WO2015199338A1 - 발열패드가 구비되는 섬유제품 및 그 제조방법 - Google Patents

발열패드가 구비되는 섬유제품 및 그 제조방법 Download PDF

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Publication number
WO2015199338A1
WO2015199338A1 PCT/KR2015/005399 KR2015005399W WO2015199338A1 WO 2015199338 A1 WO2015199338 A1 WO 2015199338A1 KR 2015005399 W KR2015005399 W KR 2015005399W WO 2015199338 A1 WO2015199338 A1 WO 2015199338A1
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WO
WIPO (PCT)
Prior art keywords
heating pad
adhesive tape
hot melt
heating
wire
Prior art date
Application number
PCT/KR2015/005399
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English (en)
French (fr)
Korean (ko)
Inventor
문권기
Original Assignee
(주)지산어패럴
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by (주)지산어패럴 filed Critical (주)지산어패럴
Publication of WO2015199338A1 publication Critical patent/WO2015199338A1/ko

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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D1/00Garments
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/002Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment
    • A41D13/005Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment with controlled temperature
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D3/00Overgarments

Definitions

  • the present invention relates to a fibrous product having a heating pad and a method of manufacturing the same, and more particularly, to a fibrous product having a heating pad that can control heat generation and is easy to wash, and a method of manufacturing the same.
  • Textile products consisting of these various types of fibers may exist in various forms such as yarns, fabrics, knitted fabrics, nonwovens, cushions, duvets, sleeping bags and clothing.
  • Recent textile products have tended to improve their added value by adding functionality. For example, products that add a heating function to cushions, duvets, sleeping bags, and clothes used in the related art have been proposed.
  • winter clothing is generally made of thick and expensive materials to preserve body temperature and prevent cold air from outside.
  • This type of winter clothing is manufactured by embedding a thermal insulation member and the like inside the clothing, and superimposing the chemically treated coated paper so as not to see the lining and the cold air.
  • this method is heavy and bulky, inconvenient in activity, and also has a disadvantage in that the warming effect is lowered when it is outside for a long time.
  • the conventional clothing for cold protection with a built-in heating pad is generally manufactured by attaching the heating pad to the inside of the lining and then stitching it with a cloth or the like to finish.
  • This type of winter clothing has a problem that the user may be burned in some cases because heat is transferred directly from a specific portion of the lining.
  • heat is transferred directly from a specific portion of the lining.
  • water penetrates through the stitching to close the heating pad, so that water penetrates into the heating pad, which causes the durability of the heating pad to be damaged and to be broken.
  • Patent Document 1 KR20-0199828 Y1 (2000.8.4 registration)
  • Patent Document 2 US20130228562 A1 (published Sep. 2013)
  • the present invention has been made in view of the above-described problems, and an object of the present invention is to provide a fiber product having a heating pad to which the heating pad can be firmly attached, and a method of manufacturing the same.
  • Another object of the present invention is to provide a fiber product having a heating pad which can prevent water from penetrating between the outer skin or the inner skin and the heating pad is attached to the heating pad and a method of manufacturing the same.
  • the fiber product including the endothelial and the outer shell, at least one heating pad provided on the inner or outer shell; An electric wire part electrically connected to one end of the heating pad; And a first adhesive tape covering one end of the heating pad to which the wire part is connected.
  • it may further comprise a second adhesive tape surrounding the other end of the heating pad.
  • the wire portion, the connecting portion passing through one end of the heating pad, the bent portion is bent at one side of the heating pad, the extension portion extending in one direction from the bent portion, the bent portion It may include a third adhesive tape surrounding the upper and lower sides.
  • the third adhesive tape may be adhered to the endothelial or the outer shell by hot melt.
  • it may further include a fourth adhesive tape attached to one side of the extension portion to surround the upper and lower sides of the extension portion.
