the coupling end is combined with the knife template, and the spring knife groove is matched with the coupling end to realize the functions of shrinking and extending the knife;
4. the clamping sleeve is internally of a conical structure, and the diameters of two ends of the clamping sleeve are increased from small to large, so that the bamboo product can be shrunk and clamped when the pipe arc clamping plate moves, and the clamping sleeve can be used for driving the bamboo product to rotate in the grooving process, so that different cutting feed directions can be changed.
Drawings
FIG. 1 is an overall front view of the present invention;
FIG. 2 is a schematic view of the inventive worktop;
FIG. 3 is a schematic view of the grooving jig of the present invention;
FIG. 4 is a schematic view of a spindle control structure of the rotary cutting tool of the present invention;
fig. 5 is a schematic structural diagram of a blade module according to the present invention.
In the figure: 1. a grooving mechanism module; 2. a work table; 3. a power supply control cabinet; 4. a track module; 5. slotting a clamp; 6. a metal rail rod; 7. controlling a shaft of a rotary cutting tool; 8. a control module; 9. driving the square shaft; 10. a central drum; 11. fixing the card group; 12. a contact combination groove; 13. a cutting die clamping set; 14. a knife template; 15. a blade module; 16. a spring knife slot; 17. a coupling end; 18. a grooving blade; 19. a fixture sliding sleeve; 20. clamping the sleeve; 21. a motor module; 22. a pipe arc clamp plate; 23. correcting the shaft block; 24. transferring the receiving groove; 25. a limiting chute; 26. a shock-absorbing foot rest.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1, an embodiment of the present invention: a multi-station slotting device for processing bamboo artware comprises a slotting mechanism module 1, wherein the slotting mechanism module 1 comprises a working table plate 2 and power supply control cases 3, the power supply control cases 3 are arranged at two ends of the slotting mechanism module 1, the inner side of each power supply control case 3 is provided with a control module 8, the control modules 8 are electrically connected with the power supply control cases 3, metal rail rods 6 are arranged between the power supply control cases 3, four metal rail rods 6 are arranged, two ends of each metal rail rod 6 are respectively provided with a track module 4, the track modules 4 are fixedly connected with the metal rail rods 6, a slotting clamp 5 is arranged at the outer side of each track module 4, the outer surface of each metal rail rod 6 is provided with a rotary cutting tool control shaft 7, the metal rail rods 6 are distributed on four end corners of the slotting clamp 5, and the slotting clamp 5 can horizontally move through the metal rail rods 6, each metal rail rod 6 is provided with a group of rotary cutting tool control shafts 7, the rotary cutting tool control shafts 7 are positioned between the two groups of clamps, so that the working range of the rotary cutting tool control shafts 7 can be limited by the slotting clamps 5, and the rotary cutting tool control shafts 7 can be matched with programming to run independently or synchronously, so that the slotting working efficiency can be improved.
Referring to fig. 2, a switching receiving groove 24 is formed in the power supply control cabinet 3, the track module 4 is connected to the power supply control cabinet 3 through the switching receiving groove 24, so as to achieve a connection function of a power supply circuit, a limiting sliding groove 25 is formed in the top of the working table plate 2, the limiting sliding groove 25 is matched with a correcting shaft block 23 at the bottom of the slotting fixture 5, so that a left limiting function and a right limiting function can be achieved, and a damping foot rest 26 is arranged at the bottom of the working table plate 2, so that the stability of the device is improved.
Referring to fig. 3, a clamping sleeve 20 is disposed on one side of a slotting fixture 5, the clamping sleeve 20 and the slotting fixture 5 rotate, a motor module 21 is disposed on the other side of the slotting fixture 5, the motor module 21 is electrically connected with the slotting fixture 5, a pipe arc clamping plate 22 is disposed on the inner side of the clamping sleeve 20, the pipe arc clamping plate 22 is slidably connected with the clamping sleeve 20, a fixture sliding sleeve 19 is disposed around the slotting fixture 5, the fixture sliding sleeve 19 is connected with the slotting fixture 5 through a screw, one end of a bamboo product is placed inside the clamping sleeve 20, the clamping sleeve 20 is of a conical structure, and the diameters of the two ends are gradually increased, so that the bamboo product can be shrunk and clamped when the pipe arc clamping plate 22 moves, the bamboo product can be driven to rotate by the clamping sleeve 20 during slotting, and different cutting directions can be changed.
