CN204882388U - System is typeeed to textile fabric fault information detection sign - Google Patents

System is typeeed to textile fabric fault information detection sign Download PDF

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Publication number
CN204882388U
CN204882388U CN201520460856.7U CN201520460856U CN204882388U CN 204882388 U CN204882388 U CN 204882388U CN 201520460856 U CN201520460856 U CN 201520460856U CN 204882388 U CN204882388 U CN 204882388U
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China
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fault
face fabric
weaving face
fault information
data processing
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CN201520460856.7U
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丁义珍
骆小来
吴海彬
刘艳
梁瑛
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Guangdong Esquel Textiles Co Ltd
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Guangdong Esquel Textiles Co Ltd
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Abstract

The utility model discloses a system is typeeed to textile fabric fault information detection sign, including the cloth inspection machine, the cloth inspection machine including the work feed wheel that sets gradually, perching platform, receive the cloth wheel, set up in the automatic mark device that pastes of perching bench, set up in the fault information input device of perching platform one side, and connect automatic paste the mark device with the data processing storage device of fault information input device, automatic paste the mark device including set up in the code length counter of perching bench, with the control treater that the code length counter is connected, and with the labeller that the control treater is connected, fault information input device includes voice input device, and with the speech recognition device that voice input device connects, the speech recognition device with data processing storage device connects. The utility model provides a problem of the frequent switching on and shutting down of conventional art perching in -process, operating personnel craft and mental work intensity height and inefficiency.

Description

Weaving face fabric fault infomation detection mark input system
Technical field
The utility model relates to weaving face fabric detection technique field, particularly a kind of weaving face fabric fault infomation detection mark input system.
Background technology
For the fabric quality of the weaving face fabric that tightens control, weaving face fabric can carry out the fabric defect inspection of 100% in the finished product stage.The perching personnel in workshop carry out cloth cover in the process of defect detection, need the parameters such as the type to fabric defect, scoring, continuity and position to carry out record, to determine the grade of weaving face fabric.Operator scheme traditionally; perching personnel often run into a fault, carry out fault information record with regard to needing to shut down at the terminal device on perching equipment side, and according to customer requirement; need to shut down the selvedge position corresponding at fabric defect code length place, carry out fault mark.Traditionally mode of operation, perching personnel are in perching process, and each defect position need shut down mark, and the relevant fault information of record inputs in system by hand.
Perching operator scheme traditionally, has following shortcoming: in perching process, and a fault just needs to stop machine whenever, has impact to perching equipment performance and life-span; In perching process, a fault just needs to stop machine whenever, perching inefficiency; Perching personnel need to learn by heart that the fault code of fault storehouse fault title correspondence system coupling has more than 100, and operation limit, workman limit needs the content of memory a lot, requires high to operating personnel, manual and brainwork intensity is high.
Utility model content
Based on this, the utility model proposes a kind of weaving face fabric fault infomation detection mark input system, to solve in conventional art perching process frequent switching on and shutting down, operating personnel's craft and brainwork intensity is high and the problem of inefficiency.
Its technical scheme is as follows:
A kind of weaving face fabric fault infomation detection mark input system, comprise cloth inspecting machine, described cloth inspecting machine comprises the work feed wheel, cloth inspection table, the receipts cloth wheel that set gradually, be arranged at the automatic labeling device on described cloth inspection table, be arranged at the fault Data Enter device of described cloth inspection table side, and connect the data processing memory storage of described automatic labeling device and described fault Data Enter device; Described automatic labeling device comprises the code length meter be arranged on described cloth inspection table, the control processor be connected with described code length meter, and the labelling machine be connected with described control processor; Described fault Data Enter device comprises speech input device, and the speech recognition equipment be connected with described speech input device, and described speech recognition equipment is connected with described data processing memory storage.
