CN206635511U - Cylindrical shape cut-parts automatic deviation rectifying mechanism - Google Patents
Cylindrical shape cut-parts automatic deviation rectifying mechanism Download PDFInfo
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- CN206635511U CN206635511U CN201720145465.5U CN201720145465U CN206635511U CN 206635511 U CN206635511 U CN 206635511U CN 201720145465 U CN201720145465 U CN 201720145465U CN 206635511 U CN206635511 U CN 206635511U
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Abstract
The utility model discloses a kind of cylindrical shape cut-parts automatic deviation rectifying mechanism.The cylindrical shape cut-parts automatic deviation rectifying mechanism includes base, conical limit wheel, taper driven pulley, limiting plate, rotary shaft, rotary driving part and mobile driving part.Mobile driving part is connected to base for driving base movement;Rotary driving part is located on base and is connected to rotary shaft and rotated for driving rotary shaft;Limiting plate and conical limit wheel are arranged on the rotary shaft, and conical limit wheel is located at the outside of rotary shaft, and limiting plate inwardly and is close in the less one end of conical limit wheel external diameter;Taper driven pulley is also provided on base, and taper driven pulley arranges with conical limit wheel order, and the less one end of taper driven pulley external diameter is also connected with limiting plate, and taper driven pulley is used to be arranged cylindrical shape cut-parts with conical limit wheel.The cylindrical shape cut-parts automatic deviation rectifying mechanism section time power and quality of production can be ensured.
Description
Technical field
Field of textile machinery is the utility model is related to, more particularly to a kind of cylindrical shape cut-parts automatic deviation rectifying mechanism.
Background technology
In clothing sewing, some process rumble necks, upper flat machine sleeve, net pin, wing etc. need to enter several layers of columnar cut-parts
Row alignment sewing, these processes often require higher to the technical merit of worker, and artificial wastes time and energy, and produce matter
Amount is difficult to ensure that.
Utility model content
Based on this, it is necessary to which the cylindrical shape cut-parts that providing a kind of section time power and the quality of production can be able to ensure are entangled automatically
Inclined mechanism.
A kind of cylindrical shape cut-parts automatic deviation rectifying mechanism, including base, conical limit wheel, taper driven pulley, limiting plate, rotation
Axle, rotary driving part and mobile driving part;The mobile driving part is connected to base for driving the base
It is mobile;The rotary driving part is located on the base and is connected to the rotary shaft for driving the rotary shaft to turn
It is dynamic;The limiting plate and the conical limit wheel are set in the rotary shaft, and the conical limit wheel is located at the rotation
The limiting plate inwardly and is close in the outside of rotating shaft, described less one end of conical limit wheel external diameter;The taper driven pulley
It is located on the base, the taper driven pulley arranges with conical limit wheel order, and the taper driven pulley external diameter is smaller
One end be also connected with the limiting plate, the taper driven pulley is used to be arranged cylindrical shape cut-parts with the conical limit wheel.
In one of the embodiments, in addition to guide rail, the guide rail are located on the base, the rotary driving part
It is slidably connected on the guide rail, the mobile driving part can drive the rotary driving part to be slided along the guide rail
It is dynamic.
In one of the embodiments, in addition to sliding seat and gag lever post, the gag lever post be located on the base and
With the guide rail parallel, the sliding seat is slidably connected on the guide rail, and the sliding seat is also sheathed on the gag lever post,
The rotary driving part is located on the sliding seat, and the mobile driving part can drive the sliding seat to be led along described
Rail slides.
In one of the embodiments, the conical limit wheel and the taper driven pulley are located at same horizontal plane
On, and the limiting plate at the conical limit wheel aligns with the limiting plate at the taper driven pulley.
In one of the embodiments, the position-arresting disk is in the form of annular discs.
In one of the embodiments, the taper driven pulley and relative position of the conical limit wheel on the base
Put adjustable.
In one of the embodiments, in addition to code device is adjusted, the barcode device is located on the base, the taper
Driven pulley is located on the tune code device and can rotated relative to the tune code device, and the tune code device can adjust described
The relative position of taper driven pulley and the conical limit wheel.
