TWM588142U - Textile structure - Google Patents

Textile structure Download PDF

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Publication number
TWM588142U
TWM588142U TW108210647U TW108210647U TWM588142U TW M588142 U TWM588142 U TW M588142U TW 108210647 U TW108210647 U TW 108210647U TW 108210647 U TW108210647 U TW 108210647U TW M588142 U TWM588142 U TW M588142U
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Taiwan
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hot
cloth
melt
adhesive layer
fabric structure
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TW108210647U
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Chinese (zh)
Inventor
徐育民
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莎美娜實業股份有限公司
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Priority to TW108210647U priority Critical patent/TWM588142U/en
Publication of TWM588142U publication Critical patent/TWM588142U/en

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Abstract

A textile structure is provided, including a first cloth, a second cloth and a thermal fusible filament bonding cloth. The thermal fusible filament bonding cloth is a knitting structure, which is disposed between the first cloth and the second cloth. The thermal fusible filament bonding cloth has a first surface and a second surface. The first surface locates at the first cloth, and the second surface locates at the second cloth.

Description

織物結構Fabric structure

本新型創作是有關於一種織物結構,且特別是有關於一種包括熱融絲黏合層的織物結構。The novel creation relates to a fabric structure, and more particularly to a fabric structure including a hot-melt wire adhesive layer.

在習知技術中,熱融絲為織物結構的一部分,通常將熱融絲織於織布結構中,並直接將具有熱融絲的織布相互熱壓黏合,因此,必須特別設計織物結構中熱融絲的位置及織物編織方式,才能符合成衣需求使用。由此可見,一旦黏合位置及條件改變,就必須重新設計織物結構,造成諸多不便並影響織物結構的設計彈性。基於上述,如何改善織物結構的製程便利性及設計彈性,已成為當前亟待解決的問題。In the conventional technology, the hot-melt wire is a part of the fabric structure. The hot-melt wire is usually woven in the woven structure, and the woven cloth with the hot-melt wire is directly hot-pressed and bonded to each other. Therefore, the fabric structure must be specially designed The location of the hot-melt wire and the way of weaving the fabric can be used to meet the needs of the garment. It can be seen that once the bonding position and conditions are changed, the fabric structure must be redesigned, causing a lot of inconvenience and affecting the design flexibility of the fabric structure. Based on the above, how to improve the process convenience and design flexibility of the fabric structure has become an urgent problem to be solved.

本新型創作提供一種織物結構,以熱融絲黏合層取代習知膠層或具有熱融絲的織布,因此,能夠依據成衣需求,有效地改善織物結構的製程便利性及設計彈性。The novel creation provides a fabric structure with a hot-melt silk adhesive layer instead of a conventional glue layer or a woven fabric with hot-melt silk. Therefore, the convenience of the fabric structure and the design flexibility can be effectively improved according to the needs of the garment.

本新型創作的織物結構包括第一布料、第二布料以及熱融絲黏合層。熱融絲黏合層配置於第一布料以及第二布料之間。熱融絲黏合層具有第一表面與第二表面,第一表面位於第一布料,第二表面位於第二布料,其中熱融絲黏合層為針織結構。The novel fabric structure includes a first cloth, a second cloth, and a hot-melt silk adhesive layer. The hot-melt wire adhesive layer is disposed between the first cloth and the second cloth. The hot-melt wire bonding layer has a first surface and a second surface, the first surface is located on the first cloth and the second surface is located on the second cloth, wherein the hot-melt wire bonding layer is a knitted structure.

在本新型創作的一實施例中,熱融絲黏合層的結構為單絲或複合絲。In one embodiment of the novel creation, the structure of the hot-melt wire bonding layer is monofilament or composite filament.

在本新型創作的一實施例中,熱融絲黏合層的材料為熱可塑性纖維。In one embodiment of the novel creation, the material of the hot-melt wire adhesive layer is a thermoplastic fiber.

在本新型創作的一實施例中,熱融絲黏合層的材料包括熱塑性聚酯彈性體(TPU)纖維、聚酯纖維或尼龍纖維。In an embodiment of the present invention, the material of the hot-melt wire adhesive layer includes thermoplastic polyester elastomer (TPU) fibers, polyester fibers, or nylon fibers.