Weaving face fabric to be tested conveying is taken turns toward receipts cloth by the work feed wheel of cloth inspecting machine, between work feed wheel and receipts cloth wheel, arrange cloth inspection table for checking, whether weaving face fabric has fault to exist, when fault being detected, mark is sticked at defect position automatic labeling device, and utilize fault Data Enter device to carry out stored record by fault information conveyance to data processing memory storage, also fault identification information is also transported in data processing memory storage simultaneously and carries out stored record.The code length meter of automatic labeling device is for measuring the code length information of weaving face fabric, when fault being detected on weaving face fabric, record fault place code length information, and by this code length information transmission to control processor, control processor controls labelling machine and stick mark near fault, and simultaneously fault identification information is transferred to data processing memory storage and stores by control processor.Meanwhile, when fault being detected, fault information being input in speech recognition equipment by speech input device voice mode, storing being transferred to again in data processing memory storage after complete for fault information norm.
Below its technical scheme is further described:
Further, described control processor comprises the Programmable Logic Controller be connected with described labelling machine, and connects the computer terminal of described Programmable Logic Controller and described code length meter.Programmable Logic Controller can be used for the code length information receiving code length meter measurement, and determines fault labeling position thus control labelling machine automatically to carry out labeling according to the labeling position determined.In addition, computer terminal can be used for connecting Programmable Logic Controller and code length meter, to complete analyzing and processing to data therebetween and storage.
Further, described automatic labeling device also comprises data communication card, and described data communication card is for connecting described Programmable Logic Controller, described computer terminal and described code length meter.Data communication card is used for the connection communication between code length meter, Programmable Logic Controller and computer terminal, is convenient to the code length information transmitting weaving face fabric and fault.
Further, described speech input device comprises microphone, described microphone and described speech recognition equipment wired connection or wireless connections.Manual type can be utilized to be input in speech recognition equipment by fault information by microphone, microphone can be set to wired or wireless herein.
Further, described speech recognition equipment comprises interconnective fault information comparison module and fault information storage module, described fault information comparison module is connected with described speech input device, and described fault information storage module is connected with described data processing memory storage.The fault information of standard is stored in fault information storage module, be input to by speech input device the standard fault information arranged in fault voice messaging in fault information comparison module and fault information storage module to compare, automatically completion can be carried out to incomplete fault voice messaging, and the fault information transmission after completion is stored in fault information storage module temporarily, finally fault information transmission is stored in data processing memory storage.
Further, described data processing memory storage comprises the fault Data Integration module be all connected with described fault information storage module and described automatic labeling device, with the terminal storage module of described fault Data Integration model calling.Fault identification information in the fault information transmitted in fault information storage module and automatic labeling device can be integrated by fault Data Integration module, and the complete fault information after integrating is stored in terminal storage module.
Further, described cloth inspection table is also provided with lighting device and material treatment device.By being arranged on above and below weaving face fabric by lighting device, cloth inspection table glazed thread can be made more sufficient, being more conducive to the fault on weaving face fabric to display.In addition, by arranging fabric collating unit, can carry out automatic arranging to fold or not concordant weaving face fabric, final cloth roll is put more neat, the weaving face fabric after smooth is also more convenient carries out defect detection and labeling process.
Further, described cloth inspection table is also provided with electronics inspection defect device, described electronics inspection defect device comprises the defects identification device be connected with described automatic labeling device, and described defects identification device is connected with described data processing memory storage.By arranging electronics inspection defect device on cloth inspection table, automatically can detect the fault on weaving face fabric, and automatically identifying fault relevant information.The fault information that automatic labeling device detects according to electronics inspection defect device, and the code length information that automatic labeling device detects, can complete fault labeling mark automatically.According to the fault information that electronics inspection defect device detects, easily fault information can be transferred to data processing memory storage by fault Data Enter device and store.
