CN216941510U - Fly hair device of circular combing and flying dyeing integrated machine - Google Patents

Fly hair device of circular combing and flying dyeing integrated machine Download PDF

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Publication number
CN216941510U
CN216941510U CN202220455039.2U CN202220455039U CN216941510U CN 216941510 U CN216941510 U CN 216941510U CN 202220455039 U CN202220455039 U CN 202220455039U CN 216941510 U CN216941510 U CN 216941510U
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comb
cutter
fly
flying
edge
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陈奇伟
相琼颖
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Ningbo Yuhong Zhengxin Intelligent Technology Co ltd
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Ningbo Yuhong Zhengxin Intelligent Technology Co ltd
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Abstract

The utility model relates to a hair flying device of a circular comb flying and dyeing integrated machine, which comprises a positioning component and a hair flying mechanism, wherein the circular comb flying and dyeing integrated machine can be matched with the corresponding positioning component, the hair flying mechanism, the hair dyeing mechanism, the feeding mechanism and the discharging mechanism in a turntable type transmission mode for a comb to be processed, so that the full-automatic comb needle grinding and cutting and hair dyeing of the comb are realized; compared with the manual grinding and cutting process in the prior art, the automatic grinding and cutting device greatly improves the working efficiency of grinding and cutting the card wire of the card wire, reduces the influence of human factors because the whole process is automatically controlled and operated by a master control program, ensures that the combs produced in the same batch have higher quality stability, and reduces the production cost of the combs to a great extent.

