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    • 2. 发明公开
    • 방진온돌마루 및 그제조방법
    • 空值
    • KR1020080082946A
    • 2008-09-12
    • KR1020080042896
    • 2008-05-08
    • 박근용
    • 박근용
    • E04F15/024E04F15/04E04C2/20
    • E04F15/107B32B21/02B32B21/04B32B38/0008B32B38/0012B32B2038/0016
    • A vibrationproof underfloor heating floor and a manufacturing method thereof are provided to absorb impact sound effectively by utilizing a cork laminated board with sound absorbance, vibrationproof, and high elasticity. A vibrationproof underfloor heating floor comprises a cork laminated board layer(20), an adhesive layer(A), a plywood layer(10), an adhesive layer, a cork laminated board layer, an adhesive layer, a surface layer(30), and a UV coating layer(40), which are laminated sequentially from the bottom. A cork laminated board of the cork laminated board layer is made by burning 0.1 to 5 mm cork particles. The thickness of the cork laminated board ranges from 0.8mm to 6mm. The density of the cork laminated board ranges from 380kg/m3 to 550kg/m3.
    • 提供一种防震地板加热地板及其制造方法,通过利用具有吸声性,防振性和高弹性的软木层压板来有效地吸收冲击声。 防震地板加热地板包括软木层压板层(20),粘合剂层(A),胶合板层(10),粘合剂层,软木层压板层,粘合剂层,表面层(30) 以及从底部依次层叠的UV被覆层(40)。 软木层压板层的软木层压板是通过燃烧0.1至5毫升软木颗粒制成的。 软木层压板的厚度范围为0.8mm至6mm。 软木层压板的密度范围为380kg / m3至550kg / m3。
    • 3. 发明授权
    • 반사체 및 그 제조 방법
    • 反思片及其制作方法
    • KR100813142B1
    • 2008-03-13
    • KR1020060108129
    • 2006-11-03
    • 김현규
    • 김현규
    • B32B7/02B32B15/08
    • B32B37/24B32B7/12B32B15/09B32B15/20B32B27/36B32B37/12B32B38/0012B32B2037/243B32B2038/0016B32B2307/416B32B2311/08
    • A reflective sheet and a manufacturing method for the same are provided to secure good durability and high reflectivity of the reflective sheet by continuously preventing corrosion generated at a boundary of a silver reflecting layer. A reflective sheet manufacturing method comprises the steps of: making aluminum thin films or aluminum foils(14) into an adhesive laminated sheet by applying an acryl resin adhesive on one surface of polyester; degreasing the surface of the aluminum thin film or aluminum foil by alkali solution and rinsing the aluminum thin film or aluminum foil, and then electrolytic-polishing and rinsing the aluminum thin film or aluminum foil; activating the pretreated aluminum surface by HF(Hydrofluoric acid) diluted solution; continuously inserting a sheet having the activated aluminum surface, into a plating bath and electrodepositing nickel on the aluminum surface by applying the aluminum thin film or foil as the cathode and nickel as the anode; continuously inserting the sheet plated with nickel, into an electric plating bath and forming a reflecting surface by electrodepositing silver on the aluminum thin film or foil by applying the aluminum thin film or foil as the cathode and silver as the anode; and forming a protecting film(11) by coating the silver reflecting layer with non-polar hydrophobic thermoplastic resin solution.
    • 提供反射片及其制造方法,以通过连续地防止在银反射层的边界处产生的腐蚀来确保反射片的良好的耐久性和高反射率。 反射片制造方法包括以下步骤:通过在聚酯的一个表面上施加丙烯酸树脂粘合剂将铝薄膜或铝箔(14)制成粘合层压片; 用碱溶液对铝薄膜或铝箔的表面进行脱脂,冲洗铝薄膜或铝箔,然后电解抛光和冲洗铝薄膜或铝箔; 通过HF(氢氟酸)稀释溶液活化预处理的铝表面; 通过将铝薄膜或箔作为阴极和镍作为阳极,将具有活化的铝表面的片材连续地插入电镀浴中并在铝表面上电沉积镍; 将镀镍的片材连续地插入电镀浴中,并通过将铝薄膜或箔作为阴极和银作为阳极将银沉积在铝薄膜或箔上,形成反射表面; 并通过用非极性疏水性热塑性树脂溶液涂覆银反射层形成保护膜(11)。
    • 4. 发明公开
    • 바잘트 탄소섬유를 이용한 콘크리트구조물 보강방법
    • 使用碱性碳纤维增强建筑结构及其构造方法
    • KR1020040039078A
    • 2004-05-10
    • KR1020020066723
    • 2002-10-31
    • 주식회사 웅천텍스텍
    • 유석용
    • B32B11/10E04G23/02E04C5/00
    • B32B37/12B32B7/12B32B13/14B32B38/0012B32B38/164B32B2037/243B32B2038/0016B32B2038/002B32B2262/106E04C5/00E04G23/02
    • PURPOSE: Provided are a building structure reinforced using a basalt carbon fiber which has the 2 to 3 times increased durability and earthquake resistance, and a construction method thereof. CONSTITUTION: The building structure reinforced using a basalt carbon fiber comprises a building structure(1); a binder(2) for undercoating formed on the building structure; an adhesive layer(3) formed on the binder for undercoating; and fabrics(4) formed on the adhesive layer and woven by the basalt carbon fiber. The construction method of the building structure comprises the steps of: preparing the basalt carbon fiber and reinforcing the building structure. The preparation method of the basalt carbon fiber comprises coating a basalt fiber with a carbon colloid solution, drying and heat treating to finish the first coating, and second coating in the same way as the first coating, thereby supplying the basalt carbon fiber in a desired thickness and electric resistance dimension.
