KR100657878B1 - A textile contain silicone coating method - Google Patents

A textile contain silicone coating method Download PDF

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KR100657878B1
KR100657878B1 KR1020020046442A KR20020046442A KR100657878B1 KR 100657878 B1 KR100657878 B1 KR 100657878B1 KR 1020020046442 A KR1020020046442 A KR 1020020046442A KR 20020046442 A KR20020046442 A KR 20020046442A KR 100657878 B1 KR100657878 B1 KR 100657878B1
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silicon
silicone
coated
weight
paper
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KR1020020046442A
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Korean (ko)
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KR20040013487A (en
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전경섭
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전경섭
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41MPRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
    • B41M1/00Inking and printing with a printer's forme
    • B41M1/12Stencil printing; Silk-screen printing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41MPRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
    • B41M1/00Inking and printing with a printer's forme
    • B41M1/26Printing on other surfaces than ordinary paper
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41MPRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
    • B41M5/00Duplicating or marking methods; Sheet materials for use therein
    • B41M5/50Recording sheets characterised by the coating used to improve ink, dye or pigment receptivity, e.g. for ink-jet or thermal dye transfer recording
    • B41M5/52Macromolecular coatings
    • B41M5/529Macromolecular coatings characterised by the use of fluorine- or silicon-containing organic compounds
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41MPRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
    • B41M7/00After-treatment of prints, e.g. heating, irradiating, setting of the ink, protection of the printed stock
    • B41M7/009After-treatment of prints, e.g. heating, irradiating, setting of the ink, protection of the printed stock using thermal means, e.g. infrared radiation, heat

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Thermal Sciences (AREA)
  • Toxicology (AREA)
  • Laminated Bodies (AREA)
  • Application Of Or Painting With Fluid Materials (AREA)

Abstract

본 발명은 직물지의 무광택 실리콘 인쇄코팅방법에 관한 것으로, 액상의 실리콘 100중량%에 대하여 경화제 10중량%와 경탄가루 20중량%, 증점제 10중량%를 첨가하여 교반한 젤상의 실리콘을 직물지의 상측에 실크스크린으로 실리콘 피막을 형성하는 피막형성단계와,상기 피막형성단계에서 형성된 실리콘이 코칭된 직물지를 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 1차 가열단계와, 일정크기의 철판 일면에 센딩처리된 센딩면과 로그면 상층으로 피막형성단계의 액상의 실리콘을 도포하는 도포단계와, 상기 도포단계에서 형성된 실리콘이 도포된 철판을 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 2차가열단계와, 상기 2차가열단계에서 형성된 실리콘이 도포된 철판의 실리콘 상측에 실리콘접착제를 도포하는 접착제도포단계와, 상기 접착제 도포단계를 거쳐 접착제가 도포된 철판에 실리콘이 코팅된 직물지를 적층하여 150℃ 내지 170℃의 온도로 가열가압하여 직물지에 무광택 실리콘코팅이 형성되도록 하는 것으로, 실리콘이 피막된 직물지에 용이하게 로그등을 인쇄할 수가 있어 원가를 절감하는 효과가 있다.The present invention relates to a matte silicone printing coating method of woven paper, wherein the gel-like silicone, which is added by stirring 10% by weight of hardener, 20% by weight of hard coal powder, and 10% by weight of thickener, to 100% by weight of liquid silicone, is placed on the upper side of the paper. The film forming step of forming a silicon film by the silk screen, and the first step of heat-curing 50 seconds to 70 seconds at a temperature of 150 ℃ to 170 ℃ while conveying the fabric coated with silicon formed in the film forming step by a conveyor belt The heating step, the coating step of applying the liquid silicone of the film forming step to the upper surface of the send surface and the log surface is sent to one surface of the iron plate of a certain size, and transfer the iron plate coated with the silicon formed in the coating step by the conveyor belt While the secondary heating step of heat curing for 50 seconds to 70 seconds at a temperature of 150 ℃ to 170 ℃, and the silicon formed in the secondary heating step is applied The adhesive coating step of applying a silicone adhesive on the upper side of the iron plate, and laminating the silicone coated textile paper on the iron plate coated with the adhesive through the adhesive coating step and heat-pressurized to a temperature of 150 ℃ to 170 ℃ matte on the fabric paper By forming a silicon coating, it is possible to easily print a log, etc. on the fabric paper coated with silicon, there is an effect of reducing the cost.

