CN204855298U - Fibre cloth check out test set - Google Patents

Fibre cloth check out test set Download PDF

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Publication number
CN204855298U
CN204855298U CN201520655129.6U CN201520655129U CN204855298U CN 204855298 U CN204855298 U CN 204855298U CN 201520655129 U CN201520655129 U CN 201520655129U CN 204855298 U CN204855298 U CN 204855298U
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Prior art keywords
fiber cloth
checkout equipment
scanning
stigma
streak
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CN201520655129.6U
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Chinese (zh)
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林裕强
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TAIWAN DYNAMIC TESTING TECHNOLOGY Co Ltd
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TAIWAN DYNAMIC TESTING TECHNOLOGY Co Ltd
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Abstract

The utility model provides a fibre cloth check out test set, including optical scan mechanism and analysis institution, through a scanning light beam scanning fibre cloth, the more produced smooth schlieren of capture scanning fibre cloth like, then according to the light schlieren like producing fibre cloth testing result information, and examine in view of the above and know that the fibre cloth corresponds the density at position, disconnected silk, streak, walks yarn, stigma, film mottle, damages, weaves the method affirmation, reaches the circumstances of dyeing evenness degree.

Description

Fiber cloth checkout equipment
Technical field
The utility model designs a kind of fiber cloth checkout equipment, particularly designs and a kind ofly detects density, fracture of wire, streak, walks yarn, stigma, film mottle, damage, weaving method confirm and the fiber cloth checkout equipment of dye uniformity.
Background technology
The application of fiber cloth is both dark and wide, is enough to each the life face affecting people, from clothing, device housings surface, even building materials, uses fiber cloth.And these to use the intensity (strength) of the quality of the object of fiber cloth and fiber cloth, stiffness (stiffness) or other character closely bound up; so we can detect for fiber cloth, to pick out applicable fiber cloth as use usually.
Existing fiber cloth checkout equipment is used in and comprises pulling strengrth detection, the detection of stretching rigidity, tensile elasticity detection, bending strength detection and deflection detection etc.These detect owing to being in destructive mode, thus be all can only for some and non-subsequent for the manufacture of fiber detect, using as the assessment foundation of finished product manufacturing fiber used.And when fiber being fabricated to further fiber cloth finished product, its manufacture process also can have influence on the quality of fiber cloth, the reference value being therefore fabricated to the fiber check and measure data before finished product is quite limited.
Utility model content
The technical matters of the utility model for solving:
Density, fracture of wire, the streak of fiber cloth, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity relevant with manufacture process, the testing result in prior art before fiber is fabricated to cloth the detection that cannot be used for the fiber cloth of finished product judge to assess.
Therefore, namely the purpose of this utility model is to provide a kind of fiber cloth checkout equipment, for for the density of fiber cloth finished product, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirms and the situation of dye uniformity judges assessment, to improve the problem of prior art.
The technological means that the utility model is dealt with problems:
The technological means that the utility model adopts for the problem solving prior art is a kind of fiber cloth checkout equipment, for the density of detection fibers cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirms, and dye uniformity, described fiber cloth checkout equipment comprises: optical scanning mechanism, comprise light source body and Electrifier frame, photoreceptor, described light source body is in order to project the fiber cloth described in scanning light beam scanning, described Electrifier frame, photoreceptor corresponds to described fiber cloth through setting, with the light schlieren picture that the fiber cloth captured described in described scanning light beam scanning produces, and analysis institution, Electrifier frame, photoreceptor described in connection, wherein said analysis institution produces fiber cloth testing result information according to described light schlieren picture relative to the position relationship of described fiber cloth, and detect the density of described fiber cloth corresponding position, fracture of wire, streak according to described fiber cloth testing result information, walk yarn, stigma, film mottle, damage, weaving method confirm and the mechanism of situation of dye uniformity.
