CN110202627A - A kind of carbon fiber high-speed cutting apparatus - Google Patents
A kind of carbon fiber high-speed cutting apparatus Download PDFInfo
- Publication number
- CN110202627A CN110202627A CN201910580540.4A CN201910580540A CN110202627A CN 110202627 A CN110202627 A CN 110202627A CN 201910580540 A CN201910580540 A CN 201910580540A CN 110202627 A CN110202627 A CN 110202627A
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- China
- Prior art keywords
- bevel gear
- auxiliary pulley
- wall
- shaft
- cutting machine
- Prior art date
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- 238000005520 cutting process Methods 0.000 title claims abstract description 145
- 229920000049 Carbon (fiber) Polymers 0.000 title claims abstract description 19
- 239000004917 carbon fiber Substances 0.000 title claims abstract description 19
- VNWKTOKETHGBQD-UHFFFAOYSA-N methane Chemical compound C VNWKTOKETHGBQD-UHFFFAOYSA-N 0.000 title claims abstract description 19
- 230000005540 biological transmission Effects 0.000 claims abstract description 83
- 239000000463 material Substances 0.000 claims abstract description 16
- 230000002146 bilateral effect Effects 0.000 claims description 9
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 abstract description 9
- 229910052799 carbon Inorganic materials 0.000 abstract description 9
- 239000000835 fiber Substances 0.000 abstract description 9
- 230000006378 damage Effects 0.000 abstract description 6
- 238000000034 method Methods 0.000 abstract description 6
- 238000012423 maintenance Methods 0.000 abstract description 3
- 238000010586 diagram Methods 0.000 description 6
- 208000027418 Wounds and injury Diseases 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 2
- 230000005611 electricity Effects 0.000 description 2
- 208000014674 injury Diseases 0.000 description 2
- 239000007787 solid Substances 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D1/00—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
- B26D1/01—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
- B26D1/12—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis
- B26D1/14—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter
- B26D1/157—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter rotating about a movable axis
- B26D1/18—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter rotating about a movable axis mounted on a movable carriage
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D5/00—Arrangements for operating and controlling machines or devices for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
- B26D5/08—Means for actuating the cutting member to effect the cut
- B26D5/083—Rack-and-pinion means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D5/00—Arrangements for operating and controlling machines or devices for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
- B26D5/08—Means for actuating the cutting member to effect the cut
- B26D5/086—Electric, magnetic, piezoelectric, electro-magnetic means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D7/00—Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
- B26D7/22—Safety devices specially adapted for cutting machines
Landscapes
- Life Sciences & Earth Sciences (AREA)
- Forests & Forestry (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Preliminary Treatment Of Fibers (AREA)
- Gear Transmission (AREA)
Abstract
A kind of carbon fiber high-speed cutting apparatus disclosed by the invention, including main body;Main body power cavity is equipped in the roof of the main body, the main body power mechanism of power can be provided for device by being equipped in the main body power cavity, main body drive cavity is symmetrically equipped at left and right sides of the main body in wall, main body transmission mechanism is equipped in the main body drive cavity, the configuration of the present invention is simple, maintenance convenience, it is easy to use, it is capable of the cutting carbon fibre material of fast accurate, entire cutting process is automatical and efficient, simultaneously in process, operator can be protected not come to harm in operation, substantially improve the working environment of operating personnel.
Description
Technical field
The present invention relates to high-speed cutting technical field, specially a kind of carbon fiber high-speed cutting apparatus.
Background technique
Nowadays society's science and technology is more and more flourishing, and the utilization of carbon fibre material is also more and more extensive but traditional manually to cut
The mode of carbon fibre material is cut, precision is poor, and inefficiency, while when operator's non-standard operation, it is most likely that
When cutting material, to itself bringing injury, therefore need to develop a kind of carbon fiber high-speed cutting apparatus, can be efficient, automatically cut
It cuts carbon fibre material while protection is able to carry out to operator, and then prevent operator from coming to harm in operation, cause
Production accident.
Summary of the invention
Technical problem:
The mode of traditional artificial cutting carbon fibre material, precision is poor, and inefficiency, when operator is in cutting material
When, non-standard operation is mechanical, can also be possible to when processing operation to itself bringing injury.