Description

Fly hair device of circular combing and flying dyeing integrated machine
Technical Field
The utility model relates to the technical field of automation equipment, in particular to a hair flying device of a circular combing, flying and dyeing integrated machine.
Background
Fig. 10 shows a circular comb, which comprises a cylindrical body a and a plurality of comb pins b radially distributed on the outer peripheral surface of the body a, wherein the comb pins b are arranged on the surface of the body a in rows along the axial direction, the body a is hollow, the front end of the body a is provided with an opening a1, the rear end of the body a is closed, the rear end wall of the body a is provided with a handle c extending backwards, and the diameter of the handle c is smaller than that of the body a.
The needles of the circular comb are generally made of plastic materials, and have flexibility and certain hardness. The comb on the market at present has lower manufacturing cost, and the head of a comb needle cannot be treated generally, so that the comb is not friendly to the scalp and is easy to damage the scalp; the head of the comb needle is coated with hair oil to form a round head, for example, the prior application 201510509599.6 of the applicant provides a hair dyeing machine for the comb needle, however, the round head of the untreated comb needle is coated with the round head formed by the hair oil, but the round head may fall off after long-term use, at the moment, the sharp head of the comb needle is easy to damage the scalp of a human body, and most consumers can only abandon the comb.
Through experimental discovery, polish earlier to the card wire head, eliminate former card wire and once only cut or the sharp-pointed structure that the cutting formed, cladding hair oil again not only can improve the bonding fastness between button head and the card wire greatly, even the button head drops moreover, the card wire head also is difficult to cause the harm to human scalp.
However, it is very troublesome to polish the comb needle at present, and it is polished to it on the hair grinder to need the handheld comb of operating personnel to arrange in, and not only production efficiency is low, need consume a large amount of manpower and materials, moreover because the instability of human factor, easily lead to the comb needle tip because of the inconsistent problem that leads to the fact the comb needle size to have the deviation of polishing degree, lead to the whole quality decline of comb, increased the manufacturing cost of comb to a great extent.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem of the prior art and provides the fly device of the circular combing, fly and dyeing all-in-one machine, which has high production efficiency and convenient operation and can improve the product quality.
The technical scheme adopted by the utility model for solving the technical problems is as follows:
the utility model provides a circular comb flies flying hair device who dyes all-in-one, circular comb flies to dye all-in-one is provided with mounting platform, can the pivoted carousel of setting on mounting platform, and the edge of carousel is provided with a plurality of operation stations of arranging along circumference, and its characterized in that includes:
the positioning assemblies are multiple and are respectively arranged on each operation station of the circular comb flying and dyeing integrated machine, a jacket for clamping a handle of a comb is arranged on the outer side of each positioning assembly, and the jacket can move up and down and is arranged on the positioning assemblies in a circumferential rotating mode; the comb is transversely placed, and the front end of the comb faces outwards;
and the fly hair mechanism is arranged on the assembly platform close to the edge of the turntable and is provided with a fly hair cutter group which can be contacted with the comb needle of the comb under the state that the jacket moves downwards so as to grind and cut the comb needle.
Preferably, the positioning assembly comprises:
the first base is vertically arranged on the turntable and is positioned at the edge of the turntable;
the first guide rail is vertically arranged on the outer wall surface of the first base;
the first sliding block is arranged on the first guide rail in a vertically movable mode and is positioned on the outer side of the first base;
the first support block is arranged on the outer side of the first sliding block and slides up and down along with the first sliding block, and a shaft hole penetrating through the first base outwards is formed in the first support block;
the clamping sleeve can be rotatably inserted into the shaft hole, the outer end of the clamping sleeve is exposed out of the first supporting block, and a clamping opening for clamping a comb handle is formed in the outer end of the clamping sleeve; the bearing is arranged in the shaft hole and sleeved between the inner wall of the shaft hole and the outer wall of the jacket and used for supporting the jacket to rotate;
the elastic piece is arranged on the rotary table and is abutted against the bottom of the first supporting block so as to enable the elastic piece to always keep the upward movement trend; the elastic part is a spring, the upper end of the elastic part is propped against the bottom of the first supporting block, and the lower end of the elastic part is propped against the rotary disc.