  • the fourth adhesive tape may be adhered to the inner or inner skin by hot melt.
  • it may further include a waterproof sheet attached by thermocompression to cover the heating pad and the extension.
  • a hot melt may be interposed between the waterproof sheet and the first to fourth adhesive tape.
  • the object of the present invention described above In the method for producing a fiber product including the inner skin and the outer shell, (a) preparing at least one heating pad electrically connected to the wire at one end; (b) disposing the heating pad on one surface of the inner skin or the outer skin; (c) wrapping the one end of the heating pad to which the wire part is connected with an adhesive tape to finish; (d) wrapping one side of the wire portion extending outwardly of the heating pad with an adhesive tape and attaching it to one surface of the inner skin or the outer skin by hot melt; And (e) attaching the heating sheet and the waterproof sheet covering a portion of the wire part by thermocompression to prevent water from seeping.
  • the step (c) includes (c-1) wrapping and finishing one end of the heating pad to which the wire part is connected with a first adhesive tape, and (c-2) the And wrapping the other end of the heating pad with a second adhesive tape to finish.
  • the step (d), the bent portion of the wire portion bent at one side of the heating pad is wrapped with a third adhesive tape, the extension of the wire portion extending in one direction from the bent portion One side may be wrapped with a fourth adhesive tape, and the third adhesive tape and the fourth adhesive tape may be attached to one surface of the inner skin or the outer skin by hot melt.
  • the step (d), (d-1) the hot melt is adhered to the region corresponding to the bent portion on one surface of the endothelial or the outer shell, between the bent portion and the hot melt Attaching a 3-2 adhesive tape to the upper side of the 3-1 adhesive tape to cover the bent portion with a 3-1 adhesive tape interposed therebetween; and (d-2) at one side of the inner or outer skin.
  • a hot melt is adhered to a region corresponding to one side of the extension part, a fourth-1 adhesive tape is interposed between the extension part and the hot melt, and a fourth portion is attached to the upper side of the 4-1 adhesive tape to surround one side of the extension part.
  • the waterproof sheet may include the step of adhering to one surface of the endothelial or the outer shell.
  • the heating pad is adhered with high density by a waterproof sheet on one surface of the inner skin or the outer skin, so that adhesion is firm and water is prevented from penetrating. Therefore, the washing is easier than the conventional heating method.
  • the effect of the heat can be maximized as well as waterproof.
  • At least one surface of the endothelial and the outer skin is coated so that heat can be evenly transferred to the entire garment.
  • the fiber product having a heating pad according to the present invention and a method for manufacturing the same, as the heating pad is interposed between the inner skin and the outer shell to receive the heating pad is not exposed to the design aesthetics.
  • FIG. 1 is a schematic diagram of a garment provided with a heating pad according to an embodiment of the present invention.
  • FIG. 2 is a schematic view of a heating pad according to an embodiment of the present invention.
  • FIG 3 is a perspective view of a power supply unit according to an embodiment of the present invention.
  • 4 to 11 is a schematic diagram showing step-by-step how to make a garment provided with a heating pad according to an embodiment of the present invention.
  • the present invention as an example of clothing as a textile product, but the present invention is not limited thereto, and all of which can be added to a thermal insulation or heating function such as a bag, a cushion, a sleeping bag, a blanket, etc. It is known in advance that it can be applied to textile products.
  • FIG. 1 is a schematic diagram of a garment provided with a heating pad according to an embodiment of the present invention.
  • the clothing provided with the heating pad 300 includes an outer shell 100 and an inner shell 200, a heating pad 300, a waterproof sheet 400, and an electric wire unit. 500.
  • the heating pad 300 and the wire portion 500 is electrically connected, one side of the wire portion 500 is wrapped with adhesive tapes (710 ⁇ 740), the adhesive tape (710 ⁇ 740) is a hot melt ( 800 is bonded to the outer surface of the endothelium 200.
  • the waterproof sheet 400 covers an area to which the heating pad 300 is attached and one side of the wire part 500.
