CN109594206A - It is a kind of for processing neckline/cuff sewing device and method - Google Patents

It is a kind of for processing neckline/cuff sewing device and method Download PDF

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Publication number
CN109594206A
CN109594206A CN201710938698.5A CN201710938698A CN109594206A CN 109594206 A CN109594206 A CN 109594206A CN 201710938698 A CN201710938698 A CN 201710938698A CN 109594206 A CN109594206 A CN 109594206A
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CN
China
Prior art keywords
cloth
mentioned
cylinder
neckline
feeding mechanism
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Granted
Application number
CN201710938698.5A
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Chinese (zh)
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CN109594206B (en
Inventor
阮积祥
李广伟
舒勤业
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Jack Technology Co Ltd
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Jack Sewing Machine Co Ltd
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Priority to CN201710938698.5A priority Critical patent/CN109594206B/en
Publication of CN109594206A publication Critical patent/CN109594206A/en
Application granted granted Critical
Publication of CN109594206B publication Critical patent/CN109594206B/en
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Classifications

    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B19/00Programme-controlled sewing machines
    • D05B19/02Sewing machines having electronic memory or microprocessor control unit
    • D05B19/12Sewing machines having electronic memory or microprocessor control unit characterised by control of operation of machine
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B35/00Work-feeding or -handling elements not otherwise provided for
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B35/00Work-feeding or -handling elements not otherwise provided for
    • D05B35/12Indicators for positioning work, e.g. with graduated scales
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B39/00Workpiece carriers
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B41/00Work-collecting devices
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05DINDEXING SCHEME ASSOCIATED WITH SUBCLASSES D05B AND D05C, RELATING TO SEWING, EMBROIDERING AND TUFTING
    • D05D2207/00Use of special elements
    • D05D2207/02Pneumatic or hydraulic devices
    • D05D2207/04Suction or blowing devices

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Computer Hardware Design (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Sewing Machines And Sewing (AREA)

Abstract

The present invention provides a kind of for processing neckline/cuff sewing device and method, belongs to technical field of sewing equipment.It solves the problems, such as that existing equipment the degree of automation is low to ineffective.This sewing device, including rack and operating table surface, first crossbeam is installed on upper rack, operating table surface has feeding area, receiving section and interactive areas, the sewing device further includes rack-mounted material collection structure, human-computer interaction and control cabinet, and right-to-left is sequentially arranged at the position-indicating device on first crossbeam, sewing device, automatic cloth cutting device, material-pulling device, the interactive feed device with right feeding mechanism and left feeding mechanism is also equipped on first crossbeam, above-mentioned position-indicating device, sewing device, automatic cloth cutting device, material-pulling device, interactive feed device and material collecting device are connect with above-mentioned control cabinet.This sewing device has the advantages that high degree of automation and requires operator low.

Description

It is a kind of for processing neckline/cuff sewing device and method
Technical field
The invention belongs to technical field of sewing equipment, are related to a kind of for processing neckline/cuff sewing device and method.
Background technique
Neckline refers at the open-neck collar of clothes, and when processing, the upper cut-parts for needing to have cut are stacked in lower cut-parts, then along side Edge sewing, then cut away as required the extra rim charge in edge again the inside turn down out.Equally, cuff refers at the cuff of clothes, In processing, equally it is that the upper cut-parts that will have been cut overlay in lower cut-parts, then along edge sewing, then cuts away side as required Again the inside is turned down out after the extra rim charge of edge.
It is existing when processing the sewing and cutting of above-mentioned neckline/cuff, typically carried out by individual sewing device After sewing is good, then staff is taken and is cut on another cutting equipment, and sewing and cutting are mutually solely Two vertical machinery equipments, although two each self-structures of machinery equipment are all relatively simple, and cost is relatively low, there are the problem of Be: sewing and cutting are separate from progress, and centre, which needs manually to go that neckline/cuff is transplanted on cutting from sewing device, to be set Standby, working efficiency is low and the degree of automation is low.
Summary of the invention
The purpose of the present invention is there is the above problem in view of the prior art, proposing one kind can be automatically finished to neck The sewing of mouth/cuff, cut, rewinding and mutual feeding work to greatly improve working efficiency for process neckline/ The sewing device and method of cuff.
Object of the invention can be realized by the following technical scheme: it is a kind of for processing neckline/cuff sewing device, Including rack and rack-mounted operating table surface, it is characterised in that: first crossbeam is installed on the upper rack, it is described Operating table surface has positioned at feeding area, the receiving section positioned at left end and the interactive areas positioned at middle part of right end, and the sewing device is also It is sequentially arranged on first crossbeam including rack-mounted material collection structure, human-computer interaction and control cabinet and right-to-left Position-indicating device, sewing device, automatic cloth cutting device, material-pulling device, the position-indicating device be used for cloth Discharge position carry out positioning instruction and be located at feeding area right above, sewing device be used for cloth carry out sew and be located at feeding area and Between interactive areas, automatic cloth cutting device for being cut to cloth and between receiving section and interactive areas, use by material-pulling device In cloth to be pushed to material collecting device and is located at right above receiving section, material collecting device is for collecting cloth and being located at receiving section side Portion;The interactive feed device with right feeding mechanism and left feeding mechanism, the interaction are also equipped on the first crossbeam Formula feed device is used to after driving right feeding mechanism that the cloth compression for being located at feeding area is transferred to sewing device sewing continue to move It send to interactive areas, drives left feeding mechanism that the cloth interaction on right feeding mechanism comes and compress to be transferred to automatically in interactive areas Fabric dividing device continues to be transferred to receiving section after being cut, and above-mentioned position-indicating device, automatic cloth cutting device, pushes away sewing device Material device, interactive feed device and material collecting device are connect with above-mentioned control cabinet.
Above-mentioned a kind of for processing in neckline/cuff sewing device, air draught knot is also equipped in the rack Structure, the air draft structure include asepwirator pump, distributor and are provided on feeding area and interactive areas and are used for cloth is tight respectively Tightly it is adsorbed on several first adsorption holes in operating table surface and several second adsorption holes, distributor includes shell, on shell The first distribution openings, the second distribution openings and third distribution openings are provided with, the first cylinder, the second cylinder and third cylinder are installed on shell And respectively by the first block head, the second block head and third block head that are mounted on respective piston rod to the first distribution openings, Second distribution openings and third distribution openings carry out on and off, and the lower end surface of operating table surface is equipped with inhales with all described first respectively The first cavity and the second cavity that attached hole is connected to all second adsorption holes, the first cavity and the second cavity pass through respectively One aspiration channel, the second aspiration channel are connected to the first distribution openings and the second distribution openings, and third distribution openings are in communication with the outside, on shell also It is provided with the gas outlet being connected to the air inlet of asepwirator pump.
Above-mentioned a kind of for processing in neckline/cuff sewing device, the interactive feed device includes the One motor, the second motor, first clamping member, the second clamping piece and it is connected in first crossbeam lower end surface and two disposed in parallel One guide rail, is equipped with driven wheel on first crossbeam left and right ends, is fixed with master on the output shaft of first motor and the second motor Driving wheel is connected with the first synchronous belt, the master of the second motor between the driving wheel of first motor and the driven wheel of first crossbeam right end The second synchronous belt is connected between driving wheel and the driven wheel of first crossbeam left end, first synchronous belt and the second synchronous belt are parallel It is arranged and localized chiasma, localized chiasma is located at interactive areas, there is the first accommodating chamber, and on lower end surface in the first crossbeam It is provided with matched first loose slot corresponding with above-mentioned first synchronous belt and the second synchronous belt and the second loose slot, first clamping member One end and right feeding mechanism are connected, and the other end passes through the first loose slot from the bottom to top and enters in above-mentioned first accommodating chamber with first Synchronous band connection, above-mentioned second clamping piece one end and left feeding mechanism are connected, the other end pass through from the bottom to top the second loose slot into Enter into above-mentioned first accommodating chamber band connection synchronous with second, first motor and the second motor are connect with control cabinet, and the right side is sent Expect mechanism and left feeding mechanism passes through the first sliding block respectively and the second sliding block is slidably connected on two above-mentioned first guide rails.
