CN103040170B - Touch screen conductive glove and production method thereof - Google Patents

Touch screen conductive glove and production method thereof Download PDF

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Publication number
CN103040170B
CN103040170B CN201310018929.2A CN201310018929A CN103040170B CN 103040170 B CN103040170 B CN 103040170B CN 201310018929 A CN201310018929 A CN 201310018929A CN 103040170 B CN103040170 B CN 103040170B
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fiber
conductive
touch screen
polyester
yarn
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CN103040170A (en
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庞明军
朱俊伟
李翠萍
杨国荣
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China Textile Academy (Zhejiang) Technology Research Institute Co. Ltd.
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China Textile Academy Shaoxing Jiangnan Branch China Textile Academy Co Ltd
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Abstract

The invention discloses a touch screen conductive glove and a production method thereof. The touch screen conductive glove comprises a wrist portion, a palm portion and a fingerprint portion and is characterized in that the fingerprint portion adopts a conductive yarn. The conductive yarn is composed of the following components by weight: 16%-50% of conductive fiber, 10%-40% of functional polyester fiber and 15%-45% of acrylic fiber. The touch screen conductive glove has the advantages of being soft in hand feel, excellent in conductive performance, not apt to pilling and the like.

Description

A kind of touch screen conductive glove and production method thereof
Technical field:
The present invention relates to a kind of gloves, especially relate to a kind of touch screen conductive glove and production method thereof.
Background technology:
21 century, touch screen electronic component changed the life style of people, the especially application of the capacitive touch screens electronic component such as smart mobile phone, ATM, television set.Capacitive touch screen is particulate metal conductive materials sticking layer of transparent at glass surface.When finger touch on the metal layer time, the electric capacity of contact can change, and the oscillator frequency be attached thereto is changed, and can determine that touch location obtains information by measuring frequency change, people, by finger touch screen, can control smart mobile phone, ATM, television set.But if there is an insulator in the middle of touch-screen and human body, so capacitor will lose efficacy, and human body just can not control touch screen machine.So when people put on one's gloves, touch screen machine just can not work.Also can realize controlling touch screen machine for not removing gloves, people devise a kind of touch-screen glove of conducting function.
At present, be applicable to the touch-screen glove of capacitive touch screen, its principle is all in silk fabrics gloves, mix the wire of conduction, as a kind of processing technology touching gloves of Chinese patent 201110241042.0, the capacitance plate of Chinese patent 201220003563.2 touches gloves, and a kind of capacitive screens of Chinese patent 201220053559.7 touches gloves.
Such touch-screen glove, owing to being mixed with wire in gloves---as conventional filamentary silver, like this, the finger being mixed with gloves wiry and people forms path, thus carrys out control capacitance touch-screen product.
But also there are some problems in wire cloth gloves: due to wire mix with fiber in woven, exposed wire easily spoils touch screen in use, thus the capacitive touch screens electronic components such as smart mobile phone, ATM, television set are easily destroyed, affect appearance.Simultaneously such touch-screen glove fabric is by the restriction of textile and weaving, easy balling-up, and warmth retention property is poor, and with the increase of fabric thickness, Consumer's Experience deleterious.So needs invention one is soft, electric conductivity is excellent, the touch screen conductive glove of not easily balling-up.
Summary of the invention:
First aspect present invention object is to provide a kind of touch screen conductive glove, comprises wrist portion, palmar hand, finger section, it is characterized in that: described finger section adopts conductive yam, and described conductive yam, comprises following composition by weight percentage:
Conductive fiber 16%-50%
Functional polyalkylene ester fiber 10%-40%
