CN211498004U - Novel polyester anhydrous printing fabric - Google Patents
Novel polyester anhydrous printing fabric Download PDFInfo
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- CN211498004U CN211498004U CN201921868055.9U CN201921868055U CN211498004U CN 211498004 U CN211498004 U CN 211498004U CN 201921868055 U CN201921868055 U CN 201921868055U CN 211498004 U CN211498004 U CN 211498004U
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Abstract
The utility model discloses a novel terylene waterless printing fabric, which consists of 100D/36F low stretch yarn, the length of the yarn is 16CM/100G, each 4 paths are a cycle, each path comprises 4 coils, in the 1 st path, the 1 st and 2 th needles are knitted into loops, and the 3 rd and 4 th needles are knitted into floating threads; in the 2 nd path, the 2 nd and 3 rd needles are knitted into loops, and the 1 st and 4 th needles are knitted with floating threads; in the 3 rd path, 3 rd and 4 th needles are knitted into loops, and 1 st and 2 nd needles are knitted into floating threads; in the 4 th path, the 1 st and 4 th needles are knitted into loops, and the 2 nd and 3 rd needles are knitted into floating threads; each path is woven by 100D/36F low stretch yarn. The fabric has good resilience, high bulkiness, easy washing and quick drying and high color fastness.
Description
Technical Field
The utility model belongs to the technical field of the fabrics technique and specifically relates to a novel anhydrous stamp surface fabric of dacron.
Background
Traditional dacron printed fabric need adopt high temperature and high pressure to make and reach the dyeing effect because spandex is colored difficult etc. in the dyeing and finishing process, and the fabric is colored difficultly, and the colour fastness is not high, need consume a large amount of industrial chemicals, water resource and electric power resource, along with energy saving and emission reduction's attention, raw and other materials cost and human cost increase gradually, and follow-up water treatment expense is high, needs environmental protection, economy, individualized technology to replace. People not only meet the effect of ordinary cloth, have provided higher requirement to its external aesthetic measure and its additional function, like environmental protection, ventilative, antistatic function etc. the surface fabric structure singleness of prior art, can't satisfy the consumer demand that promotes day by day.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a resilience performance is good, bulk high, easily wash quick-drying, novel anhydrous stamp surface fabric of dacron that colour fastness is high.
In order to achieve the above purpose, the technical scheme of the utility model is that:
a novel terylene waterless printing fabric comprises 100D/36F low stretch yarns, the length of the yarns is 16CM/100G, each 4 paths are a cycle, each path comprises 4 coils, in the 1 st path, the 1 st and 2 th yarns are knitted into loops, and the 3 rd and 4 th needles are knitted into floating yarns; in the 2 nd path, the 2 nd and 3 rd needles are knitted into loops, and the 1 st and 4 th needles are knitted with floating threads; in the 3 rd path, 3 rd and 4 th needles are knitted into loops, and 1 st and 2 nd needles are knitted into floating threads; in the 4 th path, the 1 st and 4 th needles are knitted into loops, and the 2 nd and 3 rd needles are knitted into floating threads; each path is woven by 100D/36F low stretch yarn.
The gram weight of the fabric is 110 grams per square meter.
The fabric is woven by a single-side machine with the machine type of 30 inches and 28G.
The width of the fabric is 180 CM.
The utility model has the advantages that: a novel terylene waterless printing fabric comprises 100D/36F low stretch yarns, the length of the yarns is 16CM/100G, each 4 paths are a cycle, each path comprises 4 coils, in the 1 st path, the 1 st and 2 th yarns are knitted into loops, and the 3 rd and 4 th needles are knitted into floating yarns; in the 2 nd path, the 2 nd and 3 rd needles are knitted into loops, and the 1 st and 4 th needles are knitted with floating threads; in the 3 rd path, 3 rd and 4 th needles are knitted into loops, and 1 st and 2 nd needles are knitted into floating threads; in the 4 th path, the 1 st and 4 th needles are knitted into loops, and the 2 nd and 3 rd needles are knitted into floating threads; each path is woven by 100D/36F low stretch yarn. The fabric has good resilience, high bulkiness, easy washing and quick drying and high color fastness.
Drawings
FIG. 1 is a knitting diagram of the present invention;
FIG. 2 is a knitting needle arrangement diagram of the present invention;
fig. 3 is a triangular layout diagram of the present invention.
Detailed Description
Example 1
The novel terylene waterless printing fabric shown in the figures 1-3 is composed of 100D/36F low stretch yarns, the length of the yarn is 16CM/100G, each 4 paths are a cycle, each path comprises 4 coils, in the 1 st path, the 1 st and 2 th yarns are knitted into a loop, and the 3 rd and 4 th needles are knitted into a floating yarn; in the 2 nd path, the 2 nd and 3 rd needles are knitted into loops, and the 1 st and 4 th needles are knitted with floating threads; in the 3 rd path, 3 rd and 4 th needles are knitted into loops, and 1 st and 2 nd needles are knitted into floating threads; in the 4 th path, the 1 st and 4 th needles are knitted into loops, and the 2 nd and 3 rd needles are knitted into floating threads; each path is woven by 100D/36F low stretch yarn.