The follower is shaped into a ring, is arranged at the front side of the first supporting block, is sleeved on the periphery of the jacket and synchronously moves up and down with the jacket and the first supporting block, and the upper end of the follower is higher than the top of the first supporting block when the first supporting block moves up to the limit state.
The first limiting block is arranged in the clamping sleeve and used for limiting the depth of the comb handle inserted into the clamping opening, and a crack is reserved between the rear end of the comb body and the outer end of the clamping sleeve in the state that the comb handle is inserted into the clamping opening.
Be provided with the second stopper that is used for carrying on the restriction to the position of first supporting block under the first supporting block, be provided with the cylinder that the piston rod just is connected with the second stopper up on the assembly platform, the piston rod rebound of this cylinder can promote the lower extreme counterbalance of second stopper and first supporting block to carry on spacingly to the position of first supporting block.
By adopting the structure, the comb handle of the comb is inserted into the clamping opening of the clamping sleeve by the feeding and discharging mechanism, and the positioning assembly and the comb to be processed can be conveyed to corresponding stations by the rotation of the turntable.
In the present invention, the fly mechanism includes:
the fly cutter set is supported on the assembly platform, a fly opening which is positioned outside the jacket and extends along the axial direction of the jacket is formed in the top of the fly cutter set, and a cutter for grinding and cutting the end part of the card wire is arranged at the fly opening;
the first limiting assembly is arranged on the outer side of the hair cutter group and is provided with a first positioning column which can move up and down and move back and forth relative to the jacket, and the first positioning column is used for being inserted into the front end opening of the comb body and restraining the comb on the jacket;
the first driving assembly is arranged on the fixed disc above the rotary disc and located on the inner side of the positioning assembly and comprises a first roller capable of moving up and down and rotating in the circumferential direction, the first roller is in contact with the follower in the downward moving state and is used for pressing the comb down to the comb needle to be in contact with the hair flying knife group, and the first roller is used for driving the follower to rotate in the rotating state so as to drive the comb to rotate.
Preferably, the fly cutter set comprises:
the second base is fixed on the assembly platform, the upper part of the second base is hollow, an installation space is formed in the upper part of the second base, and the burr hole is positioned at the top of the installation space;
the first cutter can be rotatably arranged in the mounting space, the axial direction of the first cutter is consistent with the axial direction of the jacket, the first cutter comprises a shaft positioned in the center and blades radially distributed on the outer peripheral wall of the shaft at intervals, the blades extend along the length direction of the burr flying opening, and blades are formed at the outer edge of the blades;
the second cutter is transversely arranged at the top of the second base, the edge of the burr opening and the edge of the second cutter are formed by the edge of the first side part, the edge of the first cutter is close to the edge of the second cutter, and a gap is formed between the edge of the first cutter and the edge of the second cutter.
The cutting edge face of second cutter is arranged from the first side department downward sloping gradually of second side direction, and the second side is arranged with above-mentioned first side edge is relative for grind the cutting edge face of the first cutter of cutting of card wire and inwards incline the downward sloping gradually from the edge and arrange to the card wire, grind under cutting the state, be 170 ~ 175 degrees contained angle between the cutting edge of first cutter and the cutting edge of second cutter. By adopting the structure, the grinding and cutting degree of the card wire is convenient to control.
The second cutter is shaped into a flat plate, and the second cutter gradually inclines downwards from the middle part to the burr flying position to form a first guide inclined plane. This structure is convenient for make smooth and easy rotation of card wire to grind and cut the position, avoids the card wire excessively to extrude and influences everywhere and grind and cut the degree.
The fly hair knife tackle still include action wheel, drive wheel, belt and second driving piece, the second driving piece is located under the operation platform and power output shaft is arranged towards the lateral part, the action wheel is installed on the power output shaft of second driving piece, the drive wheel is installed in the outer end of the axle of first cutter, the belt passes operation platform transmission and connects between action wheel and follow driving wheel. The shaft of the first cutter is supported on the side wall of the second base through a bearing, and the second driving piece is a motor.
