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公开(公告)号:KR1020140004876A
公开(公告)日:2014-01-14
申请号:KR1020120072147
申请日:2012-07-03
Applicant: (주)엘지하우시스
IPC: F16L59/065 , F16L59/04
CPC classification number: F16L59/065 , B32B3/04 , B32B7/12 , B32B15/085 , B32B27/205 , B32B37/06 , B32B37/10 , B32B37/30 , B32B38/04 , B32B2038/047 , B32B2307/304 , B32B2307/7244 , B32B2323/04 , B32B2323/10 , E04B1/803 , F16L59/08 , Y10T156/1056 , Y10T428/231
Abstract: A vacuum insulation, comprising heartwood and an outer cover and having sealing strength of 5-15kgf, is provided. The outer cover includes, from the outside, a surface protective layer, a metal barrier layer, and a laminated structure of a heat deposited layer. In addition, the vacuum insulation manufacturing method comprises the following steps of: preparing the outer cover by allowing the heat deposited layer, the metal barrier layer, and the surface protective layer to be sequentially laminated; inserting heartwood between the outer cover; forming a vacuum insulation by allowing the outer cover to be decompressed and sealed; and treating the vacuum insulation by heat.
Abstract translation: 提供了一种包括心材和外盖并且具有5-15kgf的密封强度的真空绝热体。 外盖从外部包括表面保护层,金属阻挡层和热沉积层的层叠结构。 此外,真空绝缘制造方法包括以下步骤:通过使沉积层,金属阻挡层和表面保护层顺次层压而制备外盖; 将心材插入外盖之间; 通过允许外盖减压和密封来形成真空绝热; 并通过加热处理真空绝热。
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公开(公告)号:KR1020130140357A
公开(公告)日:2013-12-24
申请号:KR1020120063664
申请日:2012-06-14
Applicant: (주)엘지하우시스
IPC: F16L59/065 , F16L59/04 , B32B17/10
CPC classification number: F16L59/065 , B01J20/0211 , B32B17/067 , B32B2307/304 , F16L59/029 , F16L59/04
Abstract: The present invention provides a method for manufacturing a vacuum insulation panel, comprising the following steps of: manufacturing a vacuum insulation panel, which is equipped with a core material and an outer shell material surrounding the core material; and forming bending groove units with the number proportional to the bending width of the bending unit. Also, the present invention provides the vacuum insulation panel manufactured by the manufacturing method.
Abstract translation: 本发明提供一种真空绝热面板的制造方法,其特征在于,包括以下步骤:制造真空绝热面板,所述真空绝热面板配备有围绕所述芯材的芯材和外壳材料; 并且形成数量与弯曲单元的弯曲宽度成比例的弯曲槽单元。 此外,本发明提供了通过该制造方法制造的真空绝热面板。
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公开(公告)号:KR1020130133486A
公开(公告)日:2013-12-09
申请号:KR1020120056769
申请日:2012-05-29
Applicant: (주)엘지하우시스
IPC: F16L59/065 , B32B17/10
CPC classification number: F25D2201/14
Abstract: The present invention provides a vacuum heat insulation material which forms one or more grooves on the surface of the vacuum heat insulation material. The vacuum heat insulation material comprises; a core material made of glass fiber; and an outer cover material which accepts the core material and depressurizes the inner side. The present invention provides a manufacturing method of the vacuum heat insulation material which comprises; a step of preparing a flat type mat by processing the glass fiber through needling; a step of arranging the core material to include the grooves by arranging the mats; a step of inserting the arranged core material into the outer cover material; and a step of depressurizing the inner side of the outer cover material. Also, the present invention provides the manufacturing method of the vacuum heat insulation material which comprises; a step of preparing the core material made of the glass fiber; a step of inserting the core material into the outer cover material; and a step of depressurizing the inner side of the outer cover material. The groove is formed with press processing from the outer cover material to the core material.