在本新型創作的一實施例中,熱融絲黏合層的材料纖維細度為150 De以下。In one embodiment of the novel creation, the fineness of the material fiber of the hot-melt wire bonding layer is 150 De or less.

在本新型創作的一實施例中,熱融絲黏合層配置於離型層上。In one embodiment of the novel creation, the hot-melt wire adhesive layer is disposed on the release layer.

在本新型創作的一實施例中,以第一熱融黏合製程結合第一布料及配置有離型層的熱融絲黏合層,離型層配置於熱融絲黏合層未與第一布料結合的表面上,移除離型層之後,再以第二熱融黏合製程結合第二布料及熱融絲黏合層。In an embodiment of the novel creation, the first hot-melt bonding process is combined with the first cloth and the hot-melt wire bonding layer configured with a release layer, and the release layer is arranged in the hot-melt wire bonding layer without being combined with the first cloth. After removing the release layer, the second cloth and the hot-melt wire adhesive layer are combined in a second hot-melt and bonding process.

在本新型創作的一實施例中,第一熱融黏合製程及第二熱融黏合製程的黏合溫度為90℃至180℃,壓力為3 kg/cm 2至5 kg/cm 2,時間為10秒至30秒。 In an embodiment of the novel creation, the bonding temperature of the first hot-melt bonding process and the second hot-melt bonding process is 90 ° C to 180 ° C, the pressure is 3 kg / cm 2 to 5 kg / cm 2 , and the time is 10 Seconds to 30 seconds.

在本新型創作的一實施例中,將熱融絲黏合層配置於離型層的條件為黏合溫度為60℃至80℃或黏合時間為10秒以下。In an embodiment of the present invention, the condition for disposing the hot-melt wire adhesive layer on the release layer is a bonding temperature of 60 ° C. to 80 ° C. or a bonding time of 10 seconds or less.

在本新型創作的一實施例中,第一布料與第二布料之間具有一間隙。In an embodiment of the novel creation, there is a gap between the first cloth and the second cloth.

基於上述,本新型創作的織物結構包括配置於第一布料以及第二布料之間的熱融絲黏合層,以熱融絲黏合層取代習知膠層或改善以具有熱融絲的織布直接黏合的方式,而透過熱融絲黏合層與第一布料以及第二布料結合,無須特別設計織物結構中熱融絲的位置及織物編織方式,即可更方便地符合成衣需求使用,並避免重新設計織物結構的不便利問題。Based on the above, the novel fabric structure includes a hot-melt silk adhesive layer disposed between the first cloth and the second cloth. The hot-melt silk adhesive layer is used to replace the conventional glue layer or to improve the woven fabric with hot-melt silk directly. The method of bonding, and the combination of the hot-melt silk bonding layer with the first cloth and the second cloth, does not need to specifically design the position of the hot-melt wire in the fabric structure and the way of weaving the fabric, which can more conveniently meet the needs of the garment and avoid re-use The inconvenience of designing the fabric structure.

為讓本新型創作的上述特徵和優點能更明顯易懂,下文特舉實施例,並配合所附圖式作詳細說明如下。In order to make the above-mentioned features and advantages of the novel creation more comprehensible, embodiments are described below in detail with the accompanying drawings as follows.

有關本新型創作之前述及其他技術內容、特點與功效,在以下配合參考圖式之各實施例的詳細說明中,將可清楚的呈現。以下實施例中所提到的方向用語,例如:「上」、「下」、「前」、「後」、「左」、「右」、「底」、「頂」等,僅是參考附加圖式的方向。因此,使用的方向用語是用來說明,而並非用來限制本新型創作。並且,在下列各實施例中,相同或相似的元件將採用相同或相似的標號。The foregoing and other technical contents, features, and effects of this novel creation will be clearly presented in the following detailed description of each embodiment with reference to the drawings. The directional terms mentioned in the following examples, such as: "up", "down", "front", "back", "left", "right", "bottom", "top", etc., are for reference only. Schematic direction. Therefore, the terminology used is used to illustrate, not to limit the new creation. And, in the following embodiments, the same or similar elements will be given the same or similar reference numerals.