Above-mentioned cylindrical shape cut-parts automatic deviation rectifying mechanism, including base, conical limit wheel, taper driven pulley, limiting plate, rotation
Rotating shaft, rotary driving part and mobile driving part;The taper driven pulley is used to be arranged cylinder with the conical limit wheel
Shape cut-parts, conical top have a limiting plate, double in taper driven pulley and conical limit wheel rotary course when sewing bilayer cut-parts
Layer cut-parts easily occur misplacing or have side's cut-parts retraction so that double-deck cut-parts while while not have alignment or skew.Add
Circle slope is limited when causing cut-parts to misplace or bounce back by the angle formed between circle slope and circular cone, and now cut-parts are in one
The effect of individual doubling and no longer slided toward either one, allow cut-parts all to keep edge to align during whole sewing so that follow-up
Sewing effect it is more preferable.
Brief description of the drawings
Fig. 1 is an embodiment multi-layer cylinder shape cut-parts opposite side sewing system schematic;
Fig. 2 is the edge-adjusting device schematic diagram of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1;
Fig. 3 is schematic diagram when edge-adjusting device shown in Fig. 2 removes the first blower and the second blower;
Fig. 4 is that the edge-adjusting device of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1 and cut-parts control side device coordinate
Schematic diagram;
Fig. 5 is the cut-parts control side device of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1;
Fig. 6 is the cylindrical shape cut-parts automatic deviation rectifying mechanism signal of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1
Figure.
Description of reference numerals
10th, multi-layer cylinder shape cut-parts opposite side sewing system;100th, board;110th, work top;200th, edge-adjusting device;210、
Fixed seat;220th, the first location-plate;221st, the first air-out groove;222nd, slot to make way;230th, the second location-plate;240th, the 3rd positioning
Plate;241st, the second air-out groove;242nd, slot to make way;250th, the first blower;260th, the second blower;270th, material passing passage;300、
Cylindrical shape cut-parts automatic deviation rectifying mechanism;310th, base;320th, conical limit wheel;330th, taper driven pulley;340th, limiting plate;350、
Rotary shaft;360th, rotary driving part;370th, mobile driving part;380th, guide rail;390th, sliding seat;3100th, gag lever post;400、
Feed device;410th, support;420th, feeding arm;430th, telescopic drive part;440th, feeding driving part;450th, drawing-inroller;
460th, transmission belt;470th, driving wheel;500th, cut-parts control side device;510th, keeper;520th, part is sensed;530th, side member is controlled;
531st, cloth-dragging wheel;532nd, roll drive part;533rd, roller;534th, trailing arm;600th, adjusting means;610th, adjusting rod;620th, adjust
Save driving part;700th, sewing device;800th, cylinder assisting rotary apparatus;900th, U-frame.
Embodiment
For the ease of understanding the utility model, the utility model is more fully retouched below with reference to relevant drawings
State.Preferred embodiment of the present utility model is given in accompanying drawing.But the utility model can come in fact in many different forms
It is existing, however it is not limited to embodiment described herein.On the contrary, the purpose for providing these embodiments is made to public affairs of the present utility model
Open the understanding more thorough and comprehensive of content.
It should be noted that when element is referred to as " being fixed on " another element, it can be directly on another element
Or there may also be element placed in the middle.When an element is considered as " connection " another element, it can be directly connected to
To another element or it may be simultaneously present centering elements.
Unless otherwise defined, all of technologies and scientific terms used here by the article is led with belonging to technology of the present utility model
The implication that the technical staff in domain is generally understood that is identical.It is simply in term used in the description of the present utility model herein
The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term as used herein "and/or" includes
The arbitrary and all combination of one or more related Listed Items.
Shown in Figure 1, the present embodiment relate to a kind of multi-layer cylinder shape cut-parts opposite side sewing system 10.The multi-layer cylinder
Shape cut-parts opposite side sewing system 10 includes board 100, edge-adjusting device 200, adjusting means 600, cylindrical shape cut-parts automatic correcting machine
Structure 300, feed device 400, cut-parts control side device 500, sewing device 700 and control device.Wherein, edge-adjusting device 200, sanction
Piece control side device 500 and the three of adjusting means 600 can also be used alone to form multilayer cut-parts automatic edge-adjusting mechanism.
