진공 단열재 및 그 제조 방법
    61.
    发明公开
    진공 단열재 및 그 제조 방법 无效
    真空绝缘材料及其制备方法

    公开(公告)号:KR1020110077860A

    公开(公告)日:2011-07-07

    申请号:KR1020090134529

    申请日:2009-12-30

    Abstract: PURPOSE: A vacuous heat insulator and a manufacturing method thereof are provided to increase the installation efficiency of the getter material, and to prevent the thermal performance degradation of product. CONSTITUTION: The vacuous heat insulator(100) includes: a core part; an coating material(140); and a getter material. The core part(110) includes the core and the getter material and the coating material coats the core part. The getter material has feature as stick type getter material, and is inserted within the core in the core sid part. The core(120) is a group consisting of the glass fiber, polyurethanes, polyester, polypropylene and polyethylene. The e getter material(130) is a group consisting of the ssilica gel, zeolite, activated charcoal, zirconium, barium compound, lithium compound, magnesium compounds, calcium compound and quicklime.

    Abstract translation: 目的:提供真空隔热件及其制造方法,以提高吸气剂材料的安装效率,并防止产品的热性能下降。 构成:空泡绝热体(100)包括:芯部; 涂料(140); 和吸气材料。 核心部分(110)包括芯部和吸气材料,涂覆材料包覆芯部分。 吸气材料具有棒状吸气材料的功能,并且被插入在芯部部分的芯体内。 芯(120)是由玻璃纤维,聚氨酯,聚酯,聚丙烯和聚乙烯组成的组。 吸收剂材料(130)是由硅胶,沸石,活性炭,锆,钡化合物,锂化合物,镁化合物,钙化合物和生石灰组成的组。

    진공 단열재용 복합 필름 및 이를 적용한 진공 단열재
    62.
    发明公开
    진공 단열재용 복합 필름 및 이를 적용한 진공 단열재 无效
    用于真空绝热面板和真空绝缘面板的复合膜

    公开(公告)号:KR1020110072796A

    公开(公告)日:2011-06-29

    申请号:KR1020090129873

    申请日:2009-12-23

    Abstract: PURPOSE: A co-extruded film is provided to improve long term endurance of a vacuous insulator by applying an aluminum foil consisting of iron(Fe) below 0.65 weight% to a barrier layer and by applying a PET film coated with a PVDC to a protective layer. CONSTITUTION: The co-extruded film for the vacuous insulator includes a protective layer(210) absorbing and dispersing external shock; a barrier layer(220), which is adhered at the lower part of the protective layer, and secludes inflow of external gas or moisture; a sealing layer(230), which is adhered at the lower part of the barrier layer, and is closely adhered to the surface of a core material. The barrier layer includes the aluminum foil consisting of iron(Fe) below 0.65 weight%. The protective layer is formed by adhering a PET[Polyethylene Terephthalate] film coated with the PVDC[Polyvinylidene Chloride] and a nylon film. A surface of the PET film coated with the PVDC is exposed to outside. A thickness of the PET film coated with the PVDC is 5~25μm. A thickness of the nylon film is 5~30μm. An inorganic arc layer consisting of alumina or silica is formed in the lower part of the PET film coated with the PVDC. The barrier layer is formed by adhering the aluminum foil and an EVOH [Ethylene Vinyl Alcohol] film. The barrier layer is formed to stick the EVOH film to the sealing layer. The vacuous insulator includes the core materials; a coating material, which is formed into the co-extruded film having the barrier feature to gas or moisture and covers up the core material. The co-extruded film includes a protective layer formed by adhering the PET film coated with the PVDC and the nylon film; a barrier layer, which is adhered at the lower part of the protective layer and has the aluminum foil consisting of iron(Fe) below 0.65 weight%; and a sealing layer, which is adhered at the lower part of the barrier layer and is closely adhered to a core material.

    Abstract translation: 目的:提供一种共挤塑膜以通过将由铁(Fe)低于0.65重量%的铁(由低于0.65重量%的铁)组成的铝箔施加到阻挡层上,并通过将涂覆有PVDC的PET薄膜涂覆到保护层上来提高真空绝缘体的长期耐久性 层。 构成:用于真空绝缘体的共挤出膜包括吸收和分散外部冲击的保护层(210) 阻挡层(220),其粘附在保护层的下部,并且遮蔽外部气体或湿气的流入; 密封层(230),其粘附在阻挡层的下部,并且紧密地粘合到芯材的表面。 阻挡层包括由铁(Fe)低于0.65重量%组成的铝箔。 保护层通过粘附PVDC [聚偏二氯乙烯]和尼龙膜涂布的PET [聚对苯二甲酸乙二醇酯]膜而形成。 涂有PVDC的PET膜的表面暴露于外部。 用PVDC涂覆的PET膜的厚度为5〜25μm。 尼龙膜的厚度为5〜30μm。 在涂布有PVDC的PET膜的下部形成由氧化铝或二氧化硅构成的无机电弧层。 阻挡层通过粘合铝箔和EVOH [乙烯 - 乙烯醇]膜而形成。 形成阻挡层以将EVOH膜粘附到密封层。 真空绝缘体包括芯材料; 一种涂覆材料,其被形成为具有对于气体或湿气的阻挡特征并且覆盖芯材料的共挤出膜。 共挤出膜包括通过粘附涂布有PVDC的PET膜和尼龙膜形成的保护层; 阻挡层,其粘附在保护层的下部,并且具有由铁(Fe)低于0.65重量%组成的铝箔; 以及密封层,其粘附在阻挡层的下部并且紧密地粘附到芯材。