Above-mentioned a kind of for processing in neckline/cuff sewing device, the right feeding mechanism includes supporting plate, even Fishplate bar and attachment base for installing compress mold, above-mentioned first clamping member are connected on supporting plate, and the connecting plate is rectangle, The first rotational structure, supporting plate two sides rear portion are respectively connected between in the middle part of two long side of two middle side part of supporting plate and connecting plate The second rotational structure is respectively connected between two long side rear portion of connecting plate, the attachment base passes through slide construction and above-mentioned connection Plate connection, the driving die setting base are connected on attachment base, the structure of the left feeding mechanism and the knot of right feeding mechanism Structure is identical.
Above-mentioned a kind of for processing in neckline/cuff sewing device, first rotational structure includes connection Part, bearing eccentric bushing and the support column with circular mounting hole, the bearing eccentric bushing are rotatably installed in above-mentioned circular mounting hole Interior, bearing eccentric bushing has bearing hole, and above-mentioned connector one end is rectangular connecting pin and is connected with above-mentioned connecting plate that the other end is It rotation axis connecting pin and is rotatably installed in above-mentioned bearing hole, centre is the round connection that bore is greater than above-mentioned bearing bore open The end face of disk, the rotation axis connecting pin is concordant with support column lateral surface, and bearing eccentric bushing one end is resisted against above-mentioned round connection On disk, the other end stretches out the gap structure being provided on above-mentioned support column lateral surface and the end for assisting rolling bearing eccentric bushing, Gap structure includes four, the upper and lower, left and right notch being provided on bearing eccentric bushing, wherein upper and lower notch is one group and face Setting, left and right notch is one group and face is arranged.
Above-mentioned a kind of for processing in neckline/cuff sewing device, second rotational structure includes being connected In the column of supporting plate upper surface, the 4th cylinder that is mounted on column and the hinged block being connected on connecting plate lower surface edge, The piston rod and hinged block of 4th cylinder are articulated and connected.
Above-mentioned a kind of for processing in neckline/cuff sewing device, the slide construction includes being respectively fixedly connected Third motor, driven wheel seat on two short side of connecting plate lower surface, are respectively fixedly connected in two long side of connecting plate lower surface Two the second guide rails, are equipped with driven wheel in the driven wheel seat, the output shaft of third motor by third synchronous belt with should be from Driving wheel connection, and third synchronous belt is arranged in parallel with connecting plate long side, on the attachment base two sides be respectively fixedly connected with two on The corresponding third sliding block of the second guide rail is stated, the third synchronous belt is connect by third clamping piece with attachment base.
Above-mentioned a kind of for processing in neckline/cuff sewing device, the position-indicating device includes having The second cross beam of second accommodating chamber, one end of second cross beam are equipped with the 4th motor, are installed on the output shaft of the 4th motor Driving wheel, the other end of second cross beam are equipped with driven wheel, are connected with the 4th synchronous belt between the driving wheel and driven wheel, and described the The side of four belts is connected with the first mounting plate, and the other side is connected with the second mounting plate, third guide rail is fixed on second cross beam, Above-mentioned first mounting plate and the second mounting plate pass through Four-slider and are slidably connected on third guide rail;First mounting plate and second Mounting plate along its length on be installed with the 4th guide rail and the 5th guide rail respectively, slided respectively on the 4th guide rail and the 5th guide rail It is connected with the 5th sliding block and the 6th sliding block, the first of cross light can be emitted by being separately installed on the 5th sliding block and the 6th sliding block Color-changing lamp and the second color-changing lamp are equipped with pneuma-lock structure on the 5th sliding block and the 6th sliding block;Second cross beam upper surface is fixed There are mounting blocks, mounting blocks two sides are fixedly installed with the third color-changing lamp and the 4th color-changing lamp that can emit vertical bar light respectively, the Three color-changing lamps and the 4th color-changing lamp can swing along the length direction of the second cross beam and be located at the first color-changing lamp and Between second color-changing lamp;The first connecting plate and the second connecting plate, the first connecting plate and second are fixed on second cross beam upper surface Connecting plate and first crossbeam upper surface are connected.
Above-mentioned a kind of for processing in neckline/cuff sewing device, the pneuma-lock structure includes air inlet Mouth and locking pin, two locking pins are slidably arranged on the 5th sliding block and the 6th sliding block respectively and two lockings Respective one end of pin is respectively facing the upper surface of first mounting plate and the second mounting plate, and two suction nozzle air inlets can It is resisted against the end of two locking pins respectively on the upper surface of first mounting plate and the second mounting plate.
Above-mentioned a kind of for processing in neckline/cuff sewing device, the material collecting device includes rising a material seat, pile Material seat, first support, shield, at least two limit material bars and the first driving mechanism for being separately mounted in first support and the Two driving mechanisms, the liter expect to be equipped with multiple evenly spaced bearing material columns on seat have gap between two neighboring bearing material column And the upper surface of all bearing material columns constitutes a loading surface, the loading surface is flushed with aforesaid operations table top or slightly below above-mentioned behaviour Make table top, multiple bearing material bars is installed on the pile material seat, multiple bearing material bars correspond and are located at above-mentioned gap The surface in above-mentioned gap, the diameter of the bearing material bar are less than the width in above-mentioned gap, and limit material bar is pacified by position adjustable structure Being equipped at least two above-mentioned bearing material columns, the position adjustable structure between corresponding bearing material column and adjacent two limits material bar includes The bar shaped regulating tank being provided on bearing material column, the limit material is fixedly mounted on bar shaped regulating tank and the bar shaped adjusts slot position In on that end of bearing material column far from operating table surface.It is described above-mentioned a kind of for processing in neckline/cuff sewing device First driving mechanism includes the 5th cylinder, the 6th cylinder, the 6th guide rail being fixedly mounted on liter material seat and slides with the 6th guide rail 7th sliding block of dynamic connection, above-mentioned liter material seat are fixedly mounted on the piston rod of the 5th cylinder, and the cylinder body of the 5th cylinder is solid Dingan County is on the piston rod of the 6th cylinder, and the cylinder body of the 6th cylinder is mounted in above-mentioned first support, and the described 6th leads Rail is fixedly mounted on the cylinder body of the 6th cylinder;5th cylinder is for driving above-mentioned bearing material pillar height degree to be slightly below above-mentioned pile material Seat height degree, for driving, above-mentioned bearing material column continues to rise to bearing material bar to the 6th cylinder and above-mentioned interstitial water is straight and even to setting; Either, the 6th cylinder for driving above-mentioned bearing material pillar height degree to be slightly below above-mentioned pile material seat height degree, use by the 5th cylinder In driving, above-mentioned bearing material column continues to rise to bearing material bar and above-mentioned interstitial water is straight and even to setting.
