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TWM458941U - Three-dimensional electrically conductive fabric structure - Google Patents

Three-dimensional electrically conductive fabric structure Download PDF

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Publication number
TWM458941U
TWM458941U TW102202516U TW102202516U TWM458941U TW M458941 U TWM458941 U TW M458941U TW 102202516 U TW102202516 U TW 102202516U TW 102202516 U TW102202516 U TW 102202516U TW M458941 U TWM458941 U TW M458941U
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TW
Taiwan
Prior art keywords
yarns
yarn
elastic
conductive
structural
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TW102202516U
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Chinese (zh)
Inventor
Hong-Xu Huang
Yi-Zhen Su
Jin-Mu Xiao
Shun-Tong Yang
rong-xiang Peng
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Kings Metal Fiber Technologies
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Priority to TW102202516U priority Critical patent/TWM458941U/en
Publication of TWM458941U publication Critical patent/TWM458941U/en

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Description

三維導電織物結構Three-dimensional conductive fabric structure

本創作係有關於一種三維導電織物結構,特別係有關一種同時具有彈性及導電功效之三維導電織物結構。The present invention relates to a three-dimensional conductive fabric structure, in particular to a three-dimensional conductive fabric structure having both elastic and conductive effects.

如第1圖所示,習知用於生理檢測之偵測元件1係包括一基層10及一設於基層之導電層11,使用時係以導電層貼合人體皮膚,以偵測人體所發出之訊號,然而,此種偵測元件1之導電層11之彈性不佳且與人體皮膚之間的導電效果十分不良,因此無法偵測人體所發出之訊號且穿戴不舒適,如第2圖所示,緣是,後續便將之改良,於導電層11與基層10之間加入彈性層12,以彈性層12來提高導電層11與人體皮膚之間接觸的密合度且同時以保濕材質製成使其同時具有保濕效果,以其提高導電層11之導電效果,然而,由於彈性層12與導電層11係分開之兩層,當彈性層12欲吸收外界水份時需透過導電層11,故吸水效果會受影響,當彈性層12釋放水份至導電層11與人體皮膚之間時,亦會受導電層11之阻擋而影響其水份釋放,此外,由於彈性層12與導電層11藉由外力結合(如黏合)之兩層,因此長期在彈性層12高濕度的影響下容易分離,亦會使偵測元件1失去原有功效。As shown in FIG. 1 , the detecting element 1 for physiological detection includes a base layer 10 and a conductive layer 11 disposed on the base layer. When used, the conductive layer is applied to the human skin to detect the human body. However, the conductive layer 11 of the detecting element 1 has poor elasticity and poor electrical conductivity with human skin, so that it is impossible to detect the signal emitted by the human body and is uncomfortable to wear, as shown in Fig. 2. The edge is improved by adding an elastic layer 12 between the conductive layer 11 and the base layer 10, and the elastic layer 12 is used to improve the adhesion between the conductive layer 11 and the human skin, and at the same time is made of a moisturizing material. It has a moisturizing effect at the same time, so as to improve the conductive effect of the conductive layer 11, however, since the elastic layer 12 and the conductive layer 11 are separated by two layers, when the elastic layer 12 is intended to absorb the external moisture, it is required to pass through the conductive layer 11, The water absorbing effect is affected. When the elastic layer 12 releases moisture between the conductive layer 11 and the human skin, it is also blocked by the conductive layer 11 to affect its moisture release. Further, since the elastic layer 12 and the conductive layer 11 are borrowed Combined by external force (such as bonding) , So long separated readily under the influence of high humidity elastic layer 12, detection element 1 will also lose their effectiveness.

有鑑於此,本創作人乃潛心研思、設計組製,期能提供一種具有彈性、導電及保濕功效之結構,以達到提高導電品質及產品壽命之目 的,為本創作所欲研創之創作動機者。In view of this, the creator is devoted to research and design, and can provide a structure with elasticity, conductivity and moisturizing effect to achieve the purpose of improving conductive quality and product life. , for the creative motives of the creative research.