Referring to fig. 4-5, the rotary cutting tool control shaft 7 includes a driving square shaft 9, a fixing clamp group 11 is disposed around the driving square shaft 9, the fixing clamp group 11 is connected to the driving square shaft 9 by screws, a cutting die clamp group 13 is disposed above the fixing clamp group 11, a contact combination groove 12 is disposed on an outer surface of the fixing clamp group 11, the cutting die clamp group 13 is connected to the fixing clamp group 11 by the contact combination groove 12, the cutting die clamp group 13 can move left and right rapidly along the contact combination groove 12 on the fixing clamp group 11, so that a tool bit can perform rapid grooving work on a surface of a bamboo product, a cutting die plate 14 is disposed on a top of the cutting die clamp group 13, the cutting die plate 14 is connected to the cutting die clamp group 13 by screws, four sets of cutting tool structures can be installed on each rotary cutting tool control shaft 7, the driving square shaft 9 serving as a carrier can rotate around an internal central rotary drum 10 during processing, finishing the tool changing action, the outer surface of the cutter template 14 is provided with a spring cutter groove 16, the blade module 15 is arranged in the spring cutter groove 16, the blade module 15 comprises a coupling end 17 and a grooving blade 18, the grooving blade 18 is arranged on the coupling end 17 during use, then the coupling end 17 is combined with the cutter template 14, the coupling end 17 is connected with the grooving blade 18 through a screw, the coupling end 17 is rotatably connected with the spring cutter groove 16, the spring cutter groove 16 is matched with the coupling end 17 to realize the functions of shrinking and extending the cutter, and the turning angle of the blade module 15 is 0-60 degrees.
A slotting method of a multi-station slotting device for processing bamboo artware comprises the following steps:
the method comprises the following steps: placing the bamboo product after primary processing between the slotting fixtures 5, and adjusting the slotting fixtures 5 to proper positions according to the length to fix the bamboo product;
step two: after the fixing is finished, the terminal system is connected to a control module 8 at one end of the equipment, so that various working data of the equipment are obtained, and then grooving programming is carried out according to the processing requirements and the actual size of the bamboo products;
step three: each metal rail rod 6 is provided with a group of rotary cutting tool control shafts 7, and the rotary cutting tool control shafts 7 are positioned between the two groups of clamps and can be matched with programming to independently or synchronously operate;
step four: after programming is completed, cutters are selected according to the machining size of the groove body, four groups of cutter structures can be installed on each group of rotary cutting cutter control shaft 7, the rotation of a square shaft can be realized through the internal central rotary drum 10 during machining, cutter changing action is completed, and meanwhile, the central rotary drum 10 can also horizontally move along a rail rod;
step five: in the grooving process, the blade module 15 is turned outwards and unfolded and is in contact with the surface of the bamboo product, the turning angle is 0-60 degrees, then the blade module clamping group 13 drives the cutter head to rapidly move left and right along the contact combined groove 12 on the fixed clamping group 11, and the unfolding angle of the blade module 15 is continuously increased along with the increase of the depth of the groove body;
step six: when the cutter is changed, the cutter die set 15 is retracted into the cutter die plate 14 and then rotated clockwise or counterclockwise by the driving square shaft 9.
The working principle is as follows: when in use, the bamboo product after preliminary processing is put between the slotting fixtures 5, the slotting fixtures 5 are adjusted to a proper position according to the length to be fixed, after the fixing is finished, a terminal system is connected to a control module 8 at one end of the equipment to obtain various working data of the equipment, then slotting programming is carried out according to the processing requirement and the actual size of the bamboo product, a group of rotary-cut cutter control shafts 7 are installed on each metal rail rod 6, the rotary-cut cutter control shafts 7 are positioned between two groups of fixtures and can be matched with the programming to carry out independent or synchronous operation, cutters are selected according to the processing size of a groove body after the programming is finished, each group of rotary-cut cutter control shafts 7 can be provided with four groups of cutter structures, the rotation of a square shaft can be realized through a central rotary drum 10 inside during processing, the cutter changing action is finished, and the central rotary drum 10 can also horizontally move along the rail rods, the blade module 15 outwards overturns and expands in the grooving process, and contacts with the surface of a bamboo product, the overturning angle is 0-60 degrees, then the blade module clamping set 13 drives the cutter head to rapidly move left and right along the contact combined groove 12 on the fixed clamping set 11, along with the increase of the depth of the groove body, the expanding angle of the blade module 15 can be continuously increased, the blade module 15 can be retracted into the blade template 14 during tool changing, and then clockwise or anticlockwise rotation is carried out through the driving square shaft 9.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (8)

