CN201890972U - Blended yarn for intelligent temperature-adjustable fibers - Google Patents

Blended yarn for intelligent temperature-adjustable fibers Download PDF

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Publication number
CN201890972U
CN201890972U CN2010201677596U CN201020167759U CN201890972U CN 201890972 U CN201890972 U CN 201890972U CN 2010201677596 U CN2010201677596 U CN 2010201677596U CN 201020167759 U CN201020167759 U CN 201020167759U CN 201890972 U CN201890972 U CN 201890972U
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temperature
fabric
fiber
yarn
blended yarn
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CN2010201677596U
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杨庆斌
卢宗元
李祥友
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LINYI COUNTY JINYUAN TEXTILE TRADE CO Ltd
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LINYI COUNTY JINYUAN TEXTILE TRADE CO Ltd
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Abstract

The utility model belongs to the field of functional fiber products and particularly discloses a blended yarn for intelligent temperature-adjustable fibers, the main raw material of which is temperature-adjustable viscose rayon, wherein the temperature-adjustable viscose rayon is 40-90% of the total fibers. The blended yarn for intelligent temperature-adjustable fibers has simple structure, is comfortable to use, is convenient to process, is low in cost, has good temperature-adjusting effect and is beneficial to the application and popularization of the temperature-adjustable materials.