    진공 단열재용 복합 필름 및 이를 적용한 진공 단열재
    63.
    发明公开
    진공 단열재용 복합 필름 및 이를 적용한 진공 단열재 无效
    用于真空绝热面板和真空绝缘面板的复合膜

    公开(公告)号:KR1020110072795A

    公开(公告)日:2011-06-29

    申请号:KR1020090129872

    申请日:2009-12-23

    Abstract: PURPOSE: A co-extruded film is provided to improve long term endurance of a vacuous insulator by forming an inorganic arc layer consisting of mineral components such as alumina and silica on a protective layer. CONSTITUTION: The co-extruded film for the vacuous insulator(200) includes a protective layer(210) absorbing and dispersing external shock; a barrier layer(220), which is adhered at the lower part of the protective layer, and secludes inflow of external gas or moisture; a sealing layer(230), which is adhered at the lower part of the barrier layer, and is closely adhered to the surface of a core material. The protective layer has an inorganic arc layer consisting of mineral components. The mineral components are either alumina or silica. The protective layer is formed by adhering a nylon film and a PET (Polyethylene Terephthalate) film. The protective layer is formed to expose the PET film to outside. The inorganic arc layer is formed in the lower part of the PET film. A thickness of the inorganic arc layer is 5~300 nm. The sealing layer is formed of a film consisting of LLDPE (Linear Low-Density Polyethylene), LDPE (Low Density Polyethylene), and HDPE [High Density Polyethylene] or CPP (Casting Polypropylene). The barrier layer is formed by adhering an aluminum foil and an EVOH (Ethylene Vinyl Alcohol) film. The vacuous insulator includes the core materials; a coating material, which is formed into the co-extruded film having the barrier feature to gas or moisture and covers up the core material.

    Abstract translation: 目的:通过在保护层上形成由诸如氧化铝和二氧化硅的矿物组分组成的无机电弧层来提供共挤出膜以改善真空绝缘体的长期耐久性。 构成:用于真空绝缘体(200)的共挤出膜包括吸收和分散外部冲击的保护层(210); 阻挡层(220),其粘附在保护层的下部,并且遮蔽外部气体或湿气的流入; 密封层(230),其粘附在阻挡层的下部,并且紧密地粘合到芯材的表面。 保护层具有由矿物成分构成的无机电弧层。 矿物组分是氧化铝或二氧化硅。 保护层通过粘合尼龙膜和PET(聚对苯二甲酸乙二醇酯)膜而形成。 形成保护层以将PET膜暴露于外部。 无机电弧层形成在PET膜的下部。 无机电弧层的厚度为5〜300nm。 密封层由由LLDPE(线性低密度聚乙烯),LDPE(低密度聚乙烯)和HDPE [高密度聚乙烯]或CPP(铸造聚丙烯)组成的膜形成。 阻挡层通过粘附铝箔和EVOH(乙烯乙烯醇)膜而形成。 真空绝缘体包括芯材料; 一种涂覆材料,其被形成为具有对于气体或湿气的阻挡特征并且覆盖芯材料的共挤出膜。

    흡음성, 단열성, 난연성 및 인테리어성이 우수한 벽마감재
    64.
    发明公开

    公开(公告)号:KR1020110043066A

    公开(公告)日:2011-04-27

    申请号:KR1020090100005

    申请日:2009-10-21

    CPC classification number: E04F13/0867 E04F13/0875 E04F2290/04

    Abstract: PURPOSE: A wall finishing material with excellent sound absorbing, heat insulating, flame retardant, and interior properties is provided to couple a glass fiber needle mat with high-porosity to a perforated interior wallpaper. CONSTITUTION: A wall finishing material(10) with excellent sound absorbing, heat insulating, flame retardant, and interior properties comprises an interior wallpaper(11), a needle mat(13), adhesive(14), and perforated holes(12). The needle mat is formed by needle-punching a glass fiber. The adhesive fixes the interior wallpaper to the needle mat. The perforated holes are formed in the interior wallpaper.

    Abstract translation: 目的:提供具有优异吸音,隔热,阻燃和内部特性的墙面装饰材料,将具有高孔隙率的玻璃纤维针垫与穿孔的内墙纸相连接。 构成:具有优良吸声,隔热,阻燃和内部特性的墙面整理材料(10)包括内部壁纸(11),针垫(13),粘合剂(14)和穿孔(12)。 针刺毡通过针刺玻璃纤维形成。 粘合剂将内部壁纸固定在针垫上。 穿孔是在室内壁纸中形成的。

    단열시트
    65.
    发明公开
    단열시트 有权
    热绝缘片

    公开(公告)号:KR1020100095144A

    公开(公告)日:2010-08-30

    申请号:KR1020090014272

    申请日:2009-02-20

    Abstract: PURPOSE: A thermal insulating sheet is provided to improve thermal insulating performance, streamline manufacturing processes, and increase tensile strength and joint force. CONSTITUTION: A thermal insulating sheet comprises a sheet and a porous material. The sheet comprises PVC, glass cotton, rock wool, and ceramic fibers. The porous material comprises one among perlite, vermiculite, silica bead, alumina bead, fumed silica, carbon nanotube, zero gel, and aerogel. The porous material is coupled with the sheet by the cross-linking agent and binder.