Further, described defects identification device comprises the industrial camera be arranged at above described cloth inspection table, and described industrial camera is connected with described data processing memory storage.The weaving face fabric through cloth inspection table ceaselessly can be taken by industrial camera, and by the image transmitting that photographs in data processing memory storage, and in data processing memory storage, pre-set relevant fault picture or normal weaving face fabric picture, and compare with the image photographed, identify the fault that weaving face fabric exists, and judge fault information.
The utility model has following beneficial effect:
1, operating personnel are in perching process, whenever running into fabric defect, do not need frequently to stop machine, improve perching efficiency;
2, decrease the frequency that equipment frequently stops machine, extend service life of equipment;
3, do not need operating personnel to record system code data corresponding to hundreds of fault title, decrease the content that operating personnel need to remember, reduce craft and brainwork intensity.
Accompanying drawing explanation
Fig. 1 is the simplified block diagram of the infomation detection of weaving face fabric fault described in the utility model embodiment mark input system;
Fig. 2 is the detailed schematic block diagram of the infomation detection of weaving face fabric fault described in the utility model embodiment mark input system;
Fig. 3 is the structural schematic block diagram of the automatic labeling device of the infomation detection of weaving face fabric fault described in the utility model embodiment mark input system;
Fig. 4 is the structural schematic block diagram of the fault Data Enter device of the infomation detection of weaving face fabric fault described in the utility model embodiment mark input system;
Fig. 5 be the infomation detection of weaving face fabric fault described in the utility model embodiment mark input system be provided with electronics inspection defect device time simplified block diagram.
Description of reference numerals:
100-cloth inspecting machine, 110-work feed is taken turns, 120-cloth inspection table, 130-receives cloth wheel, 200-automatic labeling device, 210-code length meter, 220-data communication card, 230-control processor, 232-computer terminal, 234-Programmable Logic Controller, 240-labelling machine, 300-fault Data Enter device, 310-speech input device, 312-microphone, 314-wireless launcher, 320-speech recognition equipment, 322-wireless receiver, 324-fault information comparison module, 326-fault information storage module, 400-data processing memory storage, 410-fault Data Integration module, 420-terminal storage module, 500-electronics inspection defect device.
Embodiment
Below in conjunction with accompanying drawing, embodiment of the present utility model is described in detail.
As shown in Figure 1 to Figure 2, the utility model provides a kind of weaving face fabric fault infomation detection to identify input system, this system comprises cloth inspecting machine 100, and this cloth inspecting machine 100 comprises the work feed wheel 110, cloth inspection table 120, the receipts cloth wheel 130 that set gradually, cloth roll to be tested can be located on work feed wheel 110, and verified cloth roll being closed on cloth wheel 130, cloth inspection table 120 is just arranged at work feed wheel 110 and receives between cloth wheel 130 for checking the fault on cloth.This system also comprises the automatic labeling device 200 be arranged on cloth inspection table 120, is arranged at the fault Data Enter device 300 of cloth inspection table 120 side, and connects the data processing memory storage 400 of automatic labeling device 200 and fault Data Enter device 300.Weaving face fabric to be tested conveying is taken turns on 130 toward receipts cloth by the work feed wheel 110 of cloth inspecting machine 100, cloth inspection table 120 checks whether weaving face fabric has fault to exist, when fault being detected, mark is sticked at defect position automatic labeling device 200, and utilize fault Data Enter device 300 to carry out stored record by fault information conveyance to data processing memory storage 400, also fault identification information is also transported in data processing memory storage 400 simultaneously and carries out stored record.
As shown in Figure 3, this automatic labeling device 200 comprises the code length meter 210 be arranged on cloth inspection table 120, the control processor 230 be connected with code length meter 210, and the labelling machine 240 be connected with control processor 230.The code length meter 210 of automatic labeling device 200 is for measuring the code length information of weaving face fabric, when fault being detected on weaving face fabric, record fault place code length information, and by this code length information transmission to control processor 230, control processor 230 controls labelling machine 240 and stick mark near fault, and simultaneously fault identification information is transferred to data processing memory storage 400 and stores by control processor 230 or labelling machine 240.