Description

직물지의 무광택 실리콘 인쇄코팅방법{A TEXTILE CONTAIN SILICONE COATING METHOD}Matte silicone printing coating method of textile paper {A TEXTILE CONTAIN SILICONE COATING METHOD}

도 1은 본 발명에 따른 샌딩된 철판에 실리콘이 구성되는 방법을 나타내는 설명도,1 is an explanatory view showing how silicon is constructed on a sanded iron plate according to the present invention;

도 2는 본 발명에 따른 직물지의 무광택 실리콘 인쇄코팅방법을 나타내는 설명도이다. Figure 2 is an explanatory view showing a matte silicone printing coating method of the textile paper according to the present invention.

<도면의 주요 부분에 대한 부호의 설명><Explanation of symbols for the main parts of the drawings>

1 : 철판 2 : 제 1도포부 1: iron plate 2: first coating part

3 : 콤베어 4 : 접착제도포수단 3: comveyor 4: adhesive coating means

5 : 접착제 6 : 샌딩면 5: adhesive 6: sanding surface

7 : 직물 8 : 실크스크린  7: fabric 8: silkscreen

9, 10 : 콤베어  9, 10: comveyor

본 발명은 직물지의 무광택 실리콘 인쇄코팅방법에 관한 것으로, 특히 직물지의 표면에 실리콘으로 코팅할때에 샌딩된 철판을 이용하여 무광택으로 형성하여 로그인쇄등의 인쇄가 용이하게 이루지도록 하는 직물지의 무광택 실리콘 인쇄코팅방법에 관한 것이다.The present invention relates to a matte silicone printing coating method of woven paper, and in particular, when coated with silicon on the surface of the woven paper matte using a sanded iron plate to form a matte silicone of the woven paper to facilitate the printing of the sign printing, etc. It relates to a printing coating method.

일반적으로 수영복이나 수영모자 등과 같은 스포츠의류에 있어서 방수나 신축성이 요구되는 직물의 인쇄 및 코팅방법에는 폴리우레탄수지를 이용한 코팅방법이 사용되었다.In general, a coating method using a polyurethane resin has been used as a printing and coating method for fabrics requiring waterproofing or elasticity in sports clothing such as swimwear or swimming caps.

이와같은 폴리에스테르 수지를 이용한 인쇄 코팅방법은 폴리우레탄 수지를 전사지에 나이프코팅을 한 다음 직물지 직물의 상측에 부착시킨후 전사지를 분리하여 인쇄코팅 하였다.In the printing coating method using the polyester resin, the polyurethane resin was coated on the transfer paper by knife coating, and then attached to the upper side of the woven fabric.

그러나 상기와 같은 인쇄코팅방법은 탄력적인 직물(스판)에 코팅하였을 경우 직물의 신축력보다 코팅된 폴리우레탄의 신축성이 미미하여 폴리우레탄 코팅부의 균열이 발생하였으며 직물과 폴리우레탄의 신축력이 달라 직물에서 폴리우레탄이 분리되어 코팅된 직물지의 내구성이 저하되는 문제점이 있어으며, 또한 전사지를 사용하여 재료비가 상승되는 문제점이 있었다.However, when the printing coating method is coated on an elastic fabric (span), the elasticity of the coated polyurethane is less than the elasticity of the fabric, so that the cracks of the polyurethane coating are generated. There is a problem in that the durability of the separated coated paper is reduced, and there is also a problem that the material cost is increased by using a transfer paper.

이와같은 문제점을 해결하기 위하여 직물지를 이용하여 실리콘을 피막하고 왁스등을 하여 인쇄하였지만 방법이 복잡하여 생산성이 저하되는 문제점이 있었다.In order to solve such a problem, the film was printed by coating a silicon film and wax using a woven paper, but there was a problem in that the productivity was reduced due to the complicated method.

이에 본 발명은 상기와 같은 종래의 문제점을 감안하여 안출한 것으로 직물지의 표면에 실리콘으로 실크스크린방법과 샌딩되어 실리콘이 도포된 철판을 이용하여 실리콘을 도포하므로써 직물지를 무광택으로 하여 인쇄가 용이하도록 하는 것을 목적으로 한다. Accordingly, the present invention has been made in view of the above-mentioned conventional problems, and the fabric is matte by applying a silicon screen using a silkscreen method sanded with silicon and coated with silicon on the surface of the fabric to facilitate printing by making the fabric matte. For the purpose of                         

