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    • 4. 发明授权
    • Patterned metal foil laminate and method for making same
    • 图案化的金属箔层压板及其制造方法
    • US5759422A
    • 1998-06-02
    • US602576
    • 1996-02-14
    • Michael A. SchmelzerAnthony Joseph SwiontekCharles C. HabegerKenneth A. Pollart
    • Michael A. SchmelzerAnthony Joseph SwiontekCharles C. HabegerKenneth A. Pollart
    • B32B3/22B32B15/04B32B38/10B65D81/34G08B13/24H05K3/04B44C1/22
    • B32B38/10B32B15/04B32B3/22B65D81/3446G08B13/2437G08B13/244G08B13/2445H05K3/046B32B2310/0843B65D2211/00B65D2581/344B65D2581/3467B65D2581/3472B65D2581/3487Y10T156/1052
    • A patterned metal foil/substrate laminate wherein the pattern is formed by laminating a sheet of metal foil to a substrate by applying an adhesive between the metal foil and substrate in a predetermined pattern which defines areas where adhesive is present and areas where no adhesive is present, cutting the metal foil, as by rotary die cutting or laser cutting, in a pattern which corresponds to the boundaries of the adhesive-containing areas and removing the areas of metal foil which are not adhesively adhered to the substrate. Particularly where the laminate is intended for microwave packaging, the laminate further includes a sheet of barrier layer material, preferably polymer film, laminated to the patterned metal foil layer. The polymer film layer-containing laminate can be formed into a container for packaging food intended for heating in a microwave oven, the container having at least one section, corresponding to the areas of the laminate from which metal foil was removed, that is substantially transparent to microwave energy and at least one section, corresponding to the foil-containing areas of the laminate, that is opaque to microwave energy for shielding food adjacent to the opaque section. Preferably, the metal foil is aluminum foil, desirably unannealed aluminum foil, and the substrate is selected from paper, coated or uncoated paperboard and polymer film.
    • 图案化的金属箔/基板层叠体,其中,图案通过在限定存在粘合剂的区域和不存在粘合剂的区域的预定图案中在金属箔和基板之间施加粘合剂而将金属箔片层压到基板上而形成 通过旋转模切或激光切割切割金属箔,以与含粘合剂的区域的边界相对应的图案,并且去除不粘附到基底上的金属箔的区域。 特别是在层叠体用于微波包装的情况下,层压体还包括层压到图案化金属箔层上的阻挡层材料片,优选聚合物膜。 含有聚合物膜层的层叠体可以形成为用于包装用于在微波炉中加热的食品的容器,该容器具有至少一个部分,对应于去除金属箔的层压体的区域,其基本上是透明的 微波能量和对应于层压体的含箔区域的至少一个部分,其对于微波能量是不透明的,用于屏蔽邻近不透明部分的食物。 优选地,金属箔是铝箔,期望为非退火的铝箔,并且基材选自纸,涂布或未涂布的纸板和聚合物膜。
    • 6. 发明授权
    • Fluid material application system employing tube-in-hose heat exchanger
    • 流体材料应用系统采用管内软管换热器
    • US06374769B1
    • 2002-04-23
    • US09397736
    • 1999-09-17
    • Eugene R. PesaventoDuane R. MuellerMichael A. Schmelzer
    • Eugene R. PesaventoDuane R. MuellerMichael A. Schmelzer
    • B05C108
    • B41F31/002F28D7/022
    • A fluid material application system is provided with an application deck for applying a fluid material that includes printing ink, adhesive or coating, a source of fluid material, a source of heat transfer liquid, and a heat exchanger. The heat exchanger includes a tube-in-hose ink heat exchange element having a fluid material carrying seamless tube located within a hose. The hose is adapted to be connected to a heat transfer fluid source so that a heat transfer fluid flows around the fluid material carrying tube to control and maintain the temperature of the fluid material in the tube at a generally constant temperature. The elongated heat exchange element may possess a winding type of configuration (e.g., it may be coiled or helically wound or may be laid out in a serpentine path) to define a winding flow path for the fluid material and the heat transfer fluid, and may be located within an enclosing structure to define an overall compact heat exchanger.
    • 流体材料施加系统设置有用于施加包括印刷油墨,粘合剂或涂层,流体材料源,传热液体源和热交换器的流体材料的施用板。 热交换器包括管内软管油墨热交换元件,其具有承载位于软管内的无缝管的流体材料。 软管适于连接到传热流体源,使得传热流体围绕流体材料承载管流动,以控制和保持管中的流体材料的温度处于基本恒定的温度。 细长的热交换元件可以具有绕组类型的构造(例如,其可以被卷绕或螺旋缠绕或可以布置在蛇形路径中)以限定用于流体材料和传热流体的缠绕流动路径,并且可以 位于封闭结构内以限定整体紧凑型热交换器。
    • 7. 发明授权
    • Heat insulating paper cups
    • 隔热纸杯
    • US06308883B1
    • 2001-10-30
    • US09658281
    • 2000-09-08
    • Michael A. SchmelzerDiana L. PennMikel A. Ingram
    • Michael A. SchmelzerDiana L. PennMikel A. Ingram
    • B65D322
    • B32B29/007B29C44/12B29C44/34B31B2105/00B31B2110/10B31B2110/20B31B2120/50B32B5/18B32B27/10B32B2307/304B32B2439/02B65D81/3874Y10T428/1303Y10T428/1376
    • A heat insulating paper cup with improved insulation in areas where printed matter exists. The printed matter is applied using a water-based alkyd or epoxy ink. In one embodiment the cup can include a body member having an inside surface and an outside surface, and a bottom panel member having a upper surface and a bottom surface. The body member is coated on its outside surface with a foamed synthetic resin, and on its inside surface with an unfoamed synthetic resin. The bottom panel member is optionally coated on its upper surface with a foamed or an unfoamed synthetic resin. The body member and bottom panel member are oriented and joined to form a seal at an interface between a portion of inside surface of the body member and a portion of the upper surface of the bottom panel member. The printed matter is applied prior to foaming of the synthetic resin on the outer surface of the cup.
    • 一种绝热纸杯,在存在印刷品的区域具有改善的绝缘。 使用水性醇酸树脂或环氧树脂油墨涂布印刷品。 在一个实施例中,杯可以包括具有内表面和外表面的本体构件,以及具有上表面和底表面的底板构件。 主体部件用发泡合成树脂涂覆在其外表面上,其内表面上涂有未发泡的合成树脂。 底板构件任选地在其上表面上用发泡或未发泡的合成树脂涂覆。 主体构件和底板构件被定向和接合以在本体构件的内表面的一部分与底板构件的上表面的一部分之间的界面处形成密封。 在将合成树脂发泡到杯的外表面之前施加印刷物。