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    • 63. 发明公开
    • 초흡습성 나노섬유 부직포 및 그의 제조방법
    • 纳米纤维的高性能非织造织物及其制备方法
    • KR1020090087700A
    • 2009-08-18
    • KR1020080013103
    • 2008-02-13
    • 주식회사 아모메디
    • 김찬
    • D04H1/728D04H1/407D01F1/10
    • D04H1/728D01D5/003D01D5/0069D01D5/34D01F1/10D04H3/16
    • Nano fiber non-woven fabric having hygroscopic property and a manufacturing method thereof are provided to offer excellent absorption volume and absorbing rate. Nano fiber non-woven fabric having hygroscopic property includes a first spinning solution and a second spinning solution. The first spinning solution is used for forming a hygroscopic material containing part including a fiber-forming polymer for fixing the hygroscopic material, the hygroscopic material and a solvent. The second spinning solution is used for forming a fiber strength reinforcing part including a strength-reinforcing polymer and the solvent. An inlet part of the first and the second spinning solutions is different. The fabric is made by electrospinning.
    • 提供具有吸湿性的纳米纤维无纺布及其制造方法,以提供优异的吸收体积和吸收率。 具有吸湿性的纳米纤维无纺布包括第一纺丝溶液和第二纺丝溶液。 第一纺丝溶液用于形成含有部分的吸湿材料,该部分包括用于固定吸湿材料,吸湿材料和溶剂的纤维形成聚合物。 第二纺丝溶液用于形成包含强度增强聚合物和溶剂的纤维强度增强部分。 第一和第二纺丝溶液的入口部分是不同的。 织物由静电纺丝制成。
    • 64. 发明公开
    • 다성분계 나노 섬유 제조용 방사 노즐
    • 用于多相纳米纤维的电纺丝的喷嘴和使用其的多相纳米纤维的生产方法
    • KR1020090083121A
    • 2009-08-03
    • KR1020080009098
    • 2008-01-29
    • 주식회사 아모메디
    • 김찬
    • D01D4/02D01D5/00B82Y40/00
    • D01D5/0069B82Y40/00
    • A spinning nozzle for manufacturing multi-component nanofiber and a manufacturing method of the multi-component nanofiber using the same are provided to produce nanofiber having desired properties by mixing spinning liquid having various components regardless of the component of the spinning liquid. A spinning nozzle for manufacturing multi-component nanofiber includes the followings: a plurality of spray nozzle parts(21) spraying spinning liquid which is supplied from a plurality of storing tanks storing a specific component; a distribution part(30) distributing each spinning liquid to a plurality of storing tanks to an arbitrary rate; and a spray nozzle member(20). The distribution part includes a first distribution plate(31) and a second distribution plate(32).
    • 提供一种用于制造多组分纳米纤维的纺丝喷嘴和使用其的多组分纳米纤维的制造方法,通过混合具有各种组分的纺丝液而制造具有所需性能的纳米纤维,而与纺丝液体的成分无关。 一种用于制造多组分纳米纤维的纺丝嘴,包括:多个喷嘴部分(21)喷射从储存特定组分的多个储存罐供应的纺丝液; 分配部分(30)将每个纺丝液体分配到多个储存罐以任意的速率; 和喷嘴构件(20)。 分配部包括第一分配板(31)和第二分配板(32)。
    • 66. 发明授权
    • 원심전기방사장치 및 이를 이용한 나노섬유의 대량제조방법
    • 电离离心纺丝装置及使用其制备纳米纤维的方法
    • KR100780346B1
    • 2007-11-30
    • KR1020060090561
    • 2006-09-19
    • 주식회사 아모메디
    • 김찬
    • D01D5/00B82Y40/00
    • D01D5/0069B82Y40/00D01D5/18D01F9/145
    • A method for producing nanofibers and a centrifugal electrospinning apparatus for performing the method are provided to mass-produce nanofibers each having a radius of less than 1 mum, by electro-spinning polymers centrifugally in melted state or a solution state. Synthetic polymers or natural polymers are supplied to a spinner disc(8) in a melted state or a solution state. A nanofiber of three-dimensional nonwoven state is produced on a suction collector(14) by discharging the polymers on the suction collector through a spinning nozzle within the spinner disc of high voltage state, which rotates at high rate, and jetting compressed air(20) to the discharged polymer in a direction of the suction collector from the spinner disc.