請參照圖1,本新型創作的織物結構包括第一布料22、第二布料24以及熱融絲黏合層10,熱融絲黏合層10配置於第一布料22以及第二布料24之間。熱融絲黏合層10具有第一表面10a與第二表面10b,第一表面10a位於第一布料22,第二表面10b位於第二布料24。在本實施例中,第一布料22與第二布料24表面完全貼合,第一布料22與第二布料24之間不具有間隙,而熱融絲黏著層10的第一表面10a與第二表面10b分別融入第一布料22與第二布料24中。然而,本新型創作並不以此為限,可藉由控制熱融絲黏著層厚度、熱壓時間及熱壓壓力,以調整織物結構中第一布料22與第二布料24之間的間隙。在下文中,將會說明第一布料22與第二布料24之間具有間隙的實施例。Please refer to FIG. 1. The fabric structure of the present invention includes a first cloth 22, a second cloth 24, and a hot-melt wire adhesive layer 10. The hot-melt wire adhesive layer 10 is disposed between the first cloth 22 and the second cloth 24. The hot-melt wire bonding layer 10 has a first surface 10 a and a second surface 10 b. The first surface 10 a is located on the first cloth 22 and the second surface 10 b is located on the second cloth 24. In this embodiment, the surfaces of the first cloth 22 and the second cloth 24 are completely fitted, there is no gap between the first cloth 22 and the second cloth 24, and the first surface 10a and the second surface of the hot-melt wire adhesive layer 10 The surface 10b is incorporated into the first cloth 22 and the second cloth 24, respectively. However, the new creation is not limited to this. The gap between the first cloth 22 and the second cloth 24 in the fabric structure can be adjusted by controlling the thickness of the hot-melt wire adhesive layer, the heat-pressing time, and the heat-pressing pressure. Hereinafter, an embodiment having a gap between the first cloth 22 and the second cloth 24 will be explained.

更詳細而言,熱融絲黏合層10為經編針織結構或是緯編針織結構,具有良好透氣性,且可加強第一布料22以及第二布料24之間的接著性。熱融絲黏合層10的材料纖維細度例如是150 De以下,材料為熱可塑性纖維,例如熱塑性聚酯彈性體(TPU)纖維、聚酯纖維或尼龍纖維,添加彈性纖維可增加織物結構的彈性,但本新型創作並不以此為限。本新型創作的熱融絲黏合層10可透過雷射切割成任意形狀,以更方便地符合成衣需求使用,更可利用不同熱融絲黏合層的組織結構及厚度以調控黏性及透氣性。In more detail, the hot-melt silk bonding layer 10 is a warp-knitted structure or a weft-knitted structure, has good air permeability, and can strengthen the adhesion between the first cloth 22 and the second cloth 24. The fineness of the material of the hot-melt bonding layer 10 is, for example, 150 De or less. The material is a thermoplastic fiber, such as thermoplastic polyester elastomer (TPU) fiber, polyester fiber, or nylon fiber. The addition of elastic fibers can increase the elasticity of the fabric structure. , But this new creation is not limited to this. The newly created hot-melt wire adhesive layer 10 can be cut into any shape by laser to more conveniently meet the needs of garments, and the tissue structure and thickness of different hot-melt wire adhesive layers can be used to adjust the viscosity and air permeability.