本創作之主要目的,在於提供一種一體編成且具有彈性及導電功效之三維導電織物結構。The main purpose of the present invention is to provide a three-dimensional conductive fabric structure which is integrally formed and has elasticity and electrical conductivity.

本創作之次要目的,在於提供一種具有保濕功效之三維導電織物結構。The secondary purpose of this creation is to provide a three-dimensional conductive fabric structure with moisturizing effect.

為達上述目的,本創作之三維導電織物結構,包括一彈性導電組織,係由複數條第一結構紗、複數條第一彈性紗及複數條導電紗交錯編織而成,其中,一條第一結構紗與一條第一彈性紗係同股編織,且與一條導電紗間隔編織;一基層組織,係由複數條第二結構紗及第二彈性紗交錯編織而成,且一條第二結構紗與一條第二彈性紗係同股編織;以及一支撐組織,係由複數條第一支撐紗及複數條第二支撐紗構成,並連接於該彈性導電組織與該基層組織之間,其中,每一條第一支撐紗皆與一條第一結構紗及一條第一彈性紗同股編織,再延伸至該基層組織與一條第二結構紗及一條第二彈性紗同股編織,每一條第二支撐紗階與一條導電紗同股編織,再延伸至該基層組織與該第一支撐紗編織處相間隔之一條第二結構紗及一條第二彈性紗同股編織。In order to achieve the above object, the three-dimensional conductive fabric structure of the present invention comprises an elastic conductive structure, which is formed by interlacing a plurality of first structural yarns, a plurality of first elastic yarns and a plurality of conductive yarns, wherein a first structure The yarn is woven with the first elastic yarn in the same strand and is woven with a conductive yarn; a base structure is formed by interlacing a plurality of second structural yarns and a second elastic yarn, and a second structural yarn and a strip. The second elastic yarn is woven in the same strand; and a supporting structure is composed of a plurality of first supporting yarns and a plurality of second supporting yarns, and is connected between the elastic conductive tissue and the base tissue, wherein each a support yarn is woven with a first structural yarn and a first elastic yarn in the same strand, and then extended to the base structure and a second structural yarn and a second elastic yarn are woven together, each second support yarn step and A conductive yarn is woven in the same strand, and then extended to the base structure to be woven by a second structural yarn and a second elastic yarn which are spaced apart from the first support yarn weave.

承上所述之三維導電織物結構,其中,該些第一結構紗及該些第二結構紗係為聚酯紗、多孔性纖維紗、海藻酸鈉纖維紗、羧甲基纖維素纖維紗以及嫘縈纖維紗其中之一。The three-dimensional conductive fabric structure, wherein the first structural yarns and the second structural yarns are polyester yarn, porous fiber yarn, sodium alginate fiber yarn, carboxymethyl cellulose fiber yarn, and One of the fiber yarns.

承上所述之三維導電織物結構,其中,該些導電紗係為金屬纖維紗、奈米碳管纖維紗及碳纖維紗其中之一。The three-dimensional conductive fabric structure is described, wherein the conductive yarns are one of metal fiber yarns, carbon nanotube fibers, and carbon fiber yarns.

承上所述之三維導電織物結構,該些第一彈性紗及該些第二彈性紗係為聚氨酯彈性紗。In the three-dimensional conductive fabric structure, the first elastic yarns and the second elastic yarns are polyurethane elastic yarns.

承上所述之三維導電織物結構,其中,該些第一支撐紗及該些第二支撐紗係為聚酯紗及尼龍紗其中之一。The three-dimensional conductive fabric structure is described, wherein the first support yarns and the second support yarns are one of a polyester yarn and a nylon yarn.

承上所述之三維導電織物結構,其中,該些第一結構紗、該些第一彈性紗及該些導電紗係藉由針織方式交錯編織成該彈性導電組織者。The three-dimensional conductive fabric structure is described, wherein the first structural yarns, the first elastic yarns, and the conductive yarns are interwoven by the knitting method into the elastic conductive tissue.