Above-mentioned a kind of for processing in neckline/cuff sewing device, second driving mechanism includes the 7th Cylinder and the 7th guide rail, the 7th cylinder are fixedly mounted on the underface in first support and being located at above-mentioned bearing material bar, the pile material Seat is connected on the piston rod of the 7th cylinder by drive rod, and the piston rod of the 7th cylinder is directed away from operating table surface direction Setting, piston rod of the drive rod respectively with pile material seat and the 7th cylinder are arranged in a mutually vertical manner, the 7th guide rail and the 7th The piston rod of cylinder is arranged in parallel and is connected in first support, and the pile material seat is slidably connected at the 7th by the 8th sliding block and leads On rail.
It is a kind of for processing neckline/cuff bind, provide and above-mentioned set for processing the sewing of neckline/cuff It is standby, which is characterized in that there are the following steps:
S1, equipment starting, and initial reset;
S2, operator input corresponding coding, the coding by human-computer interaction according to the type of the cloth to feeding Include and the one-to-one type of cloth and dimension information;
The two vertical bar light and two cross light that S3, operator project according to position-indicating device to feeding area Successively two cut-parts of cloth are seated on the designated position of feeding area;
S4, the work of right feeding mechanism, right compress mold thereon compresses cloth in feeding area to lower swing, and moving cloth It is sewed to sewing device, after sewing, right feeding mechanism continues for the good cloth of the sewing to be moved to interactive areas, right pressure Cloth mold, which is swung up disengaging cloth, makes cloth be seated in interactive areas;
S5, the work of left feeding mechanism are moved to interactive areas, compress the cloth and the cloth is moved to automatic cloth cutting device Opposite joint make after cloth edge cut redundance after, the cloth after cutting then is moved to receiving section;
S6, while executing step S5, right feeding mechanism is reset to feeding area from interactive areas, to next cloth execute Step S4;
S7, material-pulling device work shift the cloth cut in material collecting device onto, and material collecting device collects the cloth, and one Cloth completion of processing.
Above-mentioned a kind of for processing in neckline/cuff bind, between the step S3 and step S4 also With following steps: providing the air draft structure with several the first adsorption holes and several the second adsorption holes, air draught Cloth on the designated position of feeding area is absorbed and fixed on feeding area by arrangement works by several first adsorption holes, and in step Right compress mold compresses cloth behind feeding area to lower swing in rapid S4, several first adsorption holes lose the absorption to cloth.
Above-mentioned a kind of for processing in neckline/cuff bind, in the step S4 right compress mold to Before upper swing is detached from cloth, cloth is absorbed and fixed on interactive areas by several second adsorption holes of air draft structure, and in step Left feeding mechanism work in S5 is moved to after interactive areas compresses the cloth, several second adsorption holes lose the suction to cloth It is attached.
Compared with prior art, this for process neckline/cuff sewing device have the advantages that as follows it is several:
1, high degree of automation, other than feeding needs manually, other all operations are automatically performed by equipment, are automated Degree is very high, so that work efficiency is high;Meanwhile an operator can control at least 2-3 platform equipment simultaneously, substantially reduce people Power cost, improves efficiency;
2, lower to the requirement of operator, feeding is only needed, and upper discharge position all clearly dictates otherwise light, As long as alignment light puts cloth cut-parts, because being not necessarily to veteran operator, behaviour is can be completed in general staff Make, easy to operate and reduction manpower threshold and cost;
3, work efficiency is high, can two clothes of simultaneous processing, i.e., processing current cloth between interactive areas and receiving section When, next cloth can be processed simultaneously between feeding area and interactive areas, to improve working efficiency;
4, easy to operate, precise control, the device on all devices is all to realize that control is coordinated by control cabinet.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of whole sewing device.
Fig. 2 is the dispensing arrangement schematic diagram in air draft structure.
Fig. 3 is the cross-sectional view of Fig. 2 structure.
Fig. 4 is the structural schematic diagram of first crossbeam and interactive feed device.
Fig. 5 is the structural schematic diagram of interactive feed device.
Fig. 6 is the structural schematic diagram of first crossbeam.
Fig. 7 is the structural schematic diagram of right feeding mechanism.
Fig. 8 is another view of Fig. 7 structure.
Fig. 9 is the structural schematic diagram of bearing eccentric bushing.
Figure 10 is the structural schematic diagram of connector.
Figure 11 is the structural schematic diagram of position-indicating device.
Figure 12 is the layout structure schematic diagram of Figure 11 structure.
Figure 13 is the structural schematic diagram of material collecting device.
Figure 14 is another structural schematic diagram of material collecting device.
Figure 15 is the flow chart of bind.
In figure, 1, rack;2, operating table surface;21, feeding area;22, interactive areas;23, receiving section;3, first crossbeam;31, One loose slot;32, the second loose slot;4, air draft structure;41, asepwirator pump;42, distributor;43, the first adsorption hole;44, second inhales Attached hole;45, shell;46, the first distribution openings;47, the second distribution openings;48, third distribution openings;49, the first cylinder;410, the second gas Cylinder;411, third cylinder;412, the first block head;413, the second block head;414, third block head;415, gas outlet;5, it hands over Mutual formula feed device;51, first motor;52, the second motor;53, first clamping member;54, the second clamping piece;55, the first guide rail; 56, the first synchronous belt;57, the second synchronous belt;58, the first accommodating chamber;59, the first sliding block;510, the second sliding block;6, right feeder Structure;61, supporting plate;62, connecting plate;63, attachment base;64, connector;65, rotation axis connecting pin;66, round terminal pad;67, axis Hold eccentric bushing;68;Gap structure;69;Support column;610, column;611, the 4th cylinder;612, hinged block;613, third motor; 614, driven wheel seat;615, the second guide rail;616, third synchronous belt;617, third sliding block;618, third clamping piece;619, compress Mold;7, position-indicating device;71, second cross beam;72, the 4th motor;73, the 4th synchronous belt;74, the first mounting plate;75, Two mounting plates;76, Four-slider;77, the 4th guide rail;78, the 5th guide rail;79, the 5th sliding block;710, the 6th sliding block;711, One color-changing lamp;712, the second color-changing lamp;713, pneuma-lock structure;714, mounting blocks;715, third color-changing lamp;716, the 4th radium Shot-light;717, the first connecting plate;718, the second connecting plate;8, material collecting device;81, material seat is risen;82, bearing material column;83, gap;84, Pile material seat;85, bearing material bar;86;First support;87, shield;88, the 5th cylinder;89, the 6th cylinder;810, the 6th guide rail; 811, the 7th sliding block;812, the 7th cylinder;813, the 7th guide rail;814, the 8th sliding block;815, drive rod;816, gag lever post; 817, bar shaped regulating tank;9, material-pulling device;10, sewing device;11, automatic cloth cutting device;12, left feeding mechanism.
Specific embodiment
Following is a specific embodiment of the present invention in conjunction with the accompanying drawings, technical scheme of the present invention will be further described, However, the present invention is not limited to these examples.
As shown in Figure 1, this is for processing neckline/cuff sewing device, including rack 1 and the behaviour being mounted in rack 1 Make table top 2, human-computer interaction, control cabinet, rack 1 is separated into upper and lower two parts by operating table surface 2, and first crossbeam 3 is fixed on rack 1 top, and the length substantially the same with operating table surface 2 of rack 1, positioned at the surface of the rear side of operating table surface 2, first crossbeam 3 with Operating table surface 2 is arranged in parallel, and 1 lower part of rack is fixedly installed with material collecting device 8 and air draft structure 4, and air draft structure 4 is located at station The underface in face 2.There is the feeding area 21 positioned at right end, positioned at the receiving section 23 of left end and positioned at middle part in operating table surface 2 Interactive areas 22,3 right-to-left of first crossbeam are successively fixedly installed with position-indicating device 7, sewing device 10, automatic cloth cutting device 11 and material-pulling device 9, position-indicating device 7, sewing device 10, automatic cloth cutting device 11 and the respective working end of material-pulling device 9 It is respectively positioned on the surface of operating table surface 2.Position-indicating device 7 is used to carry out the upper discharge position of cloth positioning instruction and be located at Expect area 21, sewing device 10 is used to carry out cloth sewing and between feeding area 21 and interactive areas 22, automatic cloth cutting device 11 for cutting cloth and between receiving section 23 and interactive areas 22, and material-pulling device 9 is used to cloth pushing to receipts Expect device 8 and be located at receiving section 23, material collecting device 8 is for collecting cloth and being located at 23 front side of receiving section.