Preferably, the first cutter rotates towards the direction gradually far away from the second cutter, and the rotation direction of the jacket is opposite to that of the first cutter. The structure enables the blade face of the first cutter to contact the carding wire first, so that the effect of grinding and then cutting is formed, and the grinding and cutting precision is improved.
Preferably, the first stop assembly comprises:
the third base is vertically arranged on the operating platform and is positioned on the outer side of the fly cutter group;
the second guide rail is vertically arranged on the third base;
the second sliding block can be connected to the second guide rail in a vertically sliding manner;
the first air cylinder is arranged on the second sliding block and is provided with a piston rod which is transversely arranged towards the rotary table;
the first mounting block is connected with a piston rod of the first air cylinder and can move in a reciprocating manner relative to the comb under the pushing action of the piston rod;
and the first positioning column is arranged on one side of the first mounting block, which faces the comb.
The end part of the first positioning column is formed into a conical part with the diameter gradually reduced towards the comb direction, a roller outside the conical part is further arranged on the first positioning column, and the roller can be rotatably sleeved on the periphery of the first positioning column. The structure can reduce the friction between the comb and the comb in the process of positioning the comb.
Preferably, the first drive assembly comprises:
the fourth base is vertically arranged on the fixed disc above the turntable and is positioned on the inner side of the positioning assembly;
the second cylinder is arranged at the upper part of the fourth base and is provided with a piston rod arranged downwards;
the third driving piece is arranged at the lower end of the piston rod of the second air cylinder and can move up and down under the driving of the piston rod, and the third driving piece is provided with a power output shaft which is transversely arranged towards the direction of the grinding and cutting assembly; the third driving piece is a motor;
and the first roller is connected to the power output shaft of the third driving piece and can rotate under the driving of the third driving piece, and the first roller is positioned on the follower of the positioning component.
The follower can be made of materials with larger friction, such as rubber, silica gel and the like, and the periphery of the first roller can be provided with a convex rib which can increase the friction between the first roller and the follower so as to improve the driving effect and the driving reliability.
Two sets of clamping sleeves and followers which are adjacent and arranged close to each other can be arranged on one set of positioning assemblies, so that the first roller can be arranged above the space between the two followers, and after the first roller descends, one first roller can simultaneously contact with the two followers and drive the two followers to rotate through friction, the number of the first driving assemblies is reduced, and the equipment cost is reduced.
As the improvement, the fly device of the circular combing and flying dyeing integrated machine also comprises a fine grinding mechanism arranged at the downstream of the fly mechanism, the fine grinding mechanism is provided with a rotatably sanding cylinder, and the surface of the sanding cylinder is coated with a metal mesh. The structure can further finely grind the end parts of the comb needles after being ground and cut, so that the end parts of the comb needles are more round and smooth, but have relatively rough surfaces.
A sanding method of a circular combing, flying and dyeing integrated machine comprises the following steps:
the comb is conveyed to a grinding and cutting mechanism station by the positioning assembly through rotation of the turntable, the second cylinder of the first driving assembly drives the first roller to move downwards by overcoming the elasticity of the elastic piece, and the first roller presses and holds the follower to move the comb downwards until the comb is contacted with the blade of the second cutter;
the first positioning column on the first limiting assembly is matched with the first limiting assembly in a vertically and horizontally moving manner, so that the first limiting column is inserted into the front end opening of the comb body, and the comb is pressed on the clamping sleeve and cannot fall off in the rotating process;
the second driving piece drives the first cutter to rotate, the third driving piece drives the follower to drive the comb to rotate through the first roller, and grinding cutting of the end part of the comb needle is achieved.