承上所述之三維導電織物結構,其中,該些第二結構紗及該些第二彈性紗係藉由針織方式交錯編織成該基層組織者。The three-dimensional conductive fabric structure is described, wherein the second structural yarns and the second elastic yarns are interwoven by the knitting method into the base layer organizer.

如上所述之三維導電織物結構,藉由該彈性導電組織、該基層組織以及該支撐組織係一體編織成該三維導電織物結構使其於同一平面體織物中同時具有彈性及導電之功效,並藉由混紡具有保濕效果之結構紗使其同時具有保濕之功效。The three-dimensional conductive fabric structure as described above is integrally woven into the three-dimensional conductive fabric structure by the elastic conductive structure, the base layer structure and the supporting tissue structure to have both elastic and conductive effects in the same planar body fabric, and The structure yarn which has a moisturizing effect by blending has the effect of moisturizing at the same time.

為了能夠更進一步瞭解本創作之特徵、特點和技術內容,請參閱以下有關本創作之詳細說明與附圖,惟所附圖式僅提供參考與說明用,非用以限制本創作。In order to further understand the features, features and technical contents of the present invention, please refer to the following detailed description of the present invention and the accompanying drawings, which are only for reference and description, and are not intended to limit the present invention.

<習知><知知>

1‧‧‧偵測元件1‧‧‧Detecting components

10‧‧‧基層10‧‧‧ grassroots

11‧‧‧導電層11‧‧‧ Conductive layer

12‧‧‧彈性層12‧‧‧Elastic layer

<本創作><this creation>

20‧‧‧彈性導電組織20‧‧‧Elastic conductive organization

30‧‧‧支撐組織30‧‧‧Support organization

40‧‧‧基層組織40‧‧‧ grassroots organizations

200‧‧‧第一結構紗200‧‧‧First structural yarn

201‧‧‧第一彈性紗201‧‧‧First elastic yarn

202‧‧‧導電紗202‧‧‧Conductor yarn

300‧‧‧第一支撐紗300‧‧‧First support yarn

301‧‧‧第二支撐紗301‧‧‧second support yarn

400‧‧‧第二結構紗400‧‧‧Second structural yarn

401‧‧‧第二彈性紗401‧‧‧Second elastic yarn

第1圖係為習知用於生理檢測之偵測元件之側視圖。Figure 1 is a side view of a conventional detection element for physiological detection.

第2圖係為習知用於生理檢測之偵測元件之側視圖。Figure 2 is a side view of a conventional detection element for physiological detection.

第3圖係為本創作三維導電織物結構之示意圖。Fig. 3 is a schematic view showing the structure of the three-dimensional conductive fabric.

第4圖係為本創作三維導電織物結構之局部放大立體圖。Fig. 4 is a partially enlarged perspective view showing the structure of the three-dimensional conductive fabric.

第5圖係為本創作三維導電織物結構之局部放大側剖面圖。Figure 5 is a partially enlarged side cross-sectional view showing the structure of the three-dimensional conductive fabric.

請參閱第3圖,係為本創作三維導電織物結構之立體圖;如圖所示,於本實施例中,本創作之三維導電織物結構,包括一彈性導電組織20、一支撐組織30以及一基層組織40,上述三者一體編成該三維導電織物結構,該支撐組織30位於該彈性導電組織20與該基層組織40之間並連接兩者。Please refer to FIG. 3, which is a perspective view of the three-dimensional conductive fabric structure. As shown in the figure, in the present embodiment, the three-dimensional conductive fabric structure of the present invention comprises an elastic conductive structure 20, a supporting structure 30 and a base layer. The tissue 40 is integrally formed into the three-dimensional conductive fabric structure, and the support structure 30 is located between the elastic conductive structure 20 and the base tissue 40 and connects the two.