Acrylic fiber 15%-45%.
Further setting is: the finger fingertip part of described finger section adopts conductive yam to be made into.
The width of finger section is 0.8cm-1.2cm, and wherein, the tip portion length of finger section is 0.5cm-0.8cm.
Described conductive fiber is the conductive fiber that China Textile Academy produces, and length is 38mm-51mm, and fineness is 2D-3D, fracture strength>=2.0cN/tex, by force irregular≤6.0%, elongation at break: 40-90%, surface resistivity: 10 4-10 8ohm.
Described functional polyalkylene ester fiber is hydroscopic fast-drying, anti pilling, anti-ultraviolet function type polyester fiber, anti-pilling property >=3.5 grade, uvioresistant ability UPF > 50, (UVA) transmittance 0.1%.
Described acrylic fiber fibre fineness is 1.5D-3D, and fibre length is the acrylic fiber of 38mm-51mm, fracture strength >=2.7 cN/tex.
The material of described wrist portion adopts polyester hair yarn or scribbled, and fabric tissue adopts knitted fabric rib construction.
The material of palmar hand is polyester hair yarn or wool yarn or functional polyester yarn or scribbled, and fabric tissue is knitted fabric weft plain weave or figured texture weave.
Described scribbled, comprises following composition by weight percentage:
Acrylic fiber 20%-50%
Polyester fiber 15%-30%
Functional fiber 15%-30%
Wool fiber 10%-40%;
Described acrylic fiber is fibre fineness is 1.5D-3D, and fibre length is the acrylic fiber of 38mm-51mm, fracture strength >=2.7 cN/tex;
Described polyester fiber is fibre fineness: 1.5D-2D, and fibre length is the polyester fiber of 38mm;
Described functional polyalkylene ester fiber is anti pilling, anti-ultraviolet function type polyester fiber, anti-pilling property >=3.5 grade, uvioresistant ability UPF > 50, (UVA) transmittance 0.1%.
A second aspect of the present invention is to provide a kind of production method of aforementioned touch screen conductive glove, it is characterized in that, comprises the following steps:
(1), the preparation of conductive yam:
By conductive fiber: functional polyalkylene ester fiber: acrylic fiber 25%:35%:40% configuration by weight percentage, yarn twist is 600 sth. made by twisting, twists with the fingers and twists with the fingers to for Z; Yarn count fineness is 21S or 21S/2 or 32S/2; Spinning process is spinning process traditionally, and ring spinner spins out conductive yam;
(2), touch screen conductive glove preparation:
Polyester hair yarn, scribbled and conductive yam are weaved on weft-knitted straight-bar machines, Direct Spinning makes touch-screen glove.
Beneficial effect of the present invention is as follows:
1. conductive fiber fineness is 2D-3D, and fiber is compared with metallic conduction fiber, soft, without prodding and itching feeling, can not scratch touch screen electronic product, more easily protects the screen of touch screen electronic product.
2, the tip portion that is knitted into of conductive hybrid yarn, institutional framework is tight, and crooked phenomenon can not occur weave patterns, and touch screen sensitivity is good.
3, the depth gap structure of functional polyalkylene ester fiber used makes fiber surface coefficient of friction greatly improve, and adds the cohesive force of fiber in yarn, thus fabric anti-pilling property is improved significantly.Meanwhile, polyester fibre surface micropore can store large quantity of air, plays good thermal effect, very easily cleans.
Accompanying drawing illustrates:
Fig. 1 is the structural representation of touch screen conductive glove of the present invention.
Number in the figure: 1 is that wrist portion, 2 is palmar hand, 3 finger section, 4 are finger tip portion.
Detailed description of the invention:
Touch screen conductive glove of the present invention, comprises wrist portion 1, palmar hand 2, finger section 3.Wherein:
The material of wrist portion 1 adopts polyester hair yarn, Chenille Yarns in the present embodiment---fancy yarn, and fabric tissue adopts knitted fabric rib construction.This material and institutional framework have soft, and velvet is strong, the feature of thermal property excellence.In order to improve warmth retention property and easy to use, wrist portion 1 can be set to elastic construction or stretching structure, as by arranging some tension belts side by side or elastic webbing in the appearance of wrist portion 1, under the effect of tension belt convergent force, gloves can be allowed to be adjacent to both hands, be not easy skating to drop, the thermal effect simultaneously played.