To solve the above problems, this example devises a kind of carbon fiber high-speed cutting apparatus, a kind of carbon fiber high speed of this example
Cutter device, including including main body, is equipped with main body power cavity in the roof of the main body, in the main body power cavity
Equipped with the main body power mechanism of power can be provided for device, main body is symmetrically equipped in wall at left and right sides of the main body and is passed
Dynamic chamber, the main body drive cavity is interior to be equipped with main body transmission mechanism, and the main body lower end is equipped with pulley chamber, the pulley chamber
It is interior it is symmetrical be equipped with and rotatable head pulley drive shaft, be installed with head pulley driving on the head pulley drive shaft outer wall
Bevel gear, head pulley driving bevel gear upper end can be connect with the main body transmission mechanism, outside the head pulley drive shaft
Symmetrical on wall to be installed with head pulley, the main body lower end is equipped with loading plate, the loading plate upper wall surface bilateral symmetry
Be equipped with main running rail, the head pulley can on the main running rail scroll forward and backward, and then the main body can be driven to hold described
It is slid back and forth on support plate, baffle controls chamber is all around symmetrically arranged in the loading plate, the baffle controls are intracavitary to be equipped with gear
Plate control mechanism, the baffle plate control mechanism can control baffle opening and closing, and the loading plate upper wall is equipped with processing cavity, the processing cavity
Inside all around it is symmetrically arranged with baffle mechanism, the baffle mechanism can be to provide safeguard function, the processing cavity when cutting material
Secondary sliding rail is equipped on roof, the pair sliding rail is equipped with the slave body that can be horizontally slipped, is equipped with pair in the slave body upper wall
Pulley chamber, the auxiliary pulley is intracavitary to be equipped with auxiliary pulley mechanism, described that the slave body is driven to horizontally slip described in, the pair
It is equipped with slave body power cavity in pulley chamber lower wall, is equipped with slave body power mechanism, the slave body in the slave body power cavity
Lower wall is rotatably connected to cutting machine rotation axis, and cutting machine rotation axis lower end is installed with cutting box body, the cutting cabinet
Cutting machine motor is installed in body left wall, the cutting machine motor right end has been connected by power rotatable cutting machine transmission shaft, institute
It states and is installed with high-speed cutting knife on cutting machine transmission shaft outer wall, the high-speed cutting knife is for cutting carbon fibre material.
Wherein, the main body power mechanism includes the main motor being fixedly arranged in the main body power cavity, the main electricity
Machine left and right ends are symmetrical and have been connected by power rotatable main drive shaft, and the main drive shaft is fixed far from described main motor one end
There is main drive shaft bevel gear, bilateral symmetry is equipped with rotatable active force locating shaft, the active in the main body power cavity
Active force bevel gear is installed on power locating shaft outer wall, the main drive shaft bevel gear engages with the active force bevel gear, institute
Active force locating shaft outer wall is stated equipped with active force belt wheel, the active force belt wheel is located on front side of the active force bevel gear, institute
It states and is connected with active force belt on active force belt wheel, the active force belt is connected to the host far from described main motor one end
Body transmission mechanism drives the active force belt to rotate, and then can drive the main body when active force belt wheel rotation
Transmission mechanism.
Wherein, the main body transmission mechanism includes in the main body drive cavity and rotatable first transmission is fixed
Position axis is installed with the second active force belt wheel on the first transmission locating shaft outer wall, the second active force belt wheel and the master
Power belt is connected, and is installed with the first drive bevel gear, first drive bevel gear on the first transmission locating shaft outer wall
Rotatable second transmission locating shaft is equipped on rear side of the second active force belt wheel, in the main body drive cavity, it is described
Second transmission locating shaft is installed with the second drive bevel gear close to symmetrical centre one end, second drive bevel gear and described the
The engagement of one drive bevel gear, the second transmission locating shaft is installed with third drive bevel gear far from symmetrical centre one end, described
It is rotatably equipped with third in main body drive cavity lower wall and is driven locating shaft, third transmission locating shaft top is installed with the 4th
Drive bevel gear, the 4th drive bevel gear are engaged with the third drive bevel gear, and the third is driven locating shaft bottom end
It is installed with the 5th drive bevel gear, the 5th drive bevel gear is engaged with the head pulley driving bevel gear, passes through the master
Body transmission mechanism can drive the head pulley driving bevel gear to rotate, and then drive head pulley drive shaft turns, the main cunning
Wheel drive shaft drives head pulley rotation, and then the main body slides back and forth on the main running rail.
Wherein, the slave body power mechanism includes the auxiliary-motor being fixedly arranged in the slave body power cavity right wall, described
Auxiliary-motor left end has been connected by power rotatable secondary driving shaft, and the secondary driving shaft outer wall is equipped with hollow shaft, the hollow shaft
Spline is connected to the secondary driving shaft, and magnetic slider is rotatably connected on the hollow shaft outer wall, and the magnetic slider right end is solid
Equipped with spring, the spring right end is installed with electromagnet, the electromagnet be fixed on before and after the slave body power cavity inner wall it
Between, when the magnet switching electricity, by stretching, the spring drives the magnetic slider to horizontally slip, the magnetic slider
It drives the hollow shaft to horizontally slip on the secondary driving shaft, auxiliary pulley control gear is installed on the hollow shaft outer wall,
It is equipped with rotatable auxiliary pulley transmission shaft in the slave body power cavity, is installed with auxiliary pulley on the auxiliary pulley transmission shaft outer wall
Transmission gear, the auxiliary pulley transmission gear are engaged with auxiliary pulley control gear, auxiliary pulley transmission shaft left and right ends
It is symmetrically arranged with the first auxiliary pulley bevel gear, the slave body power cavity upper wall bilateral symmetry is equipped with rotatable auxiliary pulley driving
Axis, auxiliary pulley drive shaft lower end are installed with the second auxiliary pulley bevel gear, the second auxiliary pulley bevel gear and described first
The engagement of auxiliary pulley bevel gear, auxiliary pulley drive shaft upper end is connected to the auxiliary pulley mechanism, is driven by the auxiliary pulley
Axis can drive the auxiliary pulley mechanism, be equipped with rotatable cutting machine control shaft, the cutting machine in the slave body power cavity
Control shaft right end is installed with the first cutting machine control gear, and the hollow shaft left end is installed with the second cutting machine control gear, institute
Stating the first cutting machine control gear can engage with second cutting machine control gear, fixed on the cutting machine control shaft outer wall
There is the first cutting machine gear, is equipped with rotatable cutting machine transmission shaft, the cutting machine transmission shaft in the slave body power cavity
The second cutting machine gear is installed on outer wall, the second cutting machine gear is engaged with the first cutting machine gear, described to cut
Cutting mill transmission shaft right end is installed with the first cutting machine bevel gear, and cutting machine rotation axis upper end is installed with the second cutting machine cone tooth
Wheel, the second cutting machine bevel gear engage with the first cutting machine bevel gear, when the second cutting machine bevel gear rotates
When, the cutting machine rotation axis can be driven to rotate, and then the cutting machine body pivot can be driven.