請參閱第4圖,係為本創作三維導電織物結構之局部放大立體圖;如圖所示,該彈性導電組織20,係由複數條第一結構紗200、複數條第一彈性紗201及複數條導電紗202交錯編織而成,其中,一條第一結構紗200與一條第一彈性紗201係同股編織,且與一條導電紗202間隔編織,此外,該些第一結構紗200、該些第一彈性紗201及該些導電紗202係藉由針織方式交錯編織成該彈性導電組織20;該基層組織40,係由複數條第二結構紗400及第二彈性紗401交錯編織而成,且一條第二結構紗400與一條第二彈性紗401係同股編織;該支撐組織30,係由複數條第一支撐紗300及複數條第二支撐紗301構成,並連接於該彈性導電組織20與該基層組織40之間,其中,每一條第一支撐紗300係與一條第一結構紗200及一條第一彈性紗201同股編織,再延伸至該基層組織40與一條第二結構紗400及一條第二彈性紗401同股編織,每一條第二支撐紗301係與一條導電紗202同股編織,再延伸至該基層組織40與該第一支撐紗編織處相間隔之一條第二結構紗400及一條第二彈性紗401同股編織,該些第一支撐紗300及該些第二支撐紗301交錯構成之結構使本創作之三維導電織物結構更具有彈性,當作成穿戴物時可讓穿戴者更舒適,此外,該些第一支撐紗300及該些第二 支撐紗301所形成之微小腔室亦具有保濕之效果,有助於提高導電效果。Please refer to FIG. 4, which is a partially enlarged perspective view of the three-dimensional conductive fabric structure of the present invention; as shown, the elastic conductive structure 20 is composed of a plurality of first structural yarns 200, a plurality of first elastic yarns 201 and a plurality of strips. The conductive yarns 202 are interlaced, wherein a first structural yarn 200 is knitted in the same strand as the first elastic yarn 201, and is woven with a conductive yarn 202. In addition, the first structural yarns 200, the first An elastic yarn 201 and the conductive yarns 202 are interlaced into the elastic conductive structure 20 by knitting; the base structure 40 is interlaced by a plurality of second structural yarns 400 and a second elastic yarn 401, and A second structural yarn 400 and a second elastic yarn 401 are knitted in the same strand; the supporting structure 30 is composed of a plurality of first supporting yarns 300 and a plurality of second supporting yarns 301, and is connected to the elastic conductive structure 20 And the base structure 40, wherein each of the first support yarns 300 is woven with a first structural yarn 200 and a first elastic yarn 201 in the same strand, and then extended to the base structure 40 and a second structural yarn 400. And a second bomb The yarns 401 are woven with the same strands, and each of the second support yarns 301 is knitted with the same one of the conductive yarns 202, and then extended to the base structure 40 and the first support yarn weaving portion is separated by a second structural yarn 400 and a first The two elastic yarns 401 are woven in the same strand, and the first supporting yarns 300 and the second supporting yarns 301 are alternately configured to make the three-dimensional conductive fabric structure of the present invention more elastic, and the wearer can be more comfortable when used as a wearing object. In addition, the first support yarns 300 and the second ones The micro-chamber formed by the support yarn 301 also has a moisturizing effect, which contributes to an improvement in the electric conduction effect.

請參閱第5圖,係為本創作三維導電織物結構之局部放大側剖面圖;如圖所示,該彈性導電組織20,係由複數條第一結構紗200、複數條第一彈性紗201及複數條導電紗202交錯編織而成,且一條第一結構紗200與一條第一彈性紗201係同股編織,且與一條導電紗202間隔編織,故當整個三維導電織物結構編織完成後,紗線上之拉力消失,此時第一彈性紗201會緊縮並將導電紗202向外擠壓,使導電紗202較為突出於整個彈性導電組織20之表面,此效果可以確保當織物與人體接觸時,導電紗202會先與人體接觸,而使本創作之三維導電織物結構具有更佳的偵測效果。Please refer to FIG. 5 , which is a partially enlarged side sectional view of the three-dimensional conductive fabric structure of the present invention; as shown, the elastic conductive structure 20 is composed of a plurality of first structural yarns 200 , a plurality of first elastic yarns 201 , and A plurality of conductive yarns 202 are interlaced, and a first structural yarn 200 is woven in the same strand as a first elastic yarn 201, and is woven with a conductive yarn 202. Therefore, when the entire three-dimensional conductive fabric structure is woven, the yarn is completed. The pulling force on the line disappears, at which time the first elastic yarn 201 is tightened and the conductive yarn 202 is pressed outward, so that the conductive yarn 202 protrudes more than the surface of the entire elastic conductive structure 20, which ensures that when the fabric is in contact with the human body, The conductive yarn 202 is first brought into contact with the human body, so that the three-dimensional conductive fabric structure of the present invention has a better detection effect.

