CN212247353U - Intelligent control system for weaving workshop - Google Patents

Intelligent control system for weaving workshop Download PDF

Info

Publication number
CN212247353U
CN212247353U CN202022121484.9U CN202022121484U CN212247353U CN 212247353 U CN212247353 U CN 212247353U CN 202022121484 U CN202022121484 U CN 202022121484U CN 212247353 U CN212247353 U CN 212247353U
Authority
CN
China
Prior art keywords
loom
automatic
control system
cloth
image
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202022121484.9U
Other languages
Chinese (zh)
Inventor
魏可成
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Century Haijia Machinery Co ltd
Original Assignee
Suzhou Weichuangsheng Intelligent Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Suzhou Weichuangsheng Intelligent Technology Co ltd filed Critical Suzhou Weichuangsheng Intelligent Technology Co ltd
Priority to CN202022121484.9U priority Critical patent/CN212247353U/en
Application granted granted Critical
Publication of CN212247353U publication Critical patent/CN212247353U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Looms (AREA)
  • Auxiliary Weaving Apparatuses, Weavers' Tools, And Shuttles (AREA)

Abstract

The utility model discloses a weaving workshop intelligence control system. The technical scheme of the utility model is that: the automatic weft yarn taking system comprises a loom and a loom master control system, wherein a parking mark image automatic detection system and a broken warp visual detection system are arranged between the loom and the loom master control system, and the loom is also connected with an automatic defective weft yarn taking system communicated to the parking mark image automatic detection system; the automatic parking mark image detection system is also connected with an automatic loom image cloth inspecting system, the automatic loom image cloth inspecting system is connected with an automatic loom cloth dropping system, and the automatic loom cloth dropping system is connected with an intelligent storage system; the loom master control system is connected with a loom signal lamp and a loom wireless signal transmission system, and the loom wireless signal transmission system is connected with a wireless receiving terminal of a vehicle stop worker. The utility model provides a scheme can in time rapid processing weave the bad problem of various cloth article in-process.