    • 提供用于制造纳米纤维的方法和用于执行该方法的离心静电纺丝装置,通过以熔融状态或溶液状态离心地电纺丝聚合物大量生产半径小于1um的纳米纤维。 将合成聚合物或天然聚合物以熔化状态或溶液状态供应到旋转器盘(8)。 在抽吸集电器(14)上通过在高压状态旋转的旋转喷嘴内的纺丝喷嘴排出聚合物,在吸收集电体(14)上产生三维非织造状态的纳米纤维,其高速旋转,并喷射压缩空气(20 )从抽吸盘沿抽吸收集器的方向排出到排出的聚合物上。
    • 67. 发明公开
    • 은 나노입자 함유 나노섬유 필터여재 및 그 제조방법
    • 含有银纳米颗粒的抗菌纳米纤维过滤介质及其制造方法
    • KR1020070097936A
    • 2007-10-05
    • KR1020060028900
    • 2006-03-30
    • 주식회사 아모메디
    • 김찬
    • B01D39/02B01D39/00B82Y30/00
    • A nanofiber filter medium and a method for manufacturing the same are provided to prevent the separation of silver nanoparticles, by highly dispersing silver nanoparticles on a surface of a nanofiber layer through electro-spinning and electro-spraying. A nanofiber layer(80) is formed on a nonwoven fabric medium(10) for a filter by electro-spinning a nanofiber forming polymer solution. Silver nanoparticles are dispersed on a surface of the nanofiber layer by electro-spraying a silver nanoparticle containing solution. The forming of the nanofiber layer and the dispersing of the silver nanoparticles are continuously performed on a roll process. Another nonwoven fabric medium is additively attached to the surface of the nanofiber layer.
    • 提供纳米纤维过滤介质及其制造方法,以通过电纺丝和电喷雾将纳米纤维层的表面高分散在银纳米颗粒上,防止银纳米颗粒分离。 通过电纺丝纳米纤维形成聚合物溶液,在用于过滤器的无纺布介质(10)上形成纳米纤维层(80)。 通过电喷雾含银纳米颗粒溶液将银纳米颗粒分散在纳米纤维层的表面上。 纳米纤维层的形成和银纳米颗粒的分散在轧制过程中连续进行。 另一种非织造织物介质被附加附着在纳米纤维层的表面上。
    • 68. 发明公开
    • 연료전지용 가스 확산층의 형성방법
    • 燃料电池扩散层的制备方法
    • KR1020070075775A
    • 2007-07-24
    • KR1020060004402
    • 2006-01-16
    • 주식회사 아모메디
    • 김찬
    • H01M4/88H01M4/86H01M8/02B82Y30/00
    • H01M4/8807C01P2004/03C01P2006/40H01M4/8605H01M4/8821H01M4/8882Y02E60/50
    • Provided is a method for forming a diffusion layer for a fuel cell, wherein the diffusion layer has excellent mechanical and electrical properties and uniform pores, supplies fuel and air smoothly, is capable of controlling even moisture, and reduces the volume of a total system. The method for forming a diffusion layer for a fuel cell comprises the steps of: using, as a carbon fiber precursor, at least one selected from polyacrylonitrile(PAN), phenol, and pitch, a mixture thereof, or a compound with a nano-size material to prepare a spinning solution; applying high voltage to the spinning solution to perform electrospinning; subjecting the electrospun material to oxidation stabilization under an air atmosphere; carbonizing the elecrospun material at 500-1500°C to obtain nanocomposite carbon fiber and subjecting the nanocomposite carbon fiber to water repelling treatment; and using the obtained nanocomposite carbon fiber as a gas diffusion layer of a fuel cell.
    • 提供一种用于形成燃料电池用扩散层的方法,其中扩散层具有优异的机械和电气特性以及均匀的孔,平稳地供应燃料和空气,能够均匀地控制湿气,并且减小了整个系统的体积。 用于形成燃料电池用扩散层的方法包括以下步骤:使用选自聚丙烯腈(PAN),苯酚和沥青中的至少一种作为碳纤维前体,其混合物或具有纳米尺寸的化合物, 制备纺丝溶液; 对纺丝溶液施加高电压进行静电纺丝; 在空气气氛下对静电纺丝材料进行氧化稳定化; 在500-1500℃下对电纺丝材料进行碳化,得到纳米复合碳纤维,并对纳米复合碳纤维进行拒水处理; 并使用得到的纳米复合碳纤维作为燃料电池的气体扩散层。