Referring to shown in Fig. 2 and Fig. 3, the edge-adjusting device 200 includes fixed seat 210, the first location-plate 220, second positions
Plate 230, the 3rd location-plate 240, the first blower 250 and the second blower 260.The fixed seat 210 is located at the board
On 100;First location-plate 220, second location-plate 230 and the 3rd location-plate 240 are linked in sequence successively
In the fixed seat 210, and between first location-plate 220 and second location-plate 230, second location-plate 230
The material passing passage 270 passed through for cut-parts is respectively provided between the 3rd location-plate 240;First blower 250 connects
In first location-plate 220 towards a surface of second location-plate 230, first blower 250 is along the sanction
Extend on piece movement route, there is multiple blowholes towards the material passing passage 270 on first blower 250;It is described
Second blower 260 is connected to the 3rd location-plate 240 and blown towards a surface of second location-plate 230, described second
Airduct 260 moves along the cut-parts to be extended on route, is had on second blower 260 multiple towards the material passing passage
270 blowhole.
Referring to shown in Fig. 2 and Fig. 3, first location-plate 220 has the towards a surface of second location-plate 230
One air-out groove 221, first air-out groove 221 extend to the edge of first location-plate 220 and first air-out groove 221
Both ends extend respectively to the edge of first location-plate 220.The major axis of first air-out groove 221 blows with described first
Airduct 250 is parallel.
Referring to shown in Fig. 2 and Fig. 3, the 3rd location-plate 240 has the towards a surface of second location-plate 230
Two air-out grooves 241, second air-out groove 241 extend to the edge of the 3rd location-plate 240.
The both ends of second air-out groove 241 extend respectively to the edge of the 3rd location-plate 240.Described second goes out
The major axis of wind groove 241 is parallel with second blower 260.
Referring to shown in Fig. 2 and Fig. 3, the exterior face surface of the first location-plate 220 has slot to make way 222, the slot to make way
222 groove bottom, which has, allows bit port, and first blower 250 is fastened in the slot to make way 222, first blower
Blowhole on 250 is directed through the corresponding material passing passage 270 of bit port direction that allows.
Referring to shown in Fig. 2 and Fig. 3, the exterior face surface of the 3rd location-plate 240 also has slot to make way 242, the resigning
The groove bottom of groove 242, which also has, allows bit port, and second blower 260 is fastened in the slot to make way 242, and described second blows
Blowhole on airduct 260 is directed through the corresponding material passing passage 270 of bit port direction that allows.First location-plate
220th, second location-plate 230 and the 3rd location-plate 240 are parallel.
Shown in Figure 4, adjusting means 600 has adjusting rod 610 and regulation driving part 620.The regulation driving
Part 620 is located on the board 100 and is connected to the adjusting rod 610, and the adjusting rod 610 is also attached to the fixed seat
210, the regulation driving part 620 can be by driving the movement of adjusting rod 610 to drive the fixed seat 210 to move.
Referring to shown in Fig. 1 and Fig. 6, the cylindrical shape cut-parts automatic deviation rectifying mechanism 300 includes base 310, conical limit wheel
320th, taper driven pulley 330, limiting plate 340, rotary shaft 350, rotary driving part 360, mobile driving part 370, tune code dress
Put, guide rail 380, sliding seat 390 and gag lever post 3100.Control device is electrically connected at rotary driving part 360, control device
It is electrically connected at mobile driving part 370.
Shown in Figure 6, the mobile driving part 370 is connected to base 310 for driving the base 310 to move
It is dynamic.The rotary driving part 360 is located on the base 310 and is connected to the rotary shaft 350 for driving the rotation
Rotating shaft 350 rotates;The limiting plate 340 and the conical limit wheel 320 are set in the rotary shaft 350, the cone
Shape position-limited wheel 320 is located at the outside of the rotary shaft 350, and described less one end of the external diameter of conical limit wheel 320 inwardly and is close to
The limiting plate 340;The taper driven pulley 330 is also provided on the base 310, the taper driven pulley 330 and the cone
Shape position-limited wheel 320 sequentially arranges, and described less one end of the external diameter of taper driven pulley 330 is also connected with the limiting plate 340, described
Taper driven pulley 330 is used to be arranged cylindrical shape cut-parts with the conical limit wheel 320.