Description

Intelligent control system for weaving workshop
Technical Field
The utility model relates to a control system technical field, in particular to weaving workshop intelligence control system.
Background
The loom is composed of a warp beam, an upper roller and a lower roller of the loom and a plurality of heald frames for opening, warp yarns are wound on the warp beam in advance and reach middle holes of the healds on the heald frames of the loom through the upper roller and the lower roller of the loom, the loom keeps certain tension in order to keep the opening of the warp yarns clear in the weaving process, when the loom runs at high speed, the heald frames move up and down to generate opening movement and finish the weaving process, at the moment, because a large number of warp yarns are arranged along the breadth of the loom, in the movement process of the upper opening and the lower opening, the warp yarns rub against the middle holes of the healds mutually or are broken under other reasons to generate defective cloth, and therefore, different numbers of yarn stoppers are arranged in a weaving factory to detect the broken ends of the warp yarns frequently so as to ensure the quality of cloth products, or a drop wire is adopted to detect the. Meanwhile, the weft yarn has bad conditions, in addition, a starting mark can be generated when the weaving machine is started, a stopping mark can be generated when the weaving machine is stopped, the quality of the cloth is affected by the starting mark and the stopping mark, and the cloth needs to be repaired manually. The traditional weaving workshop adopts a mode of observing and processing manually at any time when reprocessing the problems, so that careless omission is easily caused and the labor intensity of workers is increased.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model discloses a main aim at provides one kind can in time rapid processing weave the weaving workshop intelligence control system of the bad problem of various cloth article in-process.
In order to achieve the above purpose, the utility model provides a following technical scheme: an intelligent control system for a weaving workshop comprises a weaving machine and a weaving machine main control system, wherein a parking mark image automatic detection system and a broken warp visual detection system are arranged between the weaving machine and the weaving machine main control system, and the weaving machine is also connected with a defective weft automatic extraction system communicated to the parking mark image automatic detection system; the automatic parking mark image detection system is also connected with an automatic loom image cloth inspecting system, the automatic loom image cloth inspecting system is connected with an automatic loom cloth dropping system, and the automatic loom cloth dropping system is connected with an intelligent storage system; the loom master control system is connected with a loom signal lamp and a loom wireless signal transmission system, and the loom wireless signal transmission system is connected with a wireless receiving terminal of a vehicle stop worker.
Preferably, the loom main control system is connected with the automatic start mark repairing system.
Preferably, the loom master control system is connected with a fast moving receiving and sending vehicle for transferring a vehicle stop worker.
Preferably, a cloth grade coding system is arranged between the automatic loom image cloth inspecting system and the automatic loom cropping system.
The utility model discloses have following advantage for prior art, the advantage can judge the cracked ends problem automatically to can in time rapid processing weave the bad problem of various cloth article in-process. The automatic parking mark image detection system, the broken warp visual detection system and the automatic loom image cloth inspection system are matched with the background comparison image through the camera to judge the result, and the judgment is accurate and quick. The automatic bad weft yarn drawing system, the automatic loom doffing system and the automatic starting mark repairing system are all the prior art, the technologies are integrated in the scheme, and the main control system of the loom is used for allocating, so that the smoothness of automatic operation of the loom is greatly realized, and the labor intensity of workers can be reduced.
Drawings
Fig. 1 is the utility model discloses a system block diagram of weaving workshop intelligence control system.
In the figure: 1. a loom; 2. a loom master control system; 3. a parking mark image automatic detection system; 4. a broken warp visual detection system; 5. a defective weft yarn automatic drawing system; 6. an automatic cloth inspecting system for loom images; 7. an automatic doffing system of the loom; 8. an intelligent warehousing system; 9. signal lights of the loom; 10. a loom wireless signal transmission system; 11. the wireless receiving terminal of the car stop worker; 12. starting up an automatic repairing system for traces; 13. rapidly moving the receiving and sending vehicle; 14. a cloth grade code printing system; 15. a mobile car stop worker in a workshop; 16. a vehicle stop worker in the rest room; 17. broken ends of waste ear silk, waste edges and the like.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings.
As shown in fig. 1, an intelligent control system for a weaving workshop comprises a loom 1 and a loom main control system 2, wherein a stop mark image automatic detection system 3 and a broken warp visual detection system 4 are arranged between the loom 1 and the loom main control system 2, and the loom 1 is further connected with an automatic defective weft yarn extraction system 5 communicated to the stop mark image automatic detection system 3; the automatic parking mark image detection system 3 is also connected with an automatic loom image cloth inspecting system 6, the automatic loom image cloth inspecting system 6 is connected with an automatic loom cloth dropping system 7, and the automatic loom cloth dropping system 7 is connected with an intelligent storage system 8; the loom master control system 2 is connected with a loom signal lamp 9 and a loom wireless signal transmission system 10, and the loom wireless signal transmission system 10 is connected with a wireless receiving terminal 11 of a vehicle stop worker.
Preferably, the loom main control system 2 is connected with the automatic start mark repairing system 12.
Preferably, the loom master control system 2 is connected with a fast moving pick-up cart 13 for transferring a car stop.
Preferably, a cloth grade coding system 14 is arranged between the automatic loom image cloth inspecting system 6 and the automatic loom cloth dropping system 7.
The utility model provides a weaving workshop intelligence control system, its working process is: after the loom 1 is started, the automatic start mark repairing system 12 is automatically started; the method comprises the steps that a loom 1 detects warp breakage through a warp breakage visual detection system 4 in the weaving process, and then sends a signal to a loom main control system 2 after detecting the warp breakage, the loom main control system 2 controls the loom 1 to stop and sends a signal to a loom signal lamp 9, so that the loom signal lamp 9 flickers, a worker 16 in a workshop can process the broken warp and then walk to the loom 1 to start up manually, meanwhile, the loom main control system 2 starts a loom wireless signal transmission system 10 and a fast moving receiving vehicle 13, the loom wireless signal transmission system 10 sends a signal to the worker wireless receiving terminal 11 to indicate that a certain loom 1 has a problem, a worker 16 in a rest room can drive the loom 1 through the fast moving receiving vehicle 13 to process, and the worker 15 in the workshop or the worker 16 in the rest room can process as soon as possible through the loom signal lamp 9 and the wireless signal; after the loom 1 is started after warp breakage, the automatic parking mark image detection system 3 is started and feeds back signals to the loom main control system 2, the automatic parking mark image detection system 3 is sequentially connected with the automatic loom image cloth inspection system 6, the automatic loom cloth falling system 7 and the intelligent storage system 8, a cloth grade code printing system 14 is arranged between the automatic loom image cloth inspection system 6 and the automatic loom cloth falling system 7, and the loom main control system 2 sends cloth length code setting falling signals to the automatic loom cloth falling system 7; when poor weft yarns occur, the automatic poor weft yarn extracting system 5 starts to extract the poor weft yarns, then the loom 1 is automatically started, and the loom 1 enters the automatic stop mark image detecting system 3 after being automatically started; when the problem of broken ends 17 such as waste silk and waste silk edges occurs in the weaving process, the mobile car stop worker 15 in a workshop or the car stop worker in a rest room can process the broken ends as soon as possible through the signal lamp 9 of the weaving machine and a wireless signal, and the weaving machine 1 is manually started after the processing is finished.
The advantage of this scheme can automatic judgement cracked ends problem to can in time rapid processing weave the bad problem of in-process various cloth article. The automatic parking mark image detection system 3, the broken warp visual detection system 4 and the automatic loom image cloth inspection system 6 are matched with the background comparison image through the camera to judge the result, and are accurate and quick. The automatic defective weft yarn extracting system 5, the automatic loom doffing system 7 and the automatic start mark repairing system 12 are all the prior art, the technologies are integrated in the scheme, and the weaving machine main control system 2 is used for allocating, so that the smoothness of automatic operation of the weaving machine 1 is greatly realized, and the labor intensity of workers can be reduced.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (4)