In addition, above-mentioned control processor 230 comprises the Programmable Logic Controller 234 be connected with labelling machine 240, and connects the computer terminal 232 of Programmable Logic Controller 234 and code length meter 210.Programmable Logic Controller 234 can be used for the code length information receiving the measurement of code length meter 210, and determines fault labeling position thus control labelling machine 240 automatically to carry out labeling according to the labeling position determined.In addition, computer terminal 232 can be used for connecting Programmable Logic Controller 234 and code length meter 210, to complete analyzing and processing to data therebetween and storage.Further, automatic labeling device 200 also comprises data communication card 220, and data communication card 220 can be used for connecting Programmable Logic Controller 234, computer terminal 232 and code length meter 210.Data communication card 220, for the connection communication between code length meter 210, Programmable Logic Controller 234 and computer terminal 232, is convenient to the code length information transmitting weaving face fabric and fault.
As shown in Figure 4, above-mentioned fault Data Enter device 300 comprises speech input device 310, and the speech recognition equipment 320 be connected with speech input device 310, speech recognition equipment 320 is connected with data processing memory storage 400.When fault being detected by manual type or automated manner, fault information being input in speech recognition equipment 320 by speech input device 310 voice mode, storing being transferred to again in data processing memory storage 400 after complete for fault information norm.
Further, above-mentioned speech input device 310 comprises microphone 312, microphone 312 and speech recognition equipment 320 wired connection or wireless connections.Manual type can be utilized to be input in speech recognition equipment 320 by fault information by microphone 312, microphone 312 can be set to wired or wireless herein.In the present embodiment, microphone 312 can be set to Bluetooth microphone, namely the wireless launcher 314 (bluetooth module) be connected with microphone 312 is set in speech input device 310, and on speech recognition equipment 320, be provided with wireless receiver 322 (i.e. Bluetooth Receiver), facilitate wireless transmission fault voice messaging.
In addition, above-mentioned speech recognition equipment 320 also comprises interconnective fault information comparison module 324 and fault information storage module 326, fault information comparison module 324 is connected with speech input device 310 by Bluetooth Receiver, and fault information storage module 326 is connected with data processing memory storage 400.The fault information of standard is stored in fault information storage module 326, be input to by speech input device 310 the standard fault information arranged in fault voice messaging in fault information comparison module 324 and fault information storage module 326 to compare, automatically completion can be carried out to incomplete fault voice messaging, and the fault information transmission after completion is stored in fault information storage module 324 temporarily, finally fault information transmission is stored in data processing memory storage 400.In addition, except speech recognition equipment 320 is arranged separately, also speech recognition equipment 320 directly can be arranged in data processing memory storage 400.
And, as shown in Figure 2, above-mentioned data processing memory storage 400 comprises the fault Data Integration module 410 be all connected with the labelling machine 240 (or control processor 230) of fault information storage module 326 and automatic labeling device 200, the terminal storage module 420 be connected with fault Data Integration module 410.Fault identification information in the fault information transmitted in fault information storage module 326 and automatic labeling device 200 can be integrated by fault Data Integration module 410, and the complete fault information after integrating is stored in terminal storage module 420.In addition, corresponding fault code also can be set in terminal storage module 420, can store after the fault information coding be transferred in terminal storage module 420.
In addition, as shown in Figure 5, also can arrange electronics inspection defect device 500 on cloth inspection table 120, electronics inspection defect device 500 can comprise the defects identification device be connected with automatic labeling device 200 and fault Data Enter device 300, and defects identification device is connected with data processing memory storage 400.By arranging electronics inspection defect device 500 on cloth inspection table 120, automatically can detect the fault on weaving face fabric, and automatically identifying fault relevant information.The fault information that automatic labeling device 200 detects according to electronics inspection defect device 500, and the code length information that automatic labeling device 200 detects, can complete fault labeling mark automatically.And, according to the fault information that electronics inspection defect device 500 detects, easily fault information can be transferred to data processing memory storage 400 by fault Data Enter device 300 and store.
