CN207079363U - For automating the feeding device of sewing device - Google Patents

For automating the feeding device of sewing device Download PDF

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Publication number
CN207079363U
CN207079363U CN201720812535.8U CN201720812535U CN207079363U CN 207079363 U CN207079363 U CN 207079363U CN 201720812535 U CN201720812535 U CN 201720812535U CN 207079363 U CN207079363 U CN 207079363U
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China
Prior art keywords
cloth
transmission mechanism
feeding device
shank
sewing device
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CN201720812535.8U
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Chinese (zh)
Inventor
林培嘉
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GAOLIN CO Ltd
Kaulin Manufacturing Co Ltd
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GAOLIN CO Ltd
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Abstract

The utility model is on a kind of feeding device for being used to automate sewing device, including power source, transmission mechanism and cloth extraction mechanism, transmission mechanism connection power source;Cloth extraction mechanism is arranged on transmission mechanism and connection power source, and cloth extraction mechanism includes a pair of picking components, and each picking component includes pedestal and be arranged in pedestal to choose cloth pin;Pedestal will be removed after the driving by power source and be pierced into cloth by wherein respectively choosing cloth pin, by the movement of transmission mechanism so that cloth be lifted;Thus, it may achieve the effect of automation continuity sewing operation.

Description

For automating the feeding device of sewing device
Technical field
The utility model is a kind of relevant automation sewing device technology, is referred in particular to a kind of for automating sewing device Feeding device.
Background technology
As human cost is constantly lifted up, for needing the clothing by a large amount of manpowers or associated manufacturer, remove Production line migration human cost more cheap region or country is outer, it can not find really and more preferably solved method, but Migration each time will not only be put into outside substantial amounts of fund and cost again, for local technical staff form and cultivation is even more There is the problems such as slow action cannot save a critical situation, thus maximally effective solution, no more than upgrading to whole production process, Jin Erda Into without manpower, and it is capable of the automation sewing system of uninterrupted sewing.
Existing sewing device belongs to greatly single-set operation, after the sewing operation of privileged site is completed, then transfers to down One technical staff for manufacturing program, continue unfinished follow-up sewing operation, not only human cost is suitable for such a mode of production Height, and the clothing of different quality is easily produced because of different sewing technical staff.Although there is part manufacturer to be designed with half certainly Dynamicization sewing device, but it is also fairly limited for the improvement degree of human cost and quality.
Utility model content
The purpose of this utility model is to provide a kind of feeding device for being used to automate sewing device, and it is to utilize each group Into the mutual cooperation of mechanism, to reach the continuity sewing operation of automation.
In order to reach above-mentioned purpose, the utility model provides a kind of feeding device for being used to automate sewing device, The power source is connected for a cloth, including a power source, a transmission mechanism and a cloth extraction mechanism, the transmission mechanism;Should Cloth extraction mechanism is arranged on the transmission mechanism and connects the power source, and the cloth extraction mechanism includes a pair of picking components, Each picking component includes a pedestal and what is be arranged in the pedestal one choose cloth pin;Wherein respectively this chooses cloth pin by the power The pedestal will be removed after the driving in source and is pierced into the cloth, by the movement of the transmission mechanism so that the cloth be carried Rise.
As further improvement of the utility model, the inside of the wherein pedestal offers a perforation, and the perforation includes one Big footpath section and the path section being connected with the big footpath section, this, which chooses cloth pin, includes a shank, and the shank includes one first shank and one Second shank, the subregion of first shank are contained in the path section, and it is big that the subregion of second shank is contained in this Footpath section is interior and is connected to the end face of first shank.
Further improved as of the present utility model, wherein this, which chooses cloth pin, also includes an outer sleeve and an elastomer, should Elastomer sleeve is located at the first shank outer peripheral edge and is contained in jointly in the big footpath section, and the outer sleeve corresponds to the big footpath Duan Gu Determine on the base.
Further improved as of the present utility model, wherein the cloth extraction mechanism also includes a cantilever, respectively the picking Component is fixed in a symmetrical on the cantilever.