It is also equipped with the interactive feed device 5 with right feeding mechanism 6 and left feeding mechanism 12 on first crossbeam 3, hands over Mutual formula feed device 5 is sewed for driving right feeding mechanism 6 that the cloth compression for being located at feeding area 21 is transferred to sewing device 10 After continue to be transferred to interactive areas 22, drive left feeding mechanism 12 interactive areas 22 by right feeding mechanism 6 cloth interaction come And it compresses to be transferred to and continues to be transferred to receiving section 23, position-indicating device 7, sewing device after automatic cloth cutting device 11 is cut 10, automatic cloth cutting device 11, material-pulling device 9, interactive feed device 5 and material collecting device 8 connect and are controlled with control cabinet Cabinet control.Human-computer interaction is computer terminal, is fixed with computer board in 1 right end side of rack, computer terminal can be seated in computer On plate, computer terminal is connect with control cabinet.
The automation degree of equipment is high, and other than feeding needs manually, other all operations are automatically performed by equipment, from Dynamicization degree is very high, so that work efficiency is high;Meanwhile an operator can control at least 2-3 platform equipment simultaneously, drop significantly Low human cost, improves efficiency;And the requirement to operator is lower, only needs feeding, and upper discharge position be all have it is bright True guidance light, as long as alignment light puts cloth cut-parts, because being not necessarily to veteran operator, common people Operation, easy to operate and reduction manpower threshold and cost can be completed in member.
As shown in Figures 2 and 3, air draft structure 4 includes asepwirator pump 41, distributor 42 and is provided with feeding area 21 respectively and hands over Several first adsorption holes 43 and several second absorption in mutual area 22 and for being tightly adsorbed on cloth in operating table surface 2 Hole 44, distributor 42 include shell 45, are provided with the first distribution openings 46, the second distribution openings 47 and third distribution openings 48 on shell 45, First cylinder 49, the second cylinder 410 and third cylinder 411 are installed and respectively by being mounted on respective piston rod on shell 45 The first block head 412, the second block head 413 and third block head 414 to the first distribution openings 46, the second distribution openings 47 and third Distribution openings 48 carry out on and off, the lower end surface of operating table surface 2 be equipped with respectively with all first adsorption holes 43 and own The first cavity and the second cavity that second adsorption hole 44 is connected to, the first cavity and the second cavity pass through the first air draught respectively Pipe, the second aspiration channel are connected to the first distribution openings 46 and the second distribution openings 47, and third distribution openings 48 are in communication with the outside, on shell 45 Also it is provided with the outlet being connected to the air inlet of asepwirator pump 41 oral 415.
The vacuum cavitations of first adsorption hole 43 and the second adsorption hole 44 can be controlled individually, i.e., when the first adsorption hole 43 needs When providing negative-pressure adsorption power, the conducting of the first distribution openings 46, the second distribution openings 47 and third distribution openings 48 are closed;When the second adsorption hole 44 when needing to provide negative-pressure adsorption power, and the conducting of the second distribution openings 47, the first distribution openings 46 and third distribution openings 48 are closed;When first When adsorption hole 43 and the second adsorption hole 44 do not need adsorption capacity, the first distribution openings 46 and the second distribution openings 47 are closed, third is beaten Distribution openings 48 guarantee the smooth passage of air-flow under the premise of not closing asepwirator pump 41, as needed automatically controlled the first distribution of selection The on and off of the 46, second distribution openings 47 of mouth and 48 air flue of third distribution openings, it is compact-sized, and also asepwirator pump 41 does not have to frequency Numerous start and stop control adsorption capacity, so that the physical life of asepwirator pump 41 is longer.
As shown in Fig. 4,5 and 6, interactive feed device 5 include first motor 51, the second motor 52, first clamping member 53, Second clamping piece 54 and it is connected in 3 lower end surface of first crossbeam and two the first guide rails 55 disposed in parallel, first crossbeam 3 or so two It is equipped with driven wheel on end, is fixed with driving wheel on the output shaft of first motor 51 and the second motor 52, first motor 51 The first synchronous belt 56, the driving wheel and first of the second motor 52 are connected between the driven wheel of 3 right end of driving wheel and first crossbeam The second synchronous belt 57 is connected between the driven wheel of 3 left end of crossbeam, first synchronous belt 56 is parallel with the second synchronous belt 57 to be set It sets and localized chiasma, localized chiasma is located at interactive areas 22, there is the first accommodating chamber 58, and lower end in the first crossbeam 3 Matched first loose slot 31 corresponding with above-mentioned first synchronous belt 56 and the second synchronous belt 57 and the second loose slot are provided on face 32,53 one end of first clamping member and right feeding mechanism 6 are connected, the other end pass through from the bottom to top the first loose slot 31 enter it is above-mentioned It is connect in first accommodating chamber 58 with the first synchronous belt 56, above-mentioned second clamping piece, 54 one end and left feeding mechanism 12 are connected, another End enters in above-mentioned first accommodating chamber 58 across the second loose slot 32 connect with the second synchronous belt 57 from the bottom to top, first motor 51 and second motor 52 connect with control cabinet, the right feeding mechanism 6 and left feeding mechanism 12 pass through 59 He of the first sliding block respectively Second sliding block 510 is slidably connected on two above-mentioned first guide rails 55.
Process mechanism on entire sewing device is divided into mutually independent upper stage and next stage, upper rank by interactive areas 22 Section is that feeding area 21 is assisted to penetrate through to interactive areas 22 by right feeding mechanism 6, and the next stage is that receiving section 23 is arrived by a left side in interactive areas 22 Feeding structure assists to penetrate through, and the two stages can simultaneously operate two different clothes, and by right feeder Structure 6 and left feeding mechanism 12 interact connection at interaction, thus improve work efficiency, and interaction is convenient and efficient, it is whole Structure is simple.
As shown in Fig. 7,8,9 and 10, right feeding mechanism 6 is including supporting plate 61, connecting plate 62 and for installing compress mold 619 Attachment base 63, first clamping member 53 is connected on supporting plate 61, and connecting plate 62 is rectangle, 61 liang of middle side parts of supporting plate and connecting plate Be respectively connected with the first rotational structure between in the middle part of 62 liang of long sides, 61 two sides rear portion of supporting plate and 62 liang of long side rear portions of connecting plate it Between be respectively connected with the second rotational structure, attachment base 63 is connect by slide construction with above-mentioned connecting plate 62, driving die setting base It is connected on attachment base 63.
