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    • 2. 发明授权
    • Form body for heat insulation and vacuum insulation panel with
asymmetric design
    • 隔热型绝热面板和非对称设计的真空绝热面板
    • US5316816A
    • 1994-05-31
    • US7129
    • 1993-01-22
    • Gerhard SextlHans StrackRoland ReuterIlona FussPeter KleinschmitRudolf Schwarz
    • Gerhard SextlHans StrackRoland ReuterIlona FussPeter KleinschmitRudolf Schwarz
    • F16L59/02B32B1/06B32B5/16
    • F16L59/028Y10T428/231Y10T428/237Y10T428/238Y10T428/239
    • A shaped body, preferably plate-shaped, for use as heat insulation, formed of (a) a finely distributed, powdery or fibrous substance, (b) a microporous casing, and (c) a gastight and watertight, metal-free casing. The shaped body is produced by drying a powdery or fibrous substance if necessary, optionally placing it into a microporous casing, optionally pressing and then optionally drying. Thereafter, the powdery substance is placed with the microporous casing into a gastight and watertight, metal-free casing. This gastight and watertight casing is optionally evacuated and sealed. Furthermore, a shaped article, preferably plate-shaped, for use as heat insulation, produced from (a) a finely distributed, powdery or fibrous substance with a water absorption capacity of 4 to 50% by weight at 23.degree. C. and 85% relative humidity, (b) a casing of two parts with asymmetric design which contains this finely distributed, powdery or fibrous substance, the first part of the casing being metal-free and concave in such a manner that it is completely filled by the preferably plate-like shaped article and the second part being metal-free or metallic and planar and connected to the trough in such a manner that a gastight and water-vapor-tight seal is assured and both parts having water-vapor-permeabilities between 0 and 0.2 g/m.sup.2 /d at 23.degree. C. and 85% relative humidity and gas permeabilities for N.sub.2, O.sub.2 and CO.sub.2 of in sum 0 to 0.5 cm.sup.3 /m.sup.2 d/bar at 23.degree. C.; the shaped article having the property of absorbing water up to an amount of 2 to 15% by weight without its thermal conductivity deteriorating more than 25%.
    • 由(a)精细分布的粉状或纤维状物质形成的成型体,优选为板状,(b)微孔外壳,(c)气密和水密的无金属外壳。 如果需要,通过干燥粉末或纤维状物质,任选地将其置于微孔套管中,任选地按压然后任选地干燥而制成成形体。 此后,将粉状物质与微孔套管一起置于气密和防水,无金属的外壳中。 这种气密和防水外壳可选择地抽真空并密封。 此外,用作绝热的成型制品,优选为板状,由(a)精细分布的粉末状或纤维状物质制成,其吸水量在23℃下为4〜50重量%,85重量% 相对湿度,(b)具有不对称设计的两部分的壳体,其包含这种精细分布的粉状或纤维状物质,壳体的第一部分是无金属和凹入的,使得其被优选板完全填充 并且第二部分是无金属的或金属的和平面的,并且以这样的方式连接到槽,使得保证气密和水蒸气密封,并且两个部分的水蒸汽渗透性在0和0.2之间 在23℃和85%相对湿度下的g / m 2 / d和在23℃下为0至0.5cm 3 / m 2d / bar的N 2,O 2和CO 2的气体渗透性。 该成型制品具有吸水量至多2至15重量%的特性,而其导热率不会降低25%以上。
    • 7. 发明申请
    • Method for Encapsulating Latent Heat Storage Material and Products Obtained Thereby
    • 封存潜热储存材料及获得的产品的方法
    • US20110017944A1
    • 2011-01-27
    • US12933177
    • 2009-03-13
    • Ruth Houbertz-KraussGerhard SextlUta HelbigDaniela PlatteAnu Punnoose
    • Ruth Houbertz-KraussGerhard SextlUta HelbigDaniela PlatteAnu Punnoose
    • C09K5/00B01J13/18
    • B01J13/14B01J13/18
    • The invention relates to a method for producing an inorganic latent heat storage material that is surrounded by an encapsulating layer that is made of an inorganic-organic polymer material that comprises a metal and/or semi-metal oxygen network with embedded organic groups. The method is characterised in that a liquid or liquefied latent heat storage material, in the form of discrete units that are to be, respectively, encapsulated, is introduced into a liquid or viscous precursor material of the encapsulating material such that the encapsulating material solidifies when coming into contact with the outer surfaces of said latent heat storage material. The invention also relates to an inorganic latent heat storage material that is surrounded by an encapsulating layer and is present in said encapsulation, said encapsulating material being made of an inorganic-organic polymer material that comprises a (semi) metal oxygen network with embedded organic groups, connected, preferably at least partially to (semi) metal. Silane resins are well suited as precursor material.
    • 本发明涉及一种无机潜热蓄热材料的制造方法,该无机潜热蓄热材料由包含具有嵌入有机基团的金属和/或半金属氧网络的无机 - 有机聚合物材料制成的封装层包围。 该方法的特征在于将要分别封装的分立单元形式的液体或液化潜热储存材料引入到封装材料的液体或粘性前体材料中,使得封装材料固化时 与所述潜热蓄热材料的外表面接触。 本发明还涉及由封装层包围并存在于所述封装中的无机潜热储存材料,所述封装材料由无机 - 有机聚合物材料制成,所述无机 - 有机聚合物材料包括具有嵌入有机基团的(半)金属氧网络 ,优选地至少部分地与(半)金属连接。 硅烷树脂非常适合作为前体材料。