상기한 목적을 달성하기 위하여 본 발명은 액상의 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루 20중량부, 증점제 10중량부를 첨가하여 교반한 젤상의 실리콘을 직물지의 상측에 실크스크린으로 실리콘 피막을 형성하는 피막형성단계와,상기 피막형성단계에서 형성된 실리콘이 코칭된 직물지를 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 1차 가열단계와, 일정크기의 철판 일면에 센딩처리된 센딩면 상층으로 피막형성단계의 액상의 실리콘을 도포하는 도포단계와, 상기 도포단계에서 형성된 실리콘이 도포된 철판을 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 2차가열단계와, 상기 2차가열단계에서 형성된 실리콘이 도포된 철판의 실리콘 상측에 실리콘접착제를 도포하는 접착제도포단계와, 상기 접착제 도포단계를 거쳐 접착제가 도포된 철판에 실리콘이 코팅된 직물지를 적층하여 150℃ 내지 170℃의 온도로 가열가압하여 직물지에 무광택 실리콘코팅이 형성되도록 하는 것이다.In order to achieve the above object, the present invention adds 10 parts by weight of a curing agent, 20 parts by weight of hard coal powder, and 10 parts by weight of a thickener to a 100 parts by weight of liquid silicone, and then stirs the gel-like silicone on the upper side of the fabric with a silk screen. The film forming step of forming a, and the primary heating step of heat-curing for 50 seconds to 70 seconds at a temperature of 150 ℃ to 170 ℃ while conveying the fabric paper coated with silicon formed in the film forming step by a conveyor belt, and 150 ℃ to 170 ℃ temperature while transferring the coating step of applying the liquid silicone of the film forming step to the upper surface of the sending surface is sent to the iron plate of the size, and the silicon coated iron plate formed in the coating step by the conveyor belt Secondary heating step of heat curing for 50 seconds to 70 seconds, and the upper side of the silicon of the silicon-coated iron sheet formed in the secondary heating step An adhesive coating step of applying a licon adhesive, and laminating a silicone coated textile paper to the adhesive coated iron plate through the adhesive coating step to heat and pressurized to a temperature of 150 ℃ to 170 ℃ to form a matt silicone coating on the textile paper will be.

이에 상기한 바와같은 본 발명의 바람직한 실시예를 첨부도면에 의거하여 상세히 설명하면 다음과 같다.The preferred embodiment of the present invention as described above will be described in detail based on the accompanying drawings.

본발명은 액상의 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루 20중량부, 증점제 10중량부를 첨가하여 교반한 젤상의 실리콘을 직물지의 상측에 실크스크린으로 실리콘 피막을 형성하는 피막형성단계와, 상기 피막형성단계에서 형성된 실리콘이 코칭된 직물지를 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초간 가열 경화하는 1차 가열단계와, 일정크기의 철판 일면에 센딩처리된 센딩면 상층으로 피막형성단계의 젤상의 실리콘을 도포하는 도포단계와, 상기 도포단계에서 형성된 실리콘이 도포된 철판을 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 2차가열단계와, 상기 2차가열단계에서 형성된 실리콘이 도포된 철판의 실리콘 상측에 실리콘접착제를 도포하는 접착제도포단계와, 상기 접착제 도포단계를 거쳐 접착제가 도포된 철판에 실리콘이 코팅된 직물지를 적층하여 150℃ 내지 170℃의 온도로 가열가압하여 직물지에 무광택 실리콘코팅이 형성되도록 하는 것이다.The present invention provides a film forming step of forming a silicone film on the upper side of the fabric paper by stirring the gel-like silicone on the upper side of the fabric paper by adding 10 parts by weight of a curing agent, 20 parts by weight of hard coal powder, and 10 parts by weight of a thickener with respect to 100 parts by weight of liquid silicone; The primary heating step of heat-curing 50 seconds to 70 seconds at a temperature of 150 ℃ to 170 ℃ while conveying the fabric coated with the silicon-coated fabric formed in the film forming step by a conveyor belt, and sent to one side of the iron plate of a certain size The coating step of applying the gel-like silicon of the film forming step to the upper surface of the sending surface, and heating for 50 seconds to 70 seconds at a temperature of 150 ℃ to 170 ℃ while transferring the iron plate coated with silicon formed in the coating step by a conveyor belt Secondary heating step to cure, the adhesive for applying a silicone adhesive on the upper side of the silicon of the silicon coated iron sheet formed in the secondary heating step The fabric; and the silicone coating on a matte jikmulji by heating and pressing at a temperature of the adhesive applying step after the adhesive is 150 ℃ to silicon is laminated on the coated jikmulji the coated steel plate to 170 ℃ it is to be formed.