Wherein, the auxiliary pulley mechanism includes bilateral symmetry intracavitary and rotatable auxiliary pulley driving set on the auxiliary pulley
Axis, is installed with third auxiliary pulley bevel gear on the auxiliary pulley drive shaft outer wall, and the auxiliary pulley is intracavitary rotatable to be equipped with the
Four auxiliary pulley bevel gears, the 4th auxiliary pulley bevel gear are fixed on the auxiliary pulley drive shaft, and the 4th auxiliary pulley bores tooth
Wheel is engaged with the third auxiliary pulley bevel gear, and auxiliary pulley, the auxiliary pulley position are installed on the auxiliary pulley drive shaft outer wall
On rear side of the third auxiliary pulley bevel gear, the auxiliary pulley is connect with the secondary sliding rail, can band when auxiliary pulley rotation
The slave body is moved to horizontally slip on the secondary sliding rail.
Wherein, the baffle plate control mechanism includes intracavitary and rotatable screw rod, the screw rod set on the baffle controls
The first screw rod bevel gear is installed on smooth outer wall, the baffle controls are intracavitary to be equipped with rotatable rocker shaft, the rocker shaft
The second screw rod bevel gear is installed on outer wall, the second screw rod bevel gear engages with the first screw rod bevel gear, described to shake
Rocking bar is installed on bar axis outer wall, for the second screw rod bevel gear between the rocking bar and the screw rod, the rocking bar is remote
It is installed with Rocker handle from described second screw rod bevel gear one end, when Rocker handle is shaken, the second screw rod can be driven to bore tooth
Wheel rotation, the screw flight outer wall are equipped with slidable thread slider, and the thread slider and the screw rod pass through screw thread
Connection, the thread slider are equipped with rotatable first baffle locating shaft, the first gear close to the loading plate lateral ends
Plate locating shaft outer wall is equipped with baffle connection rod, and the baffle connection rod is connect with the baffle mechanism, and the baffle connection rod rotation is simultaneously
The baffle mechanism can be driven.
Wherein, the baffle mechanism includes the baffle in the processing cavity, and the baffle lower end passes through second baffle
Locating shaft is hinged on the loading plate, and the front side and left side of the baffle are equipped with the hollow cavity that opening deviates from symmetrical centre, institute
It states and is equipped with the baffle sliding block that can slide up and down in hollow cavity, the baffle connection rod upper end is articulated with gear by third baffle locating shaft
On plate sliding block, when the intracavitary thread slider sliding of the baffle controls, the baffle open or close can be driven.
The beneficial effects of the present invention are: the configuration of the present invention is simple, maintenance convenience is easy to use, is capable of cutting for fast accurate
Carbon fibre material is cut, entire cutting process is automatical and efficient, while in process, operator can be protected in operating process
In do not come to harm, substantially improve the working environment of operating personnel.
Detailed description of the invention
The present invention is described in detail by following specific embodiments and drawings for ease of explanation,.
Fig. 1 is a kind of overall structure diagram of carbon fiber high-speed cutting apparatus of the invention;
Fig. 2 is the overlooking structure diagram of Fig. 1;
Fig. 3 is the structural schematic diagram in direction " A-A " of Fig. 1;
Fig. 4 is the structural schematic diagram in direction " B-B " of Fig. 1;
Fig. 5 is the enlarged diagram of " C " structure of Fig. 1;
Fig. 6 is the enlarged diagram of " D " structure of Fig. 1.
Specific embodiment
Below with reference to Fig. 1-Fig. 6, the present invention is described in detail, for sake of convenience, now provides to hereafter described orientation
As follows: hereafter described front-rear direction up and down is consistent with the front-rear direction up and down of Fig. 1 projection relation itself.