Further, defects identification device can be set to a kind of pattern recognition device, and this pattern recognition device comprises the industrial camera be arranged at above cloth inspection table, and industrial camera is connected with data processing memory storage.The weaving face fabric through cloth inspection table 120 ceaselessly can be taken by industrial camera, and by the image transmitting that photographs in data processing memory storage 400.And in data processing memory storage 400, pre-set relevant fault picture or normal weaving face fabric picture, and compare with the image photographed, identify the fault that weaving face fabric exists, and judge fault relevant information.Specifically interconnective standard fault picture storage module and fault picture comparison module can be set in data processing memory storage 400, standard fault picture or normal picture are stored in standard fault picture storage module, and pictures taken can be transferred in fault picture comparison module identification of comparing.In addition, standard fault picture storage module and fault picture comparison module, except being arranged on except in data processing memory storage 400, also can be arranged in defects identification device.Except being set to except pattern recognition device by defects identification device, also can be set to photoelectric recognition device, utilizing optoelectronic scanning weaving face fabric to detect the fault situation on cloth cover.
In addition, cloth inspection table 120 is also provided with lighting device and material treatment device.By being arranged on above and below weaving face fabric by lighting device, cloth inspection table 120 glazed thread can be made more sufficient, being more conducive to the fault on weaving face fabric to display.In addition, by arranging fabric collating unit, can carry out automatic arranging to fold or not concordant weaving face fabric, final cloth roll is put more neat, the weaving face fabric after smooth is also more convenient carries out defect detection and labeling process.In addition, cloth inspecting machine 100 is also provided with startup, reversing and clamping device, conveniently open, close, suspend and reversion operation is carried out to cloth inspecting machine.
In addition, corresponding above-mentioned weaving face fabric fault infomation detection mark input system, also provides a kind of weaving face fabric fault infomation detection to identify input method, comprises the steps:
Fault on S100, identification weaving face fabric and relevant information thereof;
Further, in the step s 100, the fault on manual type or automated manner identification weaving face fabric and relevant information thereof can be adopted:
When adopting manual type, going out the fault on weaving face fabric by eye recognition, and judging the relevant information of this fault, comprise fault title, fault scoring, fault whether continuity and fault broadwise regional extent;
When adopting automated manner, detecting the fault on weaving face fabric by electronics inspection defect device 500, and judging the relevant information of this fault.When adopting electronics inspection defect device 500 to carry out defects identification, the defects identification device of image recognition form can be utilized to carry out defects identification judgement, industrial camera in this defects identification device carries out snapshots to the weaving face fabric of movement on cloth inspection table, and pictures taken is transferred back in data processing memory storage 400, compare with the standard fault picture be pre-set in data processing memory storage 400 or normal picture, identify fault and the relevant information of automatic decision fault.And, except carrying out except image recognition to fault information, can also photoelectricity identification be carried out, namely adopting photoelectric recognition device to carry out identification to the fault information on cloth cover and judging.
S200, acquisition identify the fault information obtained, and automatically carry out labeling mark at defect position place;
Further, in step s 200, specifically also comprise the steps:
S210, startup automatic labeling device, obtain fault code length data;
And, in step S210, concrete also comprising the steps: starts automatic labeling device 200, the code length meter 210 of automatic labeling device 200 is started working and is namely started to record the code length information of weaving face fabric, and manually or automatically fault detected and this fault when through code length meter 210, code length meter 210 can record and obtain the code length data of fault, the i.e. positional information of fault on weaving face fabric (being equivalent to fault coordinate), and the code length data of fault are transferred in computer terminal 232.