The gram weight of the fabric is 110 grams per square meter.
The fabric is woven by a single-side machine with the machine type of 30 inches and 28G.
The width of the fabric is 180 CM.
The printing and dyeing process comprises two steps of pretreatment and printing:
1) pretreatment
Pumping the pretreated fabric into a high-temperature overflow dyeing machine, heating industrial water in a main cylinder to 50 ℃, adding a degreasing agent with the total amount of 1g/L and soda with the total amount of 2g/L into an auxiliary cylinder, pumping the mixture into the main cylinder by a water pump to form a pretreatment solution, raising the temperature of the pretreatment solution in the main cylinder to 90 ℃, preserving the heat of the fabric for 20min at 90 ℃, and draining; the main cylinder is fed with normal temperature water and runs for 10min, and water is discharged; heating the main cylinder with normal temperature water to 40 deg.C, adding 1g/L glacial acetic acid into the auxiliary cylinder, pumping into the main cylinder with water pump, maintaining the temperature for 20min, and draining to finish pretreatment.
2) Printing technology
The printing production process comprises the following steps:
the process route is as follows: preparation of pre-printing cloth, color separation and screen making, slurry preparation, printing, drying, finished product inspection. Preparing a cloth before printing: the cloth inspection is strict, the specification, the dust, the water absorption and the cylinder difference of the base cloth before printing are ensured to be qualified, the abnormality is found and reported in time, and the base cloth before printing is required to be clean in oil removal and good in water absorption.
Color screening: when the pattern is designed, the defects of missing and seepage of the pattern contour line of the printing are avoided by avoiding points, lines and surfaces which are too thin and too small. The quality of the screen printing is strictly controlled, and the phenomena of inaccurate registration, sand holes, screen collapse, degumming and the like are avoided.
Slurry preparation: the formula of the disperse printing paste comprises the following components:
emulsifier PSE: 2.0 percent; kerosene: 25.5 percent; a crosslinking agent: 40 percent; VSN softener: 1 percent; disperse dark blue HGL: 3 percent; water: 28.5 percent.
Printing: the printing is carried out by adopting a flat printing machine, and the printing mixed paste is scraped by a large round-mouth scraper and a scraping double-knife to ensure that the printing is thoroughly and uniformly printed.
The temperature of the drying oven of the printing machine is set to be 150 ℃, and the drying time is 2-3 min. The drying is carried out completely. The tail of the machine is equipped with a cooling device conditionally, and if the tail of the machine is equipped with a cooling device, the cloth with waste heat is accumulated too much to cause uneven color.
Shaping of finished product
Rolling softener special effect finishing agent 10g/L, setting at 145 ℃, 30m/min, checking pattern effect by a setting machine, and flowing into the next procedure after the pattern effect is qualified.
And (4) inspecting a finished product:
and (5) strictly inspecting the cloth, and timely reporting the quality problem of the cloth cover.
All the fastnesses of the product can reach the Standard of superior products, meet the Oeko-Tex Standard 100 Standard and have the mark of ecological textiles.
Claims (4)
1. The utility model provides a novel anhydrous stamp surface fabric of dacron which characterized in that: the knitting machine consists of 100D/36F low stretch yarns, the length of each yarn is 16cm/100g, each 4 paths are a cycle, each path comprises 4 coils, in the 1 st path, the 1 st and 2 nd needles are knitted into loops, and the 3 rd and 4 th needles are knitted into floating threads; in the 2 nd path, the 2 nd and 3 rd needles are knitted into loops, and the 1 st and 4 th needles are knitted with floating threads; in the 3 rd path, 3 rd and 4 th needles are knitted into loops, and 1 st and 2 nd needles are knitted into floating threads; in the 4 th path, the 1 st and 4 th needles are knitted into loops, and the 2 nd and 3 rd needles are knitted into floating threads; each path is woven by 100D/36F low stretch yarn.
2. The novel terylene anhydrous printed fabric according to claim 1, which is characterized in that: the gram weight of the fabric is 110 grams per square meter.
3. The novel terylene anhydrous printed fabric according to claim 1, which is characterized in that: the fabric is woven by a single-side machine with the machine type of 30 inches and 28G.
4. The novel terylene anhydrous printed fabric according to claim 1, which is characterized in that: the width of the fabric is 180 cm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921868055.9U CN211498004U (en) | 2019-11-01 | 2019-11-01 | Novel polyester anhydrous printing fabric |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921868055.9U CN211498004U (en) | 2019-11-01 | 2019-11-01 | Novel polyester anhydrous printing fabric |
Publications (1)
Publication Number | Publication Date |
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CN211498004U true CN211498004U (en) | 2020-09-15 |
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CN201921868055.9U Active CN211498004U (en) | 2019-11-01 | 2019-11-01 | Novel polyester anhydrous printing fabric |
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2019
- 2019-11-01 CN CN201921868055.9U patent/CN211498004U/en active Active
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