  • the outer shell 100 is a member that forms the outer surface of the garment when the user wears the garment provided with the heating pad according to an embodiment of the present invention, and has a form similar to the upper or lower body of the user.
  • the outer surface of the outer shell 100 is directly in contact with the outside air and other foreign matter. Therefore, the outer surface of the shell 100 may be waterproof coated so that water does not penetrate into the inside.
  • the outer shell 100 itself may be made of a waterproof fabric.
  • Teflon resin (not shown) may be coated on the inner surface of the shell 100. This is to prevent the heat of the space between the outer shell 100 and the inner shell 200 to be lost to the outside. In addition, to spread the heat of the heating pad 300 wide to allow the user to feel the warm evenly throughout the clothing. Teflon resin may be entirely coated on the inner side of the shell (100). At this time, the Teflon resin may have a function of waterproofing similar to the waterproof coating of the outer surface of the outer shell (100). That is, the garment provided with a heating pad according to an embodiment of the present invention may have a waterproof function on the outer side and the inner side of the outer shell.
  • Endothelial 200 has a shape corresponding to the outer shell 100, the circumference thereof is coupled to the outer shell 100 and sewing to form a space in the sealed state between the outer shell (100).
  • Endothelial 200 is a member that directly touches the user's body when the user wears clothing provided with a heating pad according to an embodiment of the present invention, it may be made of a waterproof fabric so that water does not penetrate into the inner space.
  • Teflon resin (not shown) may be coated on the outer surface of the endothelium 200 (a surface facing the inner surface of the outer shell 100) in the same manner as the outer shell 100. This is also to prevent the internal heat is lost to the outside and at the same time to spread the heat of the heating pad 300 as a whole to make the user feel the warm evenly throughout the clothing.
  • FIG. 2 is a photograph showing a heating pad according to an embodiment of the present invention.
  • the heating pad 300 is disposed in the inner space formed by the outer shell 100 and the inner shell 200, and generates heat by power supply, so that the user can feel warm.
  • the heating pad 300 is preferably composed of a planar heating element formed by being woven so that a plurality of heating fibers cross each other.
  • the heating pad 300 is configured to be electrically connected to each other while the heating fibers cross each other, so that heat is generated by the heating fibers when power is supplied.
  • both sides of the heating pad 300 is preferably waterproof coating.
  • bioceramic powder may be applied to the heating fibers of the heating pad 300.
  • the bioceramic powder may be formed by mixing tourmaline, diamond powder, mica, germanium in a certain ratio.
  • the bioceramic powder may include 33-40% by weight of Geumseok, 27-32% by weight of tourmaline, 15-17% by weight of mica, 18-25% by weight of germanium.
  • each material is purified by water and then mixed and pulverized into a ceramic powder, the pulverized powder is applied to the heating fiber can be coated with the heating material bioceramic powder.
  • the heating pad 300 including these heating fibers is far infrared rays are emitted by the bioceramic, help the user's blood circulation and physiological activity of the user and can be quickly and effectively resolve the fatigue.
  • the chalcopyrite is a mineral containing 20 kinds of organic matters in abundance with various rare elements such as silicon oxide, lithium, cerenium, and niobidium, It is effective against fatigue, diabetes, skin disease and digestive system diseases.
  • Germanium is one of the carbon group elements with semiconductor properties. Germanium ions (outer electrons) enter the body to enhance vitality, enter the body with various harmful substances, and are discharged out of the body, so there is no poisoning and side effects. Such germanium is well known for blood purification, and it is known to exhibit an amazing role in lung cancer, neurosis, asthma, diabetes, hypertension, renal failure, neuralgia, and the like.
  • Tourmaline, dolomite, and the like are known as compositions for constructing a bioceramic that emits far infrared rays, and are known to emit large amounts of far infrared rays by themselves.
  • One end of the heating pad 300 is electrically connected to the wire part 500 to be described later.