Shown in Figure 6, in the present embodiment, the guide rail 380 is located on the base 310, the rotary driving part
Part 360 is slidably connected on the guide rail 380, and the mobile driving part 370 can drive the edge of rotary driving part 360
The guide rail 380 to slide.The gag lever post 3100 is located on the base 310 and parallel with the guide rail 380, the slip
Seat 390 is slidably connected on the guide rail 380, and the sliding seat 390 is also sheathed on the gag lever post 3100, and the rotation is driven
Dynamic component 360 is located on the sliding seat 390, and the mobile driving part 370 can drive the sliding seat 390 along described
Guide rail 380 slides.The conical limit wheel 320 and the taper driven pulley 330 are located on same horizontal plane, and the cone
The limiting plate 340 at shape position-limited wheel 320 aligns with the limiting plate 340 at the taper driven pulley 330.
Shown in Figure 6, in the present embodiment, the position-arresting disk is in the form of annular discs.The taper driven pulley 330 and the cone
Relative position of the shape position-limited wheel 320 on the base 310 is adjustable.The barcode device is located on the base 310, the cone
Shape driven pulley 330 is located on the tune code device and can rotated relative to the tune code device, and the tune code device can be adjusted
Save the relative position of the taper driven pulley 330 and the conical limit wheel 320.
Referring to shown in Fig. 1, Fig. 4 and Fig. 5, the cut-parts control side device 500 include keeper 510, sensing part 520 and
Side member 530 is controlled, the keeper 510 is located on the work top 110 of the board 100 and positioned at the fixed seat 210
Top.The sensing part 520 is close to the keeper 510;It is described control side member 530 have cloth-dragging wheel 531, trailing arm 534 with
And roll drive part 532.
Referring to shown in Fig. 4 and Fig. 5, trailing arm 534 is located on board 100 and is connected to roll drive part 532.The rolling
Driving part 532 is connected to the cloth-dragging wheel 531 for driving the cloth-dragging wheel 531 to move, the roll drive part 532
The sensing part 520 is also electrically connected at, when the sensing part 520 detects the cut-parts on the work top 110
Selvedge deviate the keeper 510 when, the roll drive part 532 drive the cloth-dragging wheel 531 be pressed in the cut-parts and
The cloth-dragging wheel 531 is driven to be rotated such that the edge of the cut-parts aligns with the keeper 510.Control device is electrically connected with
In sensing part 520;Control device is electrically connected at roll drive part 532.
Shown in Figure 5, in the present embodiment, the sensing part 520 has multiple inductors, multiple inductors
It is each provided on the work top 110 of the board 100, at least two inductors are close to the keeper 510, at least
There is interval between one inductor and the keeper 510.Control device is electrically connected at inductor.
Shown in Figure 5, in the present embodiment, the control side member 530 also has multiple rollers 533, the roller 533
Diameter be less than the diameter of the cloth-dragging wheel 531, multiple rollers 533 are both connected on the cloth-dragging wheel 531, multiple described
The axle center of roller 533 is located in the garden circumferential edges of the cloth-dragging wheel 531, sagittal plane and the mop of multiple rollers 533
The sagittal plane of wheel 531 is vertical, and the periphery of multiple scroll wheels protrudes from the periphery of the cloth-dragging wheel 531.Multiple rollings
Wheel 533 is uniformly distributed in the circumferential edge of the cloth-dragging wheel 531.
Shown in Figure 1, the feed device 400 is located on the board 100 for driving the work top 110
On shirt body cut-parts movement.In the present embodiment, the feed device 400 has support 410, feeding arm 420, telescopic drive
Part 430, feeding driving part 440 and drawing-inroller 450, the support 410 are located on the board 100, the feeding arm
420 one end is hinged on the support 410, and the drawing-inroller 450 is hinged on the other end of the feeding arm 420;It is described to send
Material driving part 440 is used to drive the drawing-inroller 450 to rotate;The telescopic drive part 430 be located on the support 410 and
The feeding arm 420 is connected to for driving the feeding arm 420 to be rotated relative to the support 410.The feed device
400 also have conveyer belt and driving wheel 470, and the driving wheel 470 is coaxial with the feeding arm 420 to be articulated with the support
410, the feeding driving part 440 is located on the board 100 and is connected to the driving wheel 470, and the drawing-inroller 450 is logical
The transmission belt 460 is crossed to be connected with the driving wheel 470.Control device is electrically connected at telescopic drive part 430, feeding driving
Part 440.
Shown in Figure 1, the sewing device 700 is used for cut-parts of the sewing from two material passing passages 270, come from
The cylindrical shape cut-parts on the conical limit wheel 320 and the shirt body on the work top 110 from the board 100 are cut out
Piece.Control device is electrically connected at sewing device 700.
