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    • 17. 发明公开
    • 기능성 에프알피 재료 및 이를 이용한 세정탑 및 이의 제조방법
    • 功能性FRP材料和使用其的橡胶生产方法和橡胶
    • KR1020130023900A
    • 2013-03-08
    • KR1020110086996
    • 2011-08-30
    • 곽동창
    • 곽동창남병현백영수
    • B32B17/10B32B27/18B32B37/02B01D47/06
    • B32B27/12B01D47/06B23B27/18B32B27/36B32B2038/0016B32B2038/0076B32B2262/101B32B2264/102
    • PURPOSE: A functional FRP(Fiberglass Reinforced Plastics) material is provided to significantly improve chemical resistance, heat resistance, and durability by mixing a functional additive to an unsaturated polyester resin or a vinylester resin and mixing a functional additive to a phenol resin. CONSTITUTION: A pillar type FRP material(A) is manufactured by stacking multiple layers of pillar type FRP resin layers(30) and glass fiber layers(40) and solidifying the stacked layers. The pillar type FRP resin layers includes an unsaturated polyester resin or a vinylester resin and at least one selected from silicate, aluminum hydroxide, a dried material of semiconductor etching waste water, talc, iron powder, or titanium powder. A fire-proof type FRP material(B) is manufactured by stacking and solidifying multiple fire-proof type FRP resin layers(31) and glass fiber layers(40). The fire-proof FRP resin layers include a phenol resin and at least one selected from silicate, aluminum hydroxide, a dried material of semiconductor etching waste water, talc, iron powder, or titanium powder.
    • 目的:通过将功能性添加剂与不饱和聚酯树脂或乙烯基酯树脂混合并将功能添加剂与酚醛树脂混合,提供功能性FRP(玻璃纤维增​​强塑料)材料,以显着提高耐化学性,耐热性和耐久性。 构成:柱状FRP材料(A)通过堆叠多层柱状FRP树脂层(30)和玻璃纤维层(40)并固化堆叠层来制造。 支柱型FRP树脂层包括不饱和聚酯树脂或乙烯基酯树脂和选自硅酸盐,氢氧化铝,半导体蚀刻废水的干燥材料,滑石,铁粉或钛粉末中的至少一种。 通过堆叠固化多个防火型FRP树脂层(31)和玻璃纤维层(40)来制造防火型FRP材料(B)。 防火FRP树脂层包括酚醛树脂和选自硅酸盐,氢氧化铝,半导体蚀刻废水的干燥材料,滑石,铁粉或钛粉末中的至少一种。
    • 19. 发明授权
    • 탄소섬유-에폭시 복합재료와 강철재료 간의 양면겹치기동시경화 접합방법
    • 碳 - 环氧复合材料与钢粘土之间的共固化加工方法
    • KR100765650B1
    • 2007-10-10
    • KR1020060056960
    • 2006-06-23
    • 현대자동차주식회사
    • 신금철
    • B32B15/04B32B15/18
    • B32B38/004B32B15/14B32B15/18B32B2038/0016B32B2038/0076B32B2262/106B32B2363/00
    • A co-cured joining method of carbon-epoxy composite and steel materials is provided to make the entire joining process simple by excluding a process for treating the composite material joining surface and a joining process using an adhesive. A co-cured joining method of carbon-epoxy composite and steel materials comprises the steps of: polishing the surface of the steel material mechanically and chemically; stacking the non-cured composite material and the steel material correspondently to the size and thickness and stacking the non-cured composite materials on the both sides of the steel material by putting the steel material on the non-cured composite material and stacking the non-cured composite material on the steel material again; setting the position of a joining surface in advance by pressing the joining surface of the composite material and the steel material with fingers and pre-bonding the materials; preventing parts of the steel material not to be bonded, from being stuck to each other by installing a teflon block; covering the upper and lower surfaces of the bonded composite and steel material with a teflon film and disposing resin blocking teflon dams on four sides; vacuum-packing the composite and steel material where the teflon film and the resin blocking teflon dams are formed; applying predetermined pressure to the composite and steel material vacuum-packed together with the teflon film and the resin blocking teflon dams, in an autoclave by connecting a pressure hose and performing a curing process according to a temperature cycle; and bonding the composite and steel materials by bonding the resin included in the composite material, on the surface of the steel material by curing.
    • 提供碳 - 环氧复合材料和钢材的共固化接合方法,通过排除用于处理复合材料接合表面的方法和使用粘合剂的接合方法,使整个接合工艺简单。 碳 - 环氧复合材料和钢材的共固化接合方法包括以下步骤:机械和化学抛光钢材表面; 将未固化的复合材料和钢材按照尺寸和厚度堆叠,并将钢材料放在非固化的复合材料上并将非固化的复合材料堆叠在钢材的两面上, 再次在钢材上固化复合材料; 通过用手指按压复合材料和钢材的接合表面并预先粘合材料来预先设定接合表面的位置; 通过安装聚四氟乙烯块来防止钢材不粘结的部分彼此粘合; 用聚四氟乙烯膜覆盖粘结复合材料和钢材的上表面和下表面,并在四面设置树脂阻挡聚四氟乙烯坝; 真空包装聚四氟乙烯膜和树脂阻挡聚四氟乙烯坝的复合材料和钢材; 通过连接压力软管并根据温度循环执行固化过程,在高压釜中对与特氟龙膜和树脂阻挡聚四氟乙烯坝一起真空包装的复合材料和钢材施加预定压力; 以及通过将复合材料中包含的树脂通过固化粘合在钢材的表面上来粘合复合材料和钢材料。