Compared with the prior art, the utility model has the advantages that: the circular comb flying and dyeing integrated machine can realize full-automatic comb needle grinding and cutting and dyeing of the comb by matching with a corresponding positioning assembly, a hair flying mechanism, a dyeing mechanism and a feeding and discharging mechanism in a turntable type transmission mode; compared with the manual grinding and cutting process in the prior art, the automatic grinding and cutting device greatly improves the working efficiency of the grinding and cutting of the comb pins, reduces the influence of human factors because the whole process is automatically controlled and operated by a master control program, ensures that the combs produced in the same batch have higher quality stability, and greatly reduces the production cost of the combs.
Drawings
FIG. 1 is a schematic structural diagram of a circular combing, flying and dyeing integrated machine in the embodiment of the utility model;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic structural diagram of a positioning assembly according to an embodiment of the present invention;
FIG. 4 is a cross-sectional view of FIG. 3;
FIG. 5 is a schematic structural diagram of a fly mechanism (hidden tool) according to an embodiment of the present invention;
FIG. 6 is a schematic view of the structure of FIG. 5 from another angle;
FIG. 7 is a schematic view of a fly mechanism in an embodiment of the present invention;
FIG. 8 is a side view of FIG. 7;
FIG. 9 is a schematic structural diagram of a first position-limiting assembly according to an embodiment of the present disclosure;
fig. 10 is a schematic structural diagram of the background art of the present invention.
Detailed Description
The utility model is described in further detail below with reference to the accompanying examples.
As shown in fig. 1-10, the circular comb flying and dyeing all-in-one of this embodiment includes mounting platform 1, carousel 2, locating component 3, fly hair mechanism 4, dye head mechanism 5, material loading and unloading mechanism 6, carousel 2 is discoid and can the pivoted locate on mounting platform 1, 2 edges of carousel have along a plurality of operating station of circumference interval arrangement, all be provided with locating component 3 on each operating station, be used for the centre gripping comb, 2 peripheries of carousel are provided with material loading and unloading station from front to back according to the order of processing, the sanding station, dye the head station, carousel 2 constantly rotates, and carry out corresponding operation when rotating to every station, with the broach sanding and the dyeing process of full-automatic completion comb, realize automatic unloading of going up and down.
In this embodiment, the positioning assemblies 3 are multiple and are respectively arranged on each operation station of the circular comb and dye flying integrated machine, a jacket 31 for clamping a handle of a comb is arranged on the outer side of the positioning assemblies 3, and the jacket 31 can move up and down and is arranged on the positioning assemblies 3 in a circumferential rotating manner; the comb is transversely placed with the front end facing outwards.
The positioning assembly 3 includes a jacket 31, a first base 32, a first guide rail 33, a first slider 34, a first supporting block 35, an elastic member 36, a follower 37, and a first stopper 38.
The first pedestal 32 is vertically arranged on the turntable 2 and is positioned at the edge of the turntable 2; the first guide rail 33 is vertically arranged on the outer wall surface of the first base 32; the first slider 34 is disposed on the first rail 33 so as to be movable up and down and is located outside the first base 32; the first support block 35 is disposed outside the first slider 34 and slides up and down along with the first slider 34, and the first support block 35 is provided with a shaft hole 351 penetrating from the first base 32 to the outside. The clamping sleeve 31 is rotatably inserted in the shaft hole 351, the outer end of the clamping sleeve 31 is exposed out of the first supporting block 35, and the outer end of the clamping sleeve 31 is provided with a clamping opening 311 for clamping the comb handle c; the shaft hole 351 is provided with a bearing 352, and the bearing 352 is sleeved between the inner wall of the shaft hole 351 and the outer wall of the jacket 31 and is used for supporting the jacket 31 to rotate. The elastic piece 36 is arranged on the turntable 2 and is abutted against the bottom of the first supporting block 35, so that the elastic piece always keeps the trend of moving upwards; the elastic element 36 is a spring, the upper end of which is pressed against the bottom of the first supporting block 35, and the lower end of which is pressed against the turntable 2. The follower 37 is formed in a ring shape, is provided on the front side of the first support block 35, is fitted around the outer periphery of the jacket 31, moves up and down in synchronization with the jacket 31 and the first support block 35, and rotates in synchronization with the jacket 31. In the state where the first support block 35 is moved up to the limit, the upper end of the follower 37 is higher than the top of the first support block 35.
The first limiting block 38 is disposed in the clamping sleeve 31 and is used for limiting the depth of the comb handle c inserted into the clamping opening 311, and in a state that the comb handle c is inserted into the clamping opening 311, a gap is left between the rear end of the comb body a and the outer end of the clamping sleeve 31 for the clamping arms of the feeding and discharging mechanism 6 to insert.