本新型創作的熱融絲黏合層10的結構可為單絲或複合絲,較佳是由複合絲製成,以使黏著於第一布料22與第二布料24之接觸面積增加。請參照2A、圖2B、圖2C、圖2D及圖2E,其中繪示了可用以製成熱融絲黏合層10的複合絲結構,但本新型創作並不以此為限。本新型創作所使用的複合絲是由兩種或兩種以上的纖維組合而成的一種紗線,因此,能夠同時具有兩種纖維的特性,例如可包括單一熔點複合絲、高低溫複合絲、芯鞘型複合絲、特殊複合絲或彈性熱融複合絲(利用彈性纖維與熱融絲交織,讓布料黏合後具有延展性),可運用於不同材質布料的黏合,但本新型創作並不以此為限。The structure of the hot-melt silk bonding layer 10 created by the present invention may be monofilament or composite filament, preferably made of composite filament, so as to increase the contact area adhered to the first cloth 22 and the second cloth 24. Please refer to 2A, FIG. 2B, FIG. 2C, FIG. 2D, and FIG. 2E, which illustrate the composite wire structure that can be used to make the hot-melt wire bonding layer 10, but the new creation is not limited to this. The composite yarn used in this new creation is a yarn composed of two or more fibers, so it can have the characteristics of two fibers at the same time. For example, it can include a single melting point composite yarn, high and low temperature composite yarn, Core-sheath composite yarn, special composite yarn or elastic hot-melt composite yarn (using elastic fibers and hot-melt filaments to make fabrics sticky after bonding) can be used for bonding of different materials, but this new creation does not use This is limited.

至於本新型創作之織物結構的製造流程,請先參照圖3A,熱融絲黏合層10配置於離型層12上,以使熱融絲黏合層10保持平整。本新型創作之離型層12可為一離型紙或一離型膜,針織結構的熱融絲黏合層10可以較低黏合的溫度(例如:60℃至80℃)或是較短的黏合時間(例如:10秒以下)配置於離型層12上,而使熱融絲黏合層10能保持布面平整,具有避免捲邊的功效。如圖3A所示,以第一熱融黏合製程結合第一布料22及配置有離型層12的熱融絲黏合層10,離型層12配置於熱融絲黏合層10未與第一布料22結合的表面(即,第二表面10b)上,亦即,將熱融絲黏合層10未配置離型層12的表面(即,第一表面10a)與第一布料22結合。之後,請參照圖3B,將離型層12從熱融絲黏合層10移除。接下來,請參照圖3C,以第二熱融黏合製程結合第二布料24及熱融絲黏合層10,第二布料24配置於熱融絲黏合層10未與第一布料22結合的表面(即,第二表面10b)上,即可形成本新型創作的織物結構,其中熱融絲黏合層10配置於第一布料22以及第二布料24之間。在本實施例中,第一熱融黏合製程及第二熱融黏合製程的黏合溫度例如是90℃至180℃,壓力例如是3 kg/cm 2至5 kg/cm 2,時間例如是10秒至30秒。 As for the manufacturing process of the novel fabric structure, please refer to FIG. 3A first. The hot-melt wire adhesive layer 10 is disposed on the release layer 12 to keep the hot-melt wire adhesive layer 10 flat. The release layer 12 of the novel creation can be a release paper or a release film, and the hot-melt silk adhesive layer 10 of the knitted structure can be at a lower bonding temperature (for example, 60 ° C to 80 ° C) or a short bonding time. (For example, less than 10 seconds) is disposed on the release layer 12 so that the hot-melt wire bonding layer 10 can keep the cloth surface flat and has the effect of avoiding curling. As shown in FIG. 3A, the first hot-melt bonding process is used to combine the first cloth 22 and the hot-melt wire adhesive layer 10 with a release layer 12. The release layer 12 is disposed in the hot-melt wire adhesive layer 10 and is not connected to the first cloth. 22 is bonded to the surface (ie, the second surface 10b), that is, the surface (ie, the first surface 10a) where the hot-melt wire bonding layer 10 is not provided with the release layer 12 and the first cloth 22 is bonded. After that, referring to FIG. 3B, the release layer 12 is removed from the hot-melt wire adhesive layer 10. Next, referring to FIG. 3C, the second cloth 24 and the hot-melt wire adhesive layer 10 are combined in a second hot-melt bonding process. The second cloth 24 is disposed on the surface of the hot-melt wire adhesive layer 10 that is not bonded to the first cloth 22 ( That is, on the second surface 10b), the fabric structure of the novel creation can be formed, in which the hot-melt silk adhesive layer 10 is disposed between the first cloth 22 and the second cloth 24. In this embodiment, the bonding temperature of the first hot-melt bonding process and the second hot-melt bonding process is, for example, 90 ° C. to 180 ° C., and the pressure is, for example, 3 kg / cm 2 to 5 kg / cm 2 . To 30 seconds.