도 1은 본 발명에 의한 샌딩된 철판(1)에 실리콘(S)을 도포하는 과정을 나타내는 설명도로, 샌딩된 철판(1)을 준비하여 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루(카본블랙,흑연) 20중량부, 증점제 10중량부를 첨가하여 교반된 실리콘(S)을 제 1도포부(2)에서 도포를 행하는 도포단계를 거치고, 콤베어(3)에서 섭씨 150도 내지 170도의 온도로 가열하여 성형시키는 2차가열단계를 거치고, 실리콘(S)이 도포된 상태에서 접착제도포부(4)에서 접착제(5)를 도포하는 접착제도포단계로 이루어진다. 1 is an explanatory view showing a process of applying silicon (S) to a sanded iron plate 1 according to the present invention, preparing a sanded iron plate 1 to 10 parts by weight of hardener and hard coal powder (100 parts by weight of silicon) 20 parts by weight of carbon black and graphite) and 10 parts by weight of a thickener are added, followed by an application step of applying the stirred silicon (S) in the first coating part 2 to a temperature of 150 to 170 degrees Celsius in the conveyor 3. After heating to a temperature to form a secondary heating step, the adhesive coating step of applying the adhesive (5) in the adhesive coating unit 4 in the state that the silicone (S) is applied.

이와 같은 된 상태에서 도 2에서 나타내는 바와 같이 상기 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루(카본블랙,흑연) 20중량부, 증점제 10중량부를 첨가하여 직물지에 실리콘(S)을 피막하는 피막형성단계와, 콤베어(9)에서 가열하는 1차가열단계를 거친 직물지(7)를 샌딩하여 실리콘과 접착제가 도포된 철판(1)에 위에 놓고 콤베어에 넣어 150도 내지 170도의 온도로 가열가압하여 성형되는 것이다.In this state, as shown in FIG. 2, 10 parts by weight of a curing agent, 20 parts by weight of hard coal powder (carbon black, graphite), and 10 parts by weight of a thickener are added to 100 parts by weight of silicon to coat the silicon (S) on the paper. Sanding the fabric paper 7 after the film forming step and the primary heating step of heating in the comb 9, placed on the iron plate (1) coated with silicon and adhesive, put in a comb to a temperature of 150 to 170 degrees It is molded by heating and pressing.

즉 표면은 실크스크린방법에 의하여 실리콘 피막된 직물의 배면을 실리콘이 피막된 철판에 놓고 콘베어에서 가열하여 붙착하게 되는 것이다.In other words, the surface of the fabric coated with a silicon screen is placed on a silicon plated iron sheet by a silk screen method, and is heated and adhered on a conveyor.

상기와 같이 구성되는 본 발명의 작용 및 효과를 설명하면 다음과 같다.Referring to the operation and effects of the present invention configured as described above are as follows.

샌딩된 철판(1)에 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루(카본블랙,흑연) 20중량부, 증점제 10중량부를 첨가하여 교반된 실리콘의 도포를 행하고 콤베어에서 150도 내지 170도의 온도로 가열하여 성형시키고, 실리콘(S)이 도포된 상태에서 접착제를 도포한 상태에서, 연질의 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루(카본블랙,흑연) 20중량부, 증점제 10중량부를 첨가하여 교반한후 실리콘(S)을 직물지 상측에 실크스크린방법에 의하여 피막을 형성하고 콤베어(9)에서 성형된 직물지(7)를 150도내지 170도에서 가열하여 성형한 직물을 구비하여, 콤베어(10)에서 직물(7)을 실리콘(S)이 피막된 철판(1)위에 위치시켜 가열가압하여 성형시키는 것으로, 직물(7)은 상,하면 전부 실리콘으로 정밀하게 코팅이 이루어지게 되며, 코팅이 끝난 직물지의 샌딩면(6)은 무광택으로 이루어지게 되는 것이다.10 parts by weight of a curing agent, 20 parts by weight of hard coal powder (carbon black, graphite), and 10 parts by weight of a thickener are added to the sanded iron sheet 1, and then the stirred silicon is applied, and 150 to 170 degrees in a comb. 10 parts by weight of a curing agent, 20 parts by weight of hard coal powder (carbon black, graphite), and a thickener, based on 100 parts by weight of soft silicone, in a state in which the adhesive is applied in the state in which the silicon (S) is coated and molded by heating to the temperature of FIG. After stirring by adding 10 parts by weight of silicon (S) to form a film on the upper side of the fabric paper by the silk screen method, the fabric formed by heating the fabric paper (7) formed by the comb (9) at 150 to 170 degrees In the comb 10, the fabric (7) is placed on the iron plate (1) coated with silicon (S) by heating and pressing to form, and the fabric (7) is coated on the upper and lower surfaces with silicon precisely Made of coated fabric The sanding surface 6 of the paper is to be made matte.