Further improved as of the present utility model, wherein respectively this is chosen between cloth pin formed with a within angle, the inner clip Angle is between 60 ~ 179 °, it is preferable that the within angle is between 135 ~ 165 °.
Further improved as of the present utility model, wherein the cloth extraction mechanism also includes a position detector, peace On the cantilever and formed between respectively this chooses cloth pin.
Further improved as of the present utility model, wherein the transmission mechanism includes one first axial transmission mechanism and peace Mounted in one second axial transmission mechanism of the first axial transmission mechanism, the moving direction of the second axial transmission mechanism is and this The moving direction of first axial transmission mechanism is mutually perpendicular to.
Further improved as of the present utility model, wherein the first axial transmission mechanism includes a fixed seat, several Guide rod, a slide and an air pressure cylinder component, the fixed seat have a bottom plate and the side plate being separately fixed on the bottom plate, and respectively this is led What bar was parallel to each other, which wear, connects the respectively side plate and is formed on which floor plate, the slide be socketed in the respectively guide rod and between the respectively side plate it Between, on air pressure cylinder component side plate installed therein, and connected by an appendix with the power source, the pneumatic cylinder group Part has through the side plate and connects a push rod of the slide.
Further improved as of the present utility model, wherein the second axial transmission mechanism include a seat board, a riser, One guide rail, a Mobile base and a conveying member, the seat board are fixed on the slide, and the riser is arranged on a side of the seat board, The guide rail is fixed on the riser, and the Mobile base is arranged on the guideway, and the conveying member includes a gear and connects the power One belt in source, the gear are connected with the Mobile base.
Further improved as of the present utility model, wherein the automation sewing device has a cloth of horizontal ornaments Placing platform, the transmission mechanism include one second axial transmission mechanism, and the second axial transmission mechanism is to put to put down with the cloth Platform is formed with a slanted angle, so that the cloth extraction mechanism drives the cloth to move in a manner of inclination movement.
As it is of the present utility model further improve, wherein the power source be a motor, a gas supply device or One motor and a gas supply device.
The utility model also has following effect, is skewed configuration due to respectively choosing cloth pin, and entered with oblique inserted mode Enter in cloth, therefore being retained on cloth stabilization between each first shank without slipping.
Brief description of the drawings
Fig. 1 is the combination appearance figure of feeding device of the present utility model.
Fig. 2 is the combination diagram of cloth extraction mechanism of the present utility model.
Fig. 3 is the assembled sectional view of cloth extraction mechanism of the present utility model.
Fig. 4 is the sectional view of picking component of the present utility model.
Fig. 5 is the stereo appearance figure that the utility model is applied to automation sewing device.
Fig. 6 is the front view that the utility model is applied to automation sewing device.
Fig. 7 is the schematic diagram for the first use state that the utility model is applied to automation sewing device.
Fig. 8 is the schematic diagram for the second use state that the utility model is applied to automation sewing device.
Fig. 9 is the schematic diagram for the 3rd use state that the utility model is applied to automation sewing device.
Figure 10 is the schematic diagram for the 4th use state that the utility model is applied to automation sewing device.
Figure 11 is that another embodiment of feeding device of the present utility model is applied to the use state of automation sewing device Schematic diagram.
Figure 12 is that the another embodiment of feeding device of the present utility model is applied to the use state of automation sewing device Schematic diagram.
Symbol represents in figure:
10 motor;10A gas supply devices;20 first axial transmission mechanisms;21 fixed seats;211 bottom plates;212 Side plate;22 guide rods;23 slides;24 air pressure cylinder components;241 push rods;25 appendixs;30 second axial transmission mechanisms;31 Seat board;32 risers;33 guide rails;34 Mobile bases;35 conveying members;351 gears;352 belts;40 cloth extraction mechanisms; 41 cantilevers;42 picking components;421 pedestals;422 perforation;4221 big footpath sections;4222 path sections;425 choose cloth pin;426 Outer sleeve;427 shanks;4271 first shanks;4272 second shanks;428 elastomers;43 position detectors;Θ inner clips Angle;7 cloth placing platforms;71 lifters;8 cloth delivery platforms;85 cloth-pressing devices;9 clothes.
Embodiment
Relevant detailed description of the present utility model and technology contents, schema is coordinated to be described as follows, but institute's accompanying drawings only carry Used for reference with explanation, be not used for being any limitation as the utility model.