Description

A kind of blended yarn of intelligent temperature adjusting fiber
(1) technical field
The utility model belongs to the functional textile product field, particularly a kind of blended yarn of intelligent temperature adjusting fiber.
(2) background technology
Traditional lining mainly is to avoid skin temperature to reduce or increase too much by heat-insulating method, to the heat-insulating method of the insulation of human body and cooling mainly by increasing or reducing its thickness and density is regulated.Along with growth in the living standard, people require more and more high to next to the shin, comfortable, the naturality of dress, particularly the dress ornament of functionalization is shown special preference to, intelligent temperature adjusting fiber is complied with this development trend, for people provide a kind of heat release when cold, the temperature-adjusting viscose textiles that can absorb heat when hot has been eliminated the warm-cold sensitivity that produces owing to variations in temperature.
Now, temperature-regulating fiber has become the research focus of domestic and international textile function product, the America and Europe ripe temperature adjustment textile product market has been arranged, and has obtained consumers in general's trust and acceptance; At home, the research of temperature-regulating fiber and application still are in the starting stage, also do not have very ripe product on the market.But because temperature-regulating fiber has the heat-storage thermoregulation function, and have good can with the blending of other various fibers, therefore its range of application and wide, will have the vast market development space.
(3) summary of the invention
The utility model provides the blended yarn of the intelligent temperature adjusting fiber that a kind of production cost is low, thermoregulation effect is good in order to remedy the deficiencies in the prior art.
The utility model is achieved by the following technical solution:
A kind of blended yarn of intelligent temperature adjusting fiber is a main raw material with the temperature-adjusting viscose, and its special character is: adopt temperature-adjusting viscose and cotton fiber blending to form, described temperature-adjusting viscose accounts for 40~90% of total fiber number.
The utility model reduces production costs on the basis that guarantees the temperature-adjusting viscose temperature adjusting performance, improves the comfort of blended yarn, and itself and cotton fiber blending are made the cloth that can supply ready-made clothes.Described temperature-adjusting viscose and cotton fiber are alternately arranged.
In order to adjust the ratio of temperature-adjusting viscose and cotton fiber in the blended yarn, fully study temperature-regulating fiber and cotton fiber component to spinning and resultant yarn Effect on Performance, two raw-material ratios are carried out different settings, as table 1.
Table 1 resultant yarn blending rate:
Figure GSA00000098530500021
Wherein, fiber dimensious such as table 2.
Table 2 fiber dimensious
The fineness of described temperature-adjusting viscose is 1.67dtex, and the fineness of cotton fiber is 1.4dtex; The length of described temperature-adjusting viscose is 38mm, and cotton length is between 29~39mm, gets same value herein and measures.
Below be the relation test data of blended yarn performance and blending ratio.
(1) relation of blended yarn fracture strength and blending ratio
The intensity of blended yarn is with the intensity difference of pure spinning, the intensity that not exclusively depends on fiber itself, itself and blending ratio have very big relation, and this concerns more complicated, it is relevant with the character of blend fibre, and is particularly closely related with the elongation of fiber performance difference.When carrying out blending with two kinds of fibers, because the intensity of fiber is different with elongation, thereby influenced the intensity of blended yarn and fabric, therefore, produce a kind of blended yarn and fabric of particular requirement, just must understand the relation of characteristic, blending ratio and the yarn strength of using fiber with.This discuss in intelligent temperature adjusting fiber/silk/cotton blended yarn two kinds of fiber blends than with the relation of blended yarn intensity.
Table 3 is the basic index test results of different blending ratio yarns in drawing process.
The different blending ratio yarn of table 3 stretching basic index test value
Figure GSA00000098530500031
According to table 3, draw blended yarn intensity with the blending ratio change curve, as shown in Figure 1, find out by Fig. 1, along with the increase of intelligent temperature adjusting fiber content, the intensity of blended yarn rises again after descending gradually earlier gradually, is 60/40 o'clock at the blending ratio of intelligent temperature adjusting fiber/cotton, intensity is minimum, and 80/20 o'clock the highest.
(2) the blending sliver is done the relation with blending ratio
The bar of yarn is dried to be the uneven fineness of yarn, is meant along the plucked of length of yarn direction, is the important indicator of estimating yarn qualities.The irregular yarn strength that not only can make of yarn evenness reduces, and can increase break end, stop platform in weaving process, influences the outward appearance of fabric, reduces the endurable performance of fabric.The factor that influences yarn evenness comprises: material quality, the long fineness of fiber and harmful fault, the structure of semi-products and quality comprise that the bar of straightening of fibers degree, fibre separation index and semi-products is done technology setting, machine performance etc. in the spinning process.Table 4 is the yarn evenness CV value under the different blending ratios.
Table 4 blended yarn strip dry CV value is with the situation of change of blending ratio
Figure GSA00000098530500032
As can be seen from Table 4, intelligent temperature adjusting fiber/silk/cotton blended yarn strip dry CV value is than the pure intelligent thermoregulating yarn strip dry CV value height that spins.
(3) relation of blended yarn filoplume and blending ratio
Filoplume is meant that fibre end stretches out the part in yarn body outside in the spinning twisting process.The existence of filoplume not only influences the smooth of the outward appearance of yarn and fabric, also can influence carrying out smoothly of later process, and is unclear as cause Warp opening in weaving process, and knitting broken end increases, and reduces labor productivity.And the quantity of filoplume, length and distribution situation thereof have substantial connection to outward appearance, feel and the operating position of finished product.Especially some chemical fiber blended fabrics, quality requirement is higher, and it is even more important that the problem of filoplume just seems.
In production and trade, the index of the evaluation Yarn filoplume that adopts has following three kinds usually.
(1) hairiness index: in the unit length yarn, extension elongation surpasses the filoplume accumulative total of certain preseting length on the single side face.Unit (root/m).
(2) extension elongation of filoplume: fibre end or circle protrude the length of yarn basic surface.
(3) filoplume amount: the total amount of filoplume in the certain-length on the yarn.
Adopt first kind of index to estimate the filoplume situation of yarn.The regulation test value is at the yarn filoplume number on every meter along its length.
Table 5 provides the situation of change of Yarn filoplume with blending ratio.
Table 5 Yarn filoplume number is with the situation of change of blending ratio
Figure GSA00000098530500041
In weaving is produced, the filoplume of length more than 3mm is considered as harmful filoplume.The filoplume of length in the table 4 more than 3mm is depicted as broken line graph with the situation that blending ratio changes, as shown in Figure 2.
As can be seen from Figure 2, blended yarn is harmful to filoplume (more than the filoplume length 3mm) number with the KT fiber content, and when the 40%-60% scope, the filoplume number shows a rising trend; When the 60%-80% scope, the filoplume number reduces; In the 80%-100% scope, the filoplume number increases afterwards.3mm length filoplume number is obviously more than other length filoplume numbers.4mm, 5mm, 6mm, 7mm and 8mm length filoplume number are more or less the same.
Simultaneously, as seen from the above comparison, described temperature-adjusting viscose accounts for 80% of total fiber amount and is more excellent blending ratio selection.