It is shown in Figure 1, in the present embodiment, it is also provided with cylinder assisting rotary apparatus 800 and U-frame 900, cylinder
Assisting rotary apparatus 800 connects U-frame 900, and because shirt body is longer, shirt body clothing body cut-parts are by cylinder assisting rotary apparatus during sewing
800 cooperation U-frames 900 are clamped, and during sewing, cylinder assisting rotary apparatus 800 rotates, and are driven the rotation of shirt body, are reduced sewing resistance.
Control device is electrically connected at cylinder assisting rotary apparatus 800.
Above-mentioned multi-layer cylinder shape cut-parts opposite side sewing system 10, when in use, comprises the following steps:
The neck portion cut-parts of sweat shirt namely cylindrical shape cut-parts are placed on the cone of cylindrical shape cut-parts automatic deviation rectifying mechanism 300 by worker
On shape position-limited wheel 320 and taper driven pulley 330, cylindrical shape cut-parts are supportted by conical limit wheel 320 and taper driven pulley 330
Open.
Two layers cut-parts of the neck portion cut-parts of sweat shirt close to the front end of sewing device 700 are respectively sleeved in edge-adjusting device 200
In upper and lower two material passing passages 270.
The neck position of shirt body is still the conical limit wheel 320 and cone for being enclosed on cylindrical shape cut-parts automatic deviation rectifying mechanism 300
Cover whole crew neck on shape driven pulley 330, and by cylindrical shape cut-parts automatic deviation rectifying mechanism 300 conical limit wheel 320 and
It is strutted on taper driven pulley 330, and the neck portion position of shirt body is placed on work top 110 simultaneously, is dragged by drawing-inroller 450 during motion
And aid in rectifying a deviation.
Before the sewing of sewing device 700, conical limit wheel 320 first dallies, and high-ranking military officer and shirt body come to limiting plate 340 automatically
Put, now first correction is completed, and sewing device 700 starts sewing.
Subband cloth roller 533 can be moved up and down under the control of cylinder, and clothing can be aided in when downwardly against cut-parts and rolling
Car drives cut-parts to roll.
Because shirt body is longer, during sewing shirt body clothing body cut-parts clamped by the U-frame of cylinder assisting rotary apparatus.During sewing,
Cylinder assisting rotary apparatus rotates, and drives the rotation of shirt body, reduces sewing resistance.
The correction of whole crew neck and shirt body is mainly rectified a deviation by conical limit wheel 320.
The neck of circle and shirt body or bottom etc. are enclosed on the control side circular cone at both ends during sewing, rotary power drives taper
Position-limited wheel 320 is rotated, and due to the taper of conical limit wheel 320, one is produced to spacing to cut-parts when conical limit wheel 320 rotates
The power in the direction of plate 340, so with the rotation of conical limit wheel 320, the cut-parts of skew are moved to the direction of limiting plate 340 gradually,
Withstood until being limited plate 340, realize positioning.
Conical limit wheel 320 has one, and to be used for spacing circle domatic, when sewing bilayer cut-parts, double-deck cut-parts in rotary course
Easily occur misplacing or have side's cut-parts retraction so that double-deck cut-parts while while not have alignment or skew.It is domatic plus circle
So that being limited when cut-parts dislocation or retraction by the domatic angle formed between circular cone of circle, now cut-parts are in one
The effect of doubling and no longer toward either one slide, allow cut-parts all to keep edge to align during whole sewing.Make sewing effect
More preferably.
Conical limit wheel 320 plays overall correction to crew neck and shirt body and acted on, but conical limit wheel during sewing
320 is distant with the sewing machine pin of sewing needle device, and the correction to neck portion layer cloth will also have cut-parts control side device 500 to carry out
Coordinate.Neck portion is filled in the upper and lower material passing passage 270 of cut-parts control side device 500 close to sewing machine pin position during sewing, cut-parts control side
The first blower 250 and the second blower 260 of device 500 are dried, and blowing comes out after-blow into material passing passage 270, incited somebody to action
The edge of cut-parts in material passage 270 is positioned, in order to prevent blowing from excessively causing cut-parts to encircle in the inside of material passing passage 270
Rise, there is provided the first air-out groove 221 and the second air-out groove 241 for leaking out, excessive wind is discharged, ensures that cut-parts are put down
It is whole.