Refering to shown in Fig. 1 and Fig. 4, the utility model provides a kind of feeding device for being used to automate sewing device, its Mainly include a power source, a transmission mechanism and a cloth extraction mechanism 40.
Power source can be a motor 10, a gas supply device 10A (as shown in Figure 5) or a motor 10 and a gas Feedway 10A collocation uses, to provide various power to each mechanism to use.
The transmission mechanism of the present embodiment mainly includes one first axial 20 and 1 second axial transmission mechanism 30 of transmission mechanism, The moving direction of wherein second axial transmission mechanism 30 is mutually perpendicular to the moving direction of the first axial transmission mechanism 20.
First axial transmission mechanism 20 is a transverse transmission mechanism, and it includes a fixed seat 21, two guide rods 22, a slides 23 and an air pressure cylinder component 24, fixed seat 21 there is a bottom plate 211 and be separately fixed at the side plate 212 at the end of bottom plate 211 2, respectively lead Parallel wear connects each side plate 212 and formed in the top of bottom plate 211 bar 22 each other, and slide 23 is socketed in each guide rod 22 and is situated between Between each side plate 212, the outer side edges of the side plate 212 installed therein of air pressure cylinder component 24, and by an appendix 25 with These gases feedway 10A connects (as shown in Figure 5), and air pressure cylinder component 24 has through side plate 212 and connects slide 23 A push rod 241, so that by a control device (not shown), linear shifting is done to provide push rod 241 by power source output gas It is dynamic, and then drive slide 23 can do guiding movement forward or backward on each guide rod 22.
Second axial transmission mechanism 30 is a longitudinal transmission mechanism, and it is arranged on the first axial transmission mechanism 20, second Axial transmission mechanism 30 mainly includes a seat board 31, a riser 32, a guide rail 33, a Mobile base 34 and a conveying member 35, seat Plate 31 locks above foregoing slide 23, and riser 32 is arranged on a side of seat board 31, and guide rail 33 is then fixed on riser 32, moves Dynamic seat 34 is set on guide rail 33, and conveying member 35 includes a gear 351 and connects a belt 352 of aforementioned motor 10, tooth Wheel 351 is arranged on the side of guide rail 33 1 and is connected by gear train and/or rack (not shown) with Mobile base 34, to pass through control Device processed, power is exported to conveying member 35 by motor 10, so drive Mobile base 34 can be done on guide rail 33 upwards or Downward guiding movement.
Cloth extraction mechanism 40 is arranged on the second axial transmission mechanism 30, and this cloth extraction mechanism 40 includes a cantilever 41 And a pair of picking components 42, cantilever 41 are arranged on Mobile base 34, each picking component 42 is to be fixed on cantilever 41 in a symmetrical On.Each picking component 42 chooses cloth pin 425 including a pedestal 421 and one, and pedestal 421 is in substantially a trapezoidal block, in pedestal 421 Inside offer a perforation 422, and perforate and 422 include a big footpath section 4221 and the path section being connected with big footpath section 4221 4222。
Further, choose cloth pin 425 is including an outer sleeve 426, a shank 427 and an elastomer 428, outer sleeve 426 Lock corresponding to big footpath section 4221 on pedestal 421, shank 427 includes one first shank 4271 and one second shank 4272, bullet Property body 428 is set in the outer peripheral edge of the first shank 4271 and is contained in jointly in big footpath section 4221, the part area of the first shank 4271 Domain is then contained in path section 4222, and a part of region of the second shank 4272 is contained in big footpath section 4221, and is connected to The terminal surface of first shank 4271, the remainder of the second shank 4272 are contained in outer sleeve 426, and outer sleeve 426 is remote It is that (not shown) can be connected with These gases feedway 10A by appendix from the one end to lock with pedestal 421, to pass through Control device, stretch out the outside of pedestal 421 or retraction base by power source output gas to provide to choose cloth pin 425 and do along perforation 422 Linear movement inside seat 421.
Further, it is in a skewed configuration respectively to choose cloth pin 425 to be, and formed with an inner clip between cloth pin 425 is respectively chosen Angle Θ, this within angle Θ are between 60 ~ 179 °, and wherein within angle Θ is preferred between 135 ~ 165 °.This within angle Θ When less than 60 °, a problem that cloth is also easy to produce slippage because affected by gravity, this within angle Θ is more than 179 ° When, do not applied to then for some thicker clothes.
Cloth extraction mechanism 40 of the present utility model also includes a position detector 43, and it is to be electrically connected with control device, To detect the spacing distance of cloth top surface and the bottom surface of pedestal 421, this position detector 43 is mounted on cantilever 41 and formed Between cloth pin 425 is respectively chosen.