The material of palmar hand 2 is polyester hair yarn or wool yarn or functional polyester yarn or scribbled composition, and fabric tissue is knitted fabric weft plain weave or figured texture weave.
As preferred embodiment:
Palmar hand 2 and Toe Transplantation for Segmental Finger portion 3(finger section 3 tip portion still adopt conductive yam) adopt scribbled, its advantage is: soft on the one hand, and velvet is very strong, and thermal property is excellent; On the other hand, there is good uvioresistant and anti-fluffing and anti-pilling function.
Described scribbled, comprises following composition by weight percentage:
Acrylic fiber 20%-50%
Polyester fiber 15%-30%
Functional fiber 15%-30%
Wool fiber 10%-40%.
Described acrylic fiber is fibre fineness is 1.5D-3D, and fibre length is the acrylic fiber of 38mm-51mm, fracture strength >=2.7 cN/tex.
Polyester fiber is fibre fineness: 1.5D-2D, and fibre length is the polyester fiber of 38mm.
Described functional polyalkylene ester fiber is anti pilling, anti-ultraviolet function type polyester fiber.As hydroscopic fast-drying, anti pilling, the anti-ultraviolet function type polyester fiber of the production that China Textile Academy produces, this fiber has unique microscopic pattern and the sense of touch close to natural fiber, have the advantage of natural fiber and polyester concurrently, anti-pilling property >=3.5 grade, uvioresistant ability UPF > 50, (UVA) transmittance 0.1%.
Wool fiber is wool fiber conventional on market.
The all or part of employing conductive yam material of finger section 3, in the present embodiment, only finger fingertip part adopts conductive yam, like this in order to obtain good electric conductivity and comfort simultaneously, conveniently use, can be canescence or Dark grey or colour by the conductive yam color mark of finger of glove nose part, come to distinguish with other parts of gloves.
The width of finger section 3 is 0.8cm-1.2cm, and wherein, the tip portion length of finger section 3 is 0.5cm-0.8cm, is formed by cross machine knitting.
The described conductive yam for weaving tip portion adopts conductive fiber to be formed by weaving, or adopt conductive fiber, polyester, acrylic fiber blending form.Add up according to result of use: when the consumption of conductive fiber is between 16%-50%, good touch screen sensitivity can be obtained.Therefore, consider the performance being conducive to the conductive fiber conducting function of touch-screen glove on the one hand, on the other hand production control cost, selecting the conductive yam of conductive fiber and other fiber blends, is preferred embodiment.Below provide a kind of preferred embodiment of conductive yam of the present invention.
Described conductive yam, comprises following composition by weight percentage:
Conductive fiber 16%-50%
Functional polyalkylene ester fiber 10%-40%
Acrylic fiber 15%-45%.
Wherein, described conductive fiber is the conductive fiber that China Textile Academy produces, and length is 38mm-51mm, and fineness is 2D-3D, fracture strength>=2.0cN/tex, by force irregular≤6.0%, elongation at break: 40-90%, surface resistivity: 10 4-10 8ohm.
Described functional polyalkylene ester fiber is hydroscopic fast-drying, anti pilling, anti-ultraviolet function type polyester fiber.As hydroscopic fast-drying, anti pilling, the anti-ultraviolet function type polyester fiber of the production that China Textile Academy produces, this fiber has unique microscopic pattern and the sense of touch close to natural fiber, have the advantage of natural fiber and polyester concurrently, anti-pilling property >=3.5 grade, uvioresistant ability UPF > 50, (UVA) transmittance 0.1%.
Described acrylic fiber fibre fineness is 1.5D-3D, and fibre length is the acrylic fiber of 38mm-51mm, fracture strength >=2.7 cN/tex.
Touch screen conductive glove of the present invention, its production method is as follows:
(1), the preparation of conductive yam:
By conductive fiber: functional polyalkylene ester fiber: acrylic fiber 25%:35%:40% configuration by weight percentage, yarn twist is 600 sth. made by twisting, twists with the fingers and twists with the fingers to for Z; Yarn count fineness is 21S or 21S/2 or 32S/2; Spinning process is spinning process traditionally, and ring spinner spins out conductive yam;
(2), touch screen conductive glove preparation:
Polyester hair yarn, scribbled and conductive yam are weaved on weft-knitted straight-bar machines, Direct Spinning makes touch-screen glove.