  • one side of the wire part 500 may be peeled off, and the core wire of the wire part 500 may be electrically connected to the heating fiber of one end of the heating pad 300.
  • the first adhesive tape 710 may be made of, for example, an insulating rubber adhesive tape.
  • the first adhesive tape 710 wraps the wire part 500 together with one end of the heating pad 300 and insulates the outside from the outside, and finishes the connection part 510 not to be visible.
  • the other end of the heating pad 300 is also preferably wrapped with a second adhesive tape 720 to finish.
  • the waterproof sheet 400 covers an area including the entire heating pad 300 and one side of the wire part 500. At this time, the waterproof sheet 400 is attached to the endothelial 200 by thermal compression, the heating pad 300 and the wire portion 500 is fixed to the position by the waterproof sheet 400. Since the waterproof sheet 400 is attached along the outer edge of the heating pad 300, the gap between the heating pad 300 and the endothelium 200 is sealed by the waterproof sheet 400, so that water penetrates into the gap. Can be prevented.
  • the waterproof sheet 400 may be attached to the endothelial 200 to allow the heating pad 300 to be in close contact with the outer surface of the endothelial 200.
  • the heating pad 300 may be disposed within the outer shell 100.
  • the waterproof sheet 400 may be attached to the outer shell 100 to be in close contact with the side surface. Even when the heating pad 300 is in close contact with the outer shell 100, the gap between the heating pad 300 and the outer shell 200 may be sealed by the waterproof sheet 400 to prevent water from seeping.
  • the waterproof sheet 400 may be thermocompression-bonded by using a high-temperature automatic press on the outer shell 100 or the inner shell 200. Since both surfaces of the heating pad 300 are waterproof coated, and the water resistant waterproof sheet 400 is densely bonded while covering the area where the heating pad 300 is disposed, the heat-resistant cold protection function which is not changed even in the washing of water can be maintained. Can be.
  • the wire portion 500 as described above, one side is electrically connected to one end of the heating pad 300, the other side penetrates the endothelium 200 or the shell 100 to the endothelium 200 or shell 100 It may extend to the power supply unit 600 in the pocket (not shown) provided in the).
  • the wire unit 500 serves to transfer electricity supplied from the power supply unit 600 to the heating pad 300, and a wire generally used for heat transfer may be used.
  • the wire part 500 extends to the outside of the heating pad 300 after passing through one end of the heating pad 300 and is bent in one direction (eg, the pocket direction), and the bending part 520. It includes an extension 530 extending from).
  • one side of the bent portion 520 and the extension portion 530 is bonded to the outer surface of the endothelial 200 by the hot melt (800).
  • a third adhesive tape 730 is attached to surround the bent portion 520, and the third adhesive tape 730 is attached to the endothelium 200 by the hot melt 800.
  • the fourth adhesive tape 740 is attached to surround one side of the extension part 530, and the fourth adhesive tape 740 is attached to the endothelium 200 by the hot melt 800.
  • the adhesive tapes 710 to 740 are hot melted on the hot melt 800 at the time of the thermocompression bonding of the waterproof sheet 400 so that the adhesive tapes 710 to 740 are firmly fixed between the endothelium 200 and the waterproof sheet 400. It is bonded to one surface of the waterproof sheet 400 by.
  • FIG 3 is a perspective view of a power supply unit according to an embodiment of the present invention.
  • the power supply unit 600 allows the heating pad 300 to generate heat by supplying power to the heating pad 300, and may be stored in the pocket of the inner shell 200 or the outer shell 100.
  • the other side of the wire unit 500 may be coupled to the power supply unit 600, and a controller (not shown) may adjust a power applied to the wire unit 500.
  • the controller may be controlled by a button 610 formed on the outer surface of the power supply unit 600, and thus, the user may adjust and use the heating pad 300 to a desired temperature by operating a button of the power supply unit 600.
  • 4 to 11 are photographs showing step by step a method of manufacturing a garment having a heating pad according to an embodiment of the present invention.
  • the heating pad according to an embodiment of the present invention will be described with reference to FIGS. 4 to 11. It will be described a manufacturing method of the garment is provided.