Refering to shown in Fig. 5 to Fig. 7, feeding device of the present utility model is applied on an automation sewing device, and it is led If for lace and the continuity sewing of cloth, but not using such a kenel as limitation, this automation sewing device mainly wraps Include a cloth placing platform 7, a cloth delivery platform 8, a cloth-pressing device 85 and sewing machine etc., the wherein He of cloth placing platform 7 Cloth delivery platform 8 is that straight column mode is laid, but is provided in cloth formed with a high low head, feeding device between the two and puts The lateral location being laid flat between platform 7 and cloth delivery platform 8, several clothes 9, each cloth are placed with cloth placing platform 7 It is that mutual storehouse forms between material 9, is run first by control device drive motor 10 during operation, by belt 352 and gear 351 drive cloth extraction mechanism 40 to be moved towards the direction of each cloth 9, and the position by position detector 43 to each cloth 9 Carry out detection is put, reaches with the superiors' cloth 9 after an appropriate height, i.e., is filled by control in cantilever 41 and each picking component 42 One electric signal of output is put so that motor 10 is shut down, and each picking component 42 is positioned to the surface of each cloth 9.
As shown in fig.8, secondly, gas supply device 10A operation is controlled by control device, by appendix by gas from After outer sleeve 426 inputs, the second shank 4272 will be promoted to be moved towards the direction of the first shank 4271, and promote the first shank 4271 The bottom surface of pedestal 421 is removed from the path section 4222 of perforation 422 and is pierced into the superiors' cloth 9, due to each first shank 4271 It is to be entered with oblique inserted mode in cloth 9, therefore being retained on the stabilization of cloth 9 between each first shank 4271 without cunning It is de-.
Refering to shown in Fig. 9 and Figure 10, control motor 10 to run by control device, driven by belt 352 and gear 351 Cloth extraction mechanism 40 is moved away from the direction of each cloth 9, while one end of cloth 9 is taken up upwards, in the He of cantilever 41 When each picking component 42 reaches cloth 8 top of delivery platform, i.e., an electric signal is exported so that motor 10 stops by control device Only operate.Thereafter gas supply device 10A operation is driven by control device again, by appendix 25 by gas input air pressure cylinder group After part 24, drive slide 23 via push rod 241 and drive the second axial transmission mechanism 30 and cloth extraction mechanism 40 towards cloth The direction of delivery platform 8 is moved, and cloth 9 is taken to behind the position of cloth-pressing device 85, is controlled finally by control device Gas supply device 10A is run, and gas is after the discharge of outer sleeve 426, elastic recovery of first shank 4271 by elastomer 428 Under power effect, the path section 4222 along perforation 422 is moved into pedestal 421, and cloth 9 is discharged and is seated in On cloth delivery platform 8.
Refering to shown in Figure 11, the difference of the present embodiment and above-described embodiment is:The lower section of cloth placing platform 7 is provided with One lifter 71, to provide the operation that cloth placing platform 7 is lifted or declined, in each picking component 42 with its shank After 427 pairs of clothes 9 puncture, driven using slide 23 by gas supply device 10A, while Mobile base 34 is by motor Under 10 synchronous driving effect, so that cloth extraction mechanism 40 can drive cloth 9 defeated towards cloth in a manner of inclination movement Send the direction of platform 8 to move, then gas supply device 10A operation is controlled by control device, and then cloth 9 discharged defeated in cloth Send on platform 8.
Refering to shown in Figure 12, the difference of the present embodiment and foregoing embodiments is:Described cloth placing platform 7 is to be in The ornaments of one horizontal direction, wherein transmission mechanism only include one second axial transmission mechanism 30, this second axial transmission mechanism 30 It is formed with a slanted angle with cloth placing platform 7;Also can be formed such as the present embodiment with cloth placing platform 7 using guide rail 33 There is a slanted angle;Cloth extraction mechanism 40 is arranged on guide rail 33, utilizes the gear 351 and belt 352 of conveying member 35 Transmission, so that cloth extraction mechanism 40 can drive cloth 9 to be moved towards the direction of cloth delivery platform 8 in a manner of inclination movement It is dynamic.
Similarly, transmission mechanism can also be the form for only including one first axial transmission mechanism 20, wherein each guide rod 22 is With cloth placing platform 7 slide 23 is directly installed on formed with a slanted angle, one end of the cantilever 41 of cloth extraction mechanism 40 Upper (see shown in Fig. 1), when slide 23 is removed along each guide rod 22, will make cloth extraction mechanism 40 with inclination movement side Formula drives cloth 9 to be moved towards the direction of cloth delivery platform 8, so also has the effects equivalent of foregoing embodiments.
It is described above, preferred embodiment only of the present utility model, implement when the utility model can not be limited with this Scope, i.e., all simple equivalence changes made according to present utility model application the scope of the claims and utility model description are with repairing Decorations, all still fall within the range of the utility model patent covers.