The present invention relates to a kind of carbon fiber high-speed cutting apparatus, are mainly used in high-speed cutting field, below in conjunction with this
The present invention will be further described for invention attached drawing:
A kind of carbon fiber high-speed cutting apparatus of the present invention, including main body 10 are equipped in the roof of the main body 10
Main body power cavity 200, interior be equipped with of main body power cavity 200 can provide the main body power mechanism 201 of power for device,
It is symmetrically equipped with main body drive cavity 300 in 10 left and right sides wall of main body, is equipped with master in the main body drive cavity 300
Body transmission mechanism 301,10 lower end of main body are equipped with pulley chamber 150, in the pulley chamber 150 it is symmetrical be equipped with and
Rotatable head pulley drive shaft 29 is installed with head pulley driving bevel gear 82 on 29 outer wall of head pulley drive shaft, described
82 upper end of head pulley driving bevel gear can be connect with the main body transmission mechanism 301, on 29 outer wall of head pulley drive shaft
Symmetrical to be installed with head pulley 28,10 lower end of main body is equipped with loading plate 32, described 32 upper wall surface of loading plate or so
Symmetrical laying has a main running rail 31, the head pulley 28 can on the main running rail 31 scroll forward and backward, and then the host can be driven
Body 10 slides back and forth on the loading plate 32, and baffle controls chamber 800 is all around symmetrically arranged in the loading plate 32, described
Baffle plate control mechanism 801 is equipped in baffle controls chamber 800, the baffle plate control mechanism 801 can control baffle to be opened and closed, the carrying
32 upper wall of plate is equipped with processing cavity 700, is all around symmetrically arranged with baffle mechanism 701, the baffle mechanism in the processing cavity 700
701 can be equipped with secondary sliding rail 41, the pair sliding rail 41 to provide safeguard function when cutting material on 700 roof of processing cavity
It is equipped with the slave body 42 that can be horizontally slipped, is equipped with auxiliary pulley chamber 500, the auxiliary pulley chamber 500 in 42 upper wall of slave body
Interior to be equipped with auxiliary pulley mechanism 501, described 501 can drive the slave body 42 to horizontally slip along described 41, the auxiliary pulley chamber 500
It is equipped with slave body power cavity 600 in lower wall, is equipped with slave body power mechanism 601, the slave in the slave body power cavity 600
42 lower wall of body is rotatably connected to cutting machine rotation axis 72, and 72 lower end of cutting machine rotation axis is installed with cutting box body 48, institute
It states in cutting 48 left wall of box body and is installed with cutting machine motor 49,49 right end of cutting machine motor has been connected by power rotatably
Cutting machine transmission shaft 51, high-speed cutting knife 52 is installed on 51 outer wall of cutting machine transmission shaft, and the high-speed cutting knife 52 is used
In cutting carbon fibre material.
According to embodiment, the main body power mechanism 201 is described in detail below, the main body power mechanism
201 include the main motor 11 being fixedly arranged in the main body power cavity 200, and 11 left and right ends of main motor are symmetrical and power connects
It is connected to rotatable main drive shaft 12, the main drive shaft 12 is installed with main drive shaft bevel gear far from 11 main motor one end
13, the interior bilateral symmetry of the main body power cavity 200 is equipped with rotatable active force locating shaft 15, the active force locating shaft 15
Active force bevel gear 14 is installed on outer wall, the main drive shaft bevel gear 13 engages with the active force bevel gear 14, described
15 outer wall of active force locating shaft is equipped with active force belt wheel 16, before the active force belt wheel 16 is located at the active force bevel gear 14
Side is connected with active force belt 17 on the active force belt wheel 16, and the active force belt 17 is far from described 11 one end of main motor
It is connected to the main body transmission mechanism 301, when the active force belt wheel 16 rotation, drives 17 turns of the active force belt
It is dynamic, and then the main body transmission mechanism 301 can be driven.
According to embodiment, the main body transmission mechanism 301 is described in detail below, the main body transmission mechanism
301 include in the main body drive cavity 300 and rotatable first is driven locating shaft 21, the first transmission locating shaft
The second active force belt wheel 19 is installed on 21 outer walls, the second active force belt wheel 19 is connected with the active force belt 17, institute
It states and is installed with the first drive bevel gear 18 on 21 outer wall of the first transmission locating shaft, first drive bevel gear 18 is located at described the
The rear side of two active force belt wheel 19, is equipped with rotatable second transmission locating shaft 23 in the main body drive cavity 300, and described second
Transmission locating shaft 23 is installed with the second drive bevel gear 22 close to symmetrical centre one end, second drive bevel gear 22 with it is described
The engagement of first drive bevel gear 18, the second transmission locating shaft 23 are installed with third drive bevel gear far from symmetrical centre one end
24, it is rotatably equipped with third in 300 lower wall of main body drive cavity and is driven locating shaft 26, the third is driven locating shaft 26
Top is installed with the 4th drive bevel gear 25, and the 4th drive bevel gear 25 is engaged with the third drive bevel gear 24, institute
It states third transmission 26 bottom end of locating shaft and is installed with the 5th drive bevel gear 27, the 5th drive bevel gear 27 and the head pulley
Driving bevel gear 82 engages, and the head pulley driving bevel gear 82 can be driven to rotate by the main body transmission mechanism 301, into
And head pulley drive shaft 29 is driven to rotate, the head pulley drive shaft 29 drives head pulley 28 to rotate, and then the main body 10
It is slid back and forth on the main running rail 31.
