CN206431038U - Fabric Online color-difference measurement device based on fiber spectrometer - Google Patents

Fabric Online color-difference measurement device based on fiber spectrometer Download PDF

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Publication number
CN206431038U
CN206431038U CN201720027200.5U CN201720027200U CN206431038U CN 206431038 U CN206431038 U CN 206431038U CN 201720027200 U CN201720027200 U CN 201720027200U CN 206431038 U CN206431038 U CN 206431038U
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China
Prior art keywords
spectrometer
line slideway
integrating sphere
fabric
measurement device
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Expired - Fee Related
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CN201720027200.5U
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Chinese (zh)
Inventor
景军锋
陈永辉
李鹏飞
张蕾
张宏伟
张缓缓
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Xian Polytechnic University
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Xian Polytechnic University
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Priority to CN201720027200.5U priority Critical patent/CN206431038U/en
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Publication of CN206431038U publication Critical patent/CN206431038U/en
Expired - Fee Related legal-status Critical Current
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  • Treatment Of Fiber Materials (AREA)
  • Spectrometry And Color Measurement (AREA)

Abstract

Transport mechanism is provided with fabric Online color-difference measurement device based on fiber spectrometer, including base, base, transport mechanism includes conveyer belt, and conveyer belt both sides, which are respectively arranged between supporting plate, supporting plate, is provided with line slideway, and line slideway is parallel with conveyer belt;Line slideway two ends are provided with limit sensors, and line slideway one end is provided with motor, and motor connection has the sliding block on electric machine controller, line slideway to be connected with fixture, and fixture is clamped with integrating sphere, and integrating sphere bottom surface is parallel with conveyer belt;The interface on integrating sphere top is connected with light source by the first fibre optical sensor, and the interface of integrating sphere side is connected with spectrometer by the second fibre optical sensor, and spectrometer is connected with computer by data wire.Solve the problem of fabric acetes chinensis efficiency is low, precision is low present in prior art.