Be provided with the second stopper 39 that is used for restricting the position of first supporting block 35 below first supporting block 35, be provided with the cylinder 391 that the piston rod just is connected with second stopper 39 up on assembly platform 1, the piston rod rebound of this cylinder 391 can promote second stopper 39 and offset with the lower extreme of first supporting block 35 to carry on spacingly to the position of first supporting block 35.
By adopting the structure, the comb handle c of the comb is inserted into the clamping opening 311 of the clamping sleeve 31 by the feeding and discharging mechanism 6, and the positioning component 3 and the comb to be processed can be conveyed to corresponding stations by the rotation of the turntable 2.
In the present embodiment, the fly mechanism 4 is provided on the mounting platform 1 near the edge of the turntable 2, and a fly cutter group 41 is provided which can be brought into contact with the comb needle b of the comb in a state where the jacket 31 is moved downward to grind and cut it.
The fly hair mechanism 4 comprises a fly hair cutter group 41, a first limiting component 42 and a first driving component 43, the fly hair cutter group 41 is supported on the assembly platform 1, the top of the fly hair cutter group is provided with a fly hair opening 411 which is positioned at the outer side of the clamping sleeve 31 and extends along the axial direction of the clamping sleeve 31, and the fly hair opening 411 is provided with a cutter for grinding and cutting the end part of the card wire b; the first limiting component 42 is arranged outside the fly-hair knife group 41, and is provided with a first positioning column 421 which can move up and down and move back and forth relative to the jacket 31, and the first positioning column 421 is used for being inserted into the front end opening a1 of the comb body a and restraining the comb on the jacket 31; the first driving assembly 43 is disposed on the fixed disk on the turntable 2 and located inside the positioning assembly 3, and includes a first roller 431 capable of moving up and down and rotating circumferentially, the first roller 431 is in contact with the follower 37 in a downward moving state, and is used for pressing the comb down to the comb pin b to be in contact with the hair cutter set 41, and the first roller 431 is used for driving the follower 37 to rotate and further driving the comb to rotate in a rotating state.
The fly cutter group 41 includes a second base 412, a first cutter 413, and a second cutter 414, the second base 412 is fixed on the assembly platform 1, the upper portion has a hollow installation space 410, and the fly opening 411 is located at the top of the installation space 410. The first cutter 413 is rotatably disposed in the mounting space 410 and has an axial direction corresponding to an axial direction of the collet 31, the first cutter 413 includes a shaft 4131 at a center and blades 4132 radially spaced on an outer circumferential wall of the shaft 4131, the blades 4132 extend in a length direction of the burr opening 411 and have cutting edges formed at outer edges thereof. The second cutter 414 is transversely arranged on top of the second base 412 and the first side edge constitutes an edge of the burr 411 and a blade of the second cutter 414, the blade of the first cutter 413 and the blade of the second cutter 414 being close to each other with a gap therebetween.
The blade face of the second knife 414 is gradually inclined downwards from the second side to the first side, the second side is arranged opposite to the edge of the first side, the blade face of the first knife 413 for grinding and cutting the card wire b is arranged gradually inclined downwards from the edge inwards, and an included angle a of 170-175 degrees is formed between the blade of the first knife 413 and the blade of the second knife 414 in the state of grinding and cutting the card wire. By adopting the structure, the grinding degree of the card wire is convenient to control.
The second blade 414 is shaped as a flat plate, and the second blade 414 is gradually inclined downward from the middle portion to the burr opening 411 to form a first guide inclined surface 4141. The structure is convenient for enabling the comb needle b to smoothly rotate to the grinding and cutting position, and avoids the influence of excessive extrusion of the comb needle on the grinding and cutting degree at each position.
The fly-hair cutter set 41 further comprises a driving wheel 415, a driving wheel 416, a belt 417 and a second driving member 418, the second driving member 418 is disposed below the operation platform 1, the power output shaft of the second driving member 418 is arranged towards the side, the driving wheel 415 is mounted on the power output shaft of the second driving member 418, the driving wheel 416 is mounted at the outer end of the shaft of the first cutter 413, and the belt 417 penetrates through the operation platform 1 and is in transmission connection between the driving wheel 415 and the driven wheel 416. The shaft 4131 of the first cutter 413 is supported on a side wall of the second base 412 by a bearing, and the second driving member 418 is a motor.