該第一結構紗200及該第二結構紗400係為聚酯紗(polyester yarn)、多孔性纖維紗(porous fiber yarn)、海藻酸鈉纖維紗(alginate fiber yarn)、羧甲基纖維素纖維紗(carboxymethyl cellulose fiber yarn)以及嫘縈纖維紗(rayon fiber yarn)其中之一,其中,多孔性纖維紗、海藻酸鈉纖維紗、羧甲基纖維素纖維紗以及嫘縈纖維紗具有保濕之效果,故第一結構紗200及第二結構紗400選用上束四種材質時,可使本創作之三維導電織物結構同時具有彈性、保濕及導電之功效。The first structural yarns 200 and the second structural yarns 400 are polyester yarns, porous fiber yarns, alginate fiber yarns, and carboxymethyl cellulose fibers. One of carboxymethyl cellulose fiber yarn and rayon fiber yarn, in which porous fiber yarn, sodium alginate fiber yarn, carboxymethyl cellulose fiber yarn, and crepe fiber yarn have a moisturizing effect. Therefore, when the first structural yarn 200 and the second structural yarn 400 are selected from the four materials, the three-dimensional conductive fabric structure of the present invention can simultaneously have the functions of elasticity, moisturizing and electric conduction.

該些第一彈性紗201及該些第二彈性紗401係為聚氨酯彈性紗(spandex yarn),該些導電紗202係為金屬纖維紗(metal fiber yarn)、奈米碳管纖維紗(carbon nanotube firber yarn)及碳纖維紗(carbon fiber yarn)其中之一,該些第一支撐紗300及該些第二支撐紗301係為聚酯紗(polyester yarn)及尼龍紗(nylon yarn)其中之一。The first elastic yarns 201 and the second elastic yarns 401 are polyurethane elastic yarns, and the conductive yarns 202 are metal fiber yarns and carbon nanotubes. The first support yarn 300 and the second support yarns 301 are one of a polyester yarn and a nylon yarn.

以上所述僅為本創作之較佳可行實施例,非因此即侷限本創 作之專利範圍,舉凡運用本創作說明書及圖式內容所為之等效結構變化,均理同包含於本創作之範圍內,合予陳明。The above description is only a preferred and feasible embodiment of the present invention, and thus is not limited to the original The scope of the patents, the equivalent structural changes made by the use of this creation manual and the contents of the drawings are all included in the scope of this creation and are combined with Chen Ming.

20‧‧‧彈性導電組織20‧‧‧Elastic conductive organization

30‧‧‧支撐組織30‧‧‧Support organization

40‧‧‧基層組織40‧‧‧ grassroots organizations

200‧‧‧第一結構紗200‧‧‧First structural yarn

201‧‧‧第一彈性紗201‧‧‧First elastic yarn

202‧‧‧導電紗202‧‧‧Conductor yarn

300‧‧‧第一支撐紗300‧‧‧First support yarn

301‧‧‧第二支撐紗301‧‧‧second support yarn

400‧‧‧第二結構紗400‧‧‧Second structural yarn

401‧‧‧第二彈性紗401‧‧‧Second elastic yarn

Claims (8)