Claims (12)

  1. A kind of 1. feeding device for being used to automate sewing device, for a cloth, it is characterised in that including:
    One power source;
    One transmission mechanism, connect the power source;And
    One cloth extraction mechanism, on the transmission mechanism and the connection power source, the cloth extraction mechanism include A pair of picking components, each picking component includes a pedestal and what is be arranged in the pedestal one choose cloth pin;
    Wherein it is each it is described choose cloth pin the pedestal will be removed after the driving by the power source and is pierced into the cloth, lead to The movement of the transmission mechanism is crossed so that the cloth be lifted.
  2. 2. the feeding device as claimed in claim 1 for being used to automate sewing device, it is characterised in that wherein described pedestal Inside offers a perforation, and the path section for including a big footpath section and being connected with the big footpath section of perforating is described to choose cloth pin Including a shank, the shank includes one first shank and one second shank, and the subregion of first shank is contained in institute State in path section, the subregion of second shank is contained in the big footpath section and is connected to the end of first shank Face.
  3. 3. the feeding device as claimed in claim 2 for being used to automate sewing device, it is characterised in that wherein described to choose cloth pin Also include an outer sleeve and an elastomer, the elastomer sleeve is located at the first shank outer peripheral edge and is contained in jointly described big In the section of footpath, the outer sleeve corresponds to the big footpath section and is fixed on the pedestal.
  4. 4. the feeding device as claimed in claim 1 for being used to automate sewing device, it is characterised in that wherein described cloth carries Mechanism is taken also to include a cantilever, each picking component is fixed in a symmetrical on the cantilever.
  5. 5. the as claimed in claim 4 feeding device for being used to automate sewing device, it is characterised in that wherein each described to choose cloth Formed with a within angle between pin, the within angle is between 60 ~ 179 °.
  6. 6. the feeding device as claimed in claim 5 for being used to automate sewing device, it is characterised in that wherein described within angle Between 135 ~ 165 °.
  7. 7. the feeding device as claimed in claim 4 for being used to automate sewing device, it is characterised in that wherein described cloth carries Take mechanism also to include a position detector, on the cantilever and formed and described chosen each between cloth pin.
  8. 8. the feeding device as claimed in claim 1 for being used to automate sewing device, it is characterised in that wherein described driver Structure includes one first axial transmission mechanism and the one second axial transmission mechanism installed in the described first axial transmission mechanism, described The moving direction of second axial transmission mechanism is mutually perpendicular to the moving direction of the described first axial transmission mechanism.
  9. 9. the feeding device as claimed in claim 8 for being used to automate sewing device, it is characterised in that wherein described first axle Include a fixed seat, several guide rods, a slide and an air pressure cylinder component to transmission mechanism, the fixed seat has a bottom plate and divided The side plate not being fixed on the bottom plate, what each guide rod was parallel to each other, which wear, connects each side plate and is formed in the bottom plate On, the slide is socketed in each guide rod and between each side plate, the air pressure cylinder component it is installed therein one On the side plate, and connected by an appendix with the power source, the air pressure cylinder component have through the side plate and Connect a push rod of the slide.
  10. 10. the feeding device as claimed in claim 9 for being used to automate sewing device, it is characterised in that wherein described second Axial transmission mechanism includes a seat board, a riser, a guide rail, a Mobile base and a conveying member, and the seat board is fixed on described On slide, the riser is arranged on a side of the seat board, and the guide rail is fixed on the riser, and the Mobile base is arranged On the guide rail, the conveying member includes a belt of a gear and the connection power source, the gear and the shifting Dynamic seat connection.
  11. 11. the feeding device as claimed in claim 1 for being used to automate sewing device, it is characterised in that wherein described automatic Changing sewing device has a cloth placing platform of horizontal ornaments, and the transmission mechanism includes one second axial transmission mechanism, institute It is formed with a slanted angle, so that the cloth extraction mechanism with the cloth placing platform to state the second axial transmission mechanism The cloth is driven to move in a manner of inclination movement.
  12. 12. the feeding device as claimed in claim 1 for being used to automate sewing device, it is characterised in that wherein described power Source is a motor, a gas supply device or a motor and a gas supply device.
CN201720812535.8U 2017-07-06 2017-07-06 For automating the feeding device of sewing device Active CN207079363U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720812535.8U CN207079363U (en) 2017-07-06 2017-07-06 For automating the feeding device of sewing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720812535.8U CN207079363U (en) 2017-07-06 2017-07-06 For automating the feeding device of sewing device

Publications (1)

Publication Number Publication Date
CN207079363U true CN207079363U (en) 2018-03-09

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CN201720812535.8U Active CN207079363U (en) 2017-07-06 2017-07-06 For automating the feeding device of sewing device

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109208192A (en) * 2017-07-06 2019-01-15 高林股份有限公司 For automating the feeding device of sewing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109208192A (en) * 2017-07-06 2019-01-15 高林股份有限公司 For automating the feeding device of sewing device

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