S220, according to fault code length data, determine labeling position;
And, in step S220, specifically also comprise the steps: that the fault code length data of acquisition are transferred to Programmable Logic Controller 234 by computer terminal 232 by code length meter 210, Programmable Logic Controller 234 is according to the labeling position of the fault code length data determination labelling machine 240 obtained.
S230, according to the labeling position determined, automatically labeling near fault;
And in step S230, specifically also comprise the steps: that labelling machine 240 automatically carries out labeling near fault, labeling position is positioned at the longitudinal code length position of fault and is positioned at the laterally corresponding selvedge position place of fault simultaneously.Labelling machine 240 sticks fault label paper in this position, carries out fault mark.Further, in poster process, corresponding fault labeling positional information is also transferred in data processing memory storage 400 and stores by the control processor 230 of automatic labeling device 200 or labelling machine 240.
S300, will identify that the fault Data Enter that obtains stores by voice mode.
Further, in step S300, specifically also comprise the steps:
S310, fault information are transferred in speech recognition equipment 320 by speech input device 310;
And, in step S310, specifically also comprise the steps: that the fault information storage module 326 in advance in speech recognition equipment 320 arranges the fault voice messaging of standard, comprise fault title, fault scoring, fault whether continuously and fault broadwise regional extent; In phonetic entry process, be input to all or part of for fault information in speech recognition equipment 310 by microphone 312 or other speech input devices.
Further, in speech recognition equipment 320 by fault whether continuously and fault broadwise regional extent carry out default setting, in phonetic entry process, default formula phonetic entry can be carried out to these two contents; And, when carrying out default setting, can by fault whether continuously and fault broadwise regional extent default settings is the discontinuous and fault broadwise region of fault is respectively 0.
S320, the speech recognition equipment 320 fault information to input identifies and carries out aftertreatment;
And, in step s 320, specifically also comprise the steps: the fault information of speech recognition equipment 320 according to input, compared by fault information comparison module 324 and the standard fault information be set in advance in fault information storage module 326, the fault voice messaging of input is identified automatically, can will part input fault information auto-complete (as by the fault information automatic makeup of default setting), thus obtain complete fault information and temporary reservoir in fault information storage module 326; In addition, also can be previously provided with the fault code corresponding to standard fault information in fault information storage module 326, identify that the fault information obtained can be converted into fault code form and store.
Fault information transmission after process stores by S330, speech recognition equipment 320 in data processing memory storage 400.
And, in step S330, specifically also comprise the steps: that the complete fault transmission of speech information obtained is preserved by the fault information storage module 326 of speech recognition equipment 320 in data processing memory storage 400.And, fault identification information in the fault information transmitted in fault information storage module 326 (or fault code) and automatic labeling device 200 can be integrated by the fault Data Integration module 410 being arranged at data processing memory storage 400, and the complete fault information after integrating is stored in terminal storage module 420.In addition, also fault code can not be set in fault information storage module 326, but fault code is set in terminal storage module 420, namely in terminal storage module 420, complete fault information coding be stored.
In addition, it is to be noted, above-mentioned is coordination about step S200 and S300 in weaving face fabric fault infomation detection mark input method, precedence relationship is there is no between two steps, namely can carry out fault labeling mark and fault phonetic entry simultaneously, also carry out fault labeling mark after can first carrying out fault phonetic entry, after also can first carrying out fault labeling mark, carry out fault phonetic entry.
The weaving face fabric fault infomation detection mark input system provided by the utility model and method, operating personnel, in perching process, whenever running into fabric defect, do not need frequently to stop machine, improve perching efficiency; Decrease the frequency that equipment frequently stops machine, extend service life of equipment; Do not need operating personnel to record system code data corresponding to hundreds of fault title, decrease the content that operating personnel need to remember, reduce craft and brainwork intensity.
Each technical characteristic of the above embodiment can combine arbitrarily, for making description succinct, the all possible combination of each technical characteristic in above-described embodiment is not all described, but, as long as the combination of these technical characteristics does not exist contradiction, be all considered to be the scope that this instructions is recorded.