따라서 직물지를 원하는 모양으로 재단되고, 로고등의 인쇄가 이루어지고, 봉제되어 제품이 완성되는 것이다.Therefore, the woven paper is cut into a desired shape, a logo is printed, and the finished product is finished.

따라서 본 발명에 의한 샌딩된 철판을 이용하여 실리콘을 코팅시키게 되면 로그등의 인쇄를 용이하게 실시할 수 있게 되는 것이다.Therefore, when the silicon is coated using the sanded iron plate according to the present invention will be able to easily print the log.

또한 우수한 탄력성과 압축, 회복 내구성이 뛰어난 실리콘을 신체용품에 융착하여 완벽한 방수의 효과를 갖는 것이다.In addition, the excellent elasticity, compression, recovery and durability of the silicone is fused to the body products to have a perfect waterproof effect.

이상에서 설명한 바와같이 본 발명은 실리콘이 피막된 직물지에 용이하게 로그등을 인쇄할 수가 있어 원가를 절감하는 효과가 있다. As described above, the present invention can easily print a log or the like on a fabric paper coated with silicon, thereby reducing the cost.

이상에서는 본 발명을 특정의 바람직한 실시예를 예를들어 도시하고 설명하였으나, 본 발명은 상기한 실시예에 한정되지 아니하며 본 발명의 정신을 벗어나지 않는 범위내에서 당해 고안이 속하는 기술분야에서 통상의 지식을 가진자에 의해 다양한 변경과 수정이 가능할 것이다.In the above, the present invention has been illustrated and described with reference to specific preferred embodiments, but the present invention is not limited to the above-described embodiments, and the present invention is not limited to the spirit of the present invention. Various changes and modifications can be made by those who have

Claims (1)

액상의 실리콘 100중량부에 대하여 경화제 10중량부와 경탄가루 20중량부, 증점제 10중량부를 첨가하여 교반한 젤상의 실리콘을 직물지의 상측에 실크스크린으로 실리콘 피막을 형성하는 피막형성단계와,A film forming step of forming a silicone film on the upper side of the fabric paper by adding 10 parts by weight of a curing agent, 20 parts by weight of hard coal powder, and 10 parts by weight of a thickener, and adding silk gel on the upper side of the fabric paper; 상기 피막형성단계에서 형성된 실리콘이 코칭된 직물지를 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 1차 가열단계와,The first heating step of heat-curing 50 seconds to 70 seconds at a temperature of 150 ℃ to 170 ℃ while conveying the fabric paper coated with silicon formed in the film forming step by a conveyor belt, 일정크기의 철판 일면에 센딩처리된 센딩면 상층으로 피막형성단계의 젤상의 실리콘을 도포하는 도포단계와,An application step of applying the gel-like silicon of the film forming step to an upper layer of the sending surface which is sent to one surface of the iron plate of a predetermined size; 상기 도포단계에서 형성된 실리콘이 도포된 철판을 컨베이어벨트에 의해 이송하면서 150℃ 내지 170℃의 온도로 50초 내지 70초 간 가열 경화하는 2차가열단계와,A second heating step of heat-curing the silicon-coated iron plate formed in the coating step by a conveyor belt for 50 seconds to 70 seconds at a temperature of 150 ° C. to 170 ° C., 상기 2차가열단계에서 형성된 실리콘이 도포된 철판의 실리콘 상측에 실리콘접착제를 도포하는 접착제도포단계와,An adhesive coating step of applying a silicone adhesive on the silicon upper side of the silicon-coated iron sheet formed in the second heating step; 상기 접착제 도포단계를 거쳐 접착제가 도포된 철판에 실리콘이 코팅된 직물지를 적층하여 150℃ 내지 170℃의 온도로 가열가압하여 직물지에 무광택 실리콘코팅이 형성되도록 하는 것을 특징으로 하는 직물지의 무광택 실리콘 인쇄코팅방법.After laminating the adhesive coated iron sheet through the coating step of the adhesive coated with a silicone coated matting silicone printing coating of the textile paper characterized in that the matte silicone coating is formed on the textile paper by heating and pressing at a temperature of 150 ℃ to 170 ℃ Way.
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