1. The utility model provides a multistation fluting device is used in processing of bamboo system handicraft, includes fluting mechanism module (1), its characterized in that: the grooving mechanism module (1) comprises a working table plate (2) and a power control cabinet (3), the power control cabinet (3) is arranged at two ends of the grooving mechanism module (1), the inner side of the power control cabinet (3) is provided with control modules (8), the control modules (8) are electrically connected with the power control cabinet (3), metal rail rods (6) are arranged between the power control cabinet (3), the metal rail rods (6) are four, two ends of each metal rail rod (6) are provided with track modules (4), the track modules (4) are fixedly connected with the metal rail rods (6), grooving fixtures (5) are arranged on the outer sides of the track modules (4), and rotary cutting tool control shafts (7) are arranged on the outer surfaces of the metal rail rods (6).
2. The multi-station slotting device for processing the bamboo artware as claimed in claim 1, wherein the multi-station slotting device comprises: the power control cabinet is characterized in that a switching receiving groove (24) is formed in the power control cabinet (3), the track module (4) is connected with the power control cabinet (3) through the switching receiving groove (24), a limiting sliding groove (25) is formed in the top of the working table plate (2), and a damping foot rest (26) is arranged at the bottom of the working table plate (2).
3. The multi-station slotting device for processing the bamboo artware as claimed in claim 1, wherein the multi-station slotting device comprises: one side of the slotting clamp (5) is provided with a clamping sleeve (20), the clamping sleeve (20) rotates with the slotting clamp (5), the other side of the slotting clamp (5) is provided with a motor module (21), and the motor module (21) is electrically connected with the slotting clamp (5).
4. The multi-station slotting device for processing the bamboo artware as claimed in claim 3, wherein the multi-station slotting device comprises: the inside of centre gripping sleeve pipe (20) is provided with pipe arc splint (22), and pipe arc splint (22) and centre gripping sleeve pipe (20) sliding connection, be provided with anchor clamps sliding sleeve (19) around fluting anchor clamps (5), and anchor clamps sliding sleeve (19) pass through the screw connection with fluting anchor clamps (5).
5. The multi-station slotting device for processing the bamboo artware as claimed in claim 1, wherein the multi-station slotting device comprises: the rotary cutting tool control shaft (7) comprises a driving square shaft (9), fixing clamp groups (11) are arranged on the periphery of the driving square shaft (9), the fixing clamp groups (11) are connected with the driving square shaft (9) through screws, a cutting die clamp group (13) is arranged above the fixing clamp groups (11), and a contact combination groove (12) is formed in the outer surface of each fixing clamp group (11).
6. The multi-station slotting device for processing the bamboo artware as claimed in claim 5, wherein the multi-station slotting device comprises: the cutting die clamping group (13) is connected with the fixed clamping group (11) through the contact combination groove (12), a cutting die plate (14) is arranged at the top of the cutting die clamping group (13), the cutting die plate (14) is connected with the cutting die clamping group (13) through screws, a spring knife groove (16) is formed in the outer surface of the cutting die plate (14), and a blade module (15) is arranged inside the spring knife groove (16).
7. The multi-station slotting device for processing the bamboo artware as claimed in claim 6, wherein the multi-station slotting device comprises: the blade module (15) comprises a coupling end (17) and a slotting blade (18), the coupling end (17) is connected with the slotting blade (18) through a screw, and the coupling end (17) is rotatably connected with the spring knife groove (16).
8. A slotting method of a multi-station slotting device for processing bamboo artware is based on the multi-station slotting device for processing the bamboo artware of any one of claims 1 to 7, and comprises the following steps:
the method comprises the following steps: placing the bamboo product after primary processing between the slotting fixtures (5), and adjusting the slotting fixtures (5) to proper positions according to the length to fix the bamboo product;
step two: after the fixing is finished, the terminal system is connected to a control module (8) at one end of the equipment, so that various working data of the equipment are obtained, and then grooving programming is carried out according to the processing requirements and the actual size of the bamboo products;
step three: each metal rail rod (6) is provided with a group of rotary cutting tool control shafts (7), and the rotary cutting tool control shafts (7) are positioned between the two groups of clamps and can be matched with programming to independently or synchronously operate;
step four: after programming is completed, cutters are selected according to the machining size of the groove body, four groups of cutter structures can be installed on each group of rotary cutting cutter control shafts (7), the rotation of a square shaft can be realized through an internal central rotary drum (10) during machining, cutter changing action is completed, and meanwhile the central rotary drum (10) can also horizontally move along a rail rod;
step five: in the grooving process, the blade module (15) is turned outwards and unfolded and is in contact with the surface of the bamboo product, the turning angle is 0-60 degrees, then the blade module clamping group (13) drives the cutter head to move left and right rapidly along the contact combined groove (12) on the fixed clamping group (11), and the unfolding angle of the blade module (15) is increased continuously along with the increase of the depth of the groove body;
step six: when the cutter is changed, the cutter die set (15) is retracted into the cutter template (14) and then driven by the driving square shaft (9) to rotate clockwise or anticlockwise.
CN202110644616.2A 2021-06-09 2021-06-09 Multi-station slotting device for processing bamboo artware and slotting method thereof Pending CN113370325A (en)

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CN202110644616.2A CN113370325A (en) 2021-06-09 2021-06-09 Multi-station slotting device for processing bamboo artware and slotting method thereof

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Application Number Priority Date Filing Date Title
CN202110644616.2A CN113370325A (en) 2021-06-09 2021-06-09 Multi-station slotting device for processing bamboo artware and slotting method thereof

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JP3076526U (en) * 2000-09-25 2001-04-06 憲幸 並河 Container cutter
JP2009291992A (en) * 2008-06-03 2009-12-17 Isowa Corp Machine for making corrugated fiberboard sheet box
JP2013240899A (en) * 2012-05-18 2013-12-05 Meinan Mach Works Inc Dewatering device of veneer turned from raw wood of needle-leaved tree
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CN211278762U (en) * 2019-10-08 2020-08-18 兰州天成易居建筑装饰有限公司 Woodworking cutting bed convenient to use
CN111805636A (en) * 2020-06-08 2020-10-23 东南大学 Single-shaft three-tool-rest wood lathe
CN111890164A (en) * 2020-06-18 2020-11-06 谢艳文 Bamboo raw materials periphery processing equipment

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