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    • 113. 发明申请
    • VACUUM INSULATION BOARD AND METHOD FOR PRODUCING THE SAME
    • 真空绝缘板及其制造方法
    • US20110117308A1
    • 2011-05-19
    • US12736760
    • 2009-05-06
    • Jochen HiemeyerStefan Roth
    • Jochen HiemeyerStefan Roth
    • B32B3/02E04B1/80B32B1/06B29C65/00
    • F16L59/065E04B1/803Y02A30/242Y02B80/12Y10T156/1051Y10T428/23Y10T428/231
    • A vacuum insulated panel, comprising a filler and a vacuum-tight high-barrier film envelope, with an air-permeable sheet element serving as a filter material for dust, wherein the sheet element consists of the same material as the sealing layer of the high-barrier film enveloping the vacuum insulated panel and passes through at least two of the sealing seams of the high-barrier film, and to a method for producing such a vacuum insulated panel, wherein the sheet element, in the form of a strip is folded along a central axis, is placed between two sealing films, and is bonded to the inwardly disposed sealing layers of the sealing films such that a joint is formed between the two sealing films, and the two sealing films are sealed together by means of a respective seam on each of the perpendicular sides, the strip-shaped sheet element being co-sealed into these seams.
    • 一种真空绝热板,包括填充物和真空密封的高阻隔膜封套,透气性片元件用作用于灰尘的过滤材料,其中片材由与高密度层的密封层相同的材料组成 包围真空绝缘板并穿过高阻隔膜的至少两个密封缝的绝缘膜以及用于制造这种真空绝缘板的方法,其中带状的片状元件被折叠 沿着中心轴线放置在两个密封膜之间,并且结合到密封膜的向内设置的密封层上,使得在两个密封膜之间形成接头,并且通过相应的密封膜将两个密封膜密封在一起 在每个垂直边上的接缝,条形片元件共同密封成这些接缝。
    • 115. 发明申请
    • INSULATED ULTRAFINE POWDER AND HIGH DIELECTRIC CONSTANT RESIN COMPOSITE MATERIAL
    • 绝缘超细粉末和高介电常数树脂复合材料
    • US20110102231A1
    • 2011-05-05
    • US11573307
    • 2005-08-04
    • Takahiro MatsumotoToshiaki YamadaHirotaka TsuruyaTakuya GotoMasahiro Fujiwara
    • Takahiro MatsumotoToshiaki YamadaHirotaka TsuruyaTakuya GotoMasahiro Fujiwara
    • H01Q17/00H01B1/04H01B1/02B32B5/00B05D5/12B32B1/06B82Y30/00
    • C09C1/56B82Y30/00C01P2004/32C01P2004/62C01P2004/64C01P2004/84C01P2006/40C08K9/02C09C1/46C09C1/565C09C3/063H01B1/24Y10T428/1352
    • The present invention provides an insulated ultrafine powder containing electrically conductive ultrafine particles coated with an insulation coating, characterized in that the electrically conductive ultrafine particles are formed of a carbon material which is in the form of spherical particles having a diameter of 1 nm or more and 500 nm or less, fibers having a cross-sectional diameter of 1 nm or more and 500 nm or less, or plate-like particles having a thickness of 1 nm or more and 500 nm or less; the insulation coating is formed of an insulating metal oxide or a hydrate thereof; and the thickness of the insulation coating is 0.3 nm or more, and, when the electrically conductive ultrafine particles are in the form of spherical particles, the coating thickness is equal to or less than the diameter of the particles; when the electrically conductive ultrafine particles are in the form of fibers, the coating thickness is equal to or less than the cross-sectional diameter of the fibers; or when the electrically conductive ultrafine particles are in the form of plate-like particles, the coating thickness is equal to or less than the thickness of the plate-like particles; and as well a high-dielectric-constant resin composite material containing the insulated ultrafine powder. The resin composite material exhibits high dielectric constant and radio wave absorbability, while maintaining fundamental characteristics of resin material (i.e., excellent moldability and workability, and light weight).
    • 本发明提供了一种包含涂覆有绝缘涂层的导电超细颗粒的绝缘超细粉末,其特征在于,导电超细颗粒由直径为1nm或更大的球形颗粒形式的碳材料形成, 500nm以下的纤维,其截面直径为1nm以上且500nm以下的纤维或厚度为1nm以上且500nm以下的板状粒子, 绝缘涂层由绝缘金属氧化物或其水合物形成; 并且绝缘涂层的厚度为0.3nm以上,并且当导电性超细颗粒为球形颗粒的形式时,涂层厚度等于或小于颗粒的直径; 当导电性超细颗粒为纤维形式时,涂布厚度等于或小于纤维的横截面直径; 或者当导电性超细颗粒呈板状颗粒形式时,涂层厚度等于或小于板状颗粒的厚度; 以及含有绝缘超细粉末的高介电常数树脂复合材料。 树脂复合材料具有高介电常数和无线电波吸收性,同时保持树脂材料的基本特性(即,优异的成型性和可加工性,重量轻)。
    • 117. 发明申请
    • Thermal Interface Device
    • 热接口设备
    • US20110086196A1
    • 2011-04-14
    • US12577148
    • 2009-10-09
    • Todd R. Salamon
    • Todd R. Salamon
    • B32B1/06B29C67/00
    • B29C70/58B29K2995/0013B29L2031/18Y10T428/23
    • Device including enclosure, plurality of particles, and matrix material. Particles are formed of material having substantial bulk thermal conductivity of at least about one watt per meter-Kelvin (1 W/[mK]) at standardized measurement temperature of about 68° F. Particles are dispersed in matrix material and encapsulated in enclosure. Enclosure is configured, upon deformation, to allow portion of matrix material to escape while retaining at least portion of particles within enclosure. System that includes device. Method that includes providing enclosure, first object having first surface, and second object having second surface. Method also includes placing enclosure between first and second surfaces and pressing first and second surfaces together, causing enclosure to be deformed allowing portion of matrix material to escape while retaining portion of particles within enclosure.
    • 装置包括外壳,多个颗粒和基质材料。 颗粒由在大约68°F的标准测量温度下具有至少约1瓦特每米开尔文(1W / [mK])的大体积热导率的材料形成。颗粒分散在基质材料中并封装在外壳中。 外壳在变形时被配置成允许基体材料的一部分逸出,同时保持外壳内的至少部分颗粒。 包括设备的系统。 包括提供外壳,具有第一表面的第一物体和具有第二表面的第二物体的方法。 方法还包括将外壳放置在第一表面和第二表面之间并将第一表面和第二表面压在一起,导致外壳变形,允许基体材料的一部分逸出,同时保持外壳内的颗粒部分。