    Abstract translation: 目的:提供隔热片,以提高绝热性能,简化制造工艺,提高抗拉强度和接合力。 构成:绝热片包括片材和多孔材料。 该片材包括PVC,玻璃棉,岩棉和陶瓷纤维。 多孔材料包括珍珠岩,蛭石,二氧化硅珠,氧化铝珠,热解法二氧化硅,碳纳米管,零凝胶和气凝胶中的一种。 多孔材料通过交联剂和粘合剂与片材结合。

    채널형 클립이 적용되는 테크 자재의 결합 시스템
    66.
    发明公开
    채널형 클립이 적용되는 테크 자재의 결합 시스템 有权
    使用通道夹的材料联接系统

    公开(公告)号:KR1020090117289A

    公开(公告)日:2009-11-12

    申请号:KR1020080043270

    申请日:2008-05-09

    CPC classification number: E04F15/02044 E04F2015/02122 E04F2201/05

    Abstract: PURPOSE: A coupling system for deck materials using a channel clip is provided to install or remove the deck material easily, to replace materials for maintenance easily, and to prevent or compensate the contraction/expansion of the deck materials. CONSTITUTION: A coupling system for deck materials comprises a channel clip(1). The channel clip includes a rectangular base plate(30) and a plurality of clip portions(10) which protruded at regular intervals on the top surface of the base plate in the longitudinal direction. The deck materials have coupling grooves on both sides in which the clip portions of the channel clip are fitted.

    Abstract translation: 目的:提供使用通道夹的甲板材料的联接系统,以容易地安装或拆卸甲板材料,以便容易地更换维护材料,并防止或补偿甲板材料的收缩/膨胀。 构成:甲板材料的联接系统包括通道夹(1)。 通道夹包括矩形基板(30)和在基板的纵向方向上以规则间隔突出的多个夹子部分(10)。 甲板材料在两侧具有连接槽,其中夹持通道夹的夹持部分。

    열수기용 다중 단열 구조 형성 방법 및 다중 단열 구조를 갖는 열수기
    67.
    发明公开
    열수기용 다중 단열 구조 형성 방법 및 다중 단열 구조를 갖는 열수기 有权
    热水加热装置多热绝缘结构的方法和具有多绝缘结构的热水加热装置

    公开(公告)号:KR1020150025118A

    公开(公告)日:2015-03-10

    申请号:KR1020130102329

    申请日:2013-08-28

    CPC classification number: F24H1/06 F16L59/021 F16L59/065 F24H1/08 F24H9/02

    Abstract: 본 발명은 원통형의 열수기를 준비하는 열수기 준비 단계와; 진공 단열재에 다수의 접힘부를 형성하여, 상기 열수기의 외면에 밀착되도록 감싸는 진공 단열재 설치 단계; 및 상기 진공 단열재의 외면에, 외측 단열재를 설치하는 외측 단열재 설치 단계를 포함하는 열수기용 다중 단열 구조 형성 방법을 제공한다. 또한, 본 발명은 다중 단열 구조를 갖는 열수기도 제공한다.

    Abstract translation: 本发明提供一种形成热水加热装置的多层绝缘结构的方法,包括:制备圆筒形热水加热装置的热水加热装置制备步骤; 真空绝热安装步骤,在真空绝热中形成多个折叠部分,被覆盖以附着在所述热水加热装置的外侧; 以及在真空绝热体的外侧设置外部安装的外部绝缘安装步骤。 此外,本发明提供一种具有多重绝缘结构的热水加热装置。

    나노세공 물질을 포함하는 게터재 및 그 제조방법
    70.
    发明授权
    나노세공 물질을 포함하는 게터재 및 그 제조방법 有权
    具有纳米多孔材料的材料及其制造方法

    公开(公告)号:KR101455902B1

    公开(公告)日:2014-11-04

    申请号:KR1020120048914

    申请日:2012-05-09

    Abstract: 본 발명은 비표면적이 100m
    2 /g이상인 나노세공 물질과 수분 흡착제가 혼합된 것을 특징으로 하는 게터재를 제공한다.
    또한, 본 발명은 비표면적인 100m
    2 /g이상인 나노세공 물질과 수분 흡착제를 혼합하여 혼합물을 마련하는 단계; 상기 혼합물을 150℃이상의 온도로 열처리 하는 단계; 및 상기 열처리된 혼합물을 스테인레스(SUS) 캡 또는 알루미늄 캡에 삽입하는 단계를 포함하는 것을 특징으로 하는 게터재의 제조방법을 제공한다.

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