According to embodiment, the slave body power mechanism 601 is described in detail below, the slave body power mechanism
601 include the auxiliary-motor 59 being fixedly arranged in 600 right wall of slave body power cavity, and 59 left end of auxiliary-motor has been connected by power can
The secondary driving shaft 61 of rotation, 61 outer wall of secondary driving shaft are equipped with hollow shaft 65, and 65 spline of hollow shaft is connected to described
Secondary driving shaft 61 is rotatably connected to magnetic slider 64 on 65 outer wall of hollow shaft, and 64 right end of magnetic slider is installed with bullet
Spring 63,63 right end of spring are installed with electromagnet 62, and the electromagnet 62 is fixed in 600 front and back of slave body power cavity
Between wall, when 62 power on/off of electromagnet, by stretching, the spring 63 drives the magnetic slider 64 to horizontally slip, institute
Stating magnetic slider 64 drives the hollow shaft 65 to horizontally slip on the secondary driving shaft 61, fixed on 65 outer wall of hollow shaft
There is auxiliary pulley to control gear 66, is equipped with rotatable auxiliary pulley transmission shaft 55, the auxiliary pulley in the slave body power cavity 600
Auxiliary pulley transmission gear 56 is installed on 55 outer wall of transmission shaft, the auxiliary pulley transmission gear 56 controls gear with the auxiliary pulley
66 engagements, 55 left and right ends of auxiliary pulley transmission shaft are symmetrically arranged with the first auxiliary pulley bevel gear 54, the slave body power cavity
600 upper walls bilateral symmetry is equipped with rotatable auxiliary pulley drive shaft 47, and 47 lower end of auxiliary pulley drive shaft is installed with the second pair
Pulley bevel gear 53, the second auxiliary pulley bevel gear 53 engage with the first auxiliary pulley bevel gear 54, and the auxiliary pulley drives
47 upper end of moving axis is connected to the auxiliary pulley mechanism 501, can drive the auxiliary pulley mechanism by the auxiliary pulley drive shaft 47
501, the slave body power cavity 600 is interior to be equipped with rotatable cutting machine control shaft 57, and 57 right end of cutting machine control shaft is solid
Equipped with the first cutting machine control gear 84,65 left end of hollow shaft be installed with the second cutting machine control gear 83, described first
Cutting machine control gear 84 can control gear 83 with second cutting machine and engage, fixed on 57 outer wall of cutting machine control shaft
There is the first cutting machine gear 58, is equipped with rotatable cutting machine transmission shaft 67, the cutting machine in the slave body power cavity 600
The second cutting machine gear 68, the second cutting machine gear 68 and the first cutting machine gear are installed on 67 outer wall of transmission shaft
58 engagements, 67 right end of cutting machine transmission shaft are installed with the first cutting machine bevel gear 69,72 upper end of cutting machine rotation axis
It is installed with the second cutting machine bevel gear 71, the second cutting machine bevel gear 71 engages with the first cutting machine bevel gear 69,
When the second cutting machine bevel gear 71 rotation, the cutting machine rotation axis 72 can be driven to rotate, and then described cut can be driven
Cutting mill cabinet 48 rotates.
According to embodiment, the auxiliary pulley mechanism 501 is described in detail below, the auxiliary pulley mechanism 501 includes
Bilateral symmetry is set in the auxiliary pulley chamber 500 and rotatable auxiliary pulley drive shaft 45,45 outer wall of auxiliary pulley drive shaft
On be installed with third auxiliary pulley bevel gear 44, the 4th auxiliary pulley bevel gear 46, institute are rotatably equipped in the auxiliary pulley chamber 500
It states the 4th auxiliary pulley bevel gear 46 and is fixed on the auxiliary pulley drive shaft 47, the 4th auxiliary pulley bevel gear 46 and the third
Auxiliary pulley bevel gear 44 engages, and is installed with auxiliary pulley 43 on 45 outer wall of auxiliary pulley drive shaft, the auxiliary pulley 43 is located at institute
44 rear side of third auxiliary pulley bevel gear is stated, the auxiliary pulley 43 is connect with the secondary sliding rail 41, when the auxiliary pulley 43 rotation,
The slave body 42 can be driven to horizontally slip on the secondary sliding rail 41.
According to embodiment, the baffle plate control mechanism 801 is described in detail below, the baffle plate control mechanism 801
Including being set in the baffle controls chamber 800 and rotatable screw rod 75, the first spiral shell is installed on 75 smooth outer wall of screw rod
Bar bevel gear 76 is equipped with rotatable rocker shaft 78 in the baffle controls chamber 800, and the is installed on 78 outer wall of rocker shaft
Two screw rod bevel gears 77, the second screw rod bevel gear 77 engages with the first screw rod bevel gear 76, outside the rocker shaft 78
Rocking bar 79 is installed on wall, the second screw rod bevel gear 77 is between the rocking bar 79 and the screw rod 75, the rocking bar
79 are installed with Rocker handle 81 far from described second screw rod bevel gear, 77 one end, when Rocker handle 81 is shaken, can drive
The rotation of two screw rod bevel gears 77,75 threaded outer wall of screw rod are equipped with slidable thread slider 74, the thread slider 74
It is connected through a screw thread with the screw rod 75, the thread slider 74 is equipped with rotatable the close to 32 lateral ends of loading plate
One baffle positioning axis 73,73 outer wall of first baffle locating shaft be equipped with baffle connection rod 38, the baffle connection rod 38 with it is described
Baffle mechanism 701 connects, and the baffle connection rod 38 rotates and can drive the baffle mechanism 701.