Abstract translation: 本发明提供一种在真空绝热材料的表面上形成一个或多个凹槽的真空绝热材料。 真空隔热材料包括: 由玻璃纤维制成的芯材; 以及接受芯材并使内侧减压的外覆盖材料。 本发明提供一种真空绝热材料的制造方法,其特征在于, 通过针刺处理玻璃纤维来制备扁平垫的步骤; 通过布置垫子来布置芯材以包括凹槽的步骤; 将布置的芯材插入外覆盖材料的步骤; 以及对外覆盖材料的内侧进行减压的工序。 另外,本发明提供了真空绝热材料的制造方法,其特征在于, 制备由玻璃纤维制成的芯材的步骤; 将芯材插入外覆盖材料的步骤; 以及对外覆盖材料的内侧进行减压的工序。 凹槽通过从外覆盖材料到芯材料的冲压加工形成。
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公开(公告)号:KR1020130125429A
公开(公告)日:2013-11-19
申请号:KR1020120048914
申请日:2012-05-09
Applicant: (주)엘지하우시스
IPC: F16L59/065 , F16L59/04 , C22C16/00
Abstract: The present invention provides a getter material in which nanoporous materials with a specific surface area of 100 m^2/g or greater and moisture absorbents are mixed. The present invention provides the getter material manufacturing method comprising the steps of: preparing a mixture by mixing the nanoporous materials with a specific surface area of 100 m^2/g or greater and the moisture absorbents; treating the mixture by heat at a temperature of 150 or higher; and inserting the heat treated mixture into a stainless cap or an aluminum cap.
Abstract translation: 本发明提供吸水剂材料,其中比表面积为100m 2 / g或更大的纳米多孔材料和吸湿剂混合。 本发明提供吸气剂材料制造方法,包括以下步骤:通过混合比表面积为100m 2 / g或更大的纳米多孔材料和吸湿剂来制备混合物; 在150℃以上的温度下加热处理混合物; 并将热处理的混合物插入不锈钢盖或铝盖中。
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公开(公告)号:KR1020130114777A
公开(公告)日:2013-10-21
申请号:KR1020120037061
申请日:2012-04-10
Applicant: (주)엘지하우시스
IPC: F16L59/065 , F16L59/04
CPC classification number: F16L59/04 , B32B5/06 , B32B5/12 , B32B5/26 , B32B17/067 , B32B27/08 , B32B2262/101 , B32B2307/304 , B32B2315/08 , B32B2419/00 , B32B2509/00 , B32B2509/10 , E04B1/7662 , E04B1/803 , F16L59/065 , F25D2201/124 , F25D2201/14
Abstract: PURPOSE: An insulation material using long fiber and a manufacturing method thereof are provided to enable the adjustment of an insulation material in thickness and insulation performance by selectively applying the layering amount of glass fiber papers based on the use. CONSTITUTION: An insulation material is layered and sewed with glass fiber papers which are arranged with long fiber in a horizontal manner. The long fiber is made of glass fiber at 1-100 mm of length. The average diameter of the long fiber is 7 um or greater. A glass fiber papers has 0.1-2 mm of thickness. [Reference numerals] (AA) Step of manufacturing an adhesion solution; (BB) Step of putting long fiber; (CC) Step of providing the long fiber for a mesh belt; (DD) Step of drying; (EE) Step of lamination; (FF) Step of sewing
Abstract translation: 目的:提供一种使用长纤维的绝缘材料及其制造方法,能够通过根据用途选择性地施加分层量的玻璃纤维纸,从而能够调整绝缘材料的厚度和绝缘性能。 构成:将绝缘材料层合并用水平方式布置有长纤维的玻璃纤维纸缝合。 长纤维由1-100毫米长的玻璃纤维制成。 长纤维的平均直径为7um以上。 玻璃纤维纸的厚度为0.1-2毫米。 (附图标记)(AA)粘附溶液的制造工序; (BB)放长纤维的步骤; (CC)为网带提供长纤维的步骤; (DD)干燥步骤 (EE)层压步骤; (FF)缝制步骤
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公开(公告)号:KR101316455B1
公开(公告)日:2013-10-08
申请号:KR1020100079661
申请日:2010-08-18
Applicant: (주)엘지하우시스
IPC: F16L59/065 , F16L59/06 , B29C43/52 , B29C45/72
Abstract: 게터재에 하드 플레이트(hard plate)가 적용되어 진공 해제 후에도 게터재 표면 평탄도를 유지할 수 있는 진공 단열재 및 그 제조 방법에 대하여 개시한다.