The wet comfortableness of the heat of fabric is the overall balance of biothermodynamics between environment, fabric, the human body, can satisfy the demand of human body physiological state, whether comfortable and easy to wear the fabric life and work influence to people be very big, therefore, the wet comfortableness research of the heat of fabric is the advanced subject of modern textile clothes sciemtifec and technical sphere always, is to the wet comfortableness research of the heat of blended yarn below:
Experiment content: laboratory sample be through 5 times the washing, size tend towards stability 5 in knitted fabric, before following experimental project carried out, sample all was placed on damping 48h under the standard atmosphere condition.
(1) heat insulating ability experiment
The warmth retention property of fabric is the important indicator that textiles is taken.Purposes according to fabric is different season with use, and its warmth retention property is had different requirements.
The dull and stereotyped insulation instrument of laboratory apparatus: YG (B) 606D type.Test index comprises heat transfer coefficient (w/m 2C), clo value (0.155cm 2/ w), insulation rate (%) and thermal losses (KJ).
Size of sample: 5 on the sample of each kind cutting 30cm * 30cm size.
Fabric heat-insulation experimental result such as table 6.
Table 6 knitted fabric heat insulating ability test result
Figure GSA00000098530500051
The clo value of fabric, insulation rate are big more, and heat transfer coefficient, thermal losses are more little, and the heat-insulating property of fabric is good more.Although the used yarn linear density of fabric is identical, on same machine, adopt the same process braiding, difference in thickness is small, and for the accuracy of analyzing, divided by thickness, the unit's of obtaining clo value is compared then with clo value.Table 7 is for having listed the unit clo value of fabric.
Table 7 knitted fabric unit clo value
Figure GSA00000098530500052
As can be seen from the above table, the heat insulating ability of temperature-regulating fiber/silk/cotton blended yarn does not have pure temperature-regulating fiber fabric heat-insulation good, and along with the increase of cotton fiber content, heat-insulating property weakens.Intelligent temperature adjusting fiber content surpasses at 50% o'clock, and the heat insulating ability of BLENDED FABRIC obviously increases.
(2) air permeability test
The gas permeability of fabric is meant that fabric is by the performance of air under certain wind speed, and the gas permeability of the big more expression fabric of Air permenbility is good more, and windproof performance is poor more.Therefore Air permenbility and fabric thickness are inversely proportional to, and Air permenbility and fabric thickness are multiplied each other, and obtain the equivalent Air permenbility, are the Air permenbility of fabric thickness when being 1mm.
Laboratory apparatus: Y564 fabric air-permeability instrument, orifice diameter 11mm, air pressure 100Pa.
Size of sample: diameter is greater than the circular cloth specimen of 7cm, 5 on each kind cutting sample
Table 8 has provided the Air permenbility of different fabrics, with equivalent Air permenbility (Air permenbility multiply by fabric thickness).
Table 8 knitted fabric Air permenbility test result
The factor that influences fabric breathability is more, there are some researches show, the principal element that influences fabric breathability has fiber geometrical property, yarn linear density and the twist, Density, tissue and thickness etc.As shown in Figure 3, the equivalent Air permenbility of intelligent temperature adjusting fiber/cotton blended fabric reduces along with the increase of cotton fiber content, and amplitude of variation is smaller, pure intelligent thermoregulating fabric breathability the best.
(3) poisture-penetrability experiment
The size of vapor transfer rate reflection fabric moisture transmission ability, vapor transfer rate and fabric thickness are inversely proportional to, so vapor transfer rate can't reflect the water vapour permeability of material fully, and vapor transfer rate and fabric thickness are multiplied each other, and obtain the equivalent vapor transfer rate, are the vapor transfer rate of fabric thickness when being 1mm.
Experimental tool: moisture vapor transmission cup (diameter 3.5cm), distilled water, the accurate torsion electronic balance of JN-B.
Size of sample: the circular cloth specimen of diameter 3.6cm, 5 on each kind cutting sample.
Fabric moisture-penetrability experimental result such as table 9, fabric equivalent vapor transfer rate changing trend diagram such as Fig. 2.
Table 9 knitted fabric vapor transfer rate test result
Figure GSA00000098530500071
The vapor transfer rate of fabric and the section morphology of fiber, moisture pick-up properties, organizational structure of fabrics and atmospheric conditions have much relations, can not consider the influence to poisture-penetrability of institutional framework and atmospheric conditions at this.The equivalent vapor transfer rate of fabric is big more, illustrates that the water vapour permeability of fabric is good more, and as seen from Figure 4, for BLENDED FABRIC, along with the increase of intelligent temperature adjusting fiber content, the equivalent vapor transfer rate increases successively.
(4) hydrophobicity experiment
Laboratory apparatus: YG (B) 871 type capillary effect analyzers, scale.
Size of sample: laterally 300mm * vertically 25mm's is rectangular, and vertically 300mm * laterally 25mm's is rectangular, each 5 on the above two kinds of samples of each kind difference cutting.
(5) lead moist experiment
Experimental tool: glue head dropper, moisture vapor transmission cup, area measurement instrument.
Size of sample: the circular cloth specimen of diameter 5cm, 5 on each kind cutting sample.
The utility model is simple in structure, use comfortable, be convenient to processing, production cost is low, automatic temperature-control is effective, helps applying of intelligent thermoregulating material.
(4) description of drawings
Below in conjunction with accompanying drawing the utility model is further described.
Fig. 1 is that the utility model intensity is with temperature-regulating fiber content curve map;
Fig. 2 is that the utility model filoplume number is with temperature-regulating fiber content curve map;
Fig. 3 is that the utility model equivalent Air permenbility changes broken line graph;
Fig. 4 is that the utility model equivalent vapor transfer rate changes broken line graph;
Fig. 5 is a structural representation of the present utility model.
(5) specific embodiment
Accompanying drawing is a kind of specific embodiment of the present utility model.This embodiment is a main raw material with the temperature-adjusting viscose, it is characterized in that: adopt temperature-adjusting viscose and cotton fiber blending to form, described temperature-adjusting viscose accounts for 40~90% of total fiber weight; Described temperature-adjusting viscose accounts for 80% of total fiber amount.
The utility model is used in each Products Development:
Underwear clothes: underwear, briefs, sport corset, shirt etc.The intelligent thermoregulating technology can be controlled the heat of health automatically.Underwear can not only make you also as warm as spring in severe winter, produces too much heat in the time of can also reducing motion.Even trousers then make you also feel the slight chill in the air of silk silk in heat.
Overcoat clothes: suit, raincoat, ventilative lining, band thermostat layer or not with the overcoat of thermostat layer.The intelligent thermoregulating technology is a kind of balancing technique.It can control body heat automatically by the variations in temperature of regulating in the overcoat.Neither can be too hot, can be too not cold yet, comfortable leisure.
Bedding: mattress, mattress pad, cotton-wadded quilt, pillow and woollen blanket.The heat absorbing type phase-change material that the intelligent thermoregulating bedding adopt can store and release energy, and the temperature and humidity on the bed is remained in the optimal scope, allows you fall asleep safely.You are never again because perspire at overheated or night and kick open quilt.Make you can easily enter sweet dreamland.
Footwear: shoes, boots and shoe-pad.Pin is health maximum place of sweating.Owing to the overheated sweat that causes accumulates both feet are bubbled, peculiar smell is arranged, also can feel cold.The intelligent thermoregulating footwear can reduce by 44% the amount of sweating, and makes your both feet feel more comfortable.
Clothes decoration articles: gloves, socks and cap.Your head, both hands and both feet are very responsive to cold.The intelligent lining of intelligent thermoregulating and fabric can make you feel more comfortable, and are difficult for flexible.