  • 4 to 11 illustrate an example in which the heating pad 300 is attached to the endothelial 200 of the back portion, and the remaining endothelial 200 portion such as the arm may be sewn afterwards.
  • a plurality of heating pads 300 are disposed on the outer surface of the endothelium 200.
  • the wire part 500 extends beyond the plurality of heating pads 300, and is electrically connected to each of the heating pads 300 at one end of the heating pad 300.
  • one end of the heating pad 300 to which the wire part 500 is connected is surrounded by the first adhesive tape 710 which is a rubber adhesive tape, and is insulated and finished.
  • the other end of the heating pad 300 is also surrounded by the second adhesive tape 720 to finish.
  • the wire part 500 passes through one end of the heating pad 300 disposed in plural numbers in turn, so that the end of the wire part 500 faces the power source 600 direction, as shown in FIG.
  • the wire part 500 is bent at an angle outside the heating pad 300.
  • the hot melt 800 is adhered to the outer surface of the endothelial 200 corresponding to the bent portion 520 of the wire part 500, and the 3-1 adhesive tape is formed between the hot melt 800 and the bent portion 520. Attach 731.
  • the third-2 adhesive tape 732 is attached onto the third-1 adhesive tape 731.
  • the bent portion 520 is wrapped by the third adhesive tape 730 including the 3-1 adhesive tape 731 and the 3-2 adhesive tape 732, and the third adhesive tape 730 is hot melt
  • the flow of the bent portion 520 is prevented.
  • one side of the extension part 530 is wrapped with the fourth adhesive tape 740, and the fourth adhesion is performed.
  • the tape 740 is attached to the endothelium 200 by the hot melt 800.
  • the hot melt 800 is first adhered to the outer surface of the endothelial 200 corresponding to one side of the extension 530 to be fixed, and then the fourth melt to the hot melt 800.
  • the adhesive tape 741 is attached.
  • the fourth-2 adhesive tape 742 is attached onto the fourth-1 adhesive tape 741 to surround the extension part 530.
  • the waterproof sheet 400 is disposed to cover an area including the entire heating pad 300 and the fourth adhesive tape 740.
  • the adhesive tapes 710 to 740 are firmly fixed between the inner shell 200 and the waterproof sheet 400. can do.
  • the waterproof sheet 400 is thermocompressed by a high-temperature automatic press and adhered to the outer surface of the endothelium 200 with high density.
  • the heating pad 300 and the wire part 500 are firmly fixed to the outer surface of the endothelium 200, and cover the plurality of heating pads 300 arranged area to cover the waterproof sheet. As the 400 is adhered to the endothelium 200, it is possible to prevent water from seeping into the gap between the endothelium 200 and the heating pad 300.
  • endothelial 200 is sealed to form a final form of the endothelial 200, and the endothelial 200 is sealed inside the outer shell 100, thereby generating a heating pad as shown in FIG. Production of the garment is provided is complete.
  • a fiber product having a heating pad and a method of manufacturing the same, as the attachment of the heating pad is firm and water is prevented from being absorbed, is easier to wash than the conventional heating method.
  • the effect of the heat can be maximized as well as waterproof.
  • the heat of the heating pad can be evenly transmitted to the entire clothing.
  • the fiber product having a heating pad according to the present invention since the portion for accommodating the heating pad is not exposed, the design aesthetics are not impaired.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)
  • Adhesives Or Adhesive Processes (AREA)
  • Mattresses And Other Support Structures For Chairs And Beds (AREA)
PCT/KR2015/005399 2014-06-25 2015-05-29 발열패드가 구비되는 섬유제품 및 그 제조방법 WO2015199338A1 (ko)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2014-0078413 2014-06-25
KR1020140078413A KR101564950B1 (ko) 2014-06-25 2014-06-25 발열패드가 구비되는 섬유제품의 제조방법

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WO2015199338A1 true WO2015199338A1 (ko) 2015-12-30

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KR (1) KR101564950B1 (ru)
CN (1) CN105192951A (ru)
RU (1) RU2589570C2 (ru)
WO (1) WO2015199338A1 (ru)

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Publication number Priority date Publication date Assignee Title
KR20190049974A (ko) 2017-10-31 2019-05-10 희성전자 주식회사 스마트 발열 패드

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KR100538833B1 (ko) * 2005-09-05 2005-12-26 전경식 레저용 조끼

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CN105192951A (zh) 2015-12-30
KR101564950B1 (ko) 2015-11-02
RU2014128329A (ru) 2016-02-20

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