According to embodiment, the baffle mechanism 701 is described in detail below, the baffle mechanism 701 includes being set to
Baffle 35 in the processing cavity 700,35 lower end of baffle are hinged on the loading plate 32 by second baffle locating shaft 39
On, the front side and left side of the baffle 35 are equipped with the hollow cavity 151 that opening deviates from symmetrical centre, are equipped in the hollow cavity 151
Can slide up and down baffle sliding block 36, and 38 upper end of baffle connection rod is articulated with baffle sliding block 36 by third baffle locating shaft 37
On, when the thread slider 74 in the baffle controls chamber 800 slides, 35 open or close of baffle can be driven.
It is carried out specifically below in conjunction with use step of the Fig. 1 to Fig. 6 to one of this paper carbon fiber high-speed cutting apparatus
It is bright:
Before starting processing, shaken by hand Rocker handle 81 so that Rocker handle 81 drives rocking bar 79 that rocker shaft 78 is driven to rotate
Bar axis 78 drives screw rod 75 to rotate by the second screw rod bevel gear 77, the first screw rod bevel gear 76, and then drives thread slider 74
To device internal slide, thread slider 74 is driven by first baffle locating shaft 73, baffle connection rod 38, third baffle locating shaft 37
36 slide downward of baffle sliding block, and then by baffle sliding block 36, it drives baffle 35 to be rotated up around second baffle locating shaft 39, makes
It obtains baffle mechanism 701 to be closed, plays processing protective action.
Main motor 11 is run at this time, and main drive shaft 12 is driven to rotate, and main drive shaft 12 passes through main drive shaft bevel gear 13, master
Power bevel gear 14 drives active force locating shaft 15 to rotate, and active force locating shaft 15 passes through active force belt wheel 16, active force belt
17, the second active force belt wheel 19 drives the first transmission locating shaft 21 in main body drive cavity 300 to rotate, the first transmission locating shaft
21 drive the second transmission locating shaft 23 to rotate by the first drive bevel gear 18, the second drive bevel gear 22, the second transmission positioning
Axis 23 drives third to be driven locating shaft 26 and rotates by third drive bevel gear 24, the 4th drive bevel gear 25, and third transmission is fixed
Position axis 26 drives head pulley drive shaft 29 to rotate by the 5th drive bevel gear 27, head pulley driving bevel gear 82, and head pulley drives
Moving axis 29 drives head pulley 28 to rotate on main running rail 31 in turn, and then main body 10 is driven to slide into specific bit forward or backward
It sets, the auxiliary-motor 59 in slave body 42 is run at this time, drives secondary driving shaft 61 to rotate, the electromagnet in slave body power cavity 600
62 are powered, and drive magnetic slider 64 to slide to the left by spring 63, so that magnetic slider 64 drives hollow shaft 65 to slide to the left, into
And makes the auxiliary pulley in hollow shaft 65 control gear 66 and engaged with auxiliary pulley transmission gear 56, and then drive auxiliary pulley driving cog
56 rotation of wheel, auxiliary pulley transmission gear 56 drive auxiliary pulley transmission shaft 55 to rotate, and auxiliary pulley transmission shaft 55 passes through the first auxiliary pulley
Bevel gear 54, the second auxiliary pulley bevel gear 53 drive auxiliary pulley drive shaft 47 to rotate, and auxiliary pulley drive shaft 47 is sliding by fourth officer
Bevel gear 46, third auxiliary pulley bevel gear 44 are taken turns, auxiliary pulley drive shaft 45 is driven to rotate, auxiliary pulley drive shaft 45 drives secondary in turn
Pulley 43 slides on secondary sliding rail 41, so that slave body 42 slides into predetermined position, subsequent electromagnet 62 passes through spring 63
Magnetic slider 64 is driven to continue sliding to the left so that auxiliary pulley control gear 66 is separated with auxiliary pulley transmission gear 56, second cuts
Machine controls gear 83 and engages with the first cutting machine control gear 84, and then cutting machine control shaft 57 is driven to rotate, cutting machine control
Axis 57 drives cutting machine transmission shaft 67 to rotate by the first cutting machine gear 58, the second cutting machine gear 68, cutting machine transmission shaft
67 by the first cutting machine bevel gear 69, the second cutting machine bevel gear 71, cutting machine rotation axis 72, and then drives cutting box body
48 rotations, after cutting box body 48 turns to designated position, electromagnet 62 is powered off, and the second cutting machine controls gear 83 and first
Cutting machine controls gear 84 and separates, and the cutting machine motor 49 cut in box body 48 at this time is run, and drives cutting machine transmission shaft 51
Rotation, cutting machine transmission shaft 51 drive the rotation of high-speed cutting knife 52 to start cutting material.
The beneficial effects of the present invention are: the configuration of the present invention is simple, maintenance convenience is easy to use, is capable of cutting for fast accurate
Carbon fibre material is cut, entire cutting process is automatical and efficient, while in process, operator can be protected in operating process
In do not come to harm, substantially improve the working environment of operating personnel.
The above, the specific embodiment only invented, but invent protection scope be not limited thereto, it is any without
The change or replacement that creative work is expected are crossed, should all be covered within the protection scope of invention.Therefore, the protection scope of invention
It should be determined by the scope of protection defined in the claims.