In an embodiment of the present utility model, described light source body makes described scanning light beam be cast through described fiber cloth to produce described light schlieren picture through setting.
In an embodiment of the present utility model, described light source body makes described scanning light beam reflect in described fiber cloth to produce described light schlieren picture through setting.
In an embodiment of the present utility model, fiber cloth checkout equipment also comprises withdrawal mechanism, the region making described fiber cloth be displaced through described scanning light beam along delivery path to project through setting.
In an embodiment of the present utility model, withdrawal mechanism described in described analysis institution connects, and described analysis institution be according to described fiber cloth in the position in described delivery path to judge that described light print image is mapped in the mechanism of the position relationship of described fiber cloth.
In an embodiment of the present utility model, described analysis institution be according to the light line size of described light schlieren picture or color range detecting the density of described fiber cloth corresponding position, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the mechanism of dye uniformity.
In an embodiment of the present utility model, described analysis institution for also including at the density of described fiber cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity situation is the mechanism of the function of defective products more than the fiber cloth described in judging during a reference value.
In an embodiment of the present utility model, described analysis institution also includes the mechanism carrying out described fiber cloth testing result information to process the function forming fiber cloth detection map.
In an embodiment of the present utility model, described analysis institution be also include according to the described density of fiber cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the situation of dye uniformity to detect the mechanism of the function in map problem of calibrating region at described fiber cloth.
In an embodiment of the present utility model, also comprise pressing guide mechanism, comprise guide member and lower guide member, through arranging the upper surface and lower surface that are contacted with described fiber cloth respectively, to flatten and fiber cloth described in guiding simultaneously.
The Advantageous Effects of the utility model contrast prior art:
By the technological means that the utility model adopts, by the sparse place of fiber cloth, intensive place and fracture of wire place, streak place, walk yarn place, stigma place, film mottle place, fatigue damage place, weaving method do not exist together, uneven being in of dyeing is subject to scanning light beam scanning and can reflects different light schlieren pictures, thus detect fiber cloth density, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity, and can learn the size at such as its fracture of wire place, quantity and position by the light line identification of thin portion and corresponding relation.By available nondestructive mode detection fibers cloth finished product, improve the accuracy of detection of fiber cloth, to be further used for promoting fine ratio of product.Checkout equipment provided by the utility model is not only respond well, and easy to implement, is quite applicable to being applied to fiber cloth.
The specific embodiment that the utility model adopts, is further described by following embodiment and accompanying drawing.
Accompanying drawing explanation
Fig. 1 shows the schematic diagram of the fiber cloth checkout equipment of an embodiment of the present utility model.
Fig. 2 shows the operation workflow figure of the fiber cloth checkout equipment of an embodiment of the present utility model.
The fiber cloth that Fig. 3 shows the fiber cloth checkout equipment of an embodiment of the present utility model detects one of the schematic diagram of map.
The fiber cloth that Fig. 4 shows the fiber cloth checkout equipment of an embodiment of the present utility model detects two of the schematic diagram of map.
Fig. 5 shows the schematic diagram of the fiber cloth checkout equipment of another embodiment of the present utility model.
