GAS-ADSORBING MATERIAL AND VACUUM INSULATION MATERIAL INCLUDING THE SAME
    1.
    发明申请
    GAS-ADSORBING MATERIAL AND VACUUM INSULATION MATERIAL INCLUDING THE SAME 有权
    气体吸附材料和真空绝缘材料,包括它们

    公开(公告)号:US20160136612A1

    公开(公告)日:2016-05-19

    申请号:US14939892

    申请日:2015-11-12

    Abstract: A gas-adsorbing material may increase gas barrier properties for a target gas by reducing a gas-adsorption rate while maintaining gas-adsorption performance. A vacuum insulation material may use the gas-adsorbing material. The gas-adsorbing material may include a gas-adsorbing composition including a copper ion exchanged ZSM-5-type zeolite having a silica to alumina ratio ranging from about 10 to 50 in a framework of zeolite. A ratio of dealuminization of the ZSM-5-type zeolite is at least about 15%, and the gas-adsorbing material is capable of adsorbing at least nitrogen. Furthermore, the gas-adsorbing material may include a calcinated body of a compressed article comprising a gas-adsorbing composition including a copper ion exchanged ZSM-5-type zeolite having a silica to alumina ratio ranging from about 10 to 50 in a framework of zeolite (where a ratio of dealuminization of the ZSM-5-type zeolite is at least about 15%) and a moisture-absorbing material.

    Abstract translation: 气体吸附材料可以通过在保持气体吸附性能的同时降低气体吸附速率来增加目标气体的气体阻隔性。 真空绝热材料可以使用气体吸附材料。 气体吸附材料可以包括气体吸附组合物,其包含在沸石的骨架中具有约10至50的二氧化硅与氧化铝之比的铜离子交换的ZSM-5型沸石。 ZSM-5型沸石的脱铝比至少为15%,气体吸附材料至少可以吸附氮。 此外,气体吸附材料可以包括压缩制品的煅烧体,其包括气体吸附组合物,该气体吸附组合物包含在沸石骨架中具有约10至50的二氧化硅与氧化铝比的铜离子交换的ZSM-5型沸石 (其中ZSM-5型沸石的脱铝比为至少约15%)和吸湿材料。

    BARRIER FILM AND METHOD OF MANUFACTURING THE SAME
    4.
    发明申请
    BARRIER FILM AND METHOD OF MANUFACTURING THE SAME 审中-公开
    遮蔽膜及其制造方法

    公开(公告)号:US20140154518A1

    公开(公告)日:2014-06-05

    申请号:US14094164

    申请日:2013-12-02

    Abstract: A barrier film including a plurality of cured layers each cured layer including a curing product of a polysilazane photocurable precursor, an uncured layer disposed between a first and a second cured layer of the plurality of cured layers, the uncured layer including the polysilazane photocurable precursor, and a gradient composition layer disposed between the first and the second cured layer and the uncured layer, wherein a concentration of the polysilazane photocurable precursor in the gradient composition layer increases with a distance from the first and the second cured layers toward the uncured layer.

    Abstract translation: 一种阻挡膜,包括多个固化层,每个固化层包括聚硅氮烷可光固化前体的固化产物,设置在多个固化层的第一和第二固化层之间的未固化层,包含聚硅氮烷可光固化前体的未固化层, 以及设置在第一和第二固化层和未固化层之间的梯度组合物层,其中梯度组合物层中的聚硅氮烷可光固化前体的浓度随着从第一和第二固化层朝向未固化层的距离而增加。

    GAS-ADSORBING MATERIAL AND VACUUM INSULATION MATERIAL INCLUDING THE SAME
    6.
    发明申请
    GAS-ADSORBING MATERIAL AND VACUUM INSULATION MATERIAL INCLUDING THE SAME 有权
    气体吸附材料和真空绝缘材料,包括它们

    公开(公告)号:US20160114310A1

    公开(公告)日:2016-04-28

    申请号:US14920261

    申请日:2015-10-22

    Abstract: Example embodiments relate to a gas-adsorbing material capable of reducing the generation amount of combustible gas without deteriorating gas-adsorbing performance, and a vacuum insulation material including the gas-adsorbing material. The gas-adsorbing material may include a metal selected from at least one of Li, V, Zr, or an alloy including the same, which adsorbs a nitrogen gas and is inactivated by moisture as a nitrogen adsorbing agent, and an additive added to the metal. The metal is attached on the particle surface of the additive. The metal may be an alloy including Li and an alkaline-earth metal, for example, Ba—Li alloy. The additive absorbs moisture, and is selected from at least one of an inorganic oxide, a transition metal, an oxide of a transition metal, an alloy including a transition metal, and a mixture including a transition metal.

    Abstract translation: 实施例涉及能够降低可燃气体的产生量而不劣化气体吸附性能的气体吸附材料,以及包括气体吸附材料的真空绝热材料。 气体吸附材料可以包括从氮吸附剂中吸收氮气并被水分失活的选自Li,V,Zr或其中的合金中的至少一种的金属,以及添加到 金属。 金属附着在添加剂的颗粒表面上。 金属可以是包括Li和碱土金属的合金,例如Ba-Li合金。 添加剂吸收水分,并且选自无机氧化物,过渡金属,过渡金属的氧化物,包含过渡金属的合金和包含过渡金属的混合物中的至少一种。

    Vacuum Insulation Material
    8.
    发明申请
    Vacuum Insulation Material 有权
    真空绝缘材料

    公开(公告)号:US20160186918A1

    公开(公告)日:2016-06-30

    申请号:US14979681

    申请日:2015-12-28

    CPC classification number: F16L59/065 C22C18/00 C22C30/00 C22C30/02 F16L59/08

    Abstract: A vacuum insulation material including: a core material; and a gas adsorbing agent, wherein the core material and the gas absorbing agent are interposed between a pair of gas barrier materials, wherein at least one of the pair of gas barrier materials includes a quasicrystal metal layer including a quasicrystal metal. The vacuum insulation material may reduce the heat bridge while maintaining high gas barrier properties.

    Abstract translation: 一种真空绝热材料,包括:芯材; 和气体吸附剂,其中所述芯材和气体吸收剂介于一对阻气材料之间,其中所述一对阻气材料中的至少一个包括包含准晶体金属的准晶体金属层。 真空绝热材料可以减少热桥,同时保持高的阻气性。

    VACUUM INSULATION MATERIAL
    9.
    发明申请
    VACUUM INSULATION MATERIAL 有权
    真空绝缘材料

    公开(公告)号:US20150159800A1

    公开(公告)日:2015-06-11

    申请号:US14562075

    申请日:2014-12-05

    Abstract: A vacuum insulation material includes a pair of gas barrier exterior materials, a core material including a cellulose structure having porosity of greater than or equal to about 80% under reduced pressure of about 1 Pa, where the cellulose structure has a unit length of greater than or equal to about 1 μm and less than or equal to about 5 mm in the heat-insulation direction, and the method of manufacturing the same, and a gas adsorption agent, where the core material and the gas adsorption agent are interposed between the pair of gas barrier exterior materials and sealed inside of the pair of gas barrier exterior materials under reduced pressure.

    Abstract translation: 真空绝热材料包括一对气体阻隔外部材料,芯材料包括在约1Pa的减压下孔隙率大于或等于约80%的纤维素结构,其中纤维素结构的单位长度大于 或者等于约1μm,并且在绝热方向上小于或等于约5mm,及其制造方法,以及气体吸附剂,其中芯材和气体吸附剂插入在该对之间 的气体阻隔外部材料,并在减压下密封在一对隔气外部材料的内部。

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