The first cutter 413 is rotated in a direction gradually away from the second cutter 414, and the collet 31 is rotated in a direction opposite to the first cutter 413. The structure ensures that the blade face of the first cutter 413 contacts the carding wire firstly, so that the effect of grinding and then cutting is formed, and the grinding and cutting precision is improved.
The first limiting assembly 42 includes a third base 422, a second guide rail 423, a second slider 424, a first cylinder 425, a first mounting block 426, and a first positioning column 421, wherein the third base 422 is vertically arranged on the operating platform 1 and located outside the fly cutter group 41; the second rail 423 is vertically arranged on the third base 422; the second slider 424 is connected to the second guide rail 423 in a manner of sliding up and down; a first cylinder 425 is provided on the second slider 424 and has a piston rod arranged transversely towards the carousel 2; the first mounting block 426 is connected with a piston rod of the first air cylinder 425 and can move back and forth relative to the comb under the pushing of the piston rod; the first positioning column 421 is installed on the side of the first installation block 426 facing the comb.
The end of the first positioning column 421 is formed into a tapered portion 4211 with a diameter gradually decreasing toward the comb direction, and the first positioning column 421 is further provided with a roller 4211 positioned outside the tapered portion 421, and the roller 4211 is rotatably sleeved on the periphery of the first positioning column 421. The structure can reduce the friction between the comb and the comb in the process of positioning the comb.
The first driving assembly 43 includes a fourth base 432, a second cylinder 433, a third driving member 434, and a first roller 431, wherein the fourth base 432 is vertically disposed on the fixed disk above the turntable 2 and located inside the positioning assembly 3; the second cylinder 433 is provided at the upper part of the fourth base 432 and has a piston rod arranged downward; the third driving member 434 is arranged at the lower end of the piston rod of the second air cylinder 433 and can move up and down under the driving of the second air cylinder, and the third driving member 434 is provided with a power output shaft which is transversely arranged towards the direction of the grinding and cutting assembly 41; the third driving member 434 is a motor; the first roller 431 is connected to the power output shaft of the third driving member 434 and can be driven to rotate, and the first roller 431 is located on the follower 37 of the positioning assembly 3.
The follower 37 may be made of rubber, silica gel or other materials with large friction, and the first roller 431 may have a rib arranged on its outer circumference to increase the friction between the first roller and the follower 37, so as to improve the driving effect and reliability.
Two sets of the adjacent and closely arranged jackets 31 and the followers 37 can be arranged on one set of the positioning assemblies 3, so that the first roller 431 can be arranged above the space between the two followers 37, and after the first roller 431 descends, one first roller 431 can simultaneously contact with the two followers 37 and drive the two followers 37 to rotate through friction, thereby reducing the number of the first driving assemblies 43 and the equipment cost.
The sanding method of the circular combing, flying and dyeing integrated machine comprises the following steps:
after the positioning assembly 3 conveys the comb to the station of the fly mechanism 41 by rotating the turntable 2, when the first positioning column 421 on the first limiting assembly 42 translates through the cylinder 425 to press and hold the comb on the jacket 31 so as to keep the comb in a horizontal state as much as possible, the second cylinder 433 of the first driving assembly 43 drives the first roller 431 to move downwards against the elastic force of the elastic member, and simultaneously the cylinder 4200 drives the cylinder 425 to move downwards; the first roller 431 presses the follower 37 to move the comb down until the comb contacts the blade of the second cutter 414; at this time, the second driving unit 418 drives the first cutter 413 to rotate, and the third driving unit 434 drives the follower 37 to rotate the comb through the first roller 431, thereby implementing the fly of the end of the comb pin b.
Directional terms such as "front," "rear," "upper," "lower," "left," "right," "side," "top," "bottom," and the like are used in the description and claims of the present invention to describe various example structural portions and elements of the utility model, but are used herein for convenience of description only and are to be determined based on the example orientations shown in the drawings. Because the disclosed embodiments of the present invention may be oriented in different directions, the directional terms are used for descriptive purposes and are not to be construed as limiting, e.g., "upper" and "lower" are not necessarily limited to directions opposite or coincident with the direction of gravity.