Description

Fabric Online color-difference measurement device based on fiber spectrometer
Technical field
The utility model belongs to technical field of textile printing, is related to a kind of fabric aberration based on fiber spectrometer and examines online Survey device.
Background technology
The color of fabric is one of important evaluation index in fabric production process, it be directly connected to fabric quality, Grade and price.Due to the influence of many complicated factors on production line, product colour be difficult it is consistent with standard sample color keep, It is how many to have differences, therefore, in actual production, product colour to be measured and standard sample color are contrasted so that fabric Difference Control is necessary within the acceptable range.
Traditional fabric acetes chinensis is mainly by workman's human eye detection and using hands such as colorimeter, spectrophotometers Formula off-line measurement equipment is held to be detected.The subjectivity of human eye detection is strong, accuracy of detection is low, has hair when missing inspection, flase drop It is raw.Detection efficiency is sampled lowly using hand-held off-line measurement equipment, wasted time and energy, it is impossible to enterprise's large-scale production is met Detection demand during fabric.
Utility model content
The purpose of this utility model is to provide a kind of fabric Online color-difference measurement device based on fiber spectrometer, solves The problem of fabric acetes chinensis efficiency is low present in prior art, precision is low.
The utility model the technical scheme adopted is that
Transport mechanism is provided with fabric Online color-difference measurement device based on fiber spectrometer, including base, base, is passed Mechanism is sent to include conveyer belt, conveyer belt both sides, which are respectively arranged between supporting plate, supporting plate, is provided with line slideway, line slideway It is parallel with conveyer belt;Line slideway two ends are provided with limit sensors, and line slideway one end is provided with motor, and motor connection has Sliding block on electric machine controller, line slideway is connected with fixture, and fixture is clamped with integrating sphere, and integrating sphere bottom surface and conveyer belt are flat OK;The interface on integrating sphere top is connected with light source by the first fibre optical sensor, and the interface of integrating sphere side passes through the second optical fiber Sensor is connected with spectrometer, and spectrometer is connected with computer by data wire.
Light source is halogen tungsten lamp.
Spectrometer is fiber spectrometer, the AvaSpec-ULS2048L- of the model Avantes companies of fiber spectrometer EVO。
Data wire is USB3.0 data wires.
Shelf is provided between supporting plate, shelf is located above line slideway, light source and spectrometer are located on shelf.
Screw is provided with sliding block, fixture includes two jig arm connected by screw rod, and fixture is connected by screw rod and sliding block Connect, jig arm is fixed on integrating sphere both sides.
The beneficial effects of the utility model are that halogen tungsten lamp is led as standard sources as defined in CIE with the straight line of motor direct-connected Rail drives integrating sphere, realizes the full width to fabric face optical signal to be detected wide scanning and collection, and fiber spectrometer believes light Number be converted to spectroscopic data, and combine computer and Software Development Platform realizes conversion and color of the spectroscopic data to color parameter The calculating of difference, realizes the automatic detection of fabric aberration.
Brief description of the drawings
Fig. 1 is the structural representation of the fabric Online color-difference measurement device based on fiber spectrometer.
In figure, 1. bases, 2. transport mechanisms, 3. supporting plates, 4. line slideways, 5. shelves, 6. limit sensors, 7. electricity Machine, 8. electric machine controllers, 9. fixtures, 10. integrating spheres, 11. first fibre optical sensors, 12. second fibre optical sensors, 13. light sources, 14. spectrometer, 15. data wires, 16. computers;
41. sliding block, 91. screw rods, 92. jig arm.
Embodiment
The utility model is described in detail with reference to the accompanying drawings and detailed description.
Transport mechanism is provided with fabric Online color-difference measurement device based on fiber spectrometer, including base 1, base 1 2, transport mechanism 2 includes conveyer belt, and conveyer belt both sides are respectively arranged between supporting plate 3, supporting plate 3 and are provided with line slideway 4, Line slideway 4 is parallel with conveyer belt;The two ends of line slideway 4 are provided with limit sensors 6, and the one end of line slideway 4 is provided with electricity Machine 7, the sliding block 41 that motor 7 is connected with electric machine controller 8, line slideway 4 is connected with fixture 9, and fixture 9 is clamped with integrating sphere 10, the bottom surface of integrating sphere 10 is parallel with conveyer belt, and the interface on the top of integrating sphere 10 is connected with light source by the first fibre optical sensor 11 13, the interface of the side of integrating sphere 10 is connected with spectrometer 14 by the second fibre optical sensor 12, and spectrometer 14 passes through data wire 15 It is connected with computer 16.
Light source 13 is halogen tungsten lamp.
Spectrometer 14 is fiber spectrometer, the AvaSpec-ULS2048L- of the model Avantes companies of fiber spectrometer EVO。
Data wire 15 is USB3.0 data wires.
Shelf 5 is provided between supporting plate 3, shelf 5 is located at the top of line slideway 4, and light source 13 and spectrometer 14, which are located at, to be put On plate 5.
Screw is provided with sliding block 41, fixture 9 includes two jig arm 92 connected by screw rod 91, and fixture 9 passes through screw rod 91 are connected with sliding block 41, and jig arm 92 is fixed on the both sides of integrating sphere 10.
In use, fabric to be detected is placed on conveyer belt, integrating sphere 10 is fixed between jig arm 92, rotary screw 91, on the premise of ensuring integrating sphere 10 not in contact with fabric to be detected, the bottom surface of integrating sphere 10 and fabric face to be detected away from From as small as possible;Determine after good position, the fibre-optical probe of the first fibre optical sensor 11 is arranged on to the interface on the top of integrating sphere 10 It is interior, the other end of the first fibre optical sensor 11 is connected with light source 13, the fibre-optical probe of the second fibre optical sensor 12 is arranged on In the interface of the side of integrating sphere 10, the other end of the second fibre optical sensor 12 is connected with photothermal spectroscopic analyzer 14.
Operate electric machine controller 8, the cloth cross direction of the rotational band movable slider 41 and integrating sphere 10 of motor 7 along fabric to be detected Horizontal reciprocating movement is done, accomplishes full width wide scanning and collection.Light source 13 is opened, light source 13 is halogen tungsten lamp, be mark as defined in CIE Quasi-optical source, its light sent is linked into integrating sphere 10 by the first fibre optical sensor 11, and integrating sphere 10 is carried out d/8 ° of visual field Measurement, light is radiated at fabric face to be detected by the thief hatch of the bottom of integrating sphere 10, reflected from fabric face to be detected The integrated inwall multiple reflections of ball 10 of light after be uniformly scattered in inside it.Now there are two kinds of mixed lights in the inside of integrating sphere 10 Signal, a kind of is the light that halogen tungsten lamp light source is sent, and another is the light reflected from fabric face to be detected, and they can pass through The interface of the side of integrating sphere 10 is transmitted into spectrometer 14 via the second fibre optical sensor 12, and optical signal is turned in spectrometer 14 Spectroscopic data is changed to, by USB3.0 data line transfers to computer 16, master sample is detected with same method, deposited Store up its spectroscopic data.Computer 16 is handled and display portion as spectroscopic data, with reference to Software Development Platform by fabric to be detected Color parameter is converted to the spectroscopic data of master sample, the color parameter value of the two is contrasted and calculates value of chromatism, and final To acetes chinensis result.
Through the above way.Fabric Online color-difference measurement device of the utility model based on fiber spectrometer, halogen tungsten lamp is made The standard sources as defined in CIE, drives integrating sphere with the line slideway of motor direct-connected, realizes to fabric face optical signal to be detected The wide scanning and collection of full width, fiber spectrometer converts optical signals to spectroscopic data, and combines computer and software development Platform realizes that spectroscopic data, to the conversion of color parameter and the calculating of value of chromatism, realizes the automatic detection of fabric aberration, solution Determine the problem of fabric acetes chinensis efficiency is low, precision is low present in prior art.