請參照圖4,本實施例與上述第一實施例不同之處在於,第一布料22與第二布料24之間具有間隙30。當熱融絲黏著層10’厚度較厚或是熱壓壓力較小時,熱融絲黏著層10’的第一表面10a與第二表面10b分別融入第一布料22與第二布料24,但第一布料22與第二布料24之間具有間隙30。Referring to FIG. 4, this embodiment is different from the first embodiment described above in that a gap 30 is provided between the first cloth 22 and the second cloth 24. When the thickness of the hot-melt wire adhesive layer 10 'is thicker or the pressure of the heat pressure is small, the first surface 10a and the second surface 10b of the hot-melt wire adhesive layer 10' are respectively incorporated into the first cloth 22 and the second cloth 24, but There is a gap 30 between the first cloth 22 and the second cloth 24.

綜上所述,本新型創作提供一種織物結構,以布料層之間的熱融絲黏合層取代習知膠層或具有熱融絲的織布。熱融絲黏合層可透過雷射切割成任意形狀,以更方便地符合成衣需求使用並提升設計彈性,進而改善習知技術中需特別設計熱融絲位置及織物編織方式的不便利問題,更可利用不同熱融絲黏合層的組織結構及厚度以調控黏性及透氣性。此外,本新型創作的熱融絲黏合層可配置於離型層上,以使熱融絲黏合層在黏合的過程保持平整,避免針織結構容易捲邊的問題。To sum up, the new creation provides a fabric structure, replacing the conventional glue layer or the woven fabric with hot-melt silk with a hot-melt silk adhesive layer between the cloth layers. The hot-melt wire adhesive layer can be cut into any shape by laser to more easily meet the needs of garments and improve the design flexibility, thereby improving the inconvenience of the need to specially design the hot-melt wire position and the fabric weaving method in the conventional technology. The tissue structure and thickness of different hot-melt wire adhesive layers can be used to adjust the viscosity and air permeability. In addition, the hot-melt wire adhesive layer created by the new type can be disposed on the release layer to keep the hot-melt wire adhesive layer flat during the bonding process, and avoid the problem of easy curling of the knitted structure.

雖然本新型創作已以實施例揭露如上,然其並非用以限定本新型創作,任何所屬技術領域中具有通常知識者,在不脫離本新型創作的精神和範圍內,當可作些許的更動與潤飾,故本新型創作的保護範圍當視後附的申請專利範圍所界定者為準。Although this new type of creation has been disclosed in the above examples, it is not intended to limit the new type of creation. Any person with ordinary knowledge in the technical field can make some changes and modifications without departing from the spirit and scope of this new type of creation. Retouching, so the protection scope of this new type of creation shall be determined by the scope of the attached patent application.

10、10’‧‧‧熱融絲黏合層
10a‧‧‧第一表面
10b‧‧‧第二表面
12‧‧‧離型層
22‧‧‧第一布料
24‧‧‧第二布料
10, 10'‧‧‧ Hot-melt wire adhesive layer
10a‧‧‧first surface
10b‧‧‧Second surface
12‧‧‧ release layer
22‧‧‧First Cloth
24‧‧‧Second Cloth

圖1是依照本新型創作的第一實施例的織物結構的剖面示意圖。
圖2A、圖2B、圖2C、圖2D及圖2E是依照本新型創作的第一實施例的製成熱融絲黏合層的複合絲的立體示意圖。
圖3A、圖3B及圖3C是依照本新型創作的第一實施例的織物結構的製造流程剖面示意圖。
圖4是依照本新型創作的第二實施例的織物結構的剖面示意圖。
FIG. 1 is a schematic cross-sectional view of a fabric structure according to a first embodiment of the novel creation.
FIG. 2A, FIG. 2B, FIG. 2C, FIG. 2D and FIG. 2E are three-dimensional schematic diagrams of a composite wire made of a hot-melt wire adhesive layer according to the first embodiment of the novel creation.
3A, 3B, and 3C are schematic cross-sectional views illustrating a manufacturing process of a fabric structure according to a first embodiment of the present invention.
FIG. 4 is a schematic cross-sectional view of a fabric structure according to a second embodiment of the present invention.