Further, the first rotational structure includes connector 64, bearing eccentric bushing 67 and the support with circular mounting hole Column 69, the bearing eccentric bushing 67 are rotatably installed in above-mentioned circular mounting hole, and bearing eccentric bushing 67 has bearing hole, above-mentioned company 64 one end of fitting is rectangular connecting pin and is connected with above-mentioned connecting plate 62 that the other end is rotation axis connecting pin 65 and is rotatably installed in In above-mentioned bearing hole, centre is the round terminal pad 66 that bore is greater than above-mentioned bearing bore open, the rotation axis connecting pin 65 End face is concordant with 69 lateral surface of support column, and 67 one end of bearing eccentric bushing is resisted against in above-mentioned round terminal pad 66, and the other end stretches out The gap structure 68 for assisting rolling bearing eccentric bushing 67, gap structure 68 are provided on above-mentioned 69 lateral surface of support column and the end Including four, the upper and lower, left and right notch being provided on bearing eccentric bushing 67, wherein upper and lower notch is one group and face is arranged, Left and right notch is one group and face is arranged.
By adjusting the angle between the adjustable connecting plate 62 of bearing eccentric bushing 67 and operating table surface 2, that is, adjust right pressure Angle between cloth mold 619 and operating table surface 2, when especially for component assembly precision not in place or replacement thickness difference compared with When big cloth cut-parts, can generate cloth cut-parts smooth stable can not be pressed between operating table surface 2 and compress mold 619, Can be adjusted by above structure adjusting enable the smooth stabilization of cloth cut-parts be pressed on operating table surface 2 and compress mold 619 it Between, so that cloth cut-parts is not walked in moving process;Meanwhile being positioned at two bearing eccentric bushings 67 of 62 liang of long sides of connecting plate It is independent, can be separately adjustable, in this way when cloth cut-parts are not equal thickness the case where, such as right low left high, left low and right high Situations such as, can also two bearing eccentric bushings 67 different degrees of adjusting, make connecting plate 62 generation tilt angle to adapt to The not compression of the cloth cut-parts of equal thickness.
Further, the second rotational structure includes the column 610 for being connected in 61 upper surface of supporting plate, is mounted on column 610 The 4th cylinder 611 and the hinged block 612 that is connected on 62 lower surface edge of connecting plate, the piston rod of the 4th cylinder 611 It is articulated and connected with hinged block 612.
Further, slide construction include the third motor 613 being respectively fixedly connected on 62 lower surface of connecting plate, two short side, Two the second guide rails 615 in 62 lower surface of connecting plate, two long side, the driven wheel seat 614 is respectively fixedly connected in driven wheel seat 614 Driven wheel is inside installed, the output shaft of third motor 613 is connect by third synchronous belt 616 with the driven wheel, and third is synchronous Band 616 is arranged in parallel with 62 long side of connecting plate, and two sides have been respectively fixedly connected and two above-mentioned second guide rails 615 on the attachment base 63 Corresponding third sliding block 617, the third synchronous belt 616 are connect by third clamping piece 618 with attachment base 63.
Its second guide rail 615 and 617 structure of third sliding block enable the opposite connecting plate 62 of right compress mold 619 along connection 62 longitudinal direction of plate is moved forward and backward, and is the first X-axis by 56 direction definition of the first synchronous belt, and the third on right feeding mechanism 6 is synchronous 616 direction of band is the first Y-axis, to realize that compress mold 619 is taken up an official post in the two-dimensional surface of X-axis and Y-axis on right feeding mechanism 6 The movement of what position;It is the second X-axis by 57 direction definition of the second synchronous belt, 616 side of third synchronous belt on left feeding mechanism 12 To as the second Y-axis, to realize any position on the two-dimensional surface of X-axis and Y-axis of compress mold 619 on left feeding mechanism 12 Movement so that sewing device 10 can to cloth on the two-dimensional surface formed by the first X-axis, the first Y-axis random angle Sew to degree any direction;And the cloth that 11 opposite joint of automatic cloth cutting device is made is by the second X-axis, the second Y-axis It is cut to any angle any direction on the two-dimensional surface of formation.
The structure and working principle of left feeding mechanism 12 are identical as the structure of right feeding mechanism 6 and working principle, herein not Narration in detail again.
As shown in FIG. 11 and 12, position-indicating device 7 includes the second cross beam 71 with the second accommodating chamber, second cross beam 71 One end be equipped with the 4th motor 72, be installed with driving wheel, the other end of second cross beam 71 on the output shaft of the 4th motor 72 Equipped with driven wheel, the 4th synchronous belt 73 is connected between the driving wheel and driven wheel, the side of the 4th belt is connected with One mounting plate 74, the other side are connected with the second mounting plate 75, and third guide rail, above-mentioned first mounting plate are fixed on second cross beam 71 74 and second mounting plate 75 be slidably connected on third guide rail by Four-slider 76;First mounting plate 74 and the second mounting plate 75 along its length on be installed with the 4th guide rail 77 and the 5th guide rail 78 respectively, on the 4th guide rail 77 and the 5th guide rail 78 respectively The 5th sliding block 79 and the 6th sliding block 710 are slidably connected, is separately installed with and can emit on the 5th sliding block 79 and the 6th sliding block 710 The first color-changing lamp 711 and the second color-changing lamp 712 of cross light are equipped with gas-operated lock on the 5th sliding block 79 and the 6th sliding block 710 Locking structure 713;71 upper surface of second cross beam is installed with mounting blocks 714, and 714 two sides of mounting blocks are fixedly installed with can emit respectively The third color-changing lamp 715 and the 4th color-changing lamp 716 of vertical bar light, third color-changing lamp 715 and the 4th color-changing lamp 716 can be along institutes The length direction for stating second cross beam 71 swings and between the first color-changing lamp 711 and the second color-changing lamp 712;Second cross beam The first connecting plate 717 and the second connecting plate 718, the first connecting plate 717 and the second connecting plate 718 and are fixed on 71 upper surfaces One crossbeam, 3 upper surface is connected.
Requirement to operator is lower, only needs feeding, and upper discharge position all clearly dictates otherwise light, only Light is directed to put cloth cut-parts, because being not necessarily to veteran operator, operation is can be completed in general staff, Easy to operate and reduction manpower threshold and cost.This sewing device can be compatible with the processing of neckline and English of tucking inside the sleeve, when processing neckline, Third color-changing lamp 715 and the 4th color-changing lamp 716 only need to be used, two corners of neckline need to only be corresponded to third color-changing lamp 715 and the The cross light that four color-changing lamps 716 issue;When processing sleeve inch, the first color-changing lamp 711 and third color-changing lamp 715 are one Group, the second color-changing lamp 712 and the 4th color-changing lamp 716 are one group, can with two sleeve English of simultaneous processing, only need to will sleeve one avris of English and The vertical bar light alignment that first color-changing lamp 711 issues, the cross that the corresponding upper third color-changing lamp 715 in a corner of another avris issues Light, another set is similarly.
Further, pneuma-lock structure 713 includes suction nozzle and locking pin, and two locking pins slide setting respectively On the 5th sliding block 79 and the 6th sliding block 710 and respective one end of two locking pins is respectively facing first installation The upper surface of plate 74 and the second mounting plate 75, two suction nozzle air inlets can be such that the end of two locking pins supports respectively On the upper surface for leaning against first mounting plate 74 and the second mounting plate 75.
As shown in Figs. 13 and 14, material collecting device 8 includes rising material seat 81, pile material seat 84, first support 86, shield 87, extremely Few two gag lever posts 816 and the first driving mechanism and the second driving mechanism being separately mounted in first support 86, the liter Multiple evenly spaced bearing material columns 82 are installed on material seat 81, there is gap 83 and all bearing materials between two neighboring bearing material column 82 The upper surface of column 82 constitutes a loading surface, and the loading surface is flushed with aforesaid operations table top 2 or slightly below aforesaid operations table top 2, the pile expects to be equipped with multiple bearing material bars 85 on seat 84, and multiple bearing material bars 85 are corresponded with above-mentioned gap 83 and position In the surface in above-mentioned gap 83, the diameter of the bearing material bar 85 is less than the width in above-mentioned gap 83, and limit material bar 816 passes through position Adjustable structure is mounted between corresponding bearing material column 82 and adjacent two limits material bar 816 and is equipped at least two above-mentioned bearing material columns 82, institute It includes the bar shaped regulating tank 817 being provided on bearing material column 82 that rheme, which sets adjustable structure, and the limit material 816 is fixedly mounted on bar shaped On regulating tank 817 and the bar shaped regulating tank 817 is located at bearing material column 82 far from that end of operating table surface 2.