Sensing part 520 is used for controlling cut-parts marginal position, and cloth-dragging wheel 531 is not pressed on cut-parts when flat, works as induction part
After part 520 senses cut-parts skew, cloth-dragging wheel 531 receives signal and then pushes and rotate, correction cut-parts position.Cloth-dragging wheel 531
Active bull wheel circumferential edges at be uniformly distributed equipped with roller 533, roller 533 can rotate along the center of circle of itself.
The surface that cloth-dragging wheel 531 and circumference obtain small roller 533 is smooth, to ensure not trigger cut-parts table during mop
The filament in face.Cloth-dragging wheel 531 has certain resistance when rectifying a deviation to the movement of cut-parts forward, easily becomes when cut-parts are PANEL KNITTINGs
Shape stretches, and influences sewing effect.So in the circumferential edge of cloth-dragging wheel 531 plus the roller 533 that can be rotated along itself center of circle, cut-parts
Cloth-dragging wheel 531 is rolled with the smooth outer surface of cloth-dragging wheel 531, roller 533 to subtract if pushing down cut-parts by roller 533 when mobile
Few cloth-dragging wheel 531 and the frictional force of cut-parts so that operated during cut-parts sewing more smoother.
Above-mentioned multi-layer cylinder shape cut-parts opposite side sewing system 10, suitable for the process of cylindrical shape cut-parts splicing, worker is only
Then can cylindrical shape cut-parts need to be set on conical limit wheel 320, other contrapositions, sewing can voluntarily be completed by machine, mainly
Available for the cylindrical shape cut-parts piece process such as rumble neck, upper flat machine sleeve, net pin, wing.Above-mentioned edge-adjusting device 200 is controllable two layers
Cut-parts, cloth-dragging wheel 531 control one layer of cut-parts, and multilayer cut-parts automatic edge-adjusting mechanism controls altogether three layers of cut-parts.If desired for control more
Multilayer cut-parts can increase cut-parts control side device 500 and/or edge-adjusting device 200 according to the principle and can be achieved.There is provided cylinder
Shape cut-parts automatic deviation rectifying mechanism 300, conical top have a limiting plate 340, when sewing bilayer cut-parts, taper driven pulley 330 with
Double-deck cut-parts easily occur misplacing or have side's cut-parts to bounce back in the rotary course of conical limit wheel 320 so that double-deck cut-parts
While while do not have align or offset.Formed when cut-parts is misplaced or is bounced back plus circle slope by between circle slope and circular cone
Angle limitation, now cut-parts are in the effect of doubling and are no longer slided toward either one, allow cut-parts in whole sewing process
In all keep edge to align so that follow-up sewing effect is more preferable.
Above-mentioned multi-layer cylinder shape cut-parts opposite side sewing system 10, there is provided cut-parts control side device 500, cut-parts control side device
500 play a part of controlling side in sewing is automated, and when cut-parts deviate predetermined trajectory, cloth-dragging wheel 531 is clockwise or counterclockwise
Rotation causes cut-parts close or remotely located side, make the selvedges of cut-parts all the time with position side and abut and parallel, ensure that car
The quality of seam.Above-mentioned cut-parts control side device 500 is also applicable in other clothing automation procedures for needing cut-parts to be automatically positioned
In.There is provided edge-adjusting device 200, edge-adjusting device 200 includes fixed seat 210, the first location-plate 220, the second location-plate 230, the
Three location-plates 240, the first blower 250 and the second blower 260;First location-plate 220, the second location-plate 230 and
Three location-plates 240 are linked in sequence in fixed seat 210 successively, and between the first location-plate 220 and the second location-plate 230, second
The material passing passage 270 passed through for cut-parts is respectively provided between the location-plate 240 of location-plate 230 and the 3rd, two cut-parts pass through respectively
In two punishment in advance intervals, two material passing passages 270 are used for the spacing and positioning of two cut-parts, have saved two layers of cut-parts of human assistance
Positioning;First blower 250 is connected to the first location-plate 220 towards a surface of second location-plate 230, the first blowing
There is multiple blowholes towards material passing passage 270, the second blower 260 is connected to the 3rd location-plate 240 towards on pipe 250
One surface of two location-plates 230, there is multiple blowholes towards material passing passage 270 on the second blower 260, pass through blowhole
Blowing so that the cut-parts in material passing passage 270 can be close to fixed seat 210 in real time and position, and saved and have been positioned manually, have also made
The sewing efficiency obtained subsequently improves, and sewing quality is guaranteed.