    • 目的:提供使用玄武岩碳纤维增强的建筑结构,其具有耐久性和耐震性提高2至3倍及其施工方法。 构成:使用玄武岩碳纤维增强的建筑结构包括建筑结构(1); 用于在建筑结构上形成的底涂层的粘合剂(2); 形成在用于底涂的粘合剂上的粘合剂层(3) 以及形成在粘合剂层上并由玄武岩碳纤维织造的织物(4)。 建筑结构的施工方法包括:制备玄武岩碳纤维,加强建筑结构。 玄武岩碳纤维的制备方法包括用碳胶体溶液涂覆玄武岩纤维,干燥和热处理以完成第一涂层,并以与第一涂层相同的方式进行第二次涂覆,从而将玄武岩碳纤维提供到期望的 厚度和电阻尺寸。
    • 5. 发明公开
    • 문화재 수장고용 항균불투습판재 및 그 제조방법
    • 防腐和防潮用于文化遗产及其生产的仓库
    • KR1020040031813A
    • 2004-04-14
    • KR1020020059694
    • 2002-10-01
    • 주식회사 시공테크
    • 박정수이장묵
    • B32B15/10
    • B32B7/12B32B15/10B32B15/20B32B21/02B32B37/08B32B37/12B32B38/0004B32B2038/0016B32B2307/7145B32B2307/7246C09J11/04
    • PURPOSE: Provided is an antibacterial and moisture impermeable plate for storehouse of cultural properties, which has excellent strength, flame resistance and water resistance, and strong antibacterial properties. CONSTITUTION: The plate material(1) comprises: a particle board(2) composed of a core layer(2a) comprising a particle layer in which large particles crushed to a size larger than or equal to the size of sawdust are distributed, and a surface layer(2b) and a backside layer(2c) in which small particles crushed into a size smaller than the size of sawdust are distributed; and aluminum sheets(3a,3b) adhered to both sides of the particle board(2), wherein an antibacterial agent formed of a composite material of an iodine-based compound and a chlorine-based compound is uniformly distributed in the particle layers of the core layer(2a), surface layer(2b) and backside layer(2c) at a concentration of 600-800 ppm.
    • 用途:具有优良的强度,阻燃性和耐水性,抗菌性强等优点,具有抗菌,防潮防腐的功能。 构成:板材(1)包括:由芯层(2a)构成的颗粒板(2),该芯层包括粉碎成大于或等于锯屑尺寸的大颗粒的粒子层,以及 表面层(2b)和背面层(2c),其中粉碎成小于锯屑尺寸的小颗粒; 和粘附在刨花板(2)两侧的铝片(3a,3b),其中由碘系化合物和氯系化合物的复合材料形成的抗菌剂均匀分布在 芯层(2a),表面层(2b)和背面层(2c),浓度为600〜800ppm。
    • 6. 发明授权
    • 불연성 건축물 내외장용 보-드 및 그것의 제조방법.
    • 用于室内装饰和建筑结构的不合框架及其制备方法
    • KR100252673B1
    • 2000-04-15
    • KR1019980003175
    • 1998-02-05
    • 김경선
    • 김경선
    • C04B14/10C04B18/26C04B22/12
    • C04B28/001B32B17/02B32B2038/0016B32B2307/306C04B2111/00612C04B2111/28Y02W30/97C04B14/043C04B14/106C04B18/26C04B22/124C04B22/143C04B40/02C04B2103/54
    • PURPOSE: Lightweight interior and exterior boards for inflammable construction are provided, which have high bend strength, diverse surface patterns and workability by forming a transfer paper layer on sheet comprising activated white clay, a main material, and additives. CONSTITUTION: The manufacturing method comprises the steps of: mixing activated white clay with additives such as saw dust or millet stalk powder, coloring agents and bittern or materials containing CaSO4, CaSiO3, Mg and MgCl2 for a mixture paste(1); supplying glass fiber(2) to both sides of the paste on a forming plate such as glass, polyvinyl chloride(PVC) or polypropylene(PP) and passing through a roller to form a sheet having a thickness; drying and polishing; coating a mixture sheet with epoxy resin(3), adhesive agent(4), transfer film(5) having various patterns, ultraviolet-hardened resin(6) and overlay film(7).
    • 目的:提供易燃结构的轻质内外板,通过在包含活性白土,主要材料和添加剂的片材上形成转印纸层,具有高弯曲强度,多种表面图案和可加工性。 构成:制造方法包括:将活性白土与锯屑或小米秸秆粉末,着色剂和卤水或含有CaSO 4,CaSiO 3,Mg和MgCl 2的物质混合混合糊(1)混合; 在玻璃,聚氯乙烯(PVC)或聚丙烯(PP)等成型板上将糊状玻璃纤维(2)供给玻璃纤维(2),通过辊形成厚度的片材; 干燥和抛光; 用环氧树脂(3),粘合剂(4),各种图案的转印膜(5),紫外线硬化树脂(6)和覆盖膜(7)涂布混合物片材。