Further, the first driving mechanism includes the 5th cylinder 88, the 6th cylinder 89, is fixedly mounted on liter material seat 81 6th guide rail 810 and the 7th sliding block 811 being slidably connected with the 6th guide rail 810, above-mentioned liter material seat 81 are fixedly mounted on the 5th gas On the piston rod of cylinder 88, the cylinder body of the 5th cylinder 88 is fixedly mounted on the piston rod of the 6th cylinder 89, the 6th gas The cylinder body of cylinder 89 is mounted in above-mentioned first support 86, and the 6th guide rail 810 is fixedly mounted on the cylinder body of the 6th cylinder 89; 5th cylinder 88 for driving above-mentioned bearing material column 82 to be highly slightly below above-mentioned 84 height of pile material seat, use by the 6th cylinder 89 In driving, above-mentioned bearing material column 82 continues to rise to bearing material bar 85 and the horizontal face in above-mentioned gap 83 is arranged;Either, the described 6th Cylinder 89 is for driving above-mentioned bearing material column 82 to be highly slightly below above-mentioned 84 height of pile material seat, and the 5th cylinder 88 is for driving It states bearing material column 82 and continues to rise to bearing material bar 85 and the setting of the horizontal face in above-mentioned gap 83.
Further, the second driving mechanism includes the 7th cylinder 812 and the 7th guide rail 813, and the 7th cylinder 812 is fixedly mounted Underface in first support 86 and positioned at above-mentioned bearing material bar 85, the pile material seat 84 are connected in the 7th by drive rod 815 On the piston rod of cylinder 812, the piston rod of the 7th cylinder 812 is directed away from the setting of 2 direction of operating table surface, the drive rod 815 piston rod respectively with pile material seat 84 and the 7th cylinder 812 is arranged in a mutually vertical manner, the 7th guide rail 813 and the 7th cylinder 812 piston rod is arranged in parallel and is connected in first support 86, and the pile material seat 84 is slidably connected at by the 8th sliding block 814 On 7th guide rail 813.
The cloth for newly entering the material collecting device 8 is to be collected the bottom for overlaying that pile cloth collected, and has been received That pile cloth of collection is always positioned at the top of operating table surface 2, therefore cloth stacks that height is higher all to will not influence next cloth Rewinding work, can disposably collect more cloth, that pile cloth stacked is moved away from the material collecting device 8 by such staff The frequency it is lower, to reduce human cost, improve working efficiency.
As shown in figure 15, this is for processing neckline/cuff bind, with the following steps:
S1, equipment starting, and initial reset;
S2, operator input corresponding coding, the coding by human-computer interaction according to the type of the cloth to feeding Include and the one-to-one type of cloth and dimension information;
The two vertical bar light and two crosses that S3, operator project according to position-indicating device 7 to feeding area 21 Two cut-parts of cloth are successively seated on 21 designated position of feeding area by light;
S4, the work of air draft structure 4 will be on 21 designated positions of feeding area by several first adsorption holes 43 formation negative pressure Cloth is absorbed and fixed on feeding area 21;
S5, right feeding mechanism 6 work, and right compress mold 619 thereon compresses cloth in feeding area 21 to lower swing, several A first adsorption hole, 43 negative pressure eliminates to lose the absorption to cloth, right 6 moving cloth of feeding mechanism to sewing device 10 into Row sewing, after sewing, right feeding mechanism 6 continues for the good cloth of the sewing to be moved to interactive areas 22, right compress mold 619 Being swung up disengaging cloth makes cloth be seated in interactive areas 22;
S6, air draft structure 4 several second adsorption holes 44 formed negative pressure cloth is absorbed and fixed on interactive areas 22;
S7, the work of left feeding mechanism 12 are moved to interactive areas 22, compress the cloth, several 44 negative pressure of the second adsorption hole disappear Except to lose the absorption to cloth, which is moved to the cloth after 11 opposite joint of automatic cloth cutting device makes by left feeding mechanism 12 After material edge cuts redundance, the cloth after cutting then is moved to receiving section 23;
S8, while executing step S7, right feeding mechanism 6 is reset to feeding area 21 from interactive areas 22, to next cloth Material executes step S5;
S9, the work of material-pulling device 9 shift the cloth cut in material collecting device 8 onto, and material collecting device 8 collects the cloth, One cloth completion of processing.
Above-mentioned step only need to be repeated to the processing of next cloth, wherein the initial reset of step S1 is specific Are as follows: right feeding mechanism 6 is located at its upward swings of feeding area 21 and does not contact with feeding area 21, and left feeding mechanism 12 is located at receiving section 23 And upward swings are not contacted with receiving section 23, the eedle of sewing device 10 is located at the leading zero's right above needle plate, automatic fabric dividing The moving knife of device 11 and the angle of stationary knife are located at leading zero's, that is, knife direction and first crossbeam 3 is mutually perpendicular to and moving knife is positioned at fixed The surface of knife, the charging ram of material-pulling device 9 are located at the surface apart from 2 certain distance of operating table surface, the bearing material of material collecting device 8 Face is flushed with aforesaid operations table top 2 or slightly below aforesaid operations table top 2.
This sewing device high degree of automation, other than feeding needs manually, other all operations are automatically complete by equipment At the degree of automation is very high, so that work efficiency is high;Meanwhile an operator can control at least 2-3 platform equipment simultaneously, Human cost is substantially reduced, is improved efficiency;Can two clothes of simultaneous processing, i.e., processed between interactive areas 22 and receiving section 23 When current cloth, next cloth can be processed simultaneously between feeding area 21 and interactive areas 22, to improve work Efficiency;Device on all devices is all to realize that control is coordinated by control cabinet, easy to operate, precise control.
Specific embodiment described herein is only an example for the spirit of the invention.The neck of technology belonging to the present invention The technical staff in domain can make various modifications or additions to the described embodiments or replace by a similar method In generation, however, it does not deviate from the spirit of the invention or beyond the scope of the appended claims.

Claims (15)

1. it is a kind of for processing neckline/cuff sewing device, including rack (1) and the operating table surface being mounted on rack (1) (2), it is characterised in that: be equipped with first crossbeam (3) on rack (1) top, the operating table surface (2), which has, is located at right end Feeding area (21), the receiving section (23) positioned at left end and the interactive areas (22) positioned at middle part, the sewing device further include installation On rack (1) material collection structure, human-computer interaction and control cabinet and right-to-left be sequentially arranged on first crossbeam (3) Position-indicating device (7), sewing device (10), automatic cloth cutting device (11), material-pulling device (9), the position-indicating device (7) Positioning instruction is carried out for the upper discharge position to cloth and is located at right above feeding area (21), and sewing device (10) is used for cloth Carry out sewing and positioned at feeding area (21) and interactive areas (22) between, automatic cloth cutting device (11) be used for cloth is cut and Between receiving section (23) and interactive areas (22), material-pulling device (9) is used to that cloth to be pushed to material collecting device (8) and be located at and receives Expect right above area (23), material collecting device (8) is for collecting cloth and being located at receiving section (23) side;On the first crossbeam (3) It is also equipped with the interactive feed device (5) with right feeding mechanism (6) and left feeding mechanism (12), the interactive mode feeding dress After (5) are set for driving right feeding mechanism (6) that the cloth compression for being located at feeding area (21) is transferred to sewing device (10) sewing Continue to be transferred to interactive areas (22), left feeding mechanism (12) is driven to hand over the cloth on right feeding mechanism (6) in interactive areas (22) Mutually come and compress to be transferred to after automatic cloth cutting device (11) is cut to continue to be transferred to receiving section (23), above-mentioned positioning instruction Device (7), sewing device (10), automatic cloth cutting device (11), material-pulling device (9), interactive feed device (5) and material collecting device (8) it is connect with above-mentioned control cabinet.