본 발명의 실시예에 따른 진공 단열재는 파우더 형태의 흡습제와, 상기 흡습제를 수용하는 용기를 구비하는 게터재; 상부면에 상기 게터재를 수납하는 게터재 수납부가 형성된 심재; 및 상기 심재 및 게터재를 밀봉하는 외피재;를 포함하고, 상기 게터재는 상기 외피재와 접하는 부분에 하드 플레이트(hard plate)를 포함하는 것을 특징으로 한다.-
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公开(公告)号:KR101260557B1
公开(公告)日:2013-05-06
申请号:KR1020100000633
申请日:2010-01-05
CPC classification number: E04B1/803 , B32B5/26 , B32B7/12 , B32B15/14 , B32B17/02 , B32B17/067 , B32B27/08 , B32B27/302 , B32B27/304 , B32B27/306 , B32B27/34 , B32B27/36 , B32B37/02 , B32B37/12 , B32B37/187 , B32B2262/101 , B32B2305/10 , B32B2305/22 , B32B2307/304 , B32B2310/024 , B32B2311/24 , B32B2315/085 , B32B2607/00 , Y02A30/242 , Y02B80/12 , Y10T428/231
Abstract: 본발명은진공단열패널및 이를제조하는방법에관한것으로, (a) 유리섬유(Glass Fiber)를무기바인더에분산시킨후 제지법을이용하여제조한유리섬유보드(Glass Fiber Board) 복수장을적층시켜심재를형성하는단계와, (b) 표면보호층, 금속베리어층및 접착층의적층구조를가지는외피재를형성하는단계와, (c) 생석회(CaO) 분말을파우치에포장하여제조한게터(Getter)를형성하는단계와, (d) 상기심재상부에상기게터를부착시키거나, 상기심재의표면에삽입하는단계및 (e) 상기외피재를봉지체로형성한후 (d) 단계의심재넣고진공상태로밀봉시키는단계를포함하는진공단열패널을제공함으로써, 진공단열패널장기내구성을향상시킬수 있도록하는발명에관한것이다.
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公开(公告)号:KR101255398B1
公开(公告)日:2013-04-17
申请号:KR1020080017027
申请日:2008-02-26
Applicant: (주)엘지하우시스
IPC: E04F15/14 , E04F15/02 , E04F15/024 , E04F19/06
Abstract: 본 발명은 발코니 바닥재 마감용 몰딩시스템에 관한 것으로, 보다 상세하게는, 상기 발코니 바닥재의 측면과 상기 바닥면에 설치되되, 그 일측단부가 상기 벽의 측면과 상기 발코니의 바닥면에 맞닿아 마감되도록 구성된 하부바닥연장부(1)와, 상기 하부바닥연장부(1)의 상단면에 상단방향으로 기둥이 두 개가 구성되며, 상기 두 개의 기둥 내측 사이로 홈이 형성된 하부기둥부(2)를 포함하는 하부몰딩부재(3); 및 상기 하부몰딩부재(3)의 상단에 설치되되, 그 일측단부가 상기 벽의 측면에 맞닿아 마감되도록 구성된 상부연장부(7)와, 상기 상부연장부(7)의 하부면에 하단방향으로 돌출 형성되되, 상기 벽에 맞닿아 마감되는 상기 상부연장부(7)의 하단면에 하단방향으로 형성된 상부측면기둥부(8) 및 상기 하부기둥부(2) 사이의 홈에 삽입체결되는 상기 상부연장부(7)의 하단면에 하단방향으로 형성된 상부마감기둥부(9)을 포함하는 상부몰딩부재(10)로 이루어져 구성되며, 상기 상부몰딩부재와 상기 하부몰딩부재가 체결시, 착탈식이 용이하여 하부청소 및 유지보수가 용이하도록 구성된다.
하부몰딩부재, 하부기둥부, 상부몰딩부재, 상부마감기둥부,-
公开(公告)号:KR1020120017148A
公开(公告)日:2012-02-28
申请号:KR1020100079661
申请日:2010-08-18
Applicant: (주)엘지하우시스
IPC: F16L59/065 , F16L59/06 , B29C43/52 , B29C45/72
CPC classification number: F16L59/065 , B29C65/02 , B29C66/00145
Abstract: PURPOSE: A vacuum insulation panel using getter materials having an excellent surface flatness and a manufacturing method thereof are provided to measure a thermal conductivity through using getter materials only by applying a hard plate to getter materials. CONSTITUTION: A vacuum insulation panel using getter materials having an excellent surface flatness comprises getter materials(220), a core material(210), and an outer covering material(230). The getter material comprises a container containing the powder-type moisture absorbent. A getter material receiving part is formed on the upper surface of the core material. The outer covering material seals the core material and getter materials. The hard plate is formed in a contacting part with the outer covering material.
Abstract translation: 目的:提供一种使用具有优异表面平整度的吸气剂材料的真空绝热面板及其制造方法,仅通过将吸附材料涂敷于吸气材料来测量导热性。 构成:使用具有优异表面平整度的吸气剂材料的真空绝热板包括吸气材料(220),芯材(210)和外覆盖材料(230)。 吸气材料包括容纳粉末型吸湿剂的容器。 在芯材的上表面上形成吸气材料容纳部。 外覆盖材料密封芯材料和吸气剂材料。 硬板与外覆盖材料的接触部分形成。
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