1. The utility model provides a weaving workshop intelligence control system which characterized in that: the automatic weft yarn taking system comprises a loom and a loom master control system, wherein a parking mark image automatic detection system and a broken warp visual detection system are arranged between the loom and the loom master control system, and the loom is also connected with an automatic defective weft yarn taking system communicated to the parking mark image automatic detection system; the automatic parking mark image detection system is also connected with an automatic loom image cloth inspecting system, the automatic loom image cloth inspecting system is connected with an automatic loom cloth dropping system, and the automatic loom cloth dropping system is connected with an intelligent storage system; the loom master control system is connected with a loom signal lamp and a loom wireless signal transmission system, and the loom wireless signal transmission system is connected with a wireless receiving terminal of a vehicle stop worker.
2. The intelligent control system for the weaving workshop according to claim 1, characterized in that: the loom main control system is connected with the automatic starting mark repairing system.
3. The intelligent control system for the weaving workshop according to claim 1, characterized in that: the loom master control system is connected with a fast moving receiving and sending vehicle for transferring a vehicle stop worker.
4. The intelligent control system for the weaving workshop according to claim 1, characterized in that: and a cloth grade code printing system is arranged between the automatic cloth inspecting system of the loom image and the automatic cloth dropping system of the loom.
CN202022121484.9U 2020-09-24 2020-09-24 Intelligent control system for weaving workshop Active CN212247353U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022121484.9U CN212247353U (en) 2020-09-24 2020-09-24 Intelligent control system for weaving workshop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022121484.9U CN212247353U (en) 2020-09-24 2020-09-24 Intelligent control system for weaving workshop

Publications (1)

Publication Number Publication Date
CN212247353U true CN212247353U (en) 2020-12-29

Family

ID=73982597

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022121484.9U Active CN212247353U (en) 2020-09-24 2020-09-24 Intelligent control system for weaving workshop

Country Status (1)

Country Link
CN (1) CN212247353U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112068525A (en) * 2020-09-24 2020-12-11 苏州伟创盛智能科技有限公司 Intelligent control system for weaving workshop

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112068525A (en) * 2020-09-24 2020-12-11 苏州伟创盛智能科技有限公司 Intelligent control system for weaving workshop

Similar Documents

Publication Publication Date Title
KR102209230B1 (en) Monitoring device for a weaving machine, weaving machine, and method for monitoring
CN212247353U (en) Intelligent control system for weaving workshop
CN105463641A (en) An integrated system and a method for enhancing efficiency and quality in textile yarn manufacturing process
CN105297208B (en) For assisting the equipment for connecing yarn in ring-like spinning machine
CN111733496B (en) Yarn empty bobbin detection device and method
JPS60231850A (en) Method and apparatus for automatically monitoring cloth, especially, fabric
CN104787622A (en) Automatic thread generating control system for spinning bobbin replacing and control method thereof
CN112068525A (en) Intelligent control system for weaving workshop
CN111707675B (en) Cloth surface flaw online monitoring device and monitoring method thereof
CN210690429U (en) Cord fabric loom defect on-line measuring system
CN103074717B (en) A kind of contactless spandex warping break detecting method
CN208235200U (en) Textile defect detection testing stand
CN112981675B (en) Circular weaving machine warp and weft broken line detection method, system, device and storage medium
DE3885138T2 (en) Procedure for checking and changing a bobbin.
CN211122582U (en) Visual detection device for defects of embryonic cloth
CN111676556B (en) Automatic broken yarn itinerant detection device and control method
CN220503357U (en) Warp breaking detection equipment for rapier loom
CN110153041A (en) A kind of real-time defects detection of woven bag based on image and automatic rejection system
CN213172804U (en) Loom broken warp detection system based on visual image recognition
CN108796700B (en) Yarn changing method of false twist texturing machine
CN107657613B (en) Warp state detection device and working method thereof
CN112391731A (en) Online detection method for yarn breakage during weaving of warp knitting machine
CN210765728U (en) Textile machine structure
CN213476245U (en) Infrared remote control monitoring device for loom
CN215164003U (en) Intelligent detection device for cloth cover quality defects

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20231227

Address after: No.1219, Jiaozhouwan West Road, Huangdao District, Qingdao City, Shandong Province 266000

Patentee after: Qingdao century Haijia Machinery Co.,Ltd.

Address before: NO.819, south side of Shengtan Road (Langzhong Village), Shengze Town, Wujiang District, Suzhou City, Jiangsu Province 215000

Patentee before: Suzhou weichuangsheng Intelligent Technology Co.,Ltd.