Claims (7)
1. a kind of carbon fiber high-speed cutting apparatus of the invention, including main body, the roof of the main body is interior to be equipped with main body
Power cavity, interior be equipped with of the main body power cavity can provide the main body power mechanism of power, described main body or so for device
It is symmetrically equipped with main body drive cavity in two sidewalls, is equipped with main body transmission mechanism, the host in the main body drive cavity
Body lower end is equipped with pulley chamber, the pulley it is intracavitary it is symmetrical be equipped with and rotatable head pulley drive shaft, the head pulley
Head pulley driving bevel gear is installed on drive shaft outer wall, head pulley driving bevel gear upper end can be driven with the main body
Mechanism connection;
Symmetrical on the head pulley drive shaft outer wall to be installed with head pulley, the main body lower end is equipped with loading plate, institute
It states loading plate upper wall surface bilateral symmetry and is equipped with main running rail;
Baffle controls chamber is all around symmetrically arranged in the loading plate, the baffle controls are intracavitary to be equipped with baffle plate control mechanism,
The baffle plate control mechanism can control baffle opening and closing, and the loading plate upper wall is equipped with processing cavity, in the processing cavity all around
It is symmetrically arranged with baffle mechanism;
Secondary sliding rail is equipped on the processing cavity roof, the pair sliding rail is equipped with the slave body that can be horizontally slipped, the slave
Auxiliary pulley chamber is equipped in body upper wall, the auxiliary pulley is intracavitary to be equipped with auxiliary pulley mechanism;
It is equipped with slave body power cavity in the auxiliary pulley chamber lower wall, is equipped with slave body power mechanism in the slave body power cavity,
The slave body lower wall is rotatably connected to cutting machine rotation axis, and cutting machine rotation axis lower end is installed with cutting box body, institute
It states in cutting box body left wall and is installed with cutting machine motor, the cutting machine motor right end has been connected by power rotatable cutting machine
Transmission shaft is installed with high-speed cutting knife on the cutting machine transmission shaft outer wall, and the high-speed cutting knife is for cutting carbon fiber material
Material.
2. a kind of carbon fiber high-speed cutting apparatus as claimed in claim, it is characterised in that: the main body power mechanism packet
The main motor being fixedly arranged in the main body power cavity is included, the main motor left and right ends are symmetrical and have been connected by power rotatable
Main drive shaft, the main drive shaft are installed with main drive shaft bevel gear, the main body power cavity far from described main motor one end
Interior bilateral symmetry is equipped with rotatable active force locating shaft, is installed with active force bevel gear on the active force locating shaft outer wall,
The main drive shaft bevel gear engages with the active force bevel gear;
The active force locating shaft outer wall is equipped with active force belt wheel, before the active force belt wheel is located at the active force bevel gear
Side is connected with active force belt on the active force belt wheel, and the active force belt is connected to institute far from described main motor one end
State main body transmission mechanism.
3. a kind of carbon fiber high-speed cutting apparatus as claimed in claim, it is characterised in that: the main body transmission mechanism packet
Include be set to the main body drive cavity in and it is rotatable first transmission locating shaft, it is described first transmission locating shaft outer wall on it is fixed
There is the second active force belt wheel, the second active force belt wheel is connected with the active force belt;
The first drive bevel gear is installed on the first transmission locating shaft outer wall, and first drive bevel gear is located at described the
Rotatable second transmission locating shaft is equipped on rear side of two active force belt wheels, in the main body drive cavity, second transmission is fixed
Position axis is installed with the second drive bevel gear, second drive bevel gear and the first transmission cone tooth close to symmetrical centre one end
Wheel engagement;
The second transmission locating shaft is installed with third drive bevel gear far from symmetrical centre one end, under the main body drive cavity
It is rotatably equipped with third in wall and is driven locating shaft, third transmission locating shaft top is installed with the 4th drive bevel gear, institute
The 4th drive bevel gear is stated to engage with the third drive bevel gear;
Third transmission locating shaft bottom end is installed with the 5th drive bevel gear, the 5th drive bevel gear and the head pulley
Driving bevel gear engagement.
4. a kind of carbon fiber high-speed cutting apparatus as claimed in claim, it is characterised in that: the slave body power mechanism packet
The auxiliary-motor being fixedly arranged in the slave body power cavity right wall is included, the auxiliary-motor left end has been connected by power rotatable secondary driving
Axis, the secondary driving shaft outer wall are equipped with hollow shaft, and the hollow shaft spline is connected to the secondary driving shaft, outside the hollow shaft
Magnetic slider is rotatably connected on wall, the magnetic slider right end is installed with spring, and the spring right end is installed with electromagnet, institute
Electromagnet is stated to be fixed between the inner wall of the slave body power cavity front and back;
It is installed with auxiliary pulley control gear on the hollow shaft outer wall, is equipped with rotatable auxiliary pulley in the slave body power cavity
Transmission shaft is installed with auxiliary pulley transmission gear, the auxiliary pulley transmission gear and the pair on the auxiliary pulley transmission shaft outer wall
Pulley controls gear engagement;
Auxiliary pulley transmission shaft left and right ends are symmetrically arranged with the first auxiliary pulley bevel gear, the slave body power cavity upper wall or so
It is symmetrically arranged with rotatable auxiliary pulley drive shaft, auxiliary pulley drive shaft lower end is installed with the second auxiliary pulley bevel gear, described
Second auxiliary pulley bevel gear engages with the first auxiliary pulley bevel gear;
Auxiliary pulley drive shaft upper end is connected to the auxiliary pulley mechanism, can drive the pair by the auxiliary pulley drive shaft
Pulley mechanism, the slave body power cavity is interior to be equipped with rotatable cutting machine control shaft, and the cutting machine control shaft right end is fixed
There is the first cutting machine to control gear, the hollow shaft left end is installed with the second cutting machine control gear, the first cutting machine control
Gear processed can control gear with second cutting machine and engage;
It is installed with the first cutting machine gear on the cutting machine control shaft outer wall, is equipped in the slave body power cavity rotatable
Cutting machine transmission shaft, is installed with the second cutting machine gear on the cutting machine transmission shaft outer wall, the second cutting machine gear with
The first cutting machine gear engagement, the cutting machine transmission shaft right end are installed with the first cutting machine bevel gear, the cutting machine
Rotation axis upper end is installed with the second cutting machine bevel gear, and the second cutting machine bevel gear nibbles with the first cutting machine bevel gear
It closes.