Claims (2)

1. a touch screen conductive glove, comprises wrist portion, palmar hand, finger section, it is characterized in that: described finger section adopts conductive yam, and described conductive yam, comprises following composition by weight percentage:
Conductive fiber 16%-50%;
Functional polyalkylene ester fiber 10%-40%;
Acrylic fiber 15%-45%;
Described conductive fiber is the conductive fiber that China Textile Academy produces, and length is 38mm-51mm, and fineness is 2D-3D, fracture strength>=2.0cN/tex, by force irregular≤6.0%, elongation at break: 40-90%, surface resistivity: 10 4-10 8ohm;
Described functional polyalkylene ester fiber is hydroscopic fast-drying, anti pilling, anti-ultraviolet function type polyester fiber, anti-pilling property >=3.5 grade, uvioresistant ability UPF > 50, transmittance UVA 0.1%;
Described acrylic fiber fibre fineness is 1.5D-3D, and fibre length is the acrylic fiber of 38mm-51mm, fracture strength >=2.7 cN/tex;
The production method of described touch screen conductive glove, comprises the following steps:
(1), the preparation of conductive yam:
By conductive fiber: functional polyalkylene ester fiber: acrylic fiber 25%:35%:40% configuration by weight percentage, yarn twist is 600 sth. made by twisting, twists with the fingers and twists with the fingers to for Z; Yarn count fineness is 21S or 21S/2 or 32S/2; Spinning process is spinning process traditionally, and ring spinner spins out conductive yam;
(2), touch screen conductive glove preparation:
Polyester hair yarn, scribbled and conductive yam are weaved on weft-knitted straight-bar machines, Direct Spinning makes touch-screen glove.
2. a kind of touch screen conductive glove according to claim 1, is characterized in that: the finger fingertip part of described finger section adopts conductive yam to be made into.
3. a kind of touch screen conductive glove according to claim 2, is characterized in that: the width of finger section is 0.8cm-1.2cm, and wherein, the tip portion length of finger section is 0.5cm-0.8cm.
4. a kind of touch screen conductive glove according to claim 1, is characterized in that: the material of wrist portion adopts polyester hair yarn or scribbled, and fabric tissue adopts knitted fabric rib construction.
5. a kind of touch screen conductive glove according to claim 1, is characterized in that: the material of palmar hand is polyester hair yarn or wool yarn or functional polyester yarn or scribbled, and fabric tissue is knitted fabric weft plain weave or figured texture weave.
6. a kind of touch screen conductive glove according to claim 4 or 5, is characterized in that: described scribbled, comprises following composition by weight percentage:
Acrylic fiber 20%-50%
Polyester fiber 15%-30%
Functional fiber 15%-30%
Wool fiber 10%-40%;
Described acrylic fiber is fibre fineness is 1.5D-3D, and fibre length is the acrylic fiber of 38mm-51mm, fracture strength >=2.7 cN/tex;
Described polyester fiber is fibre fineness: 1.5D-2D, and fibre length is the polyester fiber of 38mm;
Described functional polyalkylene ester fiber is anti pilling, anti-ultraviolet function type polyester fiber, anti-pilling property >=3.5 grade, uvioresistant ability UPF > 50, transmittance UVA 0.1%.
CN201310018929.2A 2013-01-18 2013-01-18 Touch screen conductive glove and production method thereof Active CN103040170B (en)

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Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104256957B (en) * 2014-09-05 2016-02-17 京东方科技集团股份有限公司 A kind of Intelligent glove
US11359309B2 (en) 2018-12-21 2022-06-14 Target Brands, Inc. Ring spun yarn and method
CN111379056A (en) * 2018-12-27 2020-07-07 苏州迪塔杉针织有限公司 Conductive fiber for mobile phone touch glove and manufacturing method thereof
CN114158804B (en) * 2021-11-22 2024-05-14 鸿瀚防护科技南通有限公司 Biodegradable functional environment-friendly glove and preparation method thereof

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101962862A (en) * 2010-09-26 2011-02-02 无锡恒诺针织有限公司 Knitted fabric with antistatic function and processing method thereof
CN101974815A (en) * 2010-12-01 2011-02-16 南通市苏中纺织有限公司 Acrylic fiber and wool blended yarn
CN202160702U (en) * 2011-01-06 2012-03-14 东洲贸易株式会社 Multifunctional glove
CN102409429A (en) * 2011-09-19 2012-04-11 江苏中鲈科技发展股份有限公司 Method for preparing high-comfortable composite functional polyester fiber
CN202498787U (en) * 2012-01-04 2012-10-24 周明元 Novel antibacterial touch screen gauze
CN102845872A (en) * 2012-09-26 2013-01-02 邵向阳 Heat and electricity conductive touch screen operating gloves

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202489241U (en) * 2011-12-21 2012-10-17 顾存阳 Scratch-proof touch screen gloves
CN202445186U (en) * 2012-02-21 2012-09-26 湖州环球手套有限公司 Touch-screen anti-skidding mechanical gloves

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101962862A (en) * 2010-09-26 2011-02-02 无锡恒诺针织有限公司 Knitted fabric with antistatic function and processing method thereof
CN101974815A (en) * 2010-12-01 2011-02-16 南通市苏中纺织有限公司 Acrylic fiber and wool blended yarn
CN202160702U (en) * 2011-01-06 2012-03-14 东洲贸易株式会社 Multifunctional glove
CN102409429A (en) * 2011-09-19 2012-04-11 江苏中鲈科技发展股份有限公司 Method for preparing high-comfortable composite functional polyester fiber
CN202498787U (en) * 2012-01-04 2012-10-24 周明元 Novel antibacterial touch screen gauze
CN102845872A (en) * 2012-09-26 2013-01-02 邵向阳 Heat and electricity conductive touch screen operating gloves

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Address after: Century Paojiang Industrial Zone Yuecheng Street 312000 Zhejiang city of Shaoxing Province

Patentee after: China Textile Academy (Zhejiang) Technology Research Institute Co. Ltd.

Address before: 312000 Zhejiang Province, Shaoxing City Paojiang New District Center Avenue intersection together on the third floor A319 room

Patentee before: China Textile Academy Shaoxing Jiangnan Branch, China Textile Academy Co., Ltd.

CP03 Change of name, title or address