Fig. 6 shows the schematic diagram of the fiber cloth checkout equipment of another embodiment of the present utility model.
Fig. 7 shows the schematic diagram of the fiber cloth checkout equipment of another embodiment of the present utility model.
Fig. 8 shows the schematic diagram of the fiber cloth checkout equipment of another embodiment of the present utility model.
[primary clustering symbol description]
1 fiber cloth
2 optical scanning mechanisms
21 light source bodies
22 transmission elements
23 Electrifier frame, photoreceptors
3 analysis institutions
4 withdrawal mechanisms
41 scroll bars
5 flatten guide mechanism
Guide member on 51
511 roller parts
512 transmission components
52 times guide members
521 roller parts
522 transmission components
523 drive member
A problem area
D1 length direction
L, L2 scanning light beam
M detects map
P1 delivery path
R1 sense of rotation
Embodiment
Consult Fig. 1 to Fig. 6, be described as follows to fiber cloth checkout equipment of the present utility model.
Fiber cloth checkout equipment provided by the utility model for detect a fiber cloth 1 density, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity, fiber cloth checkout equipment comprises an optical scanning mechanism 2, and optical scanning mechanism 2 comprises light source body 21, transmission element 22 and an Electrifier frame, photoreceptor 23.Fiber cloth checkout equipment comprises the following steps: with one scan beam flying fiber cloth (step S10); The smooth schlieren picture (step S20) that acquisition scanning fiber cloth produces; A fiber cloth testing result information (step S30) is produced relative to the position relationship of fiber cloth according to light schlieren picture; According to fiber cloth testing result information detecting the density of fiber cloth corresponding position, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the situation (step S40) of dye uniformity.
In order to understand density more concisely, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirms, and the situation of dye uniformity, in preferred embodiment, the density of fiber cloth is also included in after step S40, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirms, and the situation of dye uniformity is more than judging during a reference value that fiber cloth is the step (step S50) of defective products, and fiber cloth testing result information carried out processing thus forms the step (step S60) that a fiber cloth detects map, and the density of foundation fiber cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirms, and the situation of dye uniformity detects at fiber cloth the step (step S70) that a problem area demarcated by map.
Fiber cloth 1 is positioned on transmission element 22, as shown in Figure 1.First, the scanning light beam L projected with light source body 21 scans fiber cloth 1 (step S10).In the present embodiment, light source body 21 is move along the length direction D1 of fiber cloth 1, thus makes scanning light beam L can scan the fiber cloth 1 of whole length.And due to transmission element 22 can printing opacity, scanning light beam L can irradiate fiber cloth 1 through transmission element 22.In step (S10), scanning light beam L reflects in fiber cloth 1 thus produces a smooth schlieren picture, and light schlieren picture is also projected to Electrifier frame, photoreceptor 23 through transmission element 22.In addition, in other embodiments, fiber cloth 1 can be and is directly positioned on Electrifier frame, photoreceptor 23, and the scanning light beam L2 that light source body 21 projects produces light schlieren picture for being cast through fiber cloth 1, then light schlieren picture is directly projected to Electrifier frame, photoreceptor 23 (as shown in Figures 5 and 6).In addition, when the length of fiber cloth 1 is the length being greater than Electrifier frame, photoreceptor 23, in order to detect the density of the fiber cloth 1 of whole length, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the situation of dye uniformity, makes described fiber cloth 1 be displaced through along a delivery path P 1 region (as shown in Figure 6) that scanning light beam L2 that light source body 21 projects projects.One withdrawal mechanism 4 along delivery path P 1 (direction of delivery path P 1 is namely in contrast to the length direction D1 in Fig. 1) drawing fiber cloth 1, make fiber cloth 1 displacement and by light source body 21 project scan light beam L2 project region.Withdrawal mechanism 4 tool one scroll bar 41, rotates and one end of drawing fiber cloth 1 rolling fiber cloth 1 with a sense of rotation R1.Make light source body 21 and fiber cloth 1 have relative motion by withdrawal mechanism 4, therefore the position of light source body 21 can be fixing and need not if the light source body 21 of Fig. 1 and Fig. 5 is along the length direction displacement of fiber cloth.