2. according to claim 1 a kind of for processing neckline/cuff sewing device, which is characterized in that the machine It is also equipped on frame (1) air draft structure (4), the air draft structure (4) includes asepwirator pump (41), distributor (42) and opens respectively It is located at several first suctions on feeding area (21) and interactive areas (22) and for being tightly adsorbed on cloth on operating table surface (2) Attached hole (43) and several second adsorption holes (44), distributor (42) include shell (45), and shell is provided with the first distribution on (45) Mouthful (46), the second distribution openings (47) and third distribution openings (48) are equipped with the first cylinder (49), the second cylinder on shell (45) (410) and third cylinder (411) and the first block head (412), the second block head by being mounted on respective piston rod respectively (413) the first distribution openings (46), the second distribution openings (47) and third distribution openings (48) are connected with third block head (414) Or close, the lower end surface of operating table surface (2) is equipped with to be adsorbed with all first adsorption holes (43) and all described second respectively The first cavity and the second cavity of hole (44) connection, the first cavity and the second cavity pass through the first aspiration channel, the second air draught respectively Pipe is connected to the first distribution openings (46) and the second distribution openings (47), and third distribution openings (48) are in communication with the outside, on shell (45) also It is provided with the gas outlet (415) being connected to the air inlet of asepwirator pump (41).
3. according to claim 2 a kind of for processing neckline/cuff sewing device, which is characterized in that the friendship Mutual formula feed device (5) include first motor (51), the second motor (52), first clamping member (53), the second clamping piece (54) and It is connected in first crossbeam (3) lower end surface and two the first guide rails (55) disposed in parallel, is all provided on first crossbeam (3) left and right ends There is a driven wheel, is fixed with driving wheel, the master of first motor (51) on the output shaft of first motor (51) and the second motor (52) Be connected with the first synchronous belt (56) between driving wheel and the driven wheel of first crossbeam (3) right end, the driving wheel of the second motor (52) with It is connected with the second synchronous belt (57) between the driven wheel of first crossbeam (3) left end, first synchronous belt (56) is synchronous with second Band (57) is arranged in parallel and localized chiasma, localized chiasma are located at interactive areas (22), has first in the first crossbeam (3) Accommodating chamber (58), and be provided on lower end surface and above-mentioned first synchronous belt (56) and the second synchronous belt (57) corresponding matched first Loose slot (31) and the second loose slot (32), first clamping member (53) one end and right feeding mechanism (6) are connected, the other end by down toward On enter in above-mentioned first accommodating chamber (58) across the first loose slot (31) and connect with the first synchronous belt (56), above-mentioned second presss from both sides Gripping member (54) one end and left feeding mechanism (12) are connected, and the other end passes through the second loose slot (32) from the bottom to top and enters above-mentioned the It is connect in one accommodating chamber (58) with the second synchronous belt (57), first motor (51) and the second motor (52) are connect with control cabinet, institute Right feeding mechanism (6) and left feeding mechanism (12) is stated to be slidably connected at by the first sliding block (59) and the second sliding block (510) respectively On two above-mentioned first guide rails (55).
4. according to claim 3 a kind of for processing neckline/cuff sewing device, which is characterized in that the right side Feeding mechanism (6) includes supporting plate (61), connecting plate (62) and the attachment base (63) for installing compress mold (619), and above-mentioned One clamping piece (53) is connected on supporting plate (61), and the connecting plate (62) is rectangle, (61) two middle side part of supporting plate and company It is respectively connected with the first rotational structure between in the middle part of fishplate bar (62) two long side, supporting plate (61) the two sides rear portion and connecting plate (62) The second rotational structure is respectively connected between two long side rear portions, the attachment base (63) passes through slide construction and above-mentioned connecting plate (62) it connects, the driving die setting base is connected on attachment base (63), and the structure of the left feeding mechanism (12) is sent with the right side Expect that the structure of mechanism (6) is identical.
5. according to claim 4 a kind of for processing neckline/cuff sewing device, which is characterized in that described One rotational structure includes connector (64), bearing eccentric bushing (67) and the support column (69) with circular mounting hole, the bearing Eccentric bushing (67) is rotatably installed in above-mentioned circular mounting hole, and bearing eccentric bushing (67) has bearing hole, above-mentioned connector (64) One end is rectangular connecting pin and is connected with above-mentioned connecting plate (62) that the other end is rotation axis connecting pin (65) and is rotatably installed in It states in bearing hole, centre is the round terminal pad (66) that bore is greater than above-mentioned bearing bore open, the rotation axis connecting pin (65) End face it is concordant with support column (69) lateral surface, bearing eccentric bushing (67) one end is resisted against on above-mentioned round terminal pad (66), separately The gap structure being provided on above-mentioned support column (69) lateral surface and the end for assisting rolling bearing eccentric bushing (67) is stretched out in one end (68), gap structure (68) includes four, the upper and lower, left and right notch being provided on bearing eccentric bushing (67), wherein upper and lower lack Mouth is one group and face is arranged, and left and right notch is one group and face is arranged.
6. according to claim 4 a kind of for processing neckline/cuff sewing device, which is characterized in that described Two rotational structures include being connected in the column (610) of supporting plate (61) upper surface, the 4th cylinder being mounted on column (610) (611) and the hinged block (612) that is connected on connecting plate (62) lower surface edge, the piston rod of the 4th cylinder (611) with Hinged block (612) articulated connection.
7. according to claim 4 a kind of for processing neckline/cuff sewing device, which is characterized in that the cunning Dynamic structure includes that third motor (613), driven wheel seat (614) on two short side of connecting plate (62) lower surface is respectively fixedly connected, Two the second guide rails (615) in two long side of connecting plate (62) lower surface, installation in the driven wheel seat (614) is respectively fixedly connected There is driven wheel, the output shaft of third motor (613) is connect by third synchronous belt (616) with the driven wheel, and third synchronous belt (616) it is arranged in parallel with connecting plate (62) long side, two sides have been respectively fixedly connected on the attachment base (63) leads with two above-mentioned second The corresponding third sliding block (617) of rail (615), the third synchronous belt (616) pass through third clamping piece (618) and attachment base (63) Connection.