The above embodiment only have expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to utility model patent scope.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.

Claims (9)

1. a weaving face fabric fault infomation detection mark input system, it is characterized in that, comprise cloth inspecting machine, described cloth inspecting machine comprises the work feed wheel, cloth inspection table, the receipts cloth wheel that set gradually, be arranged at the automatic labeling device on described cloth inspection table, be arranged at the fault Data Enter device of described cloth inspection table side, and connect the data processing memory storage of described automatic labeling device and described fault Data Enter device;
Described automatic labeling device comprises the code length meter be arranged on described cloth inspection table, the control processor be connected with described code length meter, and the labelling machine be connected with described control processor;
Described fault Data Enter device comprises speech input device, the speech recognition equipment be connected with described speech input device, and described speech recognition equipment is connected with described data processing memory storage.
2. weaving face fabric fault infomation detection mark input system according to claim 1, it is characterized in that, described control processor comprises the Programmable Logic Controller be connected with described labelling machine, and connects the computer terminal of described Programmable Logic Controller and described code length meter.
3. weaving face fabric fault infomation detection mark input system according to claim 2, it is characterized in that, described automatic labeling device also comprises data communication card, and described data communication card is for connecting described Programmable Logic Controller, described computer terminal and described code length meter.
4. weaving face fabric fault infomation detection according to claim 1 mark input system, it is characterized in that, described speech input device comprises microphone, described microphone and described speech recognition equipment wired connection or wireless connections.
5. weaving face fabric fault infomation detection mark input system according to claim 1, it is characterized in that, described speech recognition equipment comprises interconnective fault information comparison module and fault information storage module, described fault information comparison module is connected with described speech input device, and described fault information storage module is connected with described data processing memory storage.
6. weaving face fabric fault infomation detection mark input system according to claim 5, it is characterized in that, described data processing memory storage comprises the fault Data Integration module be all connected with described fault information storage module and described automatic labeling device, with the terminal storage module of described fault Data Integration model calling.
7. weaving face fabric fault infomation detection mark input system according to claim 1, is characterized in that, described cloth inspection table is also provided with lighting device and material treatment device.
8. weaving face fabric fault infomation detection mark input system according to claim 1, it is characterized in that, described cloth inspection table is also provided with electronics inspection defect device, described electronics inspection defect device comprises the defects identification device be connected with described automatic labeling device, and described defects identification device is connected with described data processing memory storage.
9. weaving face fabric fault infomation detection mark input system according to claim 8, it is characterized in that, described defects identification device comprises the industrial camera be arranged at above described cloth inspection table, and described industrial camera is connected with described data processing memory storage.
CN201520460856.7U 2015-06-29 2015-06-29 System is typeeed to textile fabric fault information detection sign Active CN204882388U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104964981A (en) * 2015-06-29 2015-10-07 广东溢达纺织有限公司 Textile fabric defect information detection identifier inputting method and system
CN109342450A (en) * 2018-10-30 2019-02-15 深圳灵图慧视科技有限公司 Intelligent cloth examination device
CN112830309A (en) * 2020-12-30 2021-05-25 中国特种飞行器研究所 Semi-automatic data acquisition and recording system of rolling and inspecting machine

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104964981A (en) * 2015-06-29 2015-10-07 广东溢达纺织有限公司 Textile fabric defect information detection identifier inputting method and system
CN109342450A (en) * 2018-10-30 2019-02-15 深圳灵图慧视科技有限公司 Intelligent cloth examination device
CN112830309A (en) * 2020-12-30 2021-05-25 中国特种飞行器研究所 Semi-automatic data acquisition and recording system of rolling and inspecting machine
CN112830309B (en) * 2020-12-30 2023-03-21 中国特种飞行器研究所 Semi-automatic data acquisition and recording system of rolling and inspecting machine

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