一種三維導電織物結構,包括:一彈性導電組織,係由複數條第一結構紗、複數條第一彈性紗及複數條導電紗交錯編織而成,其中,一條第一結構紗與一條第一彈性紗係同股編織,且與一條導電紗間隔編織;一基層組織,係由複數條第二結構紗及複數條第二彈性紗交錯編織而成,且一條第二結構紗與一條第二彈性紗係同股編織;以及一支撐組織,係由複數條第一支撐紗及複數條第二支撐紗構成,並連接於該彈性導電組織與該基層組織之間,其中,每一條第一支撐紗皆與一條第一結構紗及一條第一彈性紗同股編織,再延伸至該基層組織並與一條第二結構紗及一條第二彈性紗同股編織,每一條第二支撐紗皆與一條導電紗同股編織,再延伸至該基層組織與該第一支撐紗編織處相間隔之一條第二結構紗及一條第二彈性紗同股編織。A three-dimensional conductive fabric structure comprises: an elastic conductive structure, which is formed by interlacing a plurality of first structural yarns, a plurality of first elastic yarns and a plurality of conductive yarns, wherein a first structural yarn and a first elastic yarn The yarn is woven with the same strand and woven with a conductive yarn; a base structure is formed by interlacing a plurality of second structural yarns and a plurality of second elastic yarns, and a second structural yarn and a second elastic yarn And a support structure, comprising a plurality of first support yarns and a plurality of second support yarns, and connected between the elastic conductive structure and the base tissue, wherein each of the first support yarns And a first structural yarn and a first elastic yarn are woven in the same strand, and then extended to the base structure and woven with a second structural yarn and a second elastic yarn, each of the second supporting yarns and a conductive yarn The same strand is woven, and then extended to the base layer tissue and the first support yarn weaving portion is spaced apart from the first structural yarn and the second elastic yarn is woven in the same strand. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些第一結構紗及該些第二結構紗係為聚酯紗、多孔性纖維紗、海藻酸鈉纖維紗、羧甲基纖維素纖維紗以及嫘縈纖維紗其中之一。The three-dimensional conductive fabric structure according to claim 1, wherein the first structural yarns and the second structural yarns are polyester yarn, porous fiber yarn, sodium alginate fiber yarn, and carboxymethyl group. One of cellulose fiber yarns and rayon yarns. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些導電紗係為金屬纖維紗、奈米碳管纖維紗及碳纖維紗其中之一。The three-dimensional conductive fabric structure according to claim 1, wherein the conductive yarns are one of a metal fiber yarn, a carbon nanotube fiber yarn and a carbon fiber yarn. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些第一彈性紗及該些第二彈性紗係為聚氨酯彈性紗。The three-dimensional conductive fabric structure of claim 1, wherein the first elastic yarns and the second elastic yarns are polyurethane elastic yarns. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些第一支撐紗及該些第二支撐紗係為聚酯紗及尼龍紗其中之一。The three-dimensional conductive fabric structure of claim 1, wherein the first support yarns and the second support yarns are one of a polyester yarn and a nylon yarn. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些第一結構紗、該些第一彈性紗及該些導電紗係藉由針織方式交錯編織成該彈性導電組織者。The three-dimensional conductive fabric structure according to claim 1, wherein the first structural yarns, the first elastic yarns, and the conductive yarns are interlaced by the knitting method into the elastic conductive structure. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些第二結構紗及該些第二彈性紗係藉由針織方式交錯編織成該基層組織者。The three-dimensional conductive fabric structure of claim 1, wherein the second structural yarns and the second elastic yarns are interwoven by the knitting method into the base layer organizer. 如申請專利範圍第1項所述之三維導電織物結構,其中,該些導電紗突出於整個彈性導電組織之表面。The three-dimensional conductive fabric structure of claim 1, wherein the conductive yarns protrude from the surface of the entire elastic conductive structure.
TW102202516U 2013-02-06 2013-02-06 Three-dimensional electrically conductive fabric structure TWM458941U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI610001B (en) * 2015-08-28 2018-01-01 Asiatic Fiber Corp Conductive fabric
US10144193B2 (en) 2014-11-26 2018-12-04 Kinpo Electronics, Inc. Textile structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10144193B2 (en) 2014-11-26 2018-12-04 Kinpo Electronics, Inc. Textile structure
TWI610001B (en) * 2015-08-28 2018-01-01 Asiatic Fiber Corp Conductive fabric

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