8. according to claim 1 or 2 or 3 or 4 a kind of for processing neckline/cuff sewing device, which is characterized in that The position-indicating device (7) includes the second cross beam (71) with the second accommodating chamber, and one end of second cross beam (71) is equipped with 4th motor (72) is installed with driving wheel on the output shaft of the 4th motor (72), and the other end of second cross beam (71) is equipped with Driven wheel, is connected with the 4th synchronous belt (73) between the driving wheel and driven wheel, the side of the 4th belt is connected with first Mounting plate (74), the other side are connected with the second mounting plate (75), and third guide rail, above-mentioned first peace are fixed on second cross beam (71) Loading board (74) and the second mounting plate (75) are slidably connected on third guide rail by Four-slider (76);First mounting plate (74) With the second mounting plate (75) along its length on be installed with the 4th guide rail (77) and the 5th guide rail (78), the 4th guide rail respectively (77) and on the 5th guide rail (78) slidably connect the 5th sliding block (79) and the 6th sliding block (710) respectively, the 5th sliding block (79) and The first color-changing lamp (711) and the second color-changing lamp (712) that can emit cross light are separately installed on 6th sliding block (710), Pneuma-lock structure (713) are equipped on 5th sliding block (79) and the 6th sliding block (710);Second cross beam (71) upper surface is installed with Mounting blocks (714), mounting blocks (714) two sides be fixedly installed with respectively the third color-changing lamp (715) that can emit vertical bar light and 4th color-changing lamp (716), third color-changing lamp (715) and the 4th color-changing lamp (716) can be along the length of the second cross beam (71) Degree direction swings and between the first color-changing lamp (711) and the second color-changing lamp (712);On second cross beam (71) upper surface It is fixed with the first connecting plate (717) and the second connecting plate (718), the first connecting plate (717) and the second connecting plate (718) and first Crossbeam (3) upper surface is connected.
9. according to claim 8 a kind of for processing neckline/cuff sewing device, which is characterized in that the gas Dynamic locking mechanism (713) include suction nozzle and locking pin, and two locking pins are slidably arranged in the 5th sliding block respectively (79) and on the 6th sliding block (710) and respective one end of two locking pins is respectively facing first mounting plate (74) and The upper surface of two mounting plates (75), two suction nozzle air inlets can make the end of two locking pins be resisted against institute respectively On the upper surface for stating the first mounting plate (74) and the second mounting plate (75).
10. according to claim 1 or 2 or 3 or 4 a kind of for processing neckline/cuff sewing device, feature exists In the material collecting device (8) includes rising material seat (81), pile material seat (84), first support (86), shield (87), at least two A gag lever post (816) and the first driving mechanism and the second driving mechanism being separately mounted on first support (86), the liter Multiple evenly spaced bearing material columns (82) are installed on material seat (81), have between two neighboring bearing material column (82) gap (83) and The upper surface of all bearing material columns (82) constitutes a loading surface, and the loading surface flushes or is slightly below with aforesaid operations table top (2) Aforesaid operations table top (2), is equipped with multiple bearing material bars (85) on pile material seat (84), multiple bearing material bars (85) with it is above-mentioned Gap (83) correspond and be located at the surface of above-mentioned gap (83), the diameter of the bearing material bar (85) is less than above-mentioned gap (83) width, limit material bar (816) are mounted on corresponding bearing material column (82) and adjacent two limits material bar by position adjustable structure (816) at least two above-mentioned bearing material columns (82) are equipped between, the position adjustable structure includes being provided on bearing material column (82) Bar shaped regulating tank (817), the limit material (816) is fixedly mounted on bar shaped regulating tank (817) and the bar shaped regulating tank (817) it is located at bearing material column (82) far from that end of operating table surface (2).
11. according to claim 10 a kind of for processing neckline/cuff sewing device, which is characterized in that described First driving mechanism includes the 5th cylinder (88), the 6th cylinder (89), the 6th guide rail being fixedly mounted on liter material seat (81) (810) the 7th sliding block (811) that six guide rail of He Yu (810) is slidably connected, above-mentioned liter material seat (81) are fixedly mounted on the 5th gas On the piston rod of cylinder (88), the cylinder body of the 5th cylinder (88) is fixedly mounted on the piston rod of the 6th cylinder (89), described The cylinder body of 6th cylinder (89) is mounted on above-mentioned first support (86), and the 6th guide rail (810) is fixedly mounted on the 6th gas On the cylinder body of cylinder (89);5th cylinder (88) is for driving above-mentioned bearing material column (82) height to be slightly below above-mentioned pile material seat (84) Highly, the 6th cylinder (89) is for driving above-mentioned bearing material column (82) to continue to rise to bearing material bar (85) and above-mentioned gap (83) Horizontal face setting;Either, the 6th cylinder (89) is for driving above-mentioned bearing material column (82) height to be slightly below above-mentioned pile material Seat (84) height, the 5th cylinder (88) is for driving above-mentioned bearing material column (82) to continue to rise to bearing material bar (85) and above-mentioned sky The horizontal face setting of gap (83).
12. according to claim 10 a kind of for processing neckline/cuff sewing device, which is characterized in that described Second driving mechanism includes the 7th cylinder (812) and the 7th guide rail (813), and the 7th cylinder (812) is fixedly mounted on first support (86) underface on and positioned at above-mentioned bearing material bar (85), pile material seat (84) are connected in the 7th gas by drive rod (815) On the piston rod of cylinder (812), the piston rod of the 7th cylinder (812) is directed away from the setting of operating table surface (2) direction, the biography Piston rod of the lever (815) respectively with pile material seat (84) and the 7th cylinder (812) is arranged in a mutually vertical manner, the 7th guide rail (813) it is arranged in parallel and is connected on first support (86) with the piston rod of the 7th cylinder (812), pile material seat (84) passes through 8th sliding block (814) is slidably connected on the 7th guide rail (813).
13. a kind of for processing neckline/cuff bind, provide any described for processing in above-mentioned power 1~12 Neckline/cuff sewing device, which is characterized in that there are the following steps:
S1, equipment starting, and initial reset;
S2, operator input corresponding coding by human-computer interaction according to the type of the cloth to feeding, and the coding includes Have and the one-to-one type of cloth and dimension information;
The two vertical bar light and two crosses that S3, operator project according to position-indicating device (7) to feeding area (21) Two cut-parts of cloth are successively seated on feeding area (21) designated position by light;
S4, right feeding mechanism (6) work, right compress mold thereon compresses cloth in feeding area (21) to lower swing, and moves Cloth to sewing device (10) are sewed, and after sewing, right feeding mechanism (6) continues for the good cloth of the sewing to be moved to Interactive areas (22), right compress mold, which is swung up disengaging cloth, makes cloth be seated in interactive areas (22);
S5, left feeding mechanism (12) work are moved to interactive areas (22), compress the cloth and the cloth is moved to automatic fabric dividing Device (11) opposite joint make after cloth edge cut redundance after, the cloth after cutting then is moved to receiving section (23);
S6, while executing step S5, right feeding mechanism (6) is reset to feeding area (21) from interactive areas (22), to next Cloth executes step S4;
S7, material-pulling device (9) work shift the cloth cut in material collecting device (8) onto, and material collecting device (8) receives the cloth Collection, a cloth completion of processing.
14. according to claim 13 a kind of for processing neckline/cuff bind, which is characterized in that described Also with following steps between step S3 and step S4: provide one have several first adsorption holes (43) and several the The air draft structure (4) of two adsorption holes (44), air draft structure (4) work pass through several first adsorption holes (43) for feeding area (21) Cloth on designated position is absorbed and fixed on feeding area (21), and in step s 4 right compress mold to lower swing compress cloth After feeding area (21), several first adsorption holes (43) lose the absorption to cloth.
15. according to claim 14 a kind of for processing neckline/cuff bind, which is characterized in that described Right compress mold is swung up in step S4 be detached from cloth before, several second adsorption holes (44) of air draft structure (4) are by cloth It is absorbed and fixed on interactive areas (22), and left feeding mechanism (12) work in step s 5 is moved to interactive areas (22) compression and is somebody's turn to do After cloth, several second adsorption holes (44) lose the absorption to cloth.
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