Claims (10)

一種織物結構,包括:
一第一布料;
一第二布料;以及
一熱融絲黏合層,配置於該第一布料以及該第二布料之間,該熱融絲黏合層具有一第一表面與一第二表面,該第一表面位於該第一布料,該第二表面位於該第二布料,其中該熱融絲黏合層為針織結構。
A fabric structure including:
A first cloth
A second cloth; and a hot-melt wire bonding layer disposed between the first cloth and the second cloth, the hot-melt wire bonding layer having a first surface and a second surface, the first surface being located on the The first cloth, the second surface is located on the second cloth, and the hot-melt silk bonding layer is a knitted structure.
如申請專利範圍第1項所述的織物結構,其中該熱融絲黏合層的結構為單絲或複合絲。The fabric structure according to item 1 of the scope of the patent application, wherein the structure of the hot-melt silk adhesive layer is a monofilament or a composite filament. 如申請專利範圍第1項所述的織物結構,其中該熱融絲黏合層的材料為熱可塑性纖維。The fabric structure according to item 1 of the patent application scope, wherein the material of the hot-melt wire adhesive layer is a thermoplastic fiber. 如申請專利範圍第1項所述的織物結構,其中該熱融絲黏合層的材料包括熱塑性聚酯彈性體(TPU)纖維、聚酯纖維或尼龍纖維。The fabric structure according to item 1 of the patent application scope, wherein the material of the hot-melt wire adhesive layer includes thermoplastic polyester elastomer (TPU) fibers, polyester fibers, or nylon fibers. 如申請專利範圍第1項所述的織物結構,其中該熱融絲黏合層的材料纖維細度為150 De以下。The fabric structure according to item 1 of the scope of patent application, wherein the material fiber fineness of the hot-melt wire bonding layer is 150 De or less. 如申請專利範圍第1項所述的織物結構,其中該熱融絲黏合層配置於一離型層上。The fabric structure according to item 1 of the application, wherein the hot-melt wire adhesive layer is disposed on a release layer. 如申請專利範圍第1項所述的織物結構,其中以一第一熱融黏合製程結合該第一布料及配置有一離型層的該熱融絲黏合層,該離型層配置於該熱融絲黏合層未與該第一布料結合的表面上,移除該離型層之後,再以一第二熱融黏合製程結合該第二布料及該熱融絲黏合層。The fabric structure according to item 1 in the scope of the patent application, wherein the first cloth is combined with the first cloth and the hot-melt wire adhesive layer provided with a release layer in a first hot-melt bonding process, and the release layer is disposed in the hot-melt On the surface where the silk adhesive layer is not combined with the first cloth, after the release layer is removed, the second cloth and the hot melt wire adhesive layer are combined by a second heat-melting and bonding process. 如申請專利範圍第7項所述的織物結構,其中該第一熱融黏合製程及該第二熱融黏合製程的黏合溫度為90℃至180℃,壓力為3 kg/cm 2至5 kg/cm 2,時間為10秒至30秒。 The fabric structure according to item 7 of the scope of the patent application, wherein the bonding temperature of the first hot-melt bonding process and the second hot-melt bonding process is 90 ° C to 180 ° C, and the pressure is 3 kg / cm 2 to 5 kg / cm 2 , time is 10 to 30 seconds. 如申請專利範圍第7項所述的織物結構,其中將該熱融絲黏合層配置於該離型層的條件為黏合溫度為60℃至80℃或黏合時間為10秒以下。The fabric structure according to item 7 of the scope of the patent application, wherein the hot-melt wire adhesive layer is disposed on the release layer under the condition that the bonding temperature is 60 ° C to 80 ° C or the bonding time is 10 seconds or less. 如申請專利範圍第1項所述的織物結構,其中該第一布料與該第二布料之間具有一間隙。The fabric structure according to item 1 of the scope of patent application, wherein there is a gap between the first cloth and the second cloth.
TW108210647U 2019-08-13 2019-08-13 Textile structure TWM588142U (en)

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