Each technical characteristic of embodiment described above can be combined arbitrarily, to make description succinct, not to above-mentioned reality
Apply all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited
In contradiction, the scope that this specification is recorded all is considered to be.
Embodiment described above only expresses several embodiments of the present utility model, and its description is more specific and detailed,
But therefore it can not be interpreted as the limitation to the utility model patent scope.It should be pointed out that for the common of this area
For technical staff, without departing from the concept of the premise utility, various modifications and improvements can be made, these all belong to
In the scope of protection of the utility model.Therefore, the protection domain of the utility model patent should be determined by the appended claims.
Claims (7)
1. a kind of cylindrical shape cut-parts automatic deviation rectifying mechanism, it is characterised in that including base, conical limit wheel, taper driven pulley, limit
Position plate, rotary shaft, rotary driving part and mobile driving part;The mobile driving part is connected to base for driving
The base movement;The rotary driving part is located on the base and is connected to the rotary shaft for driving the rotation
Axis of rotation;The limiting plate and the conical limit wheel are set in the rotary shaft, and the conical limit wheel is located at
The limiting plate inwardly and is close in the outside of the rotary shaft, described less one end of conical limit wheel external diameter;The taper from
Driving wheel is also provided on the base and can be suitable relative to the base rotation, the taper driven pulley and the conical limit wheel
Sequence arranges, and described less one end of taper driven pulley external diameter is also connected with the limiting plate, the taper driven pulley and the cone
Shape position-limited wheel is used to be arranged cylindrical shape cut-parts.
2. cylindrical shape cut-parts automatic deviation rectifying mechanism according to claim 1, it is characterised in that described to lead also including guide rail
Rail is located on the base, and the rotary driving part is slidably connected on the guide rail, and the mobile driving part can drive
The rotary driving part is moved to slide along the guide rail.
3. cylindrical shape cut-parts automatic deviation rectifying mechanism according to claim 2, it is characterised in that also including sliding seat and limit
Position bar, the gag lever post are located on the base and are slidably connected at the guide rail parallel, the sliding seat on the guide rail,
And the sliding seat is also sheathed on the gag lever post, the rotary driving part is located on the sliding seat, the mobile driving
Part can drive the sliding seat to be slided along the guide rail.
4. the cylindrical shape cut-parts automatic deviation rectifying mechanism according to claim 1-3 any one, it is characterised in that the taper
Position-limited wheel and the taper driven pulley are located on same horizontal plane, and the limiting plate at the conical limit wheel and institute
State the limiting plate alignment at taper driven pulley.
5. the cylindrical shape cut-parts automatic deviation rectifying mechanism according to claim 1-3 any one, it is characterised in that described spacing
Disk is in the form of annular discs.
6. the cylindrical shape cut-parts automatic deviation rectifying mechanism according to claim 1-3 any one, it is characterised in that the taper
Relative position of the driven pulley with the conical limit wheel on the base is adjustable.
7. cylindrical shape cut-parts automatic deviation rectifying mechanism according to claim 6, it is characterised in that also include adjusting code device, institute
State and adjust code device to be located on the base, the taper driven pulley is located on the tune code device and can be relative to the tune code
Device rotates, the relative position for adjusting code device to adjust the taper driven pulley and the conical limit wheel.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106757819A (en) * | 2017-02-17 | 2017-05-31 | 广东溢达纺织有限公司 | Cylindrical shape cut-parts automatic deviation rectifying mechanism |
CN113046935A (en) * | 2019-12-29 | 2021-06-29 | 宁波尚高机电科技有限公司 | Automatic circle lower hem sewing machine cloth guider |
-
2017
- 2017-02-17 CN CN201720145465.5U patent/CN206635511U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106757819A (en) * | 2017-02-17 | 2017-05-31 | 广东溢达纺织有限公司 | Cylindrical shape cut-parts automatic deviation rectifying mechanism |
CN106757819B (en) * | 2017-02-17 | 2022-07-12 | 广东溢达纺织有限公司 | Automatic deviation rectifying mechanism for cylindrical cut pieces |
CN113046935A (en) * | 2019-12-29 | 2021-06-29 | 宁波尚高机电科技有限公司 | Automatic circle lower hem sewing machine cloth guider |
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