In order to make fiber cloth 1 wrinkle resistant pleat in the process of drawing, in other embodiments, flatten guide mechanism 5 by one, flatten simultaneously and guide fiber cloth 1 (as shown in Figures 7 and 8).Flatten guide mechanism 5 and to comprise on one guide member 51 and once guide member 52.Upper guide member 51 comprises the roller part 511 of the upper surface being contacted with fiber cloth 1.Lower guide member 52 comprises the roller part 521 of the lower surface being contacted with fiber cloth 1.And be contacted with the mutual contact of roller part 511,521 at the same position place of fiber cloth 1 and rotate along different rotary direction, flatten to reach and guide the effect of fiber cloth 1.Moreover upper guide member 51 also comprises a transmission component 512, connect several roller part 511, lower guide member 52 also comprises a transmission component 522, connects several roller part 521, and transmission component 512,522 can be chain, belt or other analogs.Wherein, lower guide member 52 also comprises a drive member 523, by transmission component 522 driving rolls part 521.To reach the effect of interlock guiding fiber cloth 1, thus positively can flatten the fiber cloth 1 of a segment length.
Meanwhile, Electrifier frame, photoreceptor 23 captures the smooth schlieren picture (step S20) that scanning fiber cloth 1 produces.Light schlieren picture can transfer in the analysis institution 3 connecting Electrifier frame, photoreceptor 23, and analysis institution 3 produces a fiber cloth testing result information (step S30) according to light schlieren picture relative to the position relationship of fiber cloth 1, wherein, light schlieren picture is that the position being projected to Electrifier frame, photoreceptor 23 according to scanning light beam L judges relative to the position relationship of fiber cloth 1.In Fig. 6, light schlieren picture judges in the position of delivery path P 1 according to fiber cloth 1 relative to the position relationship of fiber cloth 1, and fiber cloth 1 can be inferred according to the pull speed of withdrawal mechanism 4 (in the present embodiment for the angular velocity of scroll bar 41 is multiplied by the radius of scroll bar 41) in the position of delivery path P 1.
Then, analysis institution 3 detects the density of the corresponding position of fiber cloth 1, fracture of wire, streak according to fiber cloth testing result information, walks yarn, stigma, film mottle, damage, weaving method confirm and the situation (step S40) of dye uniformity.Wherein, analysis institution 3 be detect according to the light line size of light schlieren picture or color range the corresponding position of fiber cloth 1 density, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity, and detect the density of corresponding position, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the position of dye uniformity, quantity and size.
In addition, after the step s 40, in the present embodiment, analysis institution 3 is preset with a reference value.Analysis institution 3 fiber cloth 1 density, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity situation exceed reference value time judge that fiber cloth 1 is as defective products (step S50), such as, the quantity of fracture of wire exceedes reference value ten, or the total area of fracture of wire exceedes reference value one square centimeter.Moreover, fiber cloth testing result information also can be carried out processing to form a fiber cloth and be detected map M by analysis institution 3, and density, fracture of wire, streak can be seen significantly via map M, walk yarn, stigma, film mottle, damage, weaving method confirm and the image of dye uniformity, as shown in Figure 3 (step S60).And, analysis institution 3 according to the density of fiber cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirms and the situation of dye uniformity detects at fiber cloth the step that map M demarcates a problem area A, as shown in Figure 4 (step S70).Auxiliary by analysis institution 3, more directly finds out density, fracture of wire, streak, walks yarn, stigma, film mottle, damage, weaving method confirm and the problem of dye uniformity is comparatively serious region.
Above describing is only preferred embodiment of the present utility model explanation, and those skilled in the art are when can do other all improvement according to above-mentioned explanation, but these changes still belong in creation spirit of the present utility model and following defined the scope of the claims.