Claims (9)

1. The utility model provides a circular comb flies flying hair device who dyes all-in-one, circular comb flies to dye all-in-one is provided with mounting platform, can the pivoted carousel of setting on mounting platform, and the edge of carousel is provided with a plurality of operation stations of arranging along circumference, and its characterized in that includes:
the positioning assemblies are arranged on each operating station of the circular comb flying and dyeing integrated machine respectively, a jacket for clamping a handle of the comb is arranged on the outer side of each positioning assembly, and the jacket can move up and down and is arranged on the positioning assemblies in a circumferential rotating mode; the comb is transversely placed, and the front end of the comb faces outwards;
and the fly hair mechanism is arranged on the assembly platform close to the edge of the turntable and is provided with a fly hair cutter group which can be contacted with the comb needle of the comb under the state that the jacket moves downwards so as to grind and cut the comb needle.
2. The fly device of a circular combing and flying-dyeing all-in-one machine according to claim 1, wherein the positioning assembly comprises:
the first base is vertically arranged on the turntable and is positioned at the edge of the turntable;
the first guide rail is vertically arranged on the outer wall surface of the first base;
the first sliding block is arranged on the first guide rail in a vertically movable mode and is positioned on the outer side of the first base;
the first support block is arranged on the outer side of the first sliding block and slides up and down along with the first sliding block, and a shaft hole penetrating through the first base outwards is formed in the first support block;
the clamping sleeve can be rotatably inserted into the shaft hole, the outer end of the clamping sleeve is exposed out of the first supporting block, and a clamping opening for clamping the comb handle is formed in the outer end of the clamping sleeve;
the elastic piece is arranged on the turntable, abuts against the bottom of the first supporting block and keeps a trend of moving upwards all the time;
the follower is shaped into a ring, is arranged at the front side of the first supporting block, is sleeved on the periphery of the jacket and synchronously moves up and down with the jacket and the first supporting block, and the upper end of the follower is higher than the top of the first supporting block when the first supporting block moves up to the limit state;
the first limiting block is arranged in the clamping sleeve and used for limiting the depth of the comb handle inserted into the clamping opening, and a crack is reserved between the rear end of the comb body and the outer end of the clamping sleeve in the state that the comb handle is inserted into the clamping opening.
3. The fly device of a circular combing, flying and dyeing all-in-one machine as claimed in claim 2, wherein the fly mechanism comprises:
the fly cutter set is supported on the assembly platform, a fly opening which is positioned outside the jacket and extends along the axial direction of the jacket is formed in the top of the fly cutter set, and a cutter for grinding and cutting the end part of the card wire is arranged at the fly opening;
the first limiting assembly is arranged on the outer side of the hair cutter group and is provided with a first positioning column which can move up and down and move back and forth relative to the jacket, and the first positioning column is used for being inserted into the front end opening of the comb body and restraining the comb on the jacket;
the first driving assembly is arranged on the fixed disc above the rotary disc and located on the inner side of the positioning assembly and comprises a first roller capable of moving up and down and rotating in the circumferential direction, the first roller is in contact with the follower in the downward moving state and is used for pressing the comb down to the comb needle to be in contact with the hair flying knife group, and the first roller is used for driving the follower to rotate in the rotating state so as to drive the comb to rotate.
4. The fly device of a circular combing, flying and dyeing all-in-one machine according to claim 3, wherein the fly cutter set comprises:
the second base is fixed on the assembly platform, the upper part of the second base is hollow, an installation space is formed in the upper part of the second base, and the burr hole is positioned at the top of the installation space;
the first cutter can be rotatably arranged in the mounting space, the axial direction of the first cutter is consistent with the axial direction of the jacket, the first cutter comprises a shaft positioned in the center and blades radially distributed on the outer peripheral wall of the shaft at intervals, the blades extend along the length direction of the burr flying opening, and blades are formed at the outer edge of the blades;
the second cutter is transversely arranged at the top of the second base, the edge of the burr opening and the edge of the second cutter are formed by the edge of the first side part, the edge of the first cutter is close to the edge of the second cutter, and a gap is formed between the edge of the first cutter and the edge of the second cutter.
5. The fly device of the circular combing, flying and dyeing all-in-one machine as claimed in claim 4, which is characterized in that: the cutting edge face of second cutter is arranged from the first side department downward sloping gradually of second side direction, and the second side is arranged with above-mentioned first side edge is relative for grind the cutting edge face of the first cutter of cutting of card wire and inwards arrange the downward sloping gradually from the edge, grind under cutting the state to the card wire, be 170 ~ 175 degrees contained angle between the cutting edge of first cutter and the cutting edge of second cutter.
6. The fly device of the circular combing, flying and dyeing all-in-one machine as claimed in claim 4, which is characterized in that: the fly hair knife tackle still include action wheel, drive wheel, belt and second driving piece, the second driving piece is located under the operation platform and power output shaft is arranged towards the lateral part, the action wheel is installed on the power output shaft of second driving piece, the drive wheel is installed in the outer end of the axle of first cutter, the belt passes operation platform transmission and connects between action wheel and follow driving wheel.
7. The fly device of a circular comb and fly dyeing all-in-one machine according to claim 3, wherein the first limiting component comprises:
the third base is vertically arranged on the operating platform and is positioned on the outer side of the fly cutter group;
the second guide rail is vertically arranged on the third base;
the second sliding block can be connected to the second guide rail in a vertically sliding manner;
the first air cylinder is arranged on the second sliding block and is provided with a piston rod which is transversely arranged towards the rotary table;
the first mounting block is connected with a piston rod of the first air cylinder and can move in a reciprocating manner relative to the comb under the pushing action of the piston rod;
and the first positioning column is arranged on one side of the first mounting block, which faces the comb.
8. A fly-hair device of a circular combing and flying-dyeing all-in-one machine according to claim 3, wherein the first driving assembly comprises:
the fourth base is vertically arranged on the fixed disc above the turntable and is positioned on the inner side of the positioning assembly;
the second cylinder is arranged at the upper part of the fourth base and is provided with a piston rod arranged downwards;
the third driving piece is arranged at the lower end of the piston rod of the second air cylinder and can move up and down under the driving of the piston rod, and the third driving piece is provided with a power output shaft which is transversely arranged towards the direction of the grinding and cutting assembly;
the first roller is connected to the power output shaft of the third driving piece and can rotate under the driving of the third driving piece, and the first roller is located on the follower of the positioning component.
9. The fly device of a circular flying and dyeing all-in-one machine according to any one of claims 1 to 8, further comprising a fine grinding mechanism arranged at the downstream of the fly mechanism, wherein the fine grinding mechanism is provided with a rotatable grinding cylinder, and the surface of the grinding cylinder is coated with a metal mesh.
CN202220455039.2U 2022-03-03 2022-03-03 Fly hair device of circular combing and flying dyeing integrated machine Active CN216941510U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220455039.2U CN216941510U (en) 2022-03-03 2022-03-03 Fly hair device of circular combing and flying dyeing integrated machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220455039.2U CN216941510U (en) 2022-03-03 2022-03-03 Fly hair device of circular combing and flying dyeing integrated machine

Publications (1)

Publication Number Publication Date
CN216941510U true CN216941510U (en) 2022-07-12

Family

ID=82293148

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220455039.2U Active CN216941510U (en) 2022-03-03 2022-03-03 Fly hair device of circular combing and flying dyeing integrated machine

Country Status (1)

Country Link
CN (1) CN216941510U (en)

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