5. a kind of carbon fiber high-speed cutting apparatus as described in claim 1, it is characterised in that: the auxiliary pulley mechanism includes a left side
The right side is symmetrically set in that the auxiliary pulley is intracavitary and rotatable auxiliary pulley drive shaft, is installed on the auxiliary pulley drive shaft outer wall
Three auxiliary pulley bevel gears, the auxiliary pulley is intracavitary to be rotatably equipped with the 4th auxiliary pulley bevel gear, and the 4th auxiliary pulley bores tooth
Wheel is fixed on the auxiliary pulley drive shaft, and the 4th auxiliary pulley bevel gear engages with the third auxiliary pulley bevel gear;
Auxiliary pulley is installed on the auxiliary pulley drive shaft outer wall, after the auxiliary pulley is located at the third auxiliary pulley bevel gear
Side, the auxiliary pulley are connect with the secondary sliding rail.
6. a kind of carbon fiber high-speed cutting apparatus as described in claim 1, it is characterised in that: the baffle plate control mechanism includes
The intracavitary and rotatable screw rod set on the baffle controls is installed with the first screw rod bevel gear, institute on the screw rod smooth outer wall
It states that baffle controls are intracavitary to be equipped with rotatable rocker shaft, is installed with the second screw rod bevel gear on the rocker shaft outer wall, described the
Two screw rod bevel gears engage with the first screw rod bevel gear;
Rocking bar is installed on the rocker shaft outer wall, the second screw rod bevel gear between the rocking bar and the screw rod,
The rocking bar is installed with Rocker handle far from described second screw rod bevel gear one end;
The screw flight outer wall is equipped with slidable thread slider, the thread slider and the screw rod and is connected by screw thread
It connects, the thread slider is equipped with rotatable first baffle locating shaft, the first baffle close to the loading plate lateral ends
Locating shaft outer wall is equipped with baffle connection rod, and the baffle connection rod is connect with the baffle mechanism, and the baffle connection rod rotation simultaneously can
Drive the baffle mechanism.
7. a kind of carbon fiber high-speed cutting apparatus as described in claim 1, it is characterised in that: the baffle mechanism includes being set to
Baffle in the processing cavity, the baffle lower end are hinged on the loading plate by second baffle locating shaft, the baffle
Front side and left side be equipped with the hollow cavity that opening deviates from symmetrical centre, it is sliding that the baffle that can slide up and down is equipped in the hollow cavity
Block, the baffle connection rod upper end are articulated on baffle sliding block by third baffle locating shaft.
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CN201910580540.4A CN110202627B (en) | 2019-06-28 | 2019-06-28 | High-speed cutting device of carbon fiber |
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CN201910580540.4A CN110202627B (en) | 2019-06-28 | 2019-06-28 | High-speed cutting device of carbon fiber |
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CN110202627B CN110202627B (en) | 2020-11-13 |
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JPH08281597A (en) * | 1995-04-14 | 1996-10-29 | Idemitsu D S M Kk | Cover device for cutting blade part of cutter |
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CN206030092U (en) * | 2016-07-29 | 2017-03-22 | 安阳市凤舞木工机械有限公司 | Large -scale timber surface machining double column planing machine |
CN108927858A (en) * | 2018-07-09 | 2018-12-04 | 睢宁县永华木业有限公司 | A kind of fiberboard edge strip cutting mechanism |
CN208358895U (en) * | 2018-04-13 | 2019-01-11 | 天津摩根坤德高新科技发展有限公司 | A kind of preparation facilities of battery membrane structure oriented heat dissipating type heat insulating mattress |
CN208514603U (en) * | 2018-07-03 | 2019-02-19 | 四川省远大专用凭证印务有限公司 | Pneumatic type examination paper sealing hole punching machine special |
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JPH08281597A (en) * | 1995-04-14 | 1996-10-29 | Idemitsu D S M Kk | Cover device for cutting blade part of cutter |
CN205764304U (en) * | 2016-05-26 | 2016-12-07 | 贵州盘江煤电建设工程有限公司 | A kind of walking cutter sweep for 3E wallboard and control system |
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