Claims (2)

1. the blended yarn of an intelligent temperature adjusting fiber is a main raw material with the temperature-adjusting viscose, it is characterized in that: adopt temperature-adjusting viscose and cotton fiber blending to form, the length of temperature-adjusting viscose is 38mm, and cotton length is 29~39mm.
2. the blended yarn of intelligent temperature adjusting fiber according to claim 1, it is characterized in that: the fineness of described temperature-adjusting viscose is 1.67dtex, the fineness of cotton fiber is 1.4dtex.
CN2010201677596U 2010-04-23 2010-04-23 Blended yarn for intelligent temperature-adjustable fibers Expired - Fee Related CN201890972U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103352292A (en) * 2012-04-10 2013-10-16 南通天雁时装有限公司 Intelligent temperature-regulating fabric
CN103668673A (en) * 2013-12-04 2014-03-26 苏州新米纺织咨询服务有限公司 Novel fabric
CN114438638A (en) * 2021-12-30 2022-05-06 际华三五零九纺织有限公司 Functional viscose blended yarn and preparation method and application thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103352292A (en) * 2012-04-10 2013-10-16 南通天雁时装有限公司 Intelligent temperature-regulating fabric
CN103668673A (en) * 2013-12-04 2014-03-26 苏州新米纺织咨询服务有限公司 Novel fabric
CN114438638A (en) * 2021-12-30 2022-05-06 际华三五零九纺织有限公司 Functional viscose blended yarn and preparation method and application thereof

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Granted publication date: 20110706

Termination date: 20140423