Claims (10)

1. a fiber cloth checkout equipment, is characterized in that, for detection fibers cloth density, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity, described fiber cloth checkout equipment comprises:
Optical scanning mechanism, comprise light source body and Electrifier frame, photoreceptor, described light source body is in order to project the fiber cloth described in scanning light beam scanning, described Electrifier frame, photoreceptor corresponds to described fiber cloth through setting, the light schlieren picture produced with the fiber cloth captured described in described scanning light beam scanning; And
Analysis institution, Electrifier frame, photoreceptor described in connection, wherein said analysis institution produces fiber cloth testing result information according to described light schlieren picture relative to the position relationship of described fiber cloth, and detect the density of described fiber cloth corresponding position, fracture of wire, streak according to described fiber cloth testing result information, walk yarn, stigma, film mottle, damage, weaving method confirm and the mechanism of situation of dye uniformity.
2. fiber cloth checkout equipment as claimed in claim 1, it is characterized in that, described light source body makes described scanning light beam be cast through described fiber cloth to produce described light schlieren picture through setting.
3. fiber cloth checkout equipment as claimed in claim 1, it is characterized in that, described light source body makes described scanning light beam reflect in described fiber cloth to produce described light schlieren picture through setting.
4. the fiber cloth checkout equipment as described in claim 1, is characterized in that, also comprise withdrawal mechanism, the region making described fiber cloth be displaced through described scanning light beam along delivery path to project through setting.
5. fiber cloth checkout equipment as claimed in claim 1, it is characterized in that, described optical scanning mechanism also comprises transmission element, arranges and corresponds to described light source body, place with for described fiber cloth.
6. fiber cloth checkout equipment as claimed in claim 1, it is characterized in that, described analysis institution be according to the light line size of described light schlieren picture or color range detecting the density of described fiber cloth corresponding position, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the mechanism of dye uniformity.
7. fiber cloth checkout equipment as claimed in claim 1, it is characterized in that, described analysis institution for also including at the density of described fiber cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and dye uniformity situation is the mechanism of the function of defective products more than the fiber cloth described in judging during a reference value.
8. fiber cloth checkout equipment as claimed in claim 1, is characterized in that, described analysis institution also includes the mechanism carrying out described fiber cloth testing result information to process the function forming fiber cloth detection map.
9. fiber cloth checkout equipment as claimed in claim 8, it is characterized in that, described analysis institution be also include according to the described density of fiber cloth, fracture of wire, streak, walk yarn, stigma, film mottle, damage, weaving method confirm and the situation of dye uniformity to detect the mechanism of the function in map problem of calibrating region at described fiber cloth.
10. fiber cloth checkout equipment as claimed in claim 1, it is characterized in that, also comprise pressing guide mechanism, comprise guide member and lower guide member, through arranging the upper surface and lower surface that are contacted with described fiber cloth respectively, to flatten and fiber cloth described in guiding simultaneously.
CN201520655129.6U 2015-08-27 2015-08-27 Fibre cloth check out test set Active CN204855298U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110196208A (en) * 2019-06-21 2019-09-03 国际竹藤中心 A kind of whole change Veneer quality on-line detecting system of bamboo beam and online test method
CN110196207A (en) * 2019-06-21 2019-09-03 国际竹藤中心 A kind of whole change Veneer quality online detection instrument of bamboo beam
US11560657B2 (en) 2020-12-02 2023-01-24 Industrial Technology Research Institute Braiding path generating method and device using the same, and dynamic correcting method and braiding system using the same
US11685104B2 (en) 2019-12-20 2023-06-27 Industrial Technology Research Institute Dynamic correcting system of manufacturing process using wire and dynamic correcting method using the same

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110196208A (en) * 2019-06-21 2019-09-03 国际竹藤中心 A kind of whole change Veneer quality on-line detecting system of bamboo beam and online test method
CN110196207A (en) * 2019-06-21 2019-09-03 国际竹藤中心 A kind of whole change Veneer quality online detection instrument of bamboo beam
CN110196207B (en) * 2019-06-21 2021-12-07 国际竹藤中心 Bamboo bundle whole veneer quality on-line detection equipment
CN110196208B (en) * 2019-06-21 2022-02-15 国际竹藤中心 On-line detection system and on-line detection method for quality of bamboo bundle whole veneer
US11685104B2 (en) 2019-12-20 2023-06-27 Industrial Technology Research Institute Dynamic correcting system of manufacturing process using wire and dynamic correcting method using the same
US11560657B2 (en) 2020-12-02 2023-01-24 Industrial Technology Research Institute Braiding path generating method and device using the same, and dynamic correcting method and braiding system using the same

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