Claims (6)

1. the fabric Online color-difference measurement device based on fiber spectrometer, it is characterised in that including base (1), base is set on (1) Transport mechanism (2) is equipped with, transport mechanism (2) includes conveyer belt, and conveyer belt both sides are respectively arranged with supporting plate (3), supporting plate (3) Between be provided with line slideway (4), line slideway (4) is parallel with conveyer belt;Line slideway (4) two ends are provided with spacing sensing Device (6), line slideway (4) one end is provided with motor (7), and motor (7) is connected with electric machine controller (8), line slideway (4) Sliding block (41) is connected with fixture (9), and fixture (9) is fixed with integrating sphere (10), and integrating sphere (10) bottom surface is parallel with conveyer belt, integration The interface on ball (10) top is connected with light source (13) by the first fibre optical sensor (11), and the interface of integrating sphere (10) side passes through Second fibre optical sensor (12) is connected with spectrometer (14), and spectrometer (14) is connected with computer (16) by data wire (15).
2. the fabric Online color-difference measurement device according to claim 1 based on fiber spectrometer, it is characterised in that light source (13) it is halogen tungsten lamp.
3. the fabric Online color-difference measurement device according to claim 2 based on fiber spectrometer, it is characterised in that spectrum Instrument (14) is fiber spectrometer, the AvaSpec-ULS2048L-EVO of the model Avantes companies of fiber spectrometer.
4. the fabric Online color-difference measurement device according to claim 3 based on fiber spectrometer, it is characterised in that data Line (15) is USB3.0 data wires.
5. the fabric Online color-difference measurement device according to claim 1 based on fiber spectrometer, it is characterised in that support Shelf (5) is provided between plate (3), shelf (5) is located at line slideway (4) top, and light source (13) and spectrometer (14), which are located at, to be put On plate (5).
6. the fabric Online color-difference measurement device according to claim 1 based on fiber spectrometer, it is characterised in that sliding block (41) screw is provided with, fixture (9) includes two jig arm (92) connected by screw rod (91), and fixture (9) passes through screw rod (91) it is connected with sliding block (41), jig arm (92) is fixed on integrating sphere (10) both sides.
CN201720027200.5U 2017-01-10 2017-01-10 Fabric Online color-difference measurement device based on fiber spectrometer Expired - Fee Related CN206431038U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720027200.5U CN206431038U (en) 2017-01-10 2017-01-10 Fabric Online color-difference measurement device based on fiber spectrometer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720027200.5U CN206431038U (en) 2017-01-10 2017-01-10 Fabric Online color-difference measurement device based on fiber spectrometer

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CN206431038U true CN206431038U (en) 2017-08-22

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107894404A (en) * 2017-11-13 2018-04-10 广州纤维产品检测研究院 A kind of touch portable blend fabric fiber content analyzer
CN109030387A (en) * 2018-07-13 2018-12-18 湖南文理学院 A kind of detection device that can quickly detect clothes color difference
CN109060803A (en) * 2018-08-10 2018-12-21 江苏恒神股份有限公司 Carbon fiber color difference detection device and detection method
TWI666130B (en) * 2017-11-16 2019-07-21 中央印製廠 Method for capturing spectroscopic characteristics of reflective fluorescent ink and chromaticity value of quality control
CN110907037A (en) * 2019-12-05 2020-03-24 西安获德图像技术有限公司 Fabric color online detection system and detection method based on photoelectric integration method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107894404A (en) * 2017-11-13 2018-04-10 广州纤维产品检测研究院 A kind of touch portable blend fabric fiber content analyzer
TWI666130B (en) * 2017-11-16 2019-07-21 中央印製廠 Method for capturing spectroscopic characteristics of reflective fluorescent ink and chromaticity value of quality control
CN109030387A (en) * 2018-07-13 2018-12-18 湖南文理学院 A kind of detection device that can quickly detect clothes color difference
CN109060803A (en) * 2018-08-10 2018-12-21 江苏恒神股份有限公司 Carbon fiber color difference detection device and detection method
CN110907037A (en) * 2019-12-05 2020-03-24 西安获德图像技术有限公司 Fabric color online